# 8 CCR 1202-5: STORAGE AND HANDLING OF ANHYDROUS AMMONIA

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URL: https://www.frixlaw.com/law-library/statutes/STATE_CO_CCR_8_CCR_1202_5

## Section

- **Citation:** 8 CCR 1202-5
- **Heading:** STORAGE AND HANDLING OF ANHYDROUS AMMONIA
- **Jurisdiction:** Colorado
- **Kind:** Regulations
- **Status:** In force
- **Text as of:** August 14, 2026
- **Source:** Compiled text
- **Location:** Code of Colorado Regulations / 1200 Department of Agriculture / 1202 Inspection and Consumer Services Division / 8 CCR 1202-5

## Text

1
DEPARTMENT OF AGRICULTURE
Inspection and Consumer Services Division
STORAGE AND HANDLING OF ANHYDROUS AMMONIA
8 CCR 1202-5
[Editor’s Notes follow the text of the rules at the end of this CCR Document.]
_________________________________________________________________________
SECTION 1.
INTRODUCTION
1.1.
Scope
1.1.1.
These Rules apply to the design, construction, location, installation, and operation of anhydrous
ammonia systems for storing, handling, transporting, and utilizing anhydrous ammonia as an
agricultural fertilizer. They do not supersede any other Federal Statutes or Regulations not cited
herein that may be applicable.
1.1.2.
These Rules do not apply to:
1.1.2.1. Ammonia, manufacturing plants.
1.1.2.2. Refrigeration plants where ammonia is used solely as a refrigerant.
1.1.2.3. Ammonia transportation pipelines.
1.1.2.4. Refrigerated ammonia systems.
1.2.
General
1.2.1.
Where the provisions of these Rules impose undue hardship or where the literal adherence to the
provisions fails to provide adequate safety, the Commissioner may permit deviation from the
Rules.
1.2.2.
The term “anhydrous ammonia” as used in these Rules refers to the compound, formed by a
combination of two gaseous elements, nitrogen and hydrogen, in the proportion of one part
nitrogen to three parts hydrogen by volume. Anhydrous ammonia may be in either gaseous or
liquid form. It is not to be confused with aqua ammonia which is a solution of ammonia gas in
water. Whenever the term “ammonia” appears in these Rules, it means anhydrous ammonia.
1.2.3.
It is important that personnel understand the properties of this gas and that they be thoroughly
trained in safe practices for its storage and handling. Some of the important physical properties of
ammonia are listed in 1.2.5.
1.2.4.
Gaseous ammonia liquefies under pressure at ambient temperature. Advantage of this
characteristic is taken by industry and for convenience this commodity is usually shipped and
stored under pressure as a liquid
e properties of this gas and that they be thoroughly
trained in safe practices for its storage and handling. Some of the important physical properties of
ammonia are listed in 1.2.5.
1.2.4.
Gaseous ammonia liquefies under pressure at ambient temperature. Advantage of this
characteristic is taken by industry and for convenience this commodity is usually shipped and
stored under pressure as a liquid. When refrigerated to or below its normal boiling point (-28ºF) it
may be shipped and stored as a liquid at atmospheric pressure.

Code of Colorado Regulations
Secretary of State
State of Colorado

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1.2.5.
Physical Properties of Ammonia:

Molecular symbol
NH3
Molecular weight
17.032
Boiling point at one atmosphere*
-28ºF
Melting point at one atmosphere*
-107.9ºF
Critical temperature
271.4ºF
Critical pressure
1657 psia.
Latent heat at -28ºF and one atmosphere*
589.3 Btu per pound
Relative density of vapor compared to dry air at 32ºF and one atmosphere*
0.5970
Vapor density at -28ºF and one atmosphere*
0.05555 lb. per cu ft
Specific gravity of liquid at -28ºF compared to water at 39.2ºF
0.6819
Liquid density at -28ºF and one atmosphere*
42.57 lb. per cu ft
Specific volume of vapor at 32ºF and one atmosphere*
20.78 cu ft per pound
Flammable limits by volume in air at atmospheric pressure
16% to 25%
Ignition Temperature (in a standard quartz container)
1562ºF
Specific Heat, Gas, 15ºC, one atm at constant pressure, Cp
0.5232 Btu/lb. ºF
at constant volume, Cv
0.3995 Btu/lb. ºF
*One atmosphere = 14.7 psia.
1.2.6.
Experience has shown that ammonia is extremely hard to ignite and under normal conditions is a
very stable compound. It takes temperatures of 840-980ºF to cause it to dissociate slightly at
atmospheric pressure. The flammable limits at atmospheric pressure are 16% to 25% by volume
of ammonia in air
e, Cp
0.5232 Btu/lb. ºF
at constant volume, Cv
0.3995 Btu/lb. ºF
*One atmosphere = 14.7 psia.
1.2.6.
Experience has shown that ammonia is extremely hard to ignite and under normal conditions is a
very stable compound. It takes temperatures of 840-980ºF to cause it to dissociate slightly at
atmospheric pressure. The flammable limits at atmospheric pressure are 16% to 25% by volume
of ammonia in air. Experiments conducted by a nationally recognized laboratory indicated that an
ammonia-air mixture in a standard quartz test container does not ignite below 1562ºF. Ammonia
is classified by the United States Department of Transportation and the United States Coast
Guard as a non-flammable compressed gas for the purpose of transportation.
1.2.7.
Ammonia should be handled only by properly trained personnel. In no case should ammonia be
used in conjunction with chemicals unless the possible reactions have first been adequately
investigated. Under some circumstances ammonia and ammonium compounds can form
explosive products with other chemicals.
1.2.8.
Ammonia gas irritates the skin and mucous membrane. Its odor is detectable by most people.
Since ammonia gas is lighter than air, adequate ventilation is the best means of preventing any
accumulation.
1.2.9.
Zinc, copper and copper base alloys such as brass are subject to rapid destructive action by
ammonia in the presence of water.
1.3.
Standards Incorporated by Reference
1.3.1.
The following standards are hereby incorporated by reference in these Rules:
1.3.1.1. U.S. Department of Transportation (DOT) Regulations referring to Hazardous Materials
Regulations of the Department of Transportation, including specifications for shipping
containers, Code of Federal Regulations, 49 CFR parts 171 to 190, October 1, 2011
edition. This rule does not adopt any later amendments or editions.
1.3.1.2
tandards are hereby incorporated by reference in these Rules:
1.3.1.1. U.S. Department of Transportation (DOT) Regulations referring to Hazardous Materials
Regulations of the Department of Transportation, including specifications for shipping
containers, Code of Federal Regulations, 49 CFR parts 171 to 190, October 1, 2011
edition. This rule does not adopt any later amendments or editions.
1.3.1.2. American Society of Mechanical Engineers (ASME) Boiler and Pressure Vessel Code
parts UW-1 though UW-65, Section VIII, Division 1, Titled “Part UW: Requirements for
Pressure Vessels Fabricated by Welding,” 2015 edition. This rule does not adopt any
later amendments or editions.

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1.3.1.3. Unfired Pressure Vessel Code of the American Society of Mechanical Engineers
(Sections VIII of the ASME Boiler Construction Code), 1952, 1956, 1959, 1962, 1965,
1968, 1971, 1978, 1983, 1989, 1996, 1997, 2001, 2007, 2008, 2010 and 2015 editions.
This rules does not adopt any later amendments or editions.
1.3.1.4. National Electrical Code, NFPA 70 (ANSI-C1), for Class I, Group D locations, 2014
edition. This rule does not adopt any later amendments or editions.
1.3.1.5. American Petroleum Institute, API Standard 620, Twelfth edition, 2013. This rule does not
adopt any later amendments or editions.
1.3.1.6. Portable U.S. Department of Transportation (DOT) Containers, Code of Federal
Regulations 49 CFR 173.32 October 1, 2011 edition. This rule does not adopt any later
amendments or editions.
1.3.1.7. Compressed Gas Association Publication P-1, 2015 edition. This rule does not adopt any
later amendments or editions.
1.3.1.8. U.S. Department of Transportation (DOT) Regulation referring to systems utilizing
cylinders, portable tanks (DOT-51), Code of Federal Regulations 49 CFR Part 173.32,
October 1, 2011 edition. This rule does not adopt any later amendments or editions.
1.3.1.9. U.S
s.
1.3.1.7. Compressed Gas Association Publication P-1, 2015 edition. This rule does not adopt any
later amendments or editions.
1.3.1.8. U.S. Department of Transportation (DOT) Regulation referring to systems utilizing
cylinders, portable tanks (DOT-51), Code of Federal Regulations 49 CFR Part 173.32,
October 1, 2011 edition. This rule does not adopt any later amendments or editions.
1.3.1.9. U.S. Department of Transportation (DOT) Regulations referring to systems utilizing “Ton
Containers” (DOT-106A, DOT-110A) Code of Federal Regulations 49 CFR Parts
179.300-179.301, October 1, 2011 edition. This rule does not adopt any later
amendments or editions.
1.3.1.10.
The American National Standards Institute’s Method of Marking Portable
Compressed Gas Containers to Identify the Material Contained, ANSI Z48.1, 1954
edition. This rule does not adopt any later amendments or editions.
1.3.1.11.
U.S. Department of Transportation (DOT) Regulations referring to safety relief
device requirements, Code of Federal Regulations 49 CFR Part 173.315, October 1,
2011 edition. This rule does not adopt any later amendments or editions.
1.3.2.
A copy of the Official Publications of the above incorporated Standards shall be kept on file at the
Colorado Department of Agriculture, located at 305 Interlocken Parkway, Broomfield Colorado
80021, and shall be open to public inspection, and available for copying, during normal business
hours.
A copy of the official publication of the U.S. Department of Transportation (DOT) regulations shall
also be kept at the U.S. Department of Transportation, 1200 New Jersey Avenue SE, Washington
D.C. 20590 and is available online at: transportation.gov/regulations.
A copy of the official publication of the American Society of Mechanical Engineers shall be kept
on file at the Colorado Department of Agriculture, located at 305 Interlocken Parkway, Broomfield
Colorado 80021, and shall be open to public inspection, and available for copying, during normal
business hours
Avenue SE, Washington
D.C. 20590 and is available online at: transportation.gov/regulations.
A copy of the official publication of the American Society of Mechanical Engineers shall be kept
on file at the Colorado Department of Agriculture, located at 305 Interlocken Parkway, Broomfield
Colorado 80021, and shall be open to public inspection, and available for copying, during normal
business hours. A copy of the official publication of the American Society of Mechanical
Engineers shall also be kept at the ASME Headquarters, Two Park Avenue, New York NY 10016-
5990 and is available online at: ASME.org

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A copy of the official publication of The National Electrical Code shall be kept on file at the
Colorado Department of Agriculture, located at 305 Interlocken Parkway, Broomfield Colorado
80021, and shall be open to public inspection, and available for copying, during normal business
hours. A copy of the official publication of the National Electrical Code shall also be kept at The
National Fire Protection Association, 1 Batterymarch Park, Quincy Massachusetts 02169-7471
and is available online at: NFPA.org
A copy of the American Petroleum Institute Standards shall be kept on file at the Colorado
Department of Agriculture, located at 305 Interlocken Parkway, Broomfield Colorado 80021, and
shall be open to public inspection, and available for copying, during normal business hours. A
copy of the official publication of the American Petroleum Institute Standards shall also be kept at
the American Petroleum Institute, 200 Massachusetts Avenue NW, suite 1100, Washington D.C.,
20001-5571 and is available online at: API.org.
A copy of the Compressed Gas Association Publication shall be kept on file at the Colorado
Department of Agriculture, located at 305 Interlocken Parkway, Broomfield Colorado 80021, and
shall be open to public inspection, and available for copying, during normal business hours
roleum Institute, 200 Massachusetts Avenue NW, suite 1100, Washington D.C.,
20001-5571 and is available online at: API.org.
A copy of the Compressed Gas Association Publication shall be kept on file at the Colorado
Department of Agriculture, located at 305 Interlocken Parkway, Broomfield Colorado 80021, and
shall be open to public inspection, and available for copying, during normal business hours. A
copy of the official publication of the Compressed Gas Association shall also be kept at 14501
George Carter Way, suite 103, Chantilly, VA 20151 and is available online at: CGANET.com.
A copy of the American National Standards Institute’s standards Publication shall be kept on file
at the Colorado Department of Agriculture, located at 305 Interlocken Parkway, Broomfield
Colorado 80021, and shall be open to public inspection, and available for copying, during normal
business hours. A copy of the official publication of the American National Standards Institute’s
Standards shall also be kept at ANSI headquarters, 1899 L Street NW, Washington D.C. 20036
and is available online at: ANSI.org.
1.4.
Definitions
The following definitions are used for the purpose of these Rules:
1.4.1.
“Approved” means:
1.4.1.1. Listed by a recognized testing laboratory, or
1.4.1.2. Recommended by the manufacturer as suitable for use with anhydrous ammonia and so
marked, or
1.4.1.3. Accepted by the Commissioner.
1.4.2.
“Appurtenance” refers to all devices such as safety relief devices, liquid level gauging devices,
valves, pressure gauges, fittings, metering or dispensing devices.
1.4.3.
“ASME” means American Society of Mechanical Engineers.
1.4.4.
“Backflow check valve” means a device designed to prevent ammonia from flowing in the wrong
direction within a pipe or tube.
1.4.5.
“Capacity” refers to the total volume of the container measured in U.S. gallons, unless otherwise
specified.
1.4.6
gauging devices,
valves, pressure gauges, fittings, metering or dispensing devices.
1.4.3.
“ASME” means American Society of Mechanical Engineers.
1.4.4.
“Backflow check valve” means a device designed to prevent ammonia from flowing in the wrong
direction within a pipe or tube.
1.4.5.
“Capacity” refers to the total volume of the container measured in U.S. gallons, unless otherwise
specified.
1.4.6.
“Chemical-splash goggles” and “splash proof goggles” means flexible-fitting chemical-protective
goggles, with a hooded, indirect ventilation system that provides protection to the eyes and eye
sockets from the splash of hazardous liquids. This term shall not include direct vented goggles.

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1.4.7.
“Cylinder” means a container of 1000 pounds water capacity or less.
1.4.8.
The “Code” refers to the Unfired Pressure Vessel Code of the American Society of Mechanical
Engineers (Section VIII of the ASME Boiler Construction Code), 2015 edition.
1.4.9.
“Container” includes all vessels, tanks, cylinders or spheres used for transportation, storage or
application of anhydrous ammonia.
1.4.10. “Data plate” means a piece of non-corroding metal permanently attached by the manufacturer to
the surface of a container.
1.4.11. “Densely populated area” means any location with either one or more multifamily housing units or
eight or more single-family dwellings located within a quarter section.
1.4.12. “Design Pressure” is identical to the term “Maximum Allowable Working Pressure” used in the
Code.
1.4.13. “Emergency shutoff valve” means a valve that stops the flow of product by spring closure, gravity,
or pressure and can be activated by an outside means including a cable pull, hose pull, air
assists, electrical closure or back pressure.
1.4.14. “Excess-flow valve” means a device placed in a line that is designed to close when the flow of
vapor or liquid flowing through the line exceeds the amount for which the valve is rated.
1.4.15
lve that stops the flow of product by spring closure, gravity,
or pressure and can be activated by an outside means including a cable pull, hose pull, air
assists, electrical closure or back pressure.
1.4.14. “Excess-flow valve” means a device placed in a line that is designed to close when the flow of
vapor or liquid flowing through the line exceeds the amount for which the valve is rated.
1.4.15. An “Implement of Husbandry” is a farm wagon-type tank vehicle of not over 3000 gallons
capacity, used as a field storage “nurse tank” supplying the fertilizer to a field applicator and
moved on highways for bringing the fertilizer from a local source of supply to farms or fields or
from one farm or field to another.
1.4.16. “Filling Density” means the percent ratio of the weight of the gas in a container to the weight of
water at 60ºF that the container will hold. For determining the water capacity of the tank in
pounds, the weight of a gallon (231 cubic inches) of water at 60ºF in air shall be 8.32828 pounds.
1.4.17. “Gas” refers to anhydrous ammonia in either the gaseous or liquefied state.
1.4.18. “DOT Regulations” refer to Hazardous Materials Regulations of the U.S. Department of
Transportation (Title 49-Transportation, Code of Federal Regulations, Parts 171 to 190), including
Specifications for Shipping Containers.
1.4.19. “Mobile container” means any container that is not installed as a permanent storage container.
1.4.20. “Non-code welding” means welding that does not comply with parts UW-1 through UW-65 of the
ASME Boiler and Pressure Vessel Code, Sections VIII, Division 1, Titles “Parts UW:
Requirements for Pressure Vessels Fabricated by Welding,” 2015 edition.
1.4.21. “Permanent storage container” means a stationary container having a volume of at least 3,000
water gallons.
1.4.22. “Permanent storage facility” means a site that includes one or more permanent storage
containers and their connections and appurtenances.
1.4.23
e Vessel Code, Sections VIII, Division 1, Titles “Parts UW:
Requirements for Pressure Vessels Fabricated by Welding,” 2015 edition.
1.4.21. “Permanent storage container” means a stationary container having a volume of at least 3,000
water gallons.
1.4.22. “Permanent storage facility” means a site that includes one or more permanent storage
containers and their connections and appurtenances.
1.4.23. “Place of public assembly” means any building, structure or facility established to accommodate
groups of people for commercial, civic, political, religious, recreational, educational, or other
purposes. This term shall include buildings or structures used for medical care, including
hospitals, assisted care facilities, and prisons.

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1.4.24. “Systems” as used in these Rules refers to an assembly of equipment consisting essentially of
the container or containers, appurtenances, pumps, compressors, and interconnecting piping.
1.4.25. The abbreviations “psig” and “psia” refer to pounds per square inch gauge and pounds per
square inch absolute, respectively.
1.4.26. The terms “charging” and “filling” are used interchangeably and have the same meaning.
1.4.27. “Trailer” as used in these Rules refers to every vehicle designed for carrying persons or property
while being drawn by a motor vehicle and so constructed that no part of its weight except the
towing device rests upon the towing vehicle.
1.4.28. “Tank Motor Vehicle” means any motor vehicle designed or used for the transportation of
anhydrous ammonia in any tank designed to be permanently attached to any motor vehicle or any
container not permanently attached to any motor vehicle which by reason of its size, construction
or attachment to any motor vehicle must be loaded and/or unloaded without being removed from
the motor vehicle.
1.4.29
. “Tank Motor Vehicle” means any motor vehicle designed or used for the transportation of
anhydrous ammonia in any tank designed to be permanently attached to any motor vehicle or any
container not permanently attached to any motor vehicle which by reason of its size, construction
or attachment to any motor vehicle must be loaded and/or unloaded without being removed from
the motor vehicle.
1.4.29. “Semi-trailer” refers to every vehicle designed for carrying persons or property while being drawn
by a motor vehicle and so constructed that some part of its weight and that of its load rests upon
or is carried by another vehicle.
1.4.30. “Safety Relief Valve” refers to an automatic spring loaded or equivalent type pressure activated
device for gas or vapor service characterized by pop action upon opening, sometimes referred to
as a pop valve.
1.4.31. “Hydrostatic Relief Valve” refers to an automatic pressure activated valve for liquid service
characterized by throttle or slow weep opening (non-pop action).
SECTION 2.
DESIGN OF ANHYDROUS AMMONIA SYSTEMS
2.1.
Painting of Containers
2.1.1.
Above-ground uninsulated containers shall have a reflective surface maintained in good
condition. White is recommended for painted surfaces, but other light reflecting colors are
acceptable.
2.2.
Electrical Equipment and Wiring
2.2.1.
Where concentrations of ammonia in air in excess of 16% by volume are likely to be encountered,
electrical equipment and wiring shall be of a type specified by and be installed in accordance with
National Electrical Code, NFPA 70 (ANSI-C1), for Class I, Group D locations.
2.3.
Marking on Containers and Systems other than DOT Containers
2.3.1.
System nameplates, when required, shall be permanently attached to the system so as to be
readily accessible for inspection and shall include markings as prescribed in 2.3.2.
2.3.2.
Each container or system covered in Sections 7, 9, 10 and 11 shall be marked as follows:
2.3.2.1
FPA 70 (ANSI-C1), for Class I, Group D locations.
2.3.
Marking on Containers and Systems other than DOT Containers
2.3.1.
System nameplates, when required, shall be permanently attached to the system so as to be
readily accessible for inspection and shall include markings as prescribed in 2.3.2.
2.3.2.
Each container or system covered in Sections 7, 9, 10 and 11 shall be marked as follows:
2.3.2.1. With a marking identifying compliance with the Rules of the code under which the
container is constructed.
2.3.2.2. With a notation on the container and system nameplate when the system is designed for
underground installation.

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2.3.2.3. With the date of fabrication and the name and address of the supplier of the container or
the trade name of the container.
2.3.2.4. With the water capacity of the container in pounds at 600F or gallons, U.S. standard.
2.3.2.5. With the design pressure in pounds per square inch gauge.
2.3.2.6. With the wall thickness of the shell and heads.
2.3.2.7. With markings indicating the maximum level to which the container may be filled with
liquid anhydrous ammonia at temperatures between 200F and 1000F except on
containers provided with fixed maximum level indicators, such as fixed length dip tubes,
or containers that are filled by weight.
2.3.2.8. With the outside surface area in square feet.
2.3.2.9. With minimum temperature in Fahrenheit for which the container is designed.
2.3.2.10.
Marking as specified on containers shall be on the container itself or on a
nameplate permanently affixed thereto.
2.3.3.
All main operating valves on permanently installed containers having a capacity of over three
thousand water gallons shall be identified to show whether the valve is in liquid or vapor service.
The recommended method of identification may be legend or color code as specified in 2.3.3.1 or
2.3.3.2.
2.3.3.1
ainers shall be on the container itself or on a
nameplate permanently affixed thereto.
2.3.3.
All main operating valves on permanently installed containers having a capacity of over three
thousand water gallons shall be identified to show whether the valve is in liquid or vapor service.
The recommended method of identification may be legend or color code as specified in 2.3.3.1 or
2.3.3.2.
2.3.3.1. Legend: The legend liquid (or liquid valve), vapor (or vapor valve), as appropriate, shall
be placed on or within twelve inches of the valve by means of a stencil tag, or decal.
2.3.3.2. Color code: Liquid valves shall be painted orange and vapor valves shall be painted
yellow. The legend orange-liquid, yellow-vapor shall be displayed in one or more
conspicuous places at each permanent storage location. The legend shall have letters at
least two inches high and shall be placed against a contrasting background.
2.4.
Container Appurtenances
2.4.1.
All appurtenances shall be designed for not less than the maximum working pressure of that
portion of the system on which they are installed.
2.4.1.1. All appurtenances shall be fabricated from materials proved suitable for anhydrous
ammonia service.
2.4.1.2. Each valve and appurtenance shall be designed for not less than the maximum pressure
to which the valve and appurtenance will be subjected.
2.4.1.3. Each valve that could be subjected to container pressures shall have a rated working
pressure of at least 250 psig.
2.4.1.4. Connections to containers shall be limited to liquid-level gauges, emergency shutoff
valves, pressure gauges, vapor-relief valves, liquid lines, vapor lines, and thermometers.
2.4.2.
All connections to containers except safety relief devices, gauging devices, or those fitted with a
No. 54 drill size orifice shall have shut-off valves located as close to the container as practicable.

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rgency shutoff
valves, pressure gauges, vapor-relief valves, liquid lines, vapor lines, and thermometers.
2.4.2.
All connections to containers except safety relief devices, gauging devices, or those fitted with a
No. 54 drill size orifice shall have shut-off valves located as close to the container as practicable.

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2.4.3.
The emergency shutoff valve shall be placed in the liquid line internally or externally to the
container.
2.4.3.1. If an external valve is used, the valve shall be located after the manual shutoff valve but
as close to the opening of the container as possible.
2.4.3.2. The emergency shutoff valve shall work properly from a remote location or when
activated at the valve.
2.4.4.
Excess flow valves where required by these Rules shall close automatically at the rated flows of
vapor or liquid as specified by the manufacturer. The connections and line including valves and
fittings being protected by an excess flow valve shall have a greater capacity than the rated flow
of the excess flow valve.
2.4.5.
Liquid level gauging devices that require bleeding of the product to the atmosphere and which are
so constructed that outward flow will not exceed that passed by a No. 54 drill size opening need
not be equipped with excess flow valves.
2.4.6.
Openings from containers or through fittings attached directly on containers to which pressure
gauge connections are made need not be equipped with excess flow valves if such openings are
not larger than No. 54 drill size.
2.4.7.
Excess flow and back pressure check valves where required by these Rules shall be located
inside of the container or at a point outside as close as practicable to where the line enters the
container. In the latter case, installation shall be made in such manner that any undue stress
beyond the excess flow or back pressure check valve will not cause breakage between the
container and the valve.
2.4.8
cess flow and back pressure check valves where required by these Rules shall be located
inside of the container or at a point outside as close as practicable to where the line enters the
container. In the latter case, installation shall be made in such manner that any undue stress
beyond the excess flow or back pressure check valve will not cause breakage between the
container and the valve.
2.4.8.
Excess flow valves shall be designed with a by-pass, not to exceed a No. 60 drill size opening to
allow equalization of pressures.
2.4.9.
Shut-off valves provided with an excess flow valve shall be designed for proper installation in a
container connection so that the excess flow valve will close should the shut-off valve break.
2.4.10. All excess flow valves shall be plainly and permanently marked with the name or trademark of the
manufacturer, the catalog number, and the rated capacity.
2.4.11. Each liquid connection used to fill a permanent storage container shall be fitted with a backflow
check valve.
2.4.12. All appurtenances to any permanent storage container shall be protected from tampering and
mechanical damage, including damage from vehicles. Each manually controlled valve that, if
open, would allow ammonia to be transferred or released, shall be kept locked when unattended
and during nonbusiness hours.
2.5.
Piping, Tubing and Fittings
2.5.1.
All piping, tubing and fittings shall be made of material suitable for anhydrous ammonia service.
2.5.2.
All piping, tubing and fittings shall be designed for a pressure not less than the maximum
pressure to which they may be subjected in service.
2.5.3.
All piping shall be well supported and provision shall be made for expansion and contraction.

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hall be made of material suitable for anhydrous ammonia service.
2.5.2.
All piping, tubing and fittings shall be designed for a pressure not less than the maximum
pressure to which they may be subjected in service.
2.5.3.
All piping shall be well supported and provision shall be made for expansion and contraction.

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2.5.4.
Piping used on non-refrigerated systems shall be at least ASTM A-53 Grade B Electric
Resistance Welded and Electric Flash Welded Pipe or equal. Such pipe shall be at least
Schedule 40 when joints are welded, or welded and flanged. Such pipe shall be at least Schedule
80 when joints are threaded. Brass, copper, or galvanized steel pipe or tubing shall not be used.
2.5.5.
All metal flexible connections for permanent installations shall have a minimum working pressure
of 250 psig (safety factor of 4). For temporary installations, hose meeting the requirement of 2.6
may be used.
2.5.6.
Cast iron fittings shall not be used but this shall not prohibit the use of fittings made specifically
for ammonia service of malleable or nodular iron such as specification ASTM A47 or ASTM A395.
2.5.7.
Provisions shall be made for expansion, contraction, jarring, vibration, and for settling.
2.5.8.
Adequate provisions shall be made to protect all exposed piping from physical damage that might
result from moving machinery, the presence of automobiles or trucks, or any other undue strain
that may be placed upon the piping.
2.5.9.
Joint compounds shall be resistant to ammonia.
2.5.10. After assembly, all piping and tubing shall be tested and proved to be free from leaks at a
pressure not less than the normal operating pressure of the system.
2.6.
Hose Specification
2.6.1
damage that might
result from moving machinery, the presence of automobiles or trucks, or any other undue strain
that may be placed upon the piping.
2.5.9.
Joint compounds shall be resistant to ammonia.
2.5.10. After assembly, all piping and tubing shall be tested and proved to be free from leaks at a
pressure not less than the normal operating pressure of the system.
2.6.
Hose Specification
2.6.1.
Hoses used in ammonia service and subject to container pressure shall conform to the
specification set forth in Appendix B of this Rule, which are based on The Rubber Manufacturers
Association and The Fertilizer Institute “Hose Specifications for Anhydrous Ammonia”.
2.6.2.
Hose subject to container pressure shall be designed for a minimum working pressure of 350 psig
and a minimum burst pressure of 1750 psig. Hose assemblies, when made up, shall be capable
of withstanding a test pressure of 500 psig.
2.6.3.
Hose and hose connections located on the low pressure side of flow control or pressure reducing
valves on devices discharging to atmospheric pressure shall be designed for the maximum low
side working pressure. All connections shall be designed, constructed, and installed so that there
will be no leakage when connected.
2.6.4.
Where liquid transfer hose is not drained of liquid upon completion of transfer operations, such
hose shall be equipped with an approved shut-off valve at the discharge end. Provision shall be
made to prevent excessive hydrostatic pressure in the hose. (See Rule 2.7.16.).
2.6.5.
On all hose one-half inch O.D. and larger, used for the transfer of anhydrous ammonia liquid or
vapor, there shall be etched, cast, or impressed at five-foot intervals the following information:
2.6.5.1. “Anhydrous Ammonia”;
2.6.5.2. xxx psig (Maximum working pressure);
2.6.5.3. Manufacturer's Name or Trademark;
2.6.5.4. Year of Manufacture; and
2.6.5.5. The date specified by the manufacturer on which the hose is to be removed from service
(Manufacturer’s removal date).
ous ammonia liquid or
vapor, there shall be etched, cast, or impressed at five-foot intervals the following information:
2.6.5.1. “Anhydrous Ammonia”;
2.6.5.2. xxx psig (Maximum working pressure);
2.6.5.3. Manufacturer's Name or Trademark;
2.6.5.4. Year of Manufacture; and
2.6.5.5. The date specified by the manufacturer on which the hose is to be removed from service
(Manufacturer’s removal date).

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8 CCR 1202-5
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10
2.6.6.
Each hose shall be replaced before or upon the expiration of the manufacturer’s removal date.
2.6.7.
A hose shall be removed from service prior to the manufacturer’s removal date if a visual
examination reveals any of the following:
2.6.7.1. Illegibility of any of the markings required in subsection 2.6.5;
2.6.7.2. Cuts exposing reinforcing fabric;
2.6.7.3. Soft spots or bulges in the hose;
2.6.7.4. A blistering or loose outer covering;
2.6.7.5. Kinking or flattening;
2.6.7.6. Stretch marks;
2.6.7.7. Slippage at any coupling; or
2.6.7.8. Any other damage that could compromise the integrity of the safe use of the hose.
2.7.
Safety Relief Devices
2.7.1.
Every container used in systems covered by Sections 7, 9, 10 and 11 shall be provided with one
or more safety relief valves of the spring-loaded or equivalent type. The discharge from safety
relief valves shall be vented away from the container, upward and unobstructed to the
atmosphere. All safety relief valve discharge openings shall have suitable rain caps that will allow
free discharge of the vapor and prevent the entrance of water. Provision shall be made for
draining condensate which may accumulate. The rate of the discharge shall be in accordance
with the provisions of Appendix A of this Rule.
2.7.2.
Container safety relief valves shall be set to start-to-discharge as follows, based on the design
pressure of the container:
ave suitable rain caps that will allow
free discharge of the vapor and prevent the entrance of water. Provision shall be made for
draining condensate which may accumulate. The rate of the discharge shall be in accordance
with the provisions of Appendix A of this Rule.
2.7.2.
Container safety relief valves shall be set to start-to-discharge as follows, based on the design
pressure of the container:

Containers
Minimum
Maximum*
ASME-U-68, U-69
110%
125%
ASME-U-200, U-201
95%
100%
ASME 1952, 1956, 1959, 1962,
1965, 1968 or 1971
95%
100%
API-ASME
95%
100%
U.S. Coast Guard
[As required by USCG regulations]
DOT
[As required by DOT Regulations]
* NOTE: A RELIEF VALVE MANUFACTURER’S TOLERANCE OF PLUS 10% IS PERMITTED.
2.7.3.
Safety relief devices used in systems covered by Sections 7, 9, 10 and 11 shall be constructed to
discharge at not less than the rates required in 2.7.1 before the pressure is in excess of 120%
(not including the 10% tolerance referred to in 2.7.2) of the maximum permitted start-to-discharge
pressure setting of the device.
2.7.4.
Safety relief valves shall be so arranged to minimize the possibility of tampering. If the pressure
setting adjustment is external, the relief valves shall be provided with means for sealing the
adjustment.

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8 CCR 1202-5
Inspection and Consumer Services Division

11
2.7.5.
Shut-off valves shall not be installed between the safety relief valves and the containers or
systems described in Sections 7, 9, 10 and 11, except that a shut-off valve may be used where
the arrangement of this valve is such as always to afford required capacity flow through the relief
valves.
NOTE: The above exception is made to cover such cases as a three-way valve installed under
two safety relief valves, each of which has the required rate of discharge and is so installed as to
allow either of the safety relief valves to be closed off, but does not allow both safety valves to be
closed off at the same time
is such as always to afford required capacity flow through the relief
valves.
NOTE: The above exception is made to cover such cases as a three-way valve installed under
two safety relief valves, each of which has the required rate of discharge and is so installed as to
allow either of the safety relief valves to be closed off, but does not allow both safety valves to be
closed off at the same time. Another exception to this may be where two separate relief valves
are installed with individual shut-off valves. In this case, the two shut-off valve stems shall be
mechanically interconnected in a manner which will allow full required flow of one safety relief
valve at all times. Still another exception is a safety relief valve manifold which allows one valve
of two, three, four or more to be closed off and the remaining valve or valves will provide not less
than the rate of discharge shown on the manifold nameplate.
2.7.6.
Safety relief valves shall have direct communication with the vapor space of the container.
2.7.7.
Each safety relief valve used with systems described in Sections 7, 9, 10 and 11 shall be plainly
and permanently marked as follows:
2.7.7.1. With the letters “AA” or the symbol “NH3”.
2.7.7.2. The pressure in pounds per square inch gauge (psig) at which the valve is set to start-to-
discharge.
2.7.7.3. The rate of discharge of the valve in cubic feet per minute of air at 60ºF and atmospheric
pressure (14.7 psia).
2.7.7.4. The manufacturer's name and catalog number.
For example, a safety relief valve marked AA-250-4200 (air) would mean that this valve is
suitable for use on an anhydrous ammonia container; that it is set to start-to-discharge at
250 psig; and that its rate of discharge (see Sections 2.7.1, 2.7.2, and 2.7.3) is 4200
cubic feet per minute of air.
2.7.8.
Each pressure-relief valve shall be manufactured for use with anhydrous ammonia and be
installed, maintained, and replaced according to the manufacturer’s instructions.
2.7.9
valve is
suitable for use on an anhydrous ammonia container; that it is set to start-to-discharge at
250 psig; and that its rate of discharge (see Sections 2.7.1, 2.7.2, and 2.7.3) is 4200
cubic feet per minute of air.
2.7.8.
Each pressure-relief valve shall be manufactured for use with anhydrous ammonia and be
installed, maintained, and replaced according to the manufacturer’s instructions.
2.7.9.
Unless otherwise specified by the manufacturer, a pressure-relief valve shall not be used for
more than five years after the date of manufacture of the pressure relief device.
2.7.10. Each safety valve shall be replaced if the valve meets any of the following conditions:
2.7.10.1.
Fails to meet applicable requirements;
2.7.10.2.
Shows evidence of damage, corrosion, or foreign matter; or
2.7.10.3.
Does not have functional weep holes that permit moisture to escape.
2.7.11. If moisture accumulation could occur in a vent, suitable provision shall be made to drain the
moisture from the vent.
2.7.12. The flow capacity of the safety relief valve shall not be restricted by any connection to it on either
the upstream or downstream side.

CODE OF COLORADO REGULATIONS
8 CCR 1202-5
Inspection and Consumer Services Division

12
2.7.13. Vent pipes or tubing used to channel releases from safety relief valves shall not be restricted or
smaller in size than the safety relief valve outlet connection.
2.7.14. Vent pipes may be connected and channeled into a common header if the cross-sectional area of
the header is at least equal to the sum of the cross-sectional areas of each of the individual vent
pipes.
2.7.15. The manufacturer or supplier of a safety relief valve manifold shall publish complete data showing
the flow rating through the combined assembly of the manifold with safety relief valves installed.
The manifold flow rating shall be determined by testing the manifold with all but one valve
discharging
least equal to the sum of the cross-sectional areas of each of the individual vent
pipes.
2.7.15. The manufacturer or supplier of a safety relief valve manifold shall publish complete data showing
the flow rating through the combined assembly of the manifold with safety relief valves installed.
The manifold flow rating shall be determined by testing the manifold with all but one valve
discharging. If one or more openings have restrictions not present in the remaining openings, the
restricted opening or openings or those having the lowest flow shall be used to establish the flow
rate marked on the manifold nameplate. The marking shall be similar to that required in 2.7.7 for
individual valves.
2.7.16. A hydrostatic relief valve shall be installed between each pair of valves in the liquid ammonia
piping or hose where liquid may be trapped so as to release into the atmosphere at a safe
location.
2.7.17. Discharge from safety relief devices shall not terminate in or beneath any building.
2.8.
Liquid Level Gauging Device
2.8.1.
Each container except those filled by weight shall be equipped with an approved liquid level
gauging device.
2.8.2.
All gauging devices shall be arranged so that the maximum liquid level to which the container is
filled is readily determined (See 2.3.2.7).
2.8.3.
Gauging devices that require bleeding of the product to the atmosphere such as the rotary tube,
fixed tube, and slip tube devices, shall be designed so that the maximum opening of the bleed
valve is not larger than No. 54 drill size unless provided with an excess flow valve. (This
requirement does not apply to farm vehicles used for the application of ammonia, as covered in
Section 11.)
2.8.4.
Gauging devices shall have a design pressure equal to or greater than the design pressure of the
container on which they are installed.
2.8.5.
Fixed liquid level gauges shall be so designed that the maximum volume of the container filled by
liquid shall not exceed 85% of its water capacity
rement does not apply to farm vehicles used for the application of ammonia, as covered in
Section 11.)
2.8.4.
Gauging devices shall have a design pressure equal to or greater than the design pressure of the
container on which they are installed.
2.8.5.
Fixed liquid level gauges shall be so designed that the maximum volume of the container filled by
liquid shall not exceed 85% of its water capacity. The coupling into which the fixed liquid level
gauge is threaded must be placed at the 85% level of the container. If located elsewhere, the dip
tube of this gauge must be installed in such a manner that it cannot be readily removed.
2.8.6.
Gauge glasses of the columnar type shall be restricted to stationary storage installations. They
shall be equipped with shut-off valves having metallic hand wheels, with excess-flow valves, and
with extra heavy glass adequately protected with a metal housing applied by the gauge
manufacturer. They shall be shielded against the direct rays of the sun.
SECTION 3.
CONSTRUCTION OF ANHYDROUS AMMONIA SYSTEMS
3.1.
Requirements for New Construction and Original Test of Containers, Including Skid
Containers
3.1.1.
Each container shall be constructed and tested in accordance with the Code and shall have a
minimum design pressure of 250 psig.

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8 CCR 1202-5
Inspection and Consumer Services Division

13
3.1.2.
Containers used with systems covered in Sections 7, 9, 10 and 11 shall be constructed and
tested in accordance with the ASME Unfired Pressure Vessel Code except that construction
under Table UW 12 at a basic joint efficiency of under 80% is not authorized.
3.1.2.1. Containers built according to the Code do not have to comply with paragraphs UG 125
through UG 128 inclusive, and paragraphs UG 132 and UG 133.
3.1.3.
Containers exceeding 36 inches in diameter or 250 gallons capacity shall be constructed to
comply with one or more of the following additional requirements:
3.1.3.1
der Table UW 12 at a basic joint efficiency of under 80% is not authorized.
3.1.2.1. Containers built according to the Code do not have to comply with paragraphs UG 125
through UG 128 inclusive, and paragraphs UG 132 and UG 133.
3.1.3.
Containers exceeding 36 inches in diameter or 250 gallons capacity shall be constructed to
comply with one or more of the following additional requirements:
3.1.3.1. Containers shall be stress relieved after fabrication in accordance with the Code, or
3.1.3.2. Cold formed heads, when used shall be stress relieved, or
3.1.3.3. Hot formed heads shall be used.
3.1.4.
Welding to the shell, head, or any other part of the container subject to internal pressure shall be
done in compliance with the Code under which the container was fabricated and shall be
performed by a person or company that has a current certificate of authorization from the National
Board of Boiler and Pressure Vessel Inspections. Other welding is permitted only on saddle
plates, lugs, or brackets attached to the container by the container manufacturer.
3.1.5.
All records of inspections and welding on the container shall:
3.1.5.1. Be maintained by the owner of the container;
3.1.5.2. Be made available to the Commissioner upon request; and
3.1.5.3. Be transferred with change of ownership of the container.
3.1.6.
All containers shall be inspected by a person having a current certificate of competency from the
National Board of Boiler and Pressure Vessel Inspectors.
3.1.7.
The provisions of 3.1.2 shall not be construed as prohibiting the continued use or reinstallation of
containers constructed and maintained in accordance with the ASME Unfired Pressure Vessel
Code.
SECTION 4.
LOCATION OF ANHYDROUS AMMONIA SYSTEMS
4.1.
Location of Containers
4.1.1.
Consideration shall be given to the physiological effects of ammonia as well as to adjacent fire
hazards in selecting the location for a storage container. Containers shall be located outside of
buildings or in buildings or sections thereof approved for this purpose.
4.1.2
ith the ASME Unfired Pressure Vessel
Code.
SECTION 4.
LOCATION OF ANHYDROUS AMMONIA SYSTEMS
4.1.
Location of Containers
4.1.1.
Consideration shall be given to the physiological effects of ammonia as well as to adjacent fire
hazards in selecting the location for a storage container. Containers shall be located outside of
buildings or in buildings or sections thereof approved for this purpose.
4.1.2.
Containers shall be located at least 50 feet from a dug well or other sources of potable water
supply, unless the container is a part of a water treatment installation.
4.1.3.
The location of permanent storage containers shall be outside densely populated areas, unless
the location has been approved in writing by the appropriate local governing body.
4.1.4.
Container locations shall comply with the following table:

CODE OF COLORADO REGULATIONS
8 CCR 1202-5
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14

Normal Capacity of
Container (Gallons)
Minimum Distances (feet) from Container to:
Line of Adjoining
Property Which may be
Built Upon, Highways &
Mainline of Railroad
Place of Public
Assembly
Institution Occupancy
Over 500 to 2,000
25
150
250
Over 2,000 to 30,000
50
300
500
Over 30,000 to 100,000
50
450
750
Over 100,000
50
600
1,000
Location approval required from Department within 30 days from notification.
4.1.5.
Storage areas shall be kept free of readily ignitable materials such as waste, weeds and long dry
grass.
SECTION 5.
INSTALLATION OF ANHYDROUS AMMONIA SYSTEMS
5.1.
Each permanent storage container shall be mounted on either of the following:
5.1.1.
A skid assembly with sufficient surface area to properly support the skid-mounted
container or;
5.1.2.
Reinforced concrete footings and foundations or:
5.1.3.
Structural steel supports mounted on reinforced concrete foundations. The reinforced
concrete foundations or footings shall extend below the established frost line and shall be
constructed to support the total weight of the containers and their contents
bly with sufficient surface area to properly support the skid-mounted
container or;
5.1.2.
Reinforced concrete footings and foundations or:
5.1.3.
Structural steel supports mounted on reinforced concrete foundations. The reinforced
concrete foundations or footings shall extend below the established frost line and shall be
constructed to support the total weight of the containers and their contents. If the
container is equipped for bottom withdrawal, the container’s foundation shall maintain the
lowest point of the container at not less than 18 inches above ground level.
5.1.4.
Each container shall be mounted on its foundation in a manner that permits expansion
and contraction. Each container shall be adequately supported so as to prevent the
concentration of excessive loads on the supporting portion of the shell. Corrosion
prevention measures shall be utilized on any portion of the container that is in contact
with either the foundation or saddles.
5.1.5.
Each container shall be securely anchored.
5.2.
Before installing or relocating a permanent storage container or permanent storage facility, the
owner shall submit a detailed diagram of the permanent storage facility to the Commissioner for
review to ensure that the proposed site meets the requirements in Section 4.
5.2.1.
The name of the permanent storage facility and the telephone number to be contacted in
case of an emergency shall be posted and be legible from each facility entrance using
letters at least two inches high.
5.2.2.
No permanent storage container shall be located inside an enclosed structure unless the
structure is specifically constructed for this purpose.
SECTION 6.
OPERATION OF ANHYDROUS AMMONIA SYSTEMS
6.1.
Use of Water in Emergencies
6.1.1.
The concentration of ammonia vapor in air can effectively be reduced by the use of adequate
volumes of water applied through spray or fog nozzles.

CODE OF COLORADO REGULATIONS
8 CCR 1202-5
Inspection and Consumer Services Division
d structure unless the
structure is specifically constructed for this purpose.
SECTION 6.
OPERATION OF ANHYDROUS AMMONIA SYSTEMS
6.1.
Use of Water in Emergencies
6.1.1.
The concentration of ammonia vapor in air can effectively be reduced by the use of adequate
volumes of water applied through spray or fog nozzles.

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8 CCR 1202-5
Inspection and Consumer Services Division

15
6.1.2.
Water should be used on liquid ammonia spills only if sufficient water is available. For the
purpose of this section, sufficient water may be taken to be 100 parts of water to one part of
ammonia.
6.1.3.
If an ammonia container is exposed to fire and cannot be removed, water should be used to cool
it.
6.1.4.
Under some circumstances ammonia in a container is colder than the available water supply.
Under these circumstances water should not be sprayed on the container walls since it would
heat the ammonia and aggravate any gas leak.
6.1.5.
If it is found necessary to dispose of ammonia, as from a leaking container, liquid ammonia
should be discharged into a vessel containing water sufficient to absorb it. Sufficient water may
be taken to be ten parts of water per part ammonia. The ammonia should be injected into the
water as near the bottom of the vessel as practical.
6.2.
Safety
6.2.1.
Personnel required to handle ammonia shall be trained in safe operating practices and the proper
action to take in the event of emergencies. Personnel shall be instructed to use the equipment
listed in 6.2.3 in the event of an emergency.
6.2.2.
If a leak occurs in an ammonia system, the personnel trained for and designated to act in such
emergencies shall:
6.2.2.1. See that persons not required to deal with an emergency are evacuated from the
contaminated area.
6.2.2.2. Put on a suitable gas mask.
6.2.2.3. Wear gauntlet type plastic or rubber gloves and wear plastic or rubber suits in heavily
contaminated atmospheres.
6.2.2.4. Shut off the appropriate valves.
6.2.3
ia system, the personnel trained for and designated to act in such
emergencies shall:
6.2.2.1. See that persons not required to deal with an emergency are evacuated from the
contaminated area.
6.2.2.2. Put on a suitable gas mask.
6.2.2.3. Wear gauntlet type plastic or rubber gloves and wear plastic or rubber suits in heavily
contaminated atmospheres.
6.2.2.4. Shut off the appropriate valves.
6.2.3.
All permanent storage facilities shall have on hand, as a minimum, the following equipment:
6.2.3.1 One full face gas mask.
6.2.3.2. One pair of protective gloves.
6.2.3.3. One pair of protective boots.
6.2.3.4. One protective slicker and/or protective pants and jacket.
6.2.3.5. Easily accessible shower and/or at least 50 gallons of clean water in an open top
container.
6.2.3.6. Tight fitting vented goggles or one full face shield.
6.2.4.
Where several persons are usually present, additional safety equipment may be desirable.

CODE OF COLORADO REGULATIONS
8 CCR 1202-5
Inspection and Consumer Services Division

16
6.2.5.
Each tank motor vehicle transporting anhydrous ammonia, except farm applicator vehicles, shall
carry a container of at least five gallons of water and shall be equipped with at least one pair of
protective gloves and a full face gas mask, a pair of tight-fitting goggles or one full face shield.
The driver shall be instructed in their use and the proper action to take to provide for his safety.
6.2.6.
If a leak occurs in transportation equipment and it is not practical to stop the leak, the driver
should move the vehicle to an isolated location away from populated communities or heavily
traveled highways.
6.2.7.
If liquid ammonia contacts the skin or eyes, the affected area should be promptly and thoroughly
flushed with water. Do not use neutralizing solutions or ointments on affected areas. A physician
shall treat all cases of eye exposure to liquid ammonia.
6.2.7.
Gloves, boots, slickers, jackets and pants shall be made of rubber or other material impervious to
ammonia.
6.3.
Filling Densities
6.3.1
2.7.
If liquid ammonia contacts the skin or eyes, the affected area should be promptly and thoroughly
flushed with water. Do not use neutralizing solutions or ointments on affected areas. A physician
shall treat all cases of eye exposure to liquid ammonia.
6.2.7.
Gloves, boots, slickers, jackets and pants shall be made of rubber or other material impervious to
ammonia.
6.3.
Filling Densities
6.3.1.
The filling densities for containers shall not exceed the following:

Aboveground
Underground
(1) Uninsulated
56%*
58%
(2) Insulated
57%

(3) DOT containers shall be filled in accordance with DOT Regulation

*This corresponds to 82% by volume at -28ºF, 85% by volume at 5ºF, 87.5% by volume at 30ºF, and 90.6% by volume at 60ºF.
6.3.2.
If containers are to be filled according to liquid level by any gauging method other than a fixed
length dip tube gauge, each container should have a thermometer well so that the internal liquid
temperature can be easily determined and the amount of liquid and vapor in the container
corrected to a 60ºF basis.
6.4.
Transfer of Liquids
6.4.1.
Anhydrous ammonia shall always be at a temperature suitable for the material of construction
and design of the receiving containers and shall comply with Appendix R of API Standard 620
“Recommended Rules for Design and Construction of Large Welded Low-Pressure Storage
Tanks” for materials for low temperature service.
6.4.2.
At least one attendant shall supervise the transfer of liquids from the time the connections are first
made until they are finally disconnected.
6.4.3.
Flammable gases or gases which will react with ammonia (such as air) shall not be used to
unload tank cars or transport trucks.
6.4.4.
Containers shall be charged or used only upon authorization of the owner.
6.4.5.
Containers shall be gauged and charged only in the open atmosphere or in buildings approved
for that purpose.
6.4.6.
Pumps used for transferring ammonia shall be recommended and labeled for ammonia service by
the manufacturer.
6.4.6.1
onia (such as air) shall not be used to
unload tank cars or transport trucks.
6.4.4.
Containers shall be charged or used only upon authorization of the owner.
6.4.5.
Containers shall be gauged and charged only in the open atmosphere or in buildings approved
for that purpose.
6.4.6.
Pumps used for transferring ammonia shall be recommended and labeled for ammonia service by
the manufacturer.
6.4.6.1. Pumps shall be designed for at least 250 psig working pressure.

CODE OF COLORADO REGULATIONS
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17
6.4.6.2. Positive displacement pumps shall have installed, off the discharge port, a constant
differential relief valve discharging into the suction port of the pump through a line of
sufficient size to carry the full capacity of the pump at relief valve setting, which setting
and installation shall be according to pump manufacturer's recommendations.
6.4.6.3. On the discharge side of the pump, before the relief valve line, there shall be installed a
pressure gauge graduated from 0 to 400 psig.
6.4.6.4. Plant piping shall contain shut-off valves located as close as practical to pump
connections.
6.4.7.
Compressors used for transferring or refrigerating ammonia shall be recommended and labeled
for ammonia service by the manufacturer.
6.4.7.1. Compressors shall be designed for at least 250 psig working pressure. Crank cases of
compressors not designed to withstand system pressure shall be protected with a
suitable safety relief valve.
6.4.7.2. Plant piping shall contain shut-off valves located as close as practical to compressor
connections.
6.4.7.3. A safety relief valve large enough to discharge the full capacity of the compressor shall
be connected to the discharge before any shut-off valve.
6.4.7.4. Compressors shall have pressure gauges at suction and discharge graduated to at least
one and one-half times the maximum pressure that can be developed.
6.4.7.5
n shut-off valves located as close as practical to compressor
connections.
6.4.7.3. A safety relief valve large enough to discharge the full capacity of the compressor shall
be connected to the discharge before any shut-off valve.
6.4.7.4. Compressors shall have pressure gauges at suction and discharge graduated to at least
one and one-half times the maximum pressure that can be developed.
6.4.7.5. Where necessary to minimize entry of liquid into the compressor, adequate means, such
as drainable liquid trap, shall be provided on the suction side of the compressor.
6.4.7.6. Where necessary to prevent contamination, an oil separator shall be provided on the
discharge side of the compressor.
6.4.8.
Loading and unloading systems shall be protected by suitable devices to prevent emptying of the
storage container or the container being loaded or unloaded in the event of severance of the
hose. Backflow check valves or properly sized excess flow valves shall be installed where
necessary to provide such protection. In the event that such valves are not practical, remotely
operated shut-off valves may be installed.
6.4.9.
Meters used for the measurement of liquid anhydrous ammonia shall be recommended and
labeled for ammonia service by the manufacturer and meet the requirements of The
Measurement Standards Act, §§ 35-14-101 through 134, C.R.S.
6.4.9.1. Liquid meters shall be designed for a minimum working pressure of 250 psig.
6.4.9.2. The metering system shall incorporate devices that will prevent the inadvertent
measurement of vapor.
6.5.
Tank Car Unloading Points and Operations
6.5.1.
Unloading operations shall be performed by reliable persons properly instructed and made
responsible for careful compliance with all applicable procedures.

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8 CCR 1202-5
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9.2. The metering system shall incorporate devices that will prevent the inadvertent
measurement of vapor.
6.5.
Tank Car Unloading Points and Operations
6.5.1.
Unloading operations shall be performed by reliable persons properly instructed and made
responsible for careful compliance with all applicable procedures.

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6.5.2.
Caution signs shall be so placed on the track or car as to give necessary warning to persons
approaching car from open end or ends of siding and shall be left up until after car is unloaded
and disconnected from discharge connections. Signs shall be of metal or other suitable material,
at least 12 by 15 inches in size and bear the words “STOP-Tank Car Connected” or “STOP-Men
At Work” the word “STOP”, being in letters at least 4 inches high and the other words in letters at
least 2 inches high. The letters shall be white on a blue background.
6.5.3.
The track of a tank car siding shall be substantially level.
6.5.4.
Brakes shall be set and wheels blocked on all cars being unloaded.
6.5.5.
Tank cars of anhydrous ammonia shall be unloaded only at approved locations meeting the
requirements of Rules 6.2.3 and 6.4.8.
SECTION 7.
SYSTEMS UTILIZING STATIONARY, PIER-MOUNTED OR SKID-MOUNTED
ABOVEGROUND OR UNDERGROUND
This section applies to stationary, pier-mounted, skid-mounted, aboveground or underground storage
installations utilizing containers other than those constructed in accordance with Department of
Transportation Specifications. All Rules of Section 2 apply to this section unless otherwise noted.
7.1.
Design Pressure and Construction of Containers
7.1.1.
The minimum design pressure for non-refrigerated aboveground containers shall be 250 psig.
[See.1.2.1.]
NOTE: U-68 and U-69 ASME Code containers with a design pressure of 200 psig are acceptable
if recertified to 250 psig and equipped with safety relief valves set at 250 psig as permitted in
2.7.2.
7.2
this section unless otherwise noted.
7.1.
Design Pressure and Construction of Containers
7.1.1.
The minimum design pressure for non-refrigerated aboveground containers shall be 250 psig.
[See.1.2.1.]
NOTE: U-68 and U-69 ASME Code containers with a design pressure of 200 psig are acceptable
if recertified to 250 psig and equipped with safety relief valves set at 250 psig as permitted in
2.7.2.
7.2.
Container Valves and Accessories, Filling and Discharge Connections
7.2.1.
Each filling connection shall be provided with combination back-pressure check valve and excess
flow valve; one double or two single back-pressure check valves; or a positive shut-off valve in
conjunction with either an internal back-pressure check valve or an internal excess flow valve.
7.2.2.
All vapor and liquid connections, except safety relief valves and those specifically exempt in
Rules 2.4.5 and 2.4.6. shall be equipped with approved excess flow valves; or in lieu thereof, may
be fitted with approved quick-closing internal valves which, except during operating periods, shall
remain closed.
7.2.3.
Each storage container shall be provided with a pressure gauge graduated from 0 to 400 psig.
Gauges shall be designated for use in ammonia service.
7.2.4.
All containers shall be equipped with an approved vapor return valve.
7.2.5.
All containers shall be equipped with a fixed maximum liquid level gauge.
7.3.
Safety Relief Devices
7.3.1.
Every container shall be provided with one or more safety relief valves of spring-loaded or
equivalent type and shall comply with the following:

CODE OF COLORADO REGULATIONS
8 CCR 1202-5
Inspection and Consumer Services Division
shall be equipped with an approved vapor return valve.
7.2.5.
All containers shall be equipped with a fixed maximum liquid level gauge.
7.3.
Safety Relief Devices
7.3.1.
Every container shall be provided with one or more safety relief valves of spring-loaded or
equivalent type and shall comply with the following:

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19
7.3.1.1. The discharge from safety relief valves shall be directed away from the container upward
and unobstructed to the open air. Vent pipes shall not be restrictive or smaller in size
than the safety relief valve outlet connection. All safety relief valve discharges shall have
suitable rain caps that will allow free discharge of the vapor and prevent the entrance of
water. Suitable provision shall be made for draining condensate which may accumulate.
7.3.1.2. If desired, vent pipes from two or more safety relief devices located on the same unit, or
similar lines from two or more different units, may be run into a common header, provided
the cross-sectional area of such header is at least equal to the sum of the cross-sectional
areas of the individual vent pipes.
7.3.2.
The rate of discharge of spring-loaded safety relief valves installed on underground containers
may be reduced to a minimum of 30 per cent of the rate of discharge specified in Appendix A of
this Rule. Containers so protected shall not be uncovered after installation until the liquid
ammonia has been removed. Containers which may contain liquid ammonia before being
installed underground and before being completely covered with earth are considered
aboveground containers when determining the rate of discharge requirements of the safety relief
valves.
7.3.3.
On underground installations where there is a probability of the manhole or housing becoming
flooded, the discharge from vent lines shall be located above the high water level
n liquid ammonia before being
installed underground and before being completely covered with earth are considered
aboveground containers when determining the rate of discharge requirements of the safety relief
valves.
7.3.3.
On underground installations where there is a probability of the manhole or housing becoming
flooded, the discharge from vent lines shall be located above the high water level. All manholes or
housings shall be provided with ventilated louvres or their equivalent, the area of such openings
equaling or exceeding combined discharge areas of safety relief valves and vent lines which
discharge their content into the manhole housing.
7.4.
Installation of Storage Containers
7.4.1.
Containers installed aboveground shall be provided with substantial reinforced concrete footings
and foundations or structural steel supports mounted on reinforced concrete foundations. In either
case, the reinforced concrete foundations or footings shall extend below the established frost line
and shall be of sufficient width and thickness to support the total weight of the containers and
contents adequately. The foundation shall maintain the lowest point of the tank at not less than 18
inches above the ground. Floating type foundations shall also be acceptable providing the
foundations are designed to adequately support the tank, contents and pumping equipment.
Crushed rock of adequate depth would be acceptable.
7.4.2.
Horizontal aboveground containers shall be mounted on foundations in such a manner as to
permit expansion and contraction. Every container shall be supported so as to prevent the
concentration of excessive loads on the supporting portion of the shell. The bearing afforded by
the saddles shall extend over at least one third of the circumference of the shell. Suitable means
for preventing corrosion shall be provided on that portion of the container in contact with the
foundations or saddles.
7.4.3
nsion and contraction. Every container shall be supported so as to prevent the
concentration of excessive loads on the supporting portion of the shell. The bearing afforded by
the saddles shall extend over at least one third of the circumference of the shell. Suitable means
for preventing corrosion shall be provided on that portion of the container in contact with the
foundations or saddles.
7.4.3.
Containers buried underground shall be placed so that the top of the container is at least one foot
below the surface of the ground. Should ground conditions make compliance with these
requirements impracticable, precautions shall be taken to prevent physical damage to the
container. It is not necessary to cover the portion of the container to which a manhole and other
connections are affixed. When necessary to prevent floating, containers shall be securely
anchored or weighted.

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7.4.4.
Underground containers shall be set on firm foundations (firm earth may be used) and
surrounded with soft earth or sand well tamped in place. As a further means of resisting
corrosion, the container, prior to being placed underground, shall be given a protective coating
satisfactory to the Commissioner. Such protective coating shall be equivalent to hot dip
galvanizing, or to two preliminary coatings of red lead followed by a heavy coating of coal tar or
asphalt. The container thus coated shall be lowered into place in such a manner as to prevent
abrasion or other damage to the coating.
7.4.5.
Distance between aboveground and underground containers of over 1,200 gallons capacity shall
be at least five feet
7.4.6.
Secure anchorage or adequate pier height shall be provided against container flotation wherever
sufficiently high flood water might occur.
7.5.
Reinstallation of Containers
7.5.1
e lowered into place in such a manner as to prevent
abrasion or other damage to the coating.
7.4.5.
Distance between aboveground and underground containers of over 1,200 gallons capacity shall
be at least five feet
7.4.6.
Secure anchorage or adequate pier height shall be provided against container flotation wherever
sufficiently high flood water might occur.
7.5.
Reinstallation of Containers
7.5.1.
Containers once installed underground shall not later be reinstalled aboveground or underground,
unless they successfully withstand hydrostatic pressure retests at the pressure specified for the
original hydrostatic test as required by the code under which the tank was constructed and show
no evidence of serious corrosion.
7.5.2.
Where containers are reinstalled underground the corrosion resistant coating shall be put in good
condition; see 7.4.4. Where containers are reinstalled aboveground, safety relief devices or
gauging devices shall comply with 2.7 and 7.3 respectively for aboveground containers.
7.6.
Marking of Containers
7.6.1.
Each container or group of containers shall be marked on at least two sides with the words
“Anhydrous Ammonia” in sharply contrasting colors with letters not less than four inches high and
displayed a National Fire Protection Association diamond for anhydrous ammonia in a location
that is readily visible to emergency responders.
7.7.
Protection of Container Appurtenances
7.7.1.
Valves and other appurtenances shall be protected against physical damage. Main container
shut-off valves shall be kept closed and locked when the installation is unattended. If the facility is
protected against tampering by fencing or other suitable means, valve locks are not required.
7.7.2.
All connections to underground containers should be located within a substantial dome, housing
or manhole fitted with a substantial removable cover. Appurtenances shall also be protected
during the transit of containers intended for installation underground.
7.7.3.
Storage containers need not be grounded.
7.8
gainst tampering by fencing or other suitable means, valve locks are not required.
7.7.2.
All connections to underground containers should be located within a substantial dome, housing
or manhole fitted with a substantial removable cover. Appurtenances shall also be protected
during the transit of containers intended for installation underground.
7.7.3.
Storage containers need not be grounded.
7.8.
Identification
7.8.1.
A sign shall be displayed in a conspicuous place stating the name, address, and phone number
of the nearest representative, agent, or owner of the storage system.
SECTION 8.
SYSTEMS UTILIZING PORTABLE DOT CONTAINERS
This Section 8 incorporates by reference the specification of the U.S. Department of Transportation
systems utilizing cylinders, portable tanks (DOT-51) 49 CFR 173.32, or “ton containers” (DOT-106A,
DOT-110A 49 CFR 179.300-179.301), dated October 1, 2011. All General Rules of Section 2 apply to this
Section 8, unless otherwise noted.

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21
8.1.
Containers
8.1.1.
Containers shall comply with Department of Transportation Specifications and shall be
maintained, filled, packaged, marked, labeled and shipped to comply with current DOT
Regulations 49 CFR Parts 171-177 and compressed Gas Association Guide to Classification and
Labeling of Compressed Gases, CGA C-7 2014.
8.1.2.
Containers shall be stored in an area free from ignitable debris and in such manner as to prevent
external corrosion. Storage may be indoors or outdoors.
8.1.3.
Containers shall not be buried below ground.
8.1.4.
Containers shall be set upon firm foundations or otherwise firmly secured. The possible effect of
sending on the outlet piping shall be guarded against by a flexible connection or special framing.
8.1.5.
Containers shall be protected from heat sources such as radiant flame and steam pipes. Do not
apply heat directly to containers to raise the pressure.
8.1.6
hall not be buried below ground.
8.1.4.
Containers shall be set upon firm foundations or otherwise firmly secured. The possible effect of
sending on the outlet piping shall be guarded against by a flexible connection or special framing.
8.1.5.
Containers shall be protected from heat sources such as radiant flame and steam pipes. Do not
apply heat directly to containers to raise the pressure.
8.1.6.
Containers shall be stored in such manner as to protect them from moving vehicles or external
damage.
8.1.7.
Any container which is designed to have a valve protection cap shall have the cap securely in
place when the container is not in service.
8.2.
Container Valves and Regulating Equipment
8.2.1.
Container valves and pressure regulating equipment shall be protected against tampering when
installed for use.
8.2.2.
Container valves shall be protected while in transit, in storage, and while being moved into final
utilizations, as follows:
8.2.2.1. By setting them into a recess of the container, or
8.2.2.2. By ventilated cap or collar, fastened to the container, capable of withstanding a blow from
any direction equivalent to that of a 30-lb. weight dropped four feet. Construction must be
such that a blow will not be transmitted to the valves or other connections.
8.2.3.
When containers are not connected for service, the outlet valves shall be kept tightly closed even
though containers are considered empty.
8.3.
Safety Relief Devices
8.3.1.
Containers shall be provided with safety relief devices as required by Department of
Transportation Regulations 49 CFR Part 173.315(i), October 1, 2011.
SECTION 9.
SYSTEMS MOUNTED ON TRUCKS, SEMI-TRAILERS, AND TRAILERS FOR
TRANSPORTATION OF AMMONIA
This Section applies specifically to systems mounted on trucks, semi-trailers and trailers (other than those
covered under Sections 10 and 11) used for the transportation of ammonia. All General Rules of Section
2 apply to this Section 9 unless otherwise noted.
s 49 CFR Part 173.315(i), October 1, 2011.
SECTION 9.
SYSTEMS MOUNTED ON TRUCKS, SEMI-TRAILERS, AND TRAILERS FOR
TRANSPORTATION OF AMMONIA
This Section applies specifically to systems mounted on trucks, semi-trailers and trailers (other than those
covered under Sections 10 and 11) used for the transportation of ammonia. All General Rules of Section
2 apply to this Section 9 unless otherwise noted.

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22
9.1.
Design Pressure of Containers
9.1.1.
Containers shall be constructed in accordance with Rule 3.1 with a minimum design pressure of
250 psig.
9.1.2.
The shell or head thickness of any container shall not be less than 3/16 inch.
9.1.3.
All container openings, except safety relief valves, liquid level gauging devices and pressure
gauges, shall be labeled to designate whether they communicate with liquid or vapor space.
Labels may be on valves.
9.1.4.
Baffles are not required for cargo tanks.
9.2.
Mounting Containers on Truck
9.2.1.
The means of attachment of any container to the cradle, frame or chassis of a vehicle shall be
designed on a basis of two “g” loading in either direction, using a safety factor of not less than 4,
based on the ultimate strength of the material used. For purposes of this requirement, two “g” of
load support is equivalent to three times the static weight of the articles supported; two “g” of
loading and bending, acceleration, and torsion is equivalent to twice the static weight support
applied horizontally at the road surface.
9.2.2.
“Hold-down” devices, when used, shall anchor the container to the cradle, frame or chassis in a
suitable and safe manner that will not introduce undue concentration of stresses. These devices
shall incorporate positive means for drawing the container down tight, and suitable stops or
anchors shall be provided to prevent relative movement between container and framing due to
stopping, starting or changes in direction.
9.2.3
used, shall anchor the container to the cradle, frame or chassis in a
suitable and safe manner that will not introduce undue concentration of stresses. These devices
shall incorporate positive means for drawing the container down tight, and suitable stops or
anchors shall be provided to prevent relative movement between container and framing due to
stopping, starting or changes in direction.
9.2.3.
Vehicles designed and constructed so that the cargo tanks constitute in whole or in part the
stress member used in lieu of the frame shall be supported by external cradles suspending at
least 120° of the shell circumference. The design calculation shall include beam stress, shear
stress, torsion stress, bending moment and acceleration stress, in addition to those covered by
the code under which the cargo tank was designed.
9.2.4.
If a liquid withdrawal line is installed in the bottom of a container, the connections thereto,
including hose, shall not be lower than the lowest horizontal edge of the trailer axle.
9.2.5.
Provisions shall be made to secure both ends of the hose while in transit.
9.2.6.
When the cradle and the container are not welded together, suitable material shall be used
between them to eliminate metal-to-metal friction.
9.3.
Container Appurtenances
9.3.1.
Non-recessed container fittings and appurtenances shall be protected against physical damage
by either: (1) a protected location, (2) the vehicle frame or bumper, or (3) a protective housing.
The protective housing, if used, shall comply with the requirements under which the containers
are fabricated with respect to design and construction, and shall be designed to withstand static
loadings in any direction equal to twice the weight of the container and attachments when filled
with the lading using a safety factor of not less than 4, based on the ultimate strength of the
material to be used. The protective housing if used shall be protected with a weather cover, if
necessary, to ensure proper operation of valves and safety relief devices.
hall be designed to withstand static
loadings in any direction equal to twice the weight of the container and attachments when filled
with the lading using a safety factor of not less than 4, based on the ultimate strength of the
material to be used. The protective housing if used shall be protected with a weather cover, if
necessary, to ensure proper operation of valves and safety relief devices.

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23
9.3.2.
All connections to containers, except filling connections (see 9.3.3), safety relief devices, and
liquid level and pressure gauge connections, shall be provided with suitable automatic excess
flow valves, or in lieu thereof, may be fitted with quick-closing internal valves, which shall remain
closed except during delivery operations. The control mechanism for such valves may be
provided with a secondary control remote from the delivery connections and such control
mechanism shall be provided with a fusible section (melting point 208ºF to 220ºF) which will
permit the internal valve to close automatically in case of fire.
9.3.3.
Filling connections shall be provided with automatic back-pressure check valves, excess-flow
check valves, or quick-closing internal valves, to prevent back-flow in case the filling connection is
broken. Where the filling and discharge connect to a common opening in the container shell and
that opening is fitted with a quick-closing internal valve as specified in 9.3.2, the automatic valve
shall not be required.
9.3.4.
All containers shall be equipped for spray loading (filling in the vapor space) or with an approved
vapor return valve of adequate capacity.
9.3.5.
All containers shall be equipped with a fixed maximum liquid level gauge.
9.3.6.
All containers shall be equipped with a pressure-indicating gauge having a dial graduated from 0-
400 psig.
9.4.
Piping and Fittings
9.4.1.
All piping, tubing and fittings shall be securely mounted and protected against physical damage.
9.4.2
r space) or with an approved
vapor return valve of adequate capacity.
9.3.5.
All containers shall be equipped with a fixed maximum liquid level gauge.
9.3.6.
All containers shall be equipped with a pressure-indicating gauge having a dial graduated from 0-
400 psig.
9.4.
Piping and Fittings
9.4.1.
All piping, tubing and fittings shall be securely mounted and protected against physical damage.
9.4.2.
Piping used on non-refrigerated systems shall be at least ASTM A-53 Grade B Electric
Resistance Welded and Electric Flash Welded Pipe or equal. Such pipe shall be at least
Schedule 40 when joints are welded, or welded and flanged. Such pipe shall be at least Schedule
80 when joints are threaded. Brass, copper, or galvanized steel pipe or tubing shall not be used.
9.4.3.
The truck unloading line shall be provided with an excess flow valve at the hose connection
unless an approved quick dosing internal valve is provided in the container unloading connection.
(See 9.3.2)
9.5.
Safety Relief Devices
9.5.1.
The discharge from container safety relief valves shall be vented away from the container upward
and unobstructed to the open air in such a manner as to prevent any impingement of escaping
gas upon the container; loose fitting rain caps shall be used. Size of discharge lines from safety
relief valves shall not be smaller than the nominal size of the safety relief valve outlet connection.
Suitable provision shall be made for draining condensate which may accumulate in the discharge
pipe.
9.6.
Marking of Container
9.6.1.
Every container, whether loaded or empty, shall be conspicuously and legibly marked on each
side and rear thereof on a background of sharply contrasting color with the words
“COMPRESSED GAS” in letters at least four inches high; and with the words “ANHYDROUS
AMMONIA” in letters at least four inches high.
9.7.
Transfer of Liquids
9.7.1.
The content of tank motor vehicle containers shall be determined by weight, or suitable metering
device.
shall be conspicuously and legibly marked on each
side and rear thereof on a background of sharply contrasting color with the words
“COMPRESSED GAS” in letters at least four inches high; and with the words “ANHYDROUS
AMMONIA” in letters at least four inches high.
9.7.
Transfer of Liquids
9.7.1.
The content of tank motor vehicle containers shall be determined by weight, or suitable metering
device.

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24
NOTE: If the content of a container is to be determined by liquid level measurement, the
container shall have a thermometer well so that the internal liquid temperature can be easily
determined. This volume when converted to weight shall not exceed the filling density.
9.7.2.
Pumps or compressors shall be designed and installed in accordance with Rule 6.4 and protected
against physical damage when mounted upon ammonia tank trucks and trailers.
9.7.3.
Tank motor vehicles of greater than 3500 water gallons capacity shall be unloaded only at
approved locations meeting the requirements of Rules 6.2.3 and 6.4.8.
9.8.
Trailers and Semi-Trailers
9.8.1.
Trailers shall be firmly and securely attached to the vehicle drawing them by means of suitable
drawbars, supplemented by suitable safety chain (or chains) or safety cables.
9.8.2.
Every trailer and semi-trailer shall be equipped with an emergency braking system to be activated
in the event of hitch failure.
9.8.3.
Trailers shall be of a type of construction which will prevent the towed vehicle from whipping or
swerving dangerously from side to side and which will cause it to follow substantially in the path
of the towing vehicle.
9.8.4.
Where a fifth wheel is employed on a semi-trailer, it shall be ruggedly designed, securely
fastened to both units, and equipped with a positive locking mechanism which will prevent
separation of the two units except by manual release.
9.8.5.
Every trailer or semi-trailer shall be provided with side lights and a tail light.
9.9
se it to follow substantially in the path
of the towing vehicle.
9.8.4.
Where a fifth wheel is employed on a semi-trailer, it shall be ruggedly designed, securely
fastened to both units, and equipped with a positive locking mechanism which will prevent
separation of the two units except by manual release.
9.8.5.
Every trailer or semi-trailer shall be provided with side lights and a tail light.
9.9.
Electrical Equipment and Lighting
9.9.1.
Tank trucks, tank trailers, and tank semi-trailers, may not be equipped with any artificial light other
than electric light. Electric lighting circuits shall have suitable overcurrent protection (fuses or
automatic circuit breakers). The wiring shall have sufficient carrying capacity and mechanical
strength, and shall be suitably secured, insulated and protected against physical damage.
9.10.
Protection Against Collision
9.10.1. Each tank motor vehicle shall be provided with properly attached bumpers or chassis extensions
arranged to protect the tank, piping, valves and fittings from physical damage in case of collision.
9.11.
Chock Blocks
9.11.1. At least two chock blocks shall be provided. These blocks shall be placed to prevent rolling of the
vehicle whenever it is parked during loading and unloading operations.
9.12.
Portable Tanks (Including Skid Tanks)
9.12.1. When portable tanks are used in lieu of cargo tanks and are permanently mounted on tank motor
vehicles for the transportation of ammonia, they shall comply with the requirements of Section 9.
Where portable tanks, including those built to DOT Specification 51, 106A or 110A, are used for
farm storage they shall comply with Section 7. When portable tanks are used as shipping
containers in interstate commerce they shall comply with Section 8.

CODE OF COLORADO REGULATIONS
8 CCR 1202-5
Inspection and Consumer Services Division
ammonia, they shall comply with the requirements of Section 9.
Where portable tanks, including those built to DOT Specification 51, 106A or 110A, are used for
farm storage they shall comply with Section 7. When portable tanks are used as shipping
containers in interstate commerce they shall comply with Section 8.

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25
9.13.
Safety Equipment
9.13.1. All tank trucks, trailers, and semitrailers shall be equipped with the following:
9.13.1.1.
One full face gas mask with anhydrous ammonia refill canisters.
9.13.1.2.
One pair of protective gloves made of rubber or other material impervious to
ammonia.
9.13.1.3.
Tight-fitting goggles or one full face shield.
9.13.1.4.
A container of not less than five gallons of readily available clean water.
*An ammonia canister is effective for short periods of time in light concentrations of ammonia vapor, generally 15 minutes in
concentrations of 3% and will not protect breathing in heavier concentrations. If ammonia vapors are detected when mask is applied
the concentration is too high for safety. The life of a canister in service is controlled by the percentage of vapors to which it is
exposed. Canisters must not be opened until ready for use and should be discarded after use. Unopened canisters may be
guaranteed for as long as three years. All should be dated when received because of this limited life. In addition to this protection,
an independently supplied air mask of the type used by fire departments may be used for severe emergencies.
SECTION 10.
SYSTEMS MOUNTED ON FARM WAGONS (IMPLEMENTS OF HUSBANDRY) FOR
THE TRANSPORTATION OF AMMONIA
This Section applies to containers of 3000 gallons capacity or less and pertinent equipment mounted on
farm wagons (implements of husbandry) and used for the transportation of ammonia. All General Rules of
Section 2 apply to this Section unless otherwise noted.
10.1.
Design of Containers
10.1.1. Containers shall be constructed in accordance with Rule 3.1
USBANDRY) FOR
THE TRANSPORTATION OF AMMONIA
This Section applies to containers of 3000 gallons capacity or less and pertinent equipment mounted on
farm wagons (implements of husbandry) and used for the transportation of ammonia. All General Rules of
Section 2 apply to this Section unless otherwise noted.
10.1.
Design of Containers
10.1.1. Containers shall be constructed in accordance with Rule 3.1.
10.2.
Mounting Containers
10.2.1. A suitable “stop” or “stops” shall be mounted on the farm wagon or on the container in such a way
that the container shall not be dislodged from its mounting due to farm wagon coming to a sudden
stop. Back slippage shall also be prevented by proper methods.
10.2.2. A suitable “hold-down” device shall be provided which will anchor the container to the farm wagon
at one or more places on each side of the container.
10.2.3. When containers are mounted on four-wheel farm wagons, care shall be taken to ensure that the
weight is distributed evenly over both axles.
10.2.4. When the cradle and the container are not welded together, suitable material shall be used
between them to eliminate metal-to-metal friction.
10.3.
Container Appurtenances
10.3.1. All containers shall be equipped with a fixed maximum liquid level gauge.
10.3.2. All containers with a capacity exceeding 250 gallons shall be equipped with a pressure gauge
having a dial graduated from 9-400 psi.
10.3.3. The filling connection shall be fitted with combination back-pressure check valve and excess-flow
valve; one double or two single back-pressure check valves; or a positive shut-off valve in
conjunction with either an internal back-pressure check valve or an internal excess flow valve.

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uated from 9-400 psi.
10.3.3. The filling connection shall be fitted with combination back-pressure check valve and excess-flow
valve; one double or two single back-pressure check valves; or a positive shut-off valve in
conjunction with either an internal back-pressure check valve or an internal excess flow valve.

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10.3.4. All containers with a capacity exceeding 250 gallons shall be equipped for spray loading or with
an approved vapor return valve.
10.3.5. All vapor and liquid connections, except safety relief valves and those specifically exempt in
2.4.5.6, shall be equipped with approved excess flow valves or may be fitted with quick-closing
internal valves which, except during operating periods, shall remain closed.
10.3.6. Fittings shall be protected from physical damage by means of a rigid guard designed to withstand
static loading in any direction equal to twice the weight of the container and lading using a safety
factor of four (4) based upon the ultimate strength of the material used. If the guard is fully
enclosed, the safety relief valves shall be properly vented through the guard.
10.3.7. If a liquid withdrawal line is installed in the bottom of a container, the connections thereto,
including hose, shall not be lower than the lowest horizontal edge of the farm wagon axle.
10.3.8. Provision shall be made to secure both ends of the hose while in transit.
10.4.
Marking of Container
10.4.1. There shall appear on each side and on the rear end of the container in letters at least four inches
high, the words “ANHYDROUS AMMONIA”.
10.5.
Farm Wagons (Implements of Husbandry)
10.5.1. Farm wagons (Implements of Husbandry) shall conform with State Regulations.
10.5.2. All farm wagons shall be securely attached to the vehicle drawing them by means of drawbars
supplemented by suitable safety chains.
10.5.3
appear on each side and on the rear end of the container in letters at least four inches
high, the words “ANHYDROUS AMMONIA”.
10.5.
Farm Wagons (Implements of Husbandry)
10.5.1. Farm wagons (Implements of Husbandry) shall conform with State Regulations.
10.5.2. All farm wagons shall be securely attached to the vehicle drawing them by means of drawbars
supplemented by suitable safety chains.
10.5.3. A farm wagon shall be constructed so that it will follow substantially in the path of the towing
vehicle and will prevent the towed farm wagon from whipping or swerving dangerously from side
to side.
10.5.4. All farm wagons shall have five (5) gallons or more of readily available clean water, one pair of
tight fitting goggles or full face shield, and one pair of protective gloves.
SECTION 11.
SYSTEMS MOUNTED ON FARM EQUIPMENT (IMPLEMENTS OF HUSBANDRY) FOR
THE APPLICATION OF AMMONIA
This Section applies to systems mounted on farm equipment and used for the field application of
ammonia. All General Rules of Section 2 apply to this Section unless otherwise noted.
11.1.
Design of Containers
11.1.1. The minimum design for containers shall be in accordance with Rule 3.1.
11.2.
Mounting of Containers
11.2.1. All containers shall be securely mounted.
11.3.
Container Valves and Appurtenances
11.3.1. Each container shall have a fixed maximum liquid level gauge.

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s otherwise noted.
11.1.
Design of Containers
11.1.1. The minimum design for containers shall be in accordance with Rule 3.1.
11.2.
Mounting of Containers
11.2.1. All containers shall be securely mounted.
11.3.
Container Valves and Appurtenances
11.3.1. Each container shall have a fixed maximum liquid level gauge.

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27
11.3.2. The filling connection shall be fitted with combination back-pressure check valve and excess-flow
valve; one double or two single back-pressure check valves; or a positive shut-off valve in
conjunction with either an internal back-pressure check valve or an internal excess-flow valve.
11.3.3. An excess-flow valve is not required in the vapor connection, provided the controlling orifice is not
in excess of seven sixteenths (7/16) of an inch in diameter and the valve is a hand-operated
(attached hand wheel or equivalent) shut-off valve. To assist in filling applicator tanks, it is
permissible to bleed vapors to the open air, providing the preceding requirements are met.
11.3.4. Metering devices may be connected directly to the tank withdrawal valve. A union type
connection is permissible between the tank valve and metering device. Remote mounting of
metering devices is permissible using hose which meets with specifications set out in Appendix B
of this Rule. When the applicator tank is trailed and the metering device is remotely mounted,
such as on the tractor tool bar, an automatic break-a-way type, self-closing, coupling must be
used.
11.3.5. No excess-flow valve is required in the liquid withdrawal line provided the controlling orifice
between the contents of the container and the outlet of the shut-off valve (see 2.5.5) does not
exceed 7/16 inch in diameter.
SECTION 12.
ADDITIONAL SAFETY REQUIREMENTS
12.1.
The following minimum requirements of equipment shall be on hand at all places wherever
Anhydrous Ammonia is handled or transported, if not otherwise prescribed in these Rules:
12.1.1
wal line provided the controlling orifice
between the contents of the container and the outlet of the shut-off valve (see 2.5.5) does not
exceed 7/16 inch in diameter.
SECTION 12.
ADDITIONAL SAFETY REQUIREMENTS
12.1.
The following minimum requirements of equipment shall be on hand at all places wherever
Anhydrous Ammonia is handled or transported, if not otherwise prescribed in these Rules:
12.1.1. One pair of tight fitting goggles or full face shield.
12.1.2. One pair of protective gloves.
12.1.3. A container of not less than five gallons of readily available clean water.
12.2.
It shall be considered a violation if, at any time in the handling of Anhydrous Ammonia, the
prescribed safety equipment is not worn or used.
12.3.
Agricultural anhydrous ammonia tank cars and transport trucks shall be unloaded only through
permanent, approved unloading sites and into permanently installed bulk storage tanks, except
as otherwise provided below.
12.3.1. Agricultural anhydrous ammonia may be unloaded directly from a railroad tank car into a
U.S. Department of Transportation approved over-the-road transport truck of more than
3500 gallons capacity only for the purpose of transport to bulk storage tanks which do not
have access to a railroad siding.
12.3.2. Tank cars and transport trucks may be unloaded at permanent, approved unloading sites
into portable acid-fertilizer conversion units for the purpose of producing liquid fertilizer, if
such conversion units have approved, automatic, normally closed valves in the line
connecting the source tank and the conversion unit.
SECTION 13.
REGISTRATION
On or before January 1 of each year, every person who owns one or more anhydrous ammonia storage
tanks, mobile transportation tanks, or tank-mounted applicators within this state shall register each of
such tanks or applicators with the Department and shall pay a registration fee as established by the
Agricultural Commission.

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January 1 of each year, every person who owns one or more anhydrous ammonia storage
tanks, mobile transportation tanks, or tank-mounted applicators within this state shall register each of
such tanks or applicators with the Department and shall pay a registration fee as established by the
Agricultural Commission.

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SECTION 14.
STATEMENTS OF BASIS, SPECIFIC STATUTORY AUTHORITY AND PURPOSE
The Statement of Basis, Specific Statutory Authority and Purpose for rulemaking activity from
1992 is no longer in the Department’s files.
1.4.1.
October 9, 2008 – Effective November 30, 2008
STATUTORY AUTHORITY:
The Commissioner of Agriculture, Colorado Department of Agriculture, adopts these permanent rules
pursuant to the provisions and requirements of the Anhydrous Ammonia Act, 35-13-101 - 109, C.R.S.
PURPOSE:
The purpose of these rules is to:
Implement the statutory change to the Anhydrous Ammonia Act which require the Commissioner
to establish rules to specify the dates for the registration of anhydrous ammonia storage tanks,
mobile transportation tanks and tank mounted applicators.
Correct typographical errors.
FACTUAL POLICY AND ISSUES;
The factual and policy issues encountered in the proposal of these permanent rules is as follows:
On August 6, 2008, The Anhydrous Ammonia Act was amended by Senate Bill 08-097. Section 35-13-
109 (1) requires the Commissioner to specify by rule the dates for the registration of anhydrous ammonia
storage tanks, mobile transportation tanks and tank mounted applicators.
14.2.
Adopted November 10, 2015- Effective December 30, 2015
STATUTORY AUTHORITY:
The Commissioner’s authority for the adoption of these Rule amendments is set forth in Section 35-13-
103, C.R.S.
Purpose:
The purpose of these Rule Amendments is to:
1.
Delete obsolete language at the beginning of the Rules;
2.
Correct typographical errors throughout the rules;
3
tanks and tank mounted applicators.
14.2.
Adopted November 10, 2015- Effective December 30, 2015
STATUTORY AUTHORITY:
The Commissioner’s authority for the adoption of these Rule amendments is set forth in Section 35-13-
103, C.R.S.
Purpose:
The purpose of these Rule Amendments is to:
1.
Delete obsolete language at the beginning of the Rules;
2.
Correct typographical errors throughout the rules;
3.
Amend Rules by deleting language that is not essential and unenforceable including reference
materials;
4.
Amend Rules to exempt refrigerated ammonia systems and delete all refrigerated ammonia rules;
5.
Delete references to “Appendix C” within the Rules;
6.
Add Rule 1.3. to incorporate by reference all of the standards referred to in the rules, instruct
where to inspect codes, and to explain later amendments of incorporated material are not
included;

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7.
Amend Rules by changing the language “this Standard” to “these Rules” to be consistent with
other Colorado Department of Agriculture rules;
8.
Amend Rules by changing the word “paragraph” with the word “Rule” throughout the rules so as
to be consistent with other Colorado Department of Agriculture rules;
9.
Replace the language “Authority having Jurisdiction” with the word “Commissioner” throughout
the rules;
10.
Amend Rules to add definitions necessary to understand the Rules.
11.
Amend Rule 1.4.8. by adding the current edition of the unfired pressure vessel code and striking
obsolete references to The Joint Code of the American Petroleum Institute and The American
Society of Mechanical Engineers (API-ASME Code) 1951 edition;
12.
Delete the definition of “gas mask” in Rule 1.3.11.;
13.
Add Rule 3.1.5. to include a records retention requirement of inspections and welding on the
container;
14.
Realign the order of the Rules to be consistent with the requirements listed in Statute for the
design, construction, location, installation, and operation of anhydrous ammonia systems;
15
al Engineers (API-ASME Code) 1951 edition;
12.
Delete the definition of “gas mask” in Rule 1.3.11.;
13.
Add Rule 3.1.5. to include a records retention requirement of inspections and welding on the
container;
14.
Realign the order of the Rules to be consistent with the requirements listed in Statute for the
design, construction, location, installation, and operation of anhydrous ammonia systems;
15.
Amend Rule 6.4.9. by replacing the words “state Weights & Measures” with “The Measurement
standards Act, §§ 35-14-101 through 134, C.R.S”;
16.
Amend Rules 6.2.3. and 9.13.1. by replacing language referring to emergency rescue with
personal protection equipment.
17.
Amend Rules to include the specific code of federal regulations cites throughout the Rules.
Factual and Policy Basis:
The factual and policy issues pertaining to the adoption of these Rule amendment are as follows:
1.
The current Rules have not been revised for a very long time and therefore these Rules contain
antiquated language and formatting requirements. These Rule changes are being made to
modernize the language where appropriate, comply with the current Rule format requirements,
and to align the Rule with the Statute;
2.
Obsolete language at the beginning of the Rule has been deleted to comply with the
Department’s current Rule format;
3.
References to refrigerated anhydrous systems have been deleted throughout the Rule to clarify
that these Rules only regulate anhydrous ammonia used as an agricultural fertilizer. The
amended Rules are 1.1.1., 1.1.2.4., Section 4, 6.3.1., 6.4.1., and 6.4.7.1.;
4.
Rules referring to Appendix C have been deleted because Appendix C does not exist;
5.
Definitions have been added to clarify the Rule
3.
References to refrigerated anhydrous systems have been deleted throughout the Rule to clarify
that these Rules only regulate anhydrous ammonia used as an agricultural fertilizer. The
amended Rules are 1.1.1., 1.1.2.4., Section 4, 6.3.1., 6.4.1., and 6.4.7.1.;
4.
Rules referring to Appendix C have been deleted because Appendix C does not exist;
5.
Definitions have been added to clarify the Rule. The amended Rules are 1.4.3.(ASME),
1.4.4.(Backflow check valve), 1.4.6.(Chemical-splash goggles), 1.4.10.(Data plate),
1.4.11.(Densely populated area), 1.4.13.(Emergency shutoff valve), 1.4.14.(Excess-flow valve),
1.4.19.(Mobil container), 1.4.20.(Non-code welding), 1.4.21.(Permanent storage container),
1.4.22.(Permanent storage facility), and 1.4.23.(Place of public assembly);

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6.
References to materials incorporated by reference within the Rule have been updated. The
amended Rules are 1.3.1., 1.3.2., and 1.3.3.;
7.
Informational language not essential to the Rule has been deleted. The deleted language is not
necessary for the administration of the Rule. The amended Rules are 1.1.2.2., 1.2.7.,1.2.8.,
1.2.9., and 1.4.7.;
8.
Language not essential to the Rule has been deleted or replaced to clarify the intent of the Rule.
The amended Rules are 1.1.1., 1.2.1., 1.4.,1.4.1., 1.4.15., 9.7.1., 9.7.3., 10.1.1., 11.1.1., and
12.1.;
9.
References to other resources not essential to the enforcement of the Rule were deleted to avoid
confusion as to which references are needed to be in compliance with the Rule. The amended
Rules are 1.4.3., 1.4.8., and after Rule 6.2.;
10.
The wording “state Weights and Measures” in rule 6.4.9. was replaced with “The Measurement
standards Act, §§ 35-14-101 through 134, C.R.S” to clarify where the requirements for meters
used for the measurement of liquid anhydrous ammonia can be found.
11
void
confusion as to which references are needed to be in compliance with the Rule. The amended
Rules are 1.4.3., 1.4.8., and after Rule 6.2.;
10.
The wording “state Weights and Measures” in rule 6.4.9. was replaced with “The Measurement
standards Act, §§ 35-14-101 through 134, C.R.S” to clarify where the requirements for meters
used for the measurement of liquid anhydrous ammonia can be found.
11.
References to emergency and rescue equipment were deleted in the Rule to eliminate the
perception that untrained personnel should perform emergency and rescue operations.
Emergency and rescue operations should be performed by trained professionals. The amended
Rules are 1.3.11., 1.4.13., 6.2.3., and 9.13.1.;
12.
The Rule was realigned to be consistent with the requirements of the Statute. The realignment
will make finding the rules pertaining to the design, construction, location, installation, and
operation of anhydrous ammonia systems for storing, handling, transporting, and utilizing
anhydrous ammonia as an agricultural fertilizer within the Rule easier to find;
13.
Records requirements for repairs completed on a container have been added to the Rule. The
requirement will help the owner of the tank avoid costly re-examination and testing of the repaired
tank before the tank can be registered and filled. The amended Rules are 1.4.15., and 3.1.5.;
14.
The Rule was amended to clarify compliance with the Department of Transportation is required
for all tanks transported by tank or trailer by adding the words “which shall be”, by adding the
specific federal code site, and eliminating language that could cause confusion. Rule 1.1.1.
further clarifies compliance with applicable Federal Statutes or Regulations. The amended
Sections are 8. and 9. The amended Rules are 1.1.1., 8.1.1., 9.1.1., 9.6.1., and 10.4.1.
15.
These revisions incorporate changes as a result of the Departments Regulatory Efficiency
Review Process.
14.3
by adding the
specific federal code site, and eliminating language that could cause confusion. Rule 1.1.1.
further clarifies compliance with applicable Federal Statutes or Regulations. The amended
Sections are 8. and 9. The amended Rules are 1.1.1., 8.1.1., 9.1.1., 9.6.1., and 10.4.1.
15.
These revisions incorporate changes as a result of the Departments Regulatory Efficiency
Review Process.
14.3.
Adopted October 14, 2020 – Effective December 15, 2020
Statutory Authority
The Commissioner's authority for the adoption of this permanent Rule amendment is set forth in § 35-13-
103 C.R.S.
Purpose
The purpose of this rulemaking is to update the language that incorporates regulations and standards by
reference so as to comply with the new requirements in §24-4-103(12.5), C.R.S.

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Factual and Policy Basis
This rulemaking updates the language and citations within the rule to properly incorporate regulations and
standards by reference. More specifically, it provides the proper address for the Colorado Department of
Agriculture, which changed in 2018, and provides the addresses of the agencies and organizations
issuing the incorporated regulations and standards. This rulemaking also updates the edition for each
incorporation.

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APPENDIX A
Minimum required rate of discharge in cubic feet per minute of air at 120 per cent of the maximum
permitted start to discharge pressure for safety relief valves to be used on containers other than those
constructed in accordance with United States Department of Transportation cylinder specifications.
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APPENDIX A
Minimum required rate of discharge in cubic feet per minute of air at 120 per cent of the maximum
permitted start to discharge pressure for safety relief valves to be used on containers other than those
constructed in accordance with United States Department of Transportation cylinder specifications.

Surface
Area
Sq. Ft.
Flow
Rate
CFM Air
Surface
Area
Sq. Ft.
Flow
Rate
CFM Air
Surface
Area
Sq. Ft.
Flow
Rate
CFM Air
Surface
Area
Sq. Ft.
Flow
Rate
CFM Air
20
258
145
1,310
340
2,640
1,350
8,160
25
310
150
1,350
350
2,700
1.400
8,410
30
360
155
1,390
360
2,760
1,450
8,650
35
408
160
1,420
370
2,830
1,500
8,900
40
455
165
1,460
380
2,890
1,550
9,140
45
501
170
1,500
390
2,960
1,600
9,380
50
547
175
1,530
400
3,010
1,650
9,620
55
591
180
1,570
450
3,320
1,700
9,860
60
638
185
1,600
500
3,620
1,750
10,090
65
678
190
1,640
550
3,910
1,800
10,330
70
720
195
1,670
600
4,200
1,850
10,560
75
762
200
1,710
650
4,480
1,900
10,800
80
804
210
1,780
700
4,760
1,950
11,030
85
845
220
1,850
750
5,040
2,000
11,260
90
885
230
1,920
800
5,300
2,050
11,490
95
925
240
1,980
850
5,590
2,100
11,720
100
965
250
2,050
900
5,850
2,150
11,950
105
1,010
260
2,120
950
6,120
2,200
12,180
110
1,050
270
2,180
1,000
6,380
2,250
12,400
115
1,090
280
2,250
1,050
6,640
2,300
12,630
120
1,120
290
2,320
1,100
6,900
2,350
12,850
125
1,160
300
2.380
1,150
7,160
2,400
13,080
130
1,200
310
2,450
1,200
7,410
2,450
13,300
135
1,240
320
2,510
1,250
7,660
2,500
13,520
140
1,280
330
2,570
1,300
7,910

Surface Area = Total Outside Surface Area of Container in Square Feet. When the Surface Area is not
stamped on the name plate or when the marking is not legible, the area can be calculated by using one of
the following formulas:
(1)
Cylindrical container with hemispherical heads
Area = overall length in feet times outside diameter in feet times 3.1416.
2,500
13,520
140
1,280
330
2,570
1,300
7,910

Surface Area = Total Outside Surface Area of Container in Square Feet. When the Surface Area is not
stamped on the name plate or when the marking is not legible, the area can be calculated by using one of
the following formulas:
(1)
Cylindrical container with hemispherical heads
Area = overall length in feet times outside diameter in feet times 3.1416.
(2)
Cylindrical container with other than hemispherical heads
Area = (overall length in feet plus 0.3 outside diameter in feet) times outside diameter in
feet times 3.1416.
(3)
Spherical container
Area = outside diameter in feet squared times 3.1416.

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Flow Rate - CFM Air = cubic feet per minute of air required at standard conditions, 60°F and atmospheric
pressure (14.7 psia).
The rate of discharge may be interpolated for intermediate values of surface area. For containers with
total outside surface area greater than 2.500 sq. ft., the required flow rate can be calculated using the
formula, Flow Rate CFM Air = 22.11 A0.82 where A = outside surface area of the container in square feet.

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APPENDIX B
TFI-RMA SPECIFICATION FOR ANHYDROUS AMMONIA HOSE TFI-RMA
STANDARD NO. M-5
1.
SCOPE
This specification covers hose and hose assemblies commonly referred to as “pressure transfer hose,”
used to convey anhydrous ammonia liquid or to convey anhydrous ammonia gas where the gas is in
contact with liquid ammonia. This specification primarily covers hose and hose assemblies which have a
minimum burst pressure of 1750 psig, a safety factor of 5, and a maximum working pressure of 350 psig.
These figures should not be misconstrued to mean that they are the maximum pressures to which
anhydrous ammonia hose and hose assemblies are built, since higher pressure hose and hose
assemblies are available for special applications.
2
ation primarily covers hose and hose assemblies which have a
minimum burst pressure of 1750 psig, a safety factor of 5, and a maximum working pressure of 350 psig.
These figures should not be misconstrued to mean that they are the maximum pressures to which
anhydrous ammonia hose and hose assemblies are built, since higher pressure hose and hose
assemblies are available for special applications.
2.
SIZES AND TOLERANCES
Anhydrous ammonia hose shall be made with the following dimensions and tolerances:

RUBBER COVERED HOSE FOR USE WITH TWO-PIECE SCREW TYPE COUPLINGS
I.D.
Tolerance
O.D.
Tolerance
½”
± 1/32”
15/16”
± 1/32”
3/4”
± 1/32”
1 ¼”
± 1/32”
1”
± 1/16”
1 ½”
± 1/16”

NON-RUBBER COVERED AND RUBBER COVERED HOSE FOR USE WITH FULL FLOW
COUPLINGS
I.D.
Tolerance
O.D.
Tolerance
Nominal Tubing
O.D.
13/32”
+ .039”, - .015”
49/64”
± .031”
½”
½
+ .047”, - .015”
59/64”
± .031”
5/8”
5/8”
+ .047”, - .015”
1-5/64”
± .031”
3/4”
7/8”
+ .047”, - .015”
1-15/64”
± .031”
1”
1 1/8”
+ .062”. - .015”
1 ½”
± .047”
1 ¼”
1 3/8”
+ .062”, - .015”
1 3/4”
± .047”
1 ½”
1-13/16”
+ .062”, - .015”
2-7/32”
± .047”
2”

HOSE FOR USE WITH OTHER TYPES OF COUPLINGS*
I.D.
Tolerance
½”
± 1/32”
3/4”
± 1/32”
1”
± 1/16”
1 ¼”
± 1/16”
1½”
± 1/16”
2”
± 1/16”
* The O.D. dimension and tolerance were intentionally omitted from this tabulation to provide for developments in both hose and
couplings.

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1-13/16”
+ .062”, - .015”
2-7/32”
± .047”
2”

HOSE FOR USE WITH OTHER TYPES OF COUPLINGS*
I.D.
Tolerance
½”
± 1/32”
3/4”
± 1/32”
1”
± 1/16”
1 ¼”
± 1/16”
1½”
± 1/16”
2”
± 1/16”
* The O.D. dimension and tolerance were intentionally omitted from this tabulation to provide for developments in both hose and
couplings.

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3.
CONSTRUCTION
3.1
Inner Tube
The tube shall be uniform in quality and thickness and free from injurious defects. It shall meet the
physical requirements of Section 4. The material shall be resistant to hardening or other deterioration due
to the action of ammonia.
3.2
Reinforcement
The reinforcement shall consist of any material not adversely affected by permeating ammonia. The
reinforcement shall be applied evenly and uniformly, and in such a way that it will meet the physical
requirements of Section 4. In constructions utilizing a ply or plies of wire reinforcement, the composition of
the wire shall be a suitable corrosion resistant stainless steel.
3.3
Cover
A rubber cover if used shall be uniform in quality and thickness and free from injurious defects. It shall
meet the physical requirements of Section 4. The cover shall be so compounded or constructed that it will
not blister in service, and will be resistant to deterioration due to the action of ammonia. A gas tight cover
shall be pricked to relieve pressure build-up between inner tube and cover. The cover shall be resistant to
deterioration due to exposure to the elements.
4.
PHYSICAL TESTS
4.1
Tension Test of Tube and Cover

Tube
Cover
Tensile, psi. min.
800
1200
Elongation, percent, min.
150
200
4.2
Adhesion Test
r in service, and will be resistant to deterioration due to the action of ammonia. A gas tight cover
shall be pricked to relieve pressure build-up between inner tube and cover. The cover shall be resistant to
deterioration due to exposure to the elements.
4.
PHYSICAL TESTS
4.1
Tension Test of Tube and Cover

Tube
Cover
Tensile, psi. min.
800
1200
Elongation, percent, min.
150
200
4.2
Adhesion Test

Tube
Ply
Cover
Adhesion lbs./in.
10
8
10
4.2.1
In constructions having braided wire or woven wire filler reinforcing members, only the cover
adhesion requirement will apply, as it is impractical to prepare adhesion test specimens except
for determining cover adhesion.
4.3
Burst Test
All sizes have a minimum burst of 1750 psig. (See Scope).
4.4
Ammonia Performance Test
During the conditioning and flexing described in Sections 7.4 and 7.4.2 there shall be no evidence of
cover blistering or leakage. At the conclusion of the conditioning and at the conclusion of the flexing test,
the burst must still meet the requirements of Section 4.3. There shall be no evidence of separation of the
component parts when the remainder of the samples are examined.
4.5
Low Temperature Test
The hose shall not fail at minus 40ºF plus or minus 2°, when tested as described in Section 7.5, of this
Specification.

CODE OF COLORADO REGULATIONS
8 CCR 1202-5
Inspection and Consumer Services Division

36
5.
TYPES OF TESTS
5.1
Acceptance Inspection
This includes all the tests specified, with the exception of the ammonia performance test.
5.2
Qualification Tests
The qualification tests are intended to establish that the hose is properly designed and constructed to give
satisfactory service life. These tests shall be conducted by a recognized independent laboratory. The
qualification tests shall consist of all the tests specified herein including the ammonia performance test.
6
ed, with the exception of the ammonia performance test.
5.2
Qualification Tests
The qualification tests are intended to establish that the hose is properly designed and constructed to give
satisfactory service life. These tests shall be conducted by a recognized independent laboratory. The
qualification tests shall consist of all the tests specified herein including the ammonia performance test.
6.
METHOD OF SAMPLING
6.1
Acceptance Inspection
A 24-inch sample of each size and type hose, representative of the lot, shall be selected from each lot
manufactured at one time, or from each 25,000 feet, whichever is smaller.
6.2
Qualificatio

[Text truncated at 120,000 characters. The full text is on the page linked above.]

## Nearby sections

- [8 CCR 1202-1 PACKAGING AND LABELING](https://www.frixlaw.com/law-library/statutes/STATE_CO_CCR_8_CCR_1202_1.md)
- [8 CCR 1202-2 MEASUREMENT STANDARDS](https://www.frixlaw.com/law-library/statutes/STATE_CO_CCR_8_CCR_1202_2.md)
- [8 CCR 1202-3 RULES AND REGULATIONS REGARDING PROCESSED ANIMAL WASTE PRODUCTS [Repealed eff. 11/30/2017]](https://www.frixlaw.com/law-library/statutes/STATE_CO_CCR_8_CCR_1202_3.md)
- [8 CCR 1202-4 FERTILIZERS AND SOIL CONDITIONERS](https://www.frixlaw.com/law-library/statutes/STATE_CO_CCR_8_CCR_1202_4.md)
- [8 CCR 1202-5 STORAGE AND HANDLING OF ANHYDROUS AMMONIA](https://www.frixlaw.com/law-library/statutes/STATE_CO_CCR_8_CCR_1202_5.md)
- [8 CCR 1202-6 RULES FOR COMMERCIAL FEED UNDER THE COLORADO FEED LAW, SECTIONS 35-60-101 THROUGH 115, C.R.S.](https://www.frixlaw.com/law-library/statutes/STATE_CO_CCR_8_CCR_1202_6.md)
- [8 CCR 1202-7 RULES FOR PET FOOD UNDER THE COLORADO FEED LAW, SECTIONS 35-60-101 THROUGH 115, C.R.S.](https://www.frixlaw.com/law-library/statutes/STATE_CO_CCR_8_CCR_1202_7.md)
- [8 CCR 1202-8 IRREVOCABLE LETTERS OF CREDIT IN LIEU OF SURETY BONDS UNDER THE COLORADO FARM PRODUCTS ACT AND THE COLORADO COMMODITY HANDLER ACT [Repealed eff. 07/30/2014]](https://www.frixlaw.com/law-library/statutes/STATE_CO_CCR_8_CCR_1202_8.md)
- [8 CCR 1202-9 RULES FOR DETERMINING THE AMOUNT OF CIVIL PENALTIES FOR VIOLATION OF THE FARM PRODUCTS ACT AND THE COMMODITY HANDLER ACT [Repealed eff. 12/30/2007]](https://www.frixlaw.com/law-library/statutes/STATE_CO_CCR_8_CCR_1202_9.md)
- [8 CCR 1202-10 RULES PERTAINING TO THE ADMINISTRATION AND ENFORCEMENT OF THE COLORADO EGG LAW](https://www.frixlaw.com/law-library/statutes/STATE_CO_CCR_8_CCR_1202_10.md)
- [8 CCR 1202-11 ADMINISTRATION AND ENFORCEMENT OF THE COMMODITY HANDLER AND FARM PRODUCTS ACT, SECTIONS 35-36-101 THROUGH 314, C.R.S.](https://www.frixlaw.com/law-library/statutes/STATE_CO_CCR_8_CCR_1202_11.md)
- [8 CCR 1202-12 RULES PERTAINING TO THE ADMINISTRATION AND ENFORCEMENT OF THE SALE OF MEAT ACT METHOD OF SALE OF HOME FOOD SERVICE [Repealed eff. 03/30/2019]](https://www.frixlaw.com/law-library/statutes/STATE_CO_CCR_8_CCR_1202_12.md)
- [8 CCR 1202-13 RULES PERTAINING TO THE ADMINISTRATION AND ENFORCEMENT OF THE CUSTOM PROCESSING OF MEAT ANIMALS ACT](https://www.frixlaw.com/law-library/statutes/STATE_CO_CCR_8_CCR_1202_13.md)
- [8 CCR 1202-14 METHOD OF SALE OF RETAIL COMMODITIES](https://www.frixlaw.com/law-library/statutes/STATE_CO_CCR_8_CCR_1202_14.md)

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Source: Frix Law Library, https://www.frixlaw.com/law-library/statutes/STATE_CO_CCR_8_CCR_1202_5. Check the current official text before relying on it. Not legal advice.
