Tribal Water Quality Data Summary (2007)

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Tribal Water Quality Data Summary

(October 2006 to September 2007)

Deliverable as Specified in Clean Water Act Section 106

Grant # 96058901

Prepared By:

Confederated Tribes of the

Coos, Lower Umpqua, and Siuslaw Indians

Department of Natural Resources

1245 Fulton Avenue

Coos Bay, Oregon

Original Date: April 16, 2008

Last Revised: December 12, 2008

Background

The Environmental Division is under the Department of Natural Resources with a

mission statement is to research, monitor, assess, manage, use, conserve, protect, and

restore the natural resources of the Confederated Tribes’ Ancestral Territory, consistent

with Tribal values. The Water Quality Program (WQP) was developed to monitor water

quality conditions of tribal waters and monitor the quality of waters pertaining to tribal

lands. The WQP assess the ecological health of the Ancestral Watersheds and develops

plans, best management practices, standards, and ordinances to protect these Tribal

waters for their multiple ecological, cultural, economic, and intrinsic values. In 2002, the

US Environmental Protection Agency (EPA) agreed to treat the Tribes "in a manner

similar to a state" under the authority of the Clean Water Act. In 2003, the Tribes

completed an EPA approved Quality Assurance Project Plan (QAPP 1.8) for the water

quality monitoring program. Early in 2004, the Tribes initiated the first ever water quality

monitoring program. Water quality data collection targeted five core parameters: water

temperature, turbidity, salinity, pH, and dissolved oxygen. Data collection was conducted

at spring high-high and low-low tides, requiring sampling to be conducted at all hours of

the day and night. Data collection was expanded in 2006 with the implementation of an

EPA approved QAPP 2.0. The WQP installed YSI continuous data loggers at estuarine

sites to improve and increase tidal data collection. The WQP also expanded to include

chlorophyll and bacteria parameters into the WQP. Data collection was expanded again

in 2007 with the addition of nutrients, macroinvertebrates and habitat. The WQP is

funded by EPA through Section 106 of the Clean Water Act.

Purpose

EPA’s Guidance on Awards of Grants to Indian Tribes under Section 106 of the Clean

Water Act requires that tribes collect, assess, and report annually on water quality

monitoring data collected using Clean Water Act Section 106 funding. The following

annual Water Quality Assessment Report covers all tribal water quality data collected in

the 2006-2007 water year (October 2006-September 2007). In addition to this report all

water quality data collected by the WQP will be submitted with this report to EPA.

Atlas of Tribal Waters

The following table is an estimate of our tribal waters (as of 1/1/2007) using our most

current GIS data.

Atlas of Tribal Waters

Total Number of Stream Miles

0.03 miles

Total Number of Lake Acres

54.4 acres

Total Number of Wetland Acres

3.34 acres

Total Number of Estuary Frontage 0.69 miles

Tribal Water Quality Data Summary

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Parameters

EPA’s Guidance on Awards of Grants to Indian Tribes under Section 106 of the Clean

Water Act for Fiscal Years 2007 and Beyond [EPA 832-R-06-003] requires that Tribes

include and annually report on the following nine water quality parameters:

1. Dissolved Oxygen

2. pH

3. Total phosphorus

4. Total nitrogen

5. Water temperature

6. Turbidity

7. Macroinvertebrates

8. E. Coli or fecal coliform

9. Basic habitat information

As of 2007 the WQP collects data on all nine EPA recommended parameters.

Monitoring Methods and Frequency

Estuarine Continuous Monitoring

One data logger is deployed at each of the three permanent monitoring stations. Sites are

accessed at high to mid-outgoing tide in a small skiff equipped with an outboard motor.

During transport, each sonde is wrapped in a tap water-soaked white towel and placed

horizontally in a rubber bin for insulation against jarring. To deploy, the data loggers are

lowered by chain into protective cases (constructed from 4"-diameter ABS plumbing

pipe). The ABS cases are drilled out to ensure adequate tidal flushing and exposure of the

probes to ambient water conditions. The ABS cases are affixed vertically to existing log

pilings driven into the channel substrate. A bolt prevents the data logger from descending

beyond the ABS pipe and ensures that the logger monitors at the same depth on every

deployment.

During retrieval, the sondes are again wrapped in a water-saturated white towel and

placed in a rubber bin for transport to the lab. To record post-deployment Dissolved

Oxygen in 100% water-saturated air, at least two data points are recorded after the sonde

reaches ambient temperature and while it is wrapped in the towel. The other postdeployment calibrations are performed in the lab prior to cleaning to determine if

instrument drift has occurred and to evaluate the validity of the data. Sonde cleaning and

calibration of the DO, Conductivity, Depth, pH, Turbidity, and Chlorophyll probes are

performed as outlined in the YSI manual. For Conductivity and Salinity, YSI calibrator

solution (10,000 μS/cm) is used without dilution. For pH calibrations, pH 7 and 10

solutions are used. A two-point calibration is used for Turbidity using 0 NTU and 123

NTU. A one-point (0 NTU) Chlorophyll calibration is performed. The depth sensor is

calibrated in air at sea level. The DO membranes are replaced prior to every deployment,

calibrated, and allowed to stretch for 16-24 hours. The DO probes are re-calibrated before

deployment, if necessary.

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As a quality assurance check, field calibrations are recorded during sonde deployment

and retrieval. As close to the 30-minute sonde recording time as possible, a hand-held

YSI 556 records DO, Salinity, Specific Conductivity, and Temperature both at the

surface and at the level of the sonde array. Surface grab samples of water for pH and

turbidity are taken for bench top analysis.

The WQP staff complete data logger retrieval and deployment tasks approximately every

two weeks depending on weather conditions.

Stream Discrete Monitoring

Water temperature, dissolved oxygen, salinity/conductivity, pH, bacteria (e. coli and

Enterococcus), and turbidity data are collected semi-monthly at the Tribes’ freshwater

monitoring site. A combination of handheld meters (YSI 556 multi-probe meter, Hach

2100-P Turbidimeter, and Beckman 450 ionic pH meter) and sample bottles are used to

measure and collect discrete samples. The target time of day for sample collection at the

Tribes’ freshwater site is 2:00 p.m. In addition, a water sample is collected for in house

analysis of e. coli and Enterococcus using IDEXX brand Colilert -18 and enterolert

reagent and the IDEXX QuantiTray 2000 analytical system. Calibrated and audited

Vemco water temperature data loggers are deployed at the site from June thru September

and record data at 30 minute intervals. Macroinvertebrate and basic habitat data is

collected during the summer.

Estuarine Discrete Monitoring

The WQP currently monitors estuarine water quality at four sites and has established

three long-term continuous monitoring stations within two estuaries (Siuslaw and Coos

Bay) along the central and south central Oregon coast. These sites were established to

collect essential baseline information and to improve the Tribes’ understanding of tidal

dynamics and watershed inputs occurring within tribal waters. YSI 6600 Extended

Deployment System data loggers (sondes) are deployed at each site so that the sensor

arrays are held 0.5 to 1.0 meter off the bottom of the tidal channels. The sondes are

programmed to record water quality parameter measurements every 30 minutes over 2230 day periods. Parameters measured include Depth, Temperature, Salinity, Specific

Conductivity, pH, Dissolved Oxygen (DO), Turbidity, and Chlorophyll (these data are

not reported to EPA). The fourth estuarine site (Kentuck Slough, Coos Bay) is sampled

using the discrete sampling methodology described in the previous Stream Discrete

Monitoring section.

Bacteria Monitoring Research Methods

Water samples for microbiological analysis are collected at all sites semi-monthly for in

house analysis of E. coli and Enterococcus using IDEXX brand Colilert -18 and

Enterolert reagent per the IDEXX QuantiTray 2000 analytical system. Water samples of

approximately 100ml (with adequate head-space for mixing), are collected using

disposable pre-sterilized IDEXX sample bottles. All bacteria and ancillary grab samples

are placed in a cooler on ice while in transport to the lab.

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Nutrient Sampling

Nutrient sampling has been initiated for water year 2007. Water samples are now

collected at all sites once a year for determining total dissolved nitrogen and

phosphorous. Samples are processed by the University of Washington Oceanography

and Technical services. The single points of data are not included in this report but can

be submitted upon request.

Applied Water Quality Standards

The Tribes are in the process of developing tribal water quality standards applicable to

tribal lands. Until these standards are completed and approved by Tribal Council, the

WQP compares water quality data collected with the numeric standards within the State

of Oregon’s water quality standards. These water quality standards can be found on the

Oregon State Archive’s website (http://arcweb.sos.state.or.us/rules/OARs_300/OAR_340/340_041.html).

The following table shows the numeric water quality standards that were applied to the

water quality data collected during this reporting period.

Water Quality Standards Applied to Tribal Water Quality Data

Parameter

Estuarine

Freshwater

Dissolved Oxygen

6.5 mg/L

6.0 mg/L

pH

6.5-8.5

6.5-8.5

Water Temperature

18°C (64º F)

18°C (64º F)

Turbidity

5 NTU Low Flow-50 3 NTU Low

NTU High Flow*

Flow-8 NTU

High Flow*

Salinity/Conductivity

None

None

st

th

st

th

*Low flow begins June 1 and ends September 30 ; high flow begins October 1 and ends May 30

Tribal Water Quality Data Summary

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5

Oregon Water Quality Standards for Each Parameter Monitored

Dissolved Oxygen

(Rule No. 340-041-0016)

(2) For water bodies identified by the Department as providing cold-water aquatic life,

the dissolved oxygen may not be less than 8.0 mg/l as an absolute minimum. Where

conditions of barometric pressure, altitude, and temperature preclude attainment of the

8.0 mg/l, dissolved oxygen may not be less than 90 percent of saturation. At the

discretion of the Department, when the Department determines that adequate information

exists, the dissolved oxygen may not fall below 8.0 mg/l as a 30-day mean minimum, 6.5

mg/l as a seven-day minimum mean, and may not fall below 6.0 mg/l as an absolute

minimum.

(5) For estuarine water, the dissolved oxygen concentrations may not be less than 6.5

mg/l (for coastal water bodies);

pH (hydrogen ion concentration)

(Rule No. 340-041-0021)

(1) Unless otherwise specified in OAR 340-041-0101 through 340-041-0350, pH values

(Hydrogen ion concentrations) may not fall outside the following ranges:

(b) Estuarine and fresh waters: 6.5-8.5.

Water Temperature

(Rule No. 340-041-0028)

(1) Background. Water temperatures affect the biological cycles of aquatic species and

are a critical factor in maintaining and restoring healthy salmonid populations throughout

the State. Water temperatures are influenced by solar radiation, stream shade, ambient air

temperatures, channel morphology, groundwater inflows, and stream velocity, volume,

and flow. Surface water temperatures may also be warmed by anthropogenic activities

such as discharging heated water, changing stream width or depth, reducing stream

shading, and water withdrawals.

(c)The seven-day-average maximum temperature of a stream identified as having salmon

and trout rearing and migration use may not exceed 18°C.

Turbidity

(Rule No. 340-041-0036)

The current Oregon Department of Environmental Quality (ODEQ) turbidity standard

specifically states that “[n]o more than a ten percent cumulative increase in natural

stream turbidities may be allowed, as measured relative to a control point immediately

upstream of the turbidity causing activity.”

DNR staff interviewed ODEQ staff to determine whether an alternate turbidity standard

could be applied in the interpretation of our discrete grab sample turbidity data. ODEQ

recommended that DNR apply an ambient background standard of 50 NTU to high flow

and 5 NTU to low flow estuarine turbidity data. ODEQ staff explained that studies of the

short term exposure of fish (e.g. salmon and trout) to these seasonal NTU’s have been

Tribal Water Quality Data Summary

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6

cited by previous studies as impacting fish behavioral response and growth rate – relative

to the fish’s perception of itself as either predator or prey (e.g. impact to juvenile

response time to predator or diminished foraging opportunities). Fresh water analysis of

the Tribes’ Sixes River data was based on median ambient high flow (8 NTU) and low

flow (3NTU) conditions of Oregon’s rivers listed in Table 3.6 of ODEQ’s Oct. 2005

DRAFT ‘Technical Basis for Revising Turbidity Criteria’. Within the “Oregon Water

Quality Index Report: Water Years 1995 – 2004,” ODEQ defines low summer flow as

st

th

beginning June 1 and ending September 30 , and high seasonal flow as beginning

st

th

October 1 and ending May 30 .

Salinity/Conductivity

No standard exists for this parameter. This parameter is primarily used to detect fresh and

salt water mixing and can be used as an indicator parameter for other pollutants.

Coordination and/or Collaboration with Other Organizations

The WQP works with local watershed associations to share technical expertise, strategies,

and water quality datasets. During this reporting period the WQP provided datasets to the

Coos Watershed Association (www.cooswatershed.org) and the Siuslaw Watershed

Council (www.siuslaw.org) to assist in the development of grant proposals and

restoration projects. Data was also provided to Greene Point Consulting to assist in a

wetland project on the North Fork Siuslaw River.

Outside Lab Support

Nutrient samples were processed by University of Washington Oceanography Technical

Services.

Data Summarization and Management

Characteristics of Water Quality Monitoring Data – Source: USGS Statistical Methods

in Water Resources, Helsel and Hirsch

Data analyzed by our program have the following characteristics:

• A lower bound of zero. No negative values are possible.

• Presence of ‘outliers’, observations considerably higher or lower than most of the

data, which infrequently but regularly occur.

• Positive skewness. Skewness can be expected when outlying values occur in only

one direction.

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• Non-normal distribution, due to skewness, presence of outliers, and the lower bound

of zero. Symmetry does not guarantee normality. Symmetric data with more

observations at both extremes (heavy tails) that occurs for a normal distribution

are also non-normal.

• Seasonal patterns. Values tend to be higher or lower in certain seasons of the year.

• Autocorrelation. Consecutive observations tend to be strongly correlated with each

other. For the most common kind of autocorrelation in water resources (positive

autocorrelation), high values tend to follow high values and low values tend to

follow low values.

• Dependence on other uncontrolled variables. Values strongly covary with water

discharge, hydraulic conductivity, sediment grain size, or some other variable.

The summarization and graphing methods chosen for the analysis of the WQMP data

presented in this report were selected to recognize these common characteristics while

facilitating a quick and easy to understand visual and tabular reference for potential

trends in water quality captured by our data.

Data Summarization and Analysis Methodology

The following sections describe the methods of data analysis and summarization

presented in this report and attempt to explain why they were chosen over other methods.

Outliers

Outliers, observations whose values are quite different than others in the data set, are not

deleted from our data set unless they fall outside of instrument specifications. For our

purposes, outliers may be the most important points in our data set and are signals for

what parameters should be further investigated. Outliers can have one of three causes:

1. A measurement or recording error – These data are deleted from the data sets during the

QA/QC procedures.

2. An observation from a population not similar to that of most of the data, such as an elevated

spike in turbidity caused by a construction project rather than precipitation.

3. A rare event from a single population that is quite skewed.

Rather than eliminating actual (and possibly very important) data in order to use analysis

procedures requiring symmetry or normality, procedures resistant to outliers have been

employed in analysis of those data presented in this document. Computing the sample

mean alone may be of less value because an outlier observation, either high or low, has a

much greater influence on the overall mean than does a more typical observation. This

sensitivity to the magnitudes of a small number of points in the data set defines why the

Tribal Water Quality Data Summary

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mean is not a “resistant” measure of location (Fig. 1). It is not resistant to changes in the

presence of, or changes in the magnitudes of, a few outlying observations. The median,

however, is only minimally affected by the magnitude of a single observation, being

solely determined by the relative order of observations. This resistance to the effect of a

change in value or presence of outlying observations is the main reason we have chosen

to include the median in our summarization. In this case, we have chosen to let the data

guide which analysis procedures are employed, rather than altering the data in order to

implement analysis procedures that may be too restrictive for the informational purposes

of this report.

Graphical Data Analysis

Continuous Data

Exploratory analysis of our continuous water quality monitoring data has been applied to

these data in the form of box plots. This is an inductive procedure that has been used to

summarize, rather than test, these data. The results of the exploratory analysis of these

data will provide guidance toward the selection of appropriate deductive hypothesis

testing procedures implemented by CTCLUSI for future non-point source pollution

assessments and/or reports. According to USGS Book 4. Hydrologic Analysis and

Interpretation: Statistical Methods in Water Resources, the use of histograms for data

measured on a continuous scale is not the best method for graphical analysis of these

data. The process of forcing continuous data into discrete categories may obscure

important characteristics of the distribution. Histograms are best applied to data that have

natural categories or groupings (e.g., number of individual organisms found at a stream

site grouped by species type, or the number of water-supply wells exceeding some critical

yield grouped by geological unit). It is for this reason that we have chosen to graphically

display our continuous data with boxplots.

Boxplots provide visual summaries of:

1. The center of the data (the median)

2. The variation or spread (interquartile range – box height)

3. The skewness (quartile skew – the relative box halves)

4. Presence or absence of unusual values (outliers)

Although boxplots do not present all of the data, presenting all of the data is more detail

than is necessary for the purposes of this report. Boxplots presented in this report provide

concise visual summaries of essential data characteristics. The format of the boxplots

presented herein is the ‘box-and-whisker plot’ consisting of a center point (the median)

splitting a rectangle defined by the upper and lower quartiles (Q3 and Q1). Whiskers of

the box are lines drawn from the ends of the box to the maximum and minimum of the

data (Boxplot 1). Thus a large amount of information is contained in a very concise

illustration. Boxplots effectively illustrate the characteristics of data for a single variable,

and accentuate outliers for further inspection.

Tribal Water Quality Data Summary

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Discrete Data

Discrete water quality monitoring data is displayed in line graphs in an attempt to

facilitate the quick visual identification of potentially emerging baseline patterns

occurring within the 2007 water year and simultaneously comparing these data to 303(d)

and other ODEQ standards..

Coded Variable Code Definitions

Sampling Station:

North Fork Siuslaw Sonde

Mainstem Siuslaw Sonde

BLM Dock Sonde

Kentuck Slough Grab

Sixes River Grab

Station Code

CTCNFWQ

CTCSIWQ

CTCEDWQ

CTCKSWQ

CTCSRWQ

The station code identifier is composed of a three letter code identifying our organization

CTC = CTCLUSI; a two letter code identifying the site NF = North Fork Siuslaw, SI =

Mainstem Siuslaw, ED = BLM Dock, KS = Kentuck Slough, SR = Sixes River; and a

two letter code identifying the type of data WQ = Water Quality.

Sonde Data Review and Editing Protocol

Our WQMP’s general philosophy for data acceptance or rejection is based on absolute

and discretionary factors.

(1) Absolute: In the first phase of data review and editing, values sometimes can be

rejected on the basis of absolute factors via software statements with no detailed analysis

of the study by the CTCLUSI data logger technician

.

(2) Discretionary: These are other instances in which the data must be examined before

absolute rejection. In the second phase we are recommending that each deployment study

be evaluated at the site for anomalies prior to submission of data for inclusion in the

CTCLUSI water quality data logger database

.

Absolute data rejection (1)

The value recorded in the sonde memory is outside the listed range specifications of the

instrument.

The following criteria are based on the latest YSI 6-Series Environmental Monitoring

Systems Operating Manual sensor specifications in Appendix J and are what the

CTCLUSI error checking criteria are based on.

• Temperature: -5 to 45 °C

• Specific Conductivity: 0 to 100 mS/cm

Tribal Water Quality Data Summary

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• Salinity: 0 to 70 ppt

• Dissolved Oxygen (% Saturation): 0 to 200 and 200 to 500 % air saturation

• Dissolved Oxygen (mg/L): 0 to 20 and 20 to 50 mg/L

• Shallow Depth: 0 to 9.1m

• pH: 2 to 14 units

• Turbidity: 0 to 1000 NTU

Always reject data that are outside of the range of the probes; the only exceptions to

the absolute data rejection for out-of-range values are for the Shallow depth and

Turbidity probes. These exceptions are explained under their respective headings in this

document.

YSI Turbidity Probes

Contamination can cause the sonde’s Turbidity Probe zero calibration to be off by +5 to

+8 NTUs. So when the probe really experiences zero turbidity, the values are -5 to -8

NTU. Due to this known small calibration error possibility, small negative turbidity

values are kept in the data file and documented as anomalous due to this small calibration

error.

Site Location and Description

The following sections contain general watershed and water quality information for each

of the sites actively monitored by our program. Following each site description are graphs

displaying those data pertaining to current ODEQ standards and/or any 303(d) listings for

waters running through each monitoring location. This has been done in an attempt to

provide a quick identification of impairments potentially recorded in our monitoring data.

Tables summarizing water quality data collected at the site follow the graphical analysis.

1) North Fork Siuslaw River (WQE12) [43.978039, 124.080850 – Siuslaw

Watershed]

The North Fork Siuslaw sonde station is located in the Lower North Fork Siuslaw

watershed approximately 6 river miles from the mouth of the Siuslaw River and within

river mile one of the Lower North Fork Siuslaw River. Water quality at this site is both

tidally influenced and watershed driven. The Lower North Fork Siuslaw River is also

considered part of the Siuslaw Estuary. The North Fork Siuslaw River is 303(d) listed for

sedimentation and temperature beginning at river mile 0.4 to 27.3. The sedimentation

listing is based on the criteria of the formation of appreciable bottom sludge deposits or

the formation of any organic or inorganic deposits deleterious to fish or other aquatic life

and the impact to the beneficial use of resident fish and aquatic life. The temperature

listing is based on the salmon and trout rearing and migration beneficial use criteria

temperature not to exceed an 18°C 7-day average maximum. The North Fork Siuslaw has

also been listed as water quality limited for habitat modification. Of the parameters listed,

temperature is the only one cited by ODEQ as impacting the beneficial use of salmon and

Tribal Water Quality Data Summary

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trout rearing and migration year round and as a result ODEQ has identified this reach as

requiring a temperature TMDL.

North Fork Siuslaw Continuous/Sonde Data Analysis

The following box and whisker plots display sonde temperature, dissolved oxygen, and

pH data collected at this site. The graphs have been produced with the appropriate ODEQ

standards and/or 303(d) listing in an attempt to facilitate rapid visual understanding of the

trends occurring at the site. Those data presented in the temperature boxplot (Boxplot 1)

indicate that the majority of continuous temperature data collected at CTCLUSI’s North

Fork sonde station throughout July and August exceeded the salmon and trout rearing and

migration beneficial use criteria of 18°C 7-day average maximum temperature and

therefore support the 303(d) listing for temperature within the North Fork Siuslaw River.

In addition to supporting the 303(d) listing for the site, dissolved oxygen data collected at

the site indicate an additional impairment to water quality is occurring at the site.

Although the Mainstem Siuslaw River is 303(d) listed from river mile 5.7 to 105.9 as

st

impacting the designated beneficial use of anadromous fish for dissolved oxygen June 1

th

– September 14 (based on the criteria of cold water no less than 8.0 mg/l or 90% of

saturation) and impacting the designated beneficial use of salmonids fish spawning for

th

st

dissolved oxygen September 15 to May 31 (based on the spawning criteria not less than

11.0 mg/l or 95% saturation), the North Fork Siuslaw is not. However, our initial analysis

of the continuous data collected by our program at this site indicate that impairments to

dissolved oxygen similar to those listed for the Mainstem Siuslaw River are occurring

within the North Fork Siuslaw River (Boxplot 2). A trend of low pH (Boxplot 3) was

noted in November through April although the monthly median never fell below the DEQ

minimum of 6.5 for estuaries.

Tribal Water Quality Data Summary

October 2006-September 2007

12

Siuslaw River, North Fork Temperature Trend: Water Year 2007

25

20

Temperature °C

DEQ Upper Limit for Salmon and Trout Rearing and Migration: 18°C

15

Q3

Max

Median

Min

Q1

10

5

0

Oct-06

Nov-06

Dec-06

Jan-07

Feb-07

Mar-07

Apr-07

May-07

Jun-07

Jul-07

Aug-07

Sep-07

Date

Boxplot 1.

Siuslaw River, North Fork Dissolved Oxygen Trend: Water Year 2007

16.00

14.00

Dissolved Oxygen mg/l

12.00

DEQ Spawn Standard: 11 mg/l

10.00

Q3

Max

Median

Min

Q1

8.00

DEQ Cold Water Standard: 8.0 mg/l

6.00

DEQ Estuarine Standard: 6.5 mg/l

4.00

2.00

0.00

Oct-06

Nov-06

Dec-06

Jan-07

Feb-07

Mar-07

Apr-07

May-07

Jun-07

Jul-07

Aug-07

Sep-07

Date

Boxplot 2.

Tribal Water Quality Data Summary

October 2006-September 2007

13

Siuslaw River, North Fork pH Trend: Water Year 2007

9.0

8.5

DEQ Upper pH Limit for Estuaries: 8.5

8.0

pH

7.5

Q3

Max

Median

Min

Q1

7.0

6.5

DEQ Lower pH Limit for Estuaries: 6.5

6.0

5.5

5.0

Oct-06

Nov-06

Dec-06

Jan-07

Feb-07

Mar-07

Apr-07

May-07

Jun-07

Jul-07

Aug-07

Sep-07

Date

Boxplot 3.

Monthly North Fork Siuslaw River Temperature C°: Water Year 2007

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Oct06

13.60

16.30

12.90

8.90

11.90

12.78

1.40

Nov06

10.60

13.60

9.80

5.80

9.20

9.90

1.35

Dec06

8.90

11.00

7.85

5.50

7.10

7.99

1.15

Jan07

8.10

10.20

7.00

3.80

6.20

7.13

1.43

Feb07

9.10

10.00

8.20

4.10

7.20

8.00

1.29

Mar07

10.90

12.80

10.40

6.80

9.90

10.25

0.98

Apr07

12.10

13.90

11.50

8.70

10.50

11.35

1.05

May07

16.90

19.60

15.90

12.30

14.90

15.88

1.51

Jun07

18.00

20.50

16.90

11.10

15.60

16.66

1.81

Jul07

21.00

22.20

20.30

12.60

18.70

19.59

2.04

Aug07

20.10

21.90

19.40

11.20

17.70

18.69

2.04

Sep07

17.40

20.60

15.90

10.40

14.80

16.12

1.98

Monthly North Fork Siuslaw River Dissolved Oxygen Concentration mg/l: Water Year

2007

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Oct06

8.30

9.50

7.50

3.70

7.00

7.53

0.99

Nov06

10.80

12.00

10.50

8.50

10.00

10.42

0.66

Dec06

12.10

13.10

11.80

9.50

11.40

11.76

0.57

Jan07

12.30

13.60

11.90

10.00

11.30

11.82

0.67

Tribal Water Quality Data Summary

October 2006-September 2007

Feb07

11.80

12.90

11.50

9.00

11.20

11.45

0.65

Mar07

11.20

12.70

10.90

9.20

10.60

10.92

0.48

Apr07

11.30

12.00

10.80

8.40

10.30

10.74

0.65

May07

11.00

13.20

10.10

8.10

9.50

10.30

0.96

Jun07

8.90

11.10

8.40

3.60

7.90

8.41

0.90

Jul07

7.90

9.00

7.30

4.70

6.50

7.22

0.82

Aug07

7.50

13.40

6.80

2.30

6.20

6.95

1.20

Sep07

7.90

9.20

7.30

3.40

6.60

7.23

0.87

14

Monthly North Fork Siuslaw River pH: Water Year 2007

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Oct06

7.50

7.90

7.30

7.00

7.20

7.33

0.18

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Oct06

26.00

32.80

23.20

10.60

19.00

22.41

4.93

Nov06

6.90

7.90

6.60

6.20

6.40

6.73

0.39

Dec06

6.90

7.90

6.60

6.10

6.40

6.75

0.43

Jan07

7.30

8.20

6.90

6.40

6.70

7.06

0.48

Feb07

7.30

7.90

6.70

5.80

6.50

6.83

0.54

Mar07

7.00

8.10

6.70

5.80

6.58

6.76

0.47

Apr07

7.10

7.70

6.80

5.80

6.30

6.73

0.52

May07

8.10

8.40

7.80

6.10

7.20

7.65

0.51

Jun07

7.70

8.20

7.40

6.60

7.10

7.40

0.37

Jul07

7.70

8.00

7.60

6.90

7.30

7.51

0.27

Aug07

7.50

8.20

7.30

6.60

7.10

7.32

0.28

Sep07

7.60

7.90

7.50

6.80

7.30

7.45

0.21

Aug07

24.55

31.90

21.00

8.00

17.00

20.69

5.34

Sep07

25.30

31.40

22.30

10.30

18.60

21.77

4.70

Monthly North Fork Siuslaw River Salinity ppt: Water Year 2007

Nov06

0.50

30.40

0.10

0.00

0.10

3.30

7.24

Dec06

1.30

25.50

0.10

0.00

0.10

2.34

4.91

Jan07

2.70

24.90

0.10

0.00

0.10

2.98

5.76

Feb07

7.10

25.00

0.45

0.00

0.10

4.31

6.31

Mar07

1.60

26.80

0.10

0.00

0.10

1.92

4.23

Apr07

7.00

23.10

3.20

0.10

0.20

4.82

5.45

May07

15.80

27.50

10.50

0.10

5.40

10.96

6.89

Jun07

19.70

31.90

14.20

0.90

8.78

14.35

7.28

Jul07

22.20

30.30

18.20

5.30

14.90

18.07

6.07

Monthly North Fork Siuslaw River Turbidity NTU: Water Year 2007

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Oct06

5.00

508.00

3.00

0.00

2.00

4.30

14.73

Nov06

11.00

1000.00

5.00

1.00

3.00

13.62

39.81

Dec06

7.00

370.00

5.00

0.00

3.00

6.41

11.12

Jan07

6.00

73.00

3.00

0.00

2.00

5.56

7.30

Feb07

8.00

81.00

4.00

1.00

2.00

7.36

10.71

Mar07

5.00

29.00

3.00

0.00

2.00

3.89

3.33

Apr07

-

May07

5.00

507.00

3.00

1.00

3.00

4.78

20.40

Jun07

4.00

336.00

3.00

0.00

2.00

3.44

9.90

Jul07

2.00

21.00

1.00

-1.00

1.00

1.62

1.67

Aug07

4.00

254.00

2.00

0.00

2.00

3.06

9.35

North Fork Siuslaw Bacteria Data

CTCLUSI began collecting water samples for microbiological analysis of E.coli and

Enterococcus in May 2006. Because the data set for this parameter is relatively small, no

statistical analysis has been applied to these data. The following tables list all bacteria

data collected by our program for water year 2007. Our program currently compares

single grab samples to ODEQ and EPA established numeric criteria for Freshwaters and

Estuarine Waters of either 1) no single sample exceeding 406 E.coli organisms per 100

milliliters (406 MPN) or 2) The federal Environmental Protection Agency (EPA)

recommendation of the safe standard for Enterococcus to be no more than 158 colony

forming units (158 MPN) per 100 milliliters of marine water. No samples collected by

our program during water year 2007 at this site have exceeded either of these criteria.

Tribal Water Quality Data Summary

October 2006-September 2007

15

Sep07

5.00

484.00

3.00

0.00

1.00

3.78

12.97

North Fork E. coli Data: Water Year 2007

Sample Date

10/11/2006

11/9/2006

11/21/2006

12/5/2006

12/21/2006

1/4/2007

1/30/2007

2/22/2007

3/5/2007

3/22/2007

4/12/2007

4/26/2007

5/9/2007

5/31/2007

6/12/2007

7/24/2007

8/6/2007

8/23/2007

Sample

ID

NF

NF

NF

NF

NF

NF

NF

NF

NF

NF

NF

NF

NF

NF

NF

NF

NF

NF

Analyte

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

MPN/100mL

10

173.1

86

10

74.5

51.6

10

10

41.3

20.1

20.2

< 10.0

20.2

30.4

41.3

20.2

20.2

10

North Fork Enterococcus Data: Water Year 2007

Sample

Date

10/11/2006

11/9/2006

11/21/2006

12/5/2006

12/21/2006

1/4/2007

1/30/2007

2/22/2007

3/5/2007

3/22/2007

4/12/2007

4/26/2007

5/9/2007

5/31/2007

6/12/2007

7/24/2007

8/6/2007

8/23/2007

Tribal Water Quality Data Summary

October 2006-September 2007

Sample

ID

NF

NF

NF

NF

NF

NF

NF

NF

NF

NF

NF

NF

NF

NF

NF

NF

NF

NF

Analyte

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

MPN/100mL

10

30.6

41.3

< 10.0

10

9.9

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

10

10

9.9

< 10.0

< 10.0

16

2) Siuslaw River Mainstem [43.974167, 124.071111–Siuslaw Watershed]

The Siuslaw River sonde station is located in the Siuslaw River Mainstem approximately

7 river miles from the mouth of the Siuslaw River. Water quality at this site is both tidally

influenced and watershed driven. This sonde station is also located within the Siuslaw

Estuary. The Siuslaw River is 303(d) listed from river mile 5.7 to 105.9 as impacting the

st

designated beneficial use of anadromous fish for dissolved oxygen June 1 – September

th

14 . This listing is based on the criteria of cold water no less than 8.0 mg/l or 90% of

saturation. This reach of the Siuslaw River is also 303(d) listed as impacting the

designated beneficial use of salmonids fish spawning for dissolved oxygen September

th

st

15 to May 31 . This listing is based on the spawning criteria not less than 11.0 mg/l or

95% saturation. The Siuslaw River is 303(d) listed as impacting the year round (nonspawning) beneficial use for salmon and trout rearing and migration for temperature from

river mile 0 to 106. This listing is based on the salmon and trout rearing and migration

temperature criteria not greater than an 18.0 ° C 7-day average maximum. In addition to

the adverse impacts to water quality associated with low dissolved oxygen and high water

temperature, water quality in the Siuslaw River Mainstem and Estuary is also 303(d)

listed as impacting the year round beneficial use of shellfish for fecal coliform from river

mile 5.7 to 105.9. This listing is based on the criteria for the fecal coliform median of 14

organisms per 100ml or no more than 10% of samples greater than 43 organisms per 100

ml. Of the parameters listed, ODEQ cites the need for fecal coliform and temperature

TMDLs within the Siuslaw River Mainstem and Estuary.

Siuslaw River Mainstem Continuous/Sonde Data Analysis

The following box and whisker plots display sonde temperature, dissolved oxygen, and

pH data collected at this site. The graphs have been produced with the appropriate ODEQ

standards and/or 303(d) listing in an attempt to facilitate rapid visual understanding of the

trends occurring at the site. Those data presented in the temperature boxplot (Boxplot 4)

indicate that the majority of continuous temperature data collected at CTCLUSI’s

Siuslaw River Mainstem sonde station throughout July and August exceeded the salmon

and trout rearing and migration beneficial use criteria of 18°C 7-day average maximum

temperature and therefore support the 303(d) listing for temperature within the Siuslaw

River Estuary and Mainstem.

In addition to supporting the 303(d) listing for temperature at the site, dissolved oxygen

data collected at the site support the additional 303(d) listing for dissolved oxygen at this

site. Our analysis of continuous data collected by our program at this site supports the

seasonal impairments to water quality associated with dissolved oxygen listed for the

Mainstem Siuslaw River (Boxplot 5). A low winter pH trend similar to the North Fork

was also noted in the Mainstem (Boxplot 6) with the monthly median never falling below

DEQ minimum of 6.5 for estuaries.

Tribal Water Quality Data Summary

October 2006-September 2007

17

Siuslaw River, Main Stem Temperature Trend: Water Year 2007

25

20

Temperature °C

DEQ Upper Limit for Salmon and Trout Rearing and Migration: 18°C

15

Q3

Max

Median

Min

Q1

10

5

0

Oct-06

Nov-06

Dec-06

Jan-07

Feb-07

Mar-07

Apr-07

May-07

Jun-07

Jul-07

Aug-07

Sep-07

Date

Boxplot 4

Siuslaw River, Main Stem Dissolved Oxygen Trend: Water Year 2007

16.00

14.00

Dissolved Oxygen mg/l

12.00

DEQ Spawn Standard: 11 mg/l

10.00

Q3

Max

Median

Min

Q1

8.00

DEQ Cold Water Standard: 8.0 mg/l

6.00

DEQ Estuarine Standard: 6.5 mg/l

4.00

2.00

0.00

Oct-06

Nov-06

Dec-06

Jan-07

Feb-07

Mar-07

Apr-07

May-07

Jun-07

Jul-07

Aug-07

Sep-07

Date

Boxplot 5

Tribal Water Quality Data Summary

October 2006-September 2007

18

Siuslaw River, Main Stem pH Trend: Water Year 2007

9.0

8.5

DEQ Upper pH Limit for Estuaries: 8.5

8.0

pH

7.5

Q3

Max

Median

Min

Q1

7.0

6.5

DEQ Lower pH Limit for Estuaries: 6.5

6.0

5.5

5.0

Oct-06

Nov-06

Dec-06

Jan-07

Feb-07

Mar-07

Apr-07

May-07

Jun-07

Jul-07

Aug-07

Sep-07

Date

Boxplot 6

Monthly Mainstem Siuslaw River Temperature C°: Water Year 2007

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Oct06

13.60

16.80

12.70

9.40

11.60

12.68

1.48

Nov06

10.50

12.90

9.75

6.90

9.30

9.88

1.20

Dec06

8.90

10.30

8.00

6.00

7.10

8.04

1.04

Jan07

8.20

9.80

7.00

4.10

6.30

7.11

1.39

Feb07

9.00

9.80

7.90

3.80

7.20

7.83

1.31

Mar07

10.70

11.60

10.30

6.70

9.70

10.08

0.97

Apr07

12.20

14.70

11.40

9.90

10.70

11.62

1.10

May07

15.30

18.30

14.10

9.70

12.90

14.12

1.62

Jun07

17.70

19.70

16.50

10.40

14.70

16.06

2.02

Jul07

20.40

22.00

19.40

11.00

17.60

18.70

2.35

Aug07

19.90

21.40

18.90

9.90

16.60

17.89

2.69

Sep07

17.20

20.50

15.70

9.50

14.30

15.66

2.28

Monthly Mainstem Siuslaw River Dissolved Oxygen Concentration mg/l: Water Year

2007

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Oct06

8.30

9.70

7.50

3.20

7.10

7.58

0.96

Nov06

11.30

12.40

10.80

7.80

10.30

10.71

0.83

Dec06

13.00

13.90

12.30

9.00

11.70

12.17

1.04

Jan07

11.40

13.00

10.70

9.40

10.30

10.84

0.73

Tribal Water Quality Data Summary

October 2006-September 2007

Feb07

12.00

13.40

11.60

8.20

11.00

11.43

0.93

Mar07

11.90

12.60

11.60

7.90

10.90

11.37

0.79

Apr07

11.00

11.60

10.50

8.70

10.20

10.54

0.55

May07

10.50

12.50

10.00

7.60

9.60

10.08

0.75

Jun07

8.90

11.50

8.15

5.00

7.70

8.33

1.00

Jul07

8.10

13.70

7.40

2.00

6.60

7.47

1.59

Aug07

7.70

13.20

6.90

3.50

6.40

7.14

1.36

19

Sep07

7.90

10.90

7.35

5.10

6.70

7.36

0.79

Monthly Mainstem Siuslaw River pH: Water Year 2007

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Oct06

7.40

7.70

7.30

6.80

7.10

7.27

0.20

Nov06

7.10

8.00

6.80

6.20

6.40

6.85

0.44

Dec06

7.20

7.90

6.70

6.20

6.40

6.83

0.46

Jan07

7.50

8.10

7.10

6.70

6.90

7.26

0.39

Feb07

7.50

7.90

7.00

6.20

6.70

7.07

0.46

Mar07

7.30

8.10

7.00

6.60

6.80

7.13

0.39

Apr07

7.83

8.10

7.50

6.70

7.10

7.48

0.39

May07

8.00

8.40

7.70

6.90

7.40

7.67

0.35

Jun07

7.70

8.20

7.50

6.70

7.20

7.48

0.34

Jul07

7.90

8.50

7.65

7.00

7.40

7.66

0.33

Aug07

7.60

8.20

7.40

6.90

7.20

7.44

0.27

Sep07

7.60

8.10

7.50

7.10

7.30

7.48

0.20

Aug07

26.80

33.30

22.20

10.50

17.90

22.43

5.64

Sep07

27.30

33.50

23.80

13.60

19.70

23.60

4.81

Aug07

2.00

8.00

2.00

0.00

1.00

1.82

1.21

Sep07

3.00

9.00

2.00

0.00

1.00

2.19

1.38

Monthly Mainstem Siuslaw River Salinity ppt: Water Year 2007

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Oct06

27.30

34.10

24.00

13.90

19.90

23.81

4.76

Nov06

1.93

32.50

0.10

0.00

0.10

4.30

8.19

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Oct06

3.00

190.00

2.00

-2.00

1.00

1.88

5.12

Dec06

7.70

29.40

0.20

0.00

0.00

4.78

7.29

Jan07

11.00

24.60

2.90

0.00

0.20

6.26

7.20

Feb07

10.13

26.00

2.30

0.00

0.10

6.08

7.60

Mar07

4.33

29.00

0.40

0.00

0.10

3.91

6.70

Apr07

11.40

29.90

5.20

0.00

0.70

7.45

7.66

May07

18.90

32.00

11.25

0.00

4.60

12.13

8.47

Jun07

23.40

32.70

17.70

2.10

11.50

17.57

7.38

Jul07

24.30

32.60

19.15

6.50

14.60

19.52

6.49

Monthly Mainstem Siuslaw River Turbidity NTU: Water Year 2007

Nov06

8.00

440.00

4.00

0.00

3.00

8.52

18.87

Dec06

9.00

576.00

5.00

0.00

3.00

9.31

27.98

Jan07

11.00

998.00

5.00

0.00

3.00

34.48

138.62

Feb07

7.00

20.00

2.00

-1.00

1.00

3.92

3.84

Mar07

3.00

26.00

2.00

0.00

1.00

2.61

2.24

Apr07

3.00

10.00

2.00

0.00

1.00

2.10

1.51

May07

4.00

17.00

3.00

0.00

2.00

3.24

1.78

Jun07

3.00

10.00

3.00

0.00

2.00

2.66

1.30

Jul07

3.00

19.00

2.00

0.00

1.00

1.97

1.34

Siuslaw Mainstem Bacteria Data

CTCLUSI began collecting water samples for microbiological analysis of E.coli and

Enterococcus in May 2006. Because the data set for this parameter is relatively small, no

statistical analysis has been applied to these data. The following tables list all bacteria

data collected by our program for water year 2007. Our program currently compares

single grab samples to ODEQ and EPA established numeric criteria for Freshwaters and

Estuarine Waters of either 1) no single sample exceeding 406 E.coli organisms per 100

milliliters (406 MPN) or 2) The federal Environmental Protection Agency (EPA)

recommendation of the safe standard for Enterococcus to be no more than 158 colony

forming units (158 MPN) per 100 milliliters of marine water. No samples collected by

our program during water year 2007 at this site have exceeded either of these criteria.

Tribal Water Quality Data Summary

October 2006-September 2007

20

Siuslaw Mainstem E. coli Data: Water Year 2007

Sample

Date

10/11/2006

11/9/2006

11/21/2006

1/30/2007

2/22/2007

3/22/2007

4/12/2007

4/26/2007

5/9/2007

5/31/2007

6/12/2007

6/28/2007

7/10/2007

7/24/2007

8/6/2007

8/23/2007

Sample

ID

MS

MS

MS

MS

MS

MS

MS

MS

MS

MS

MS

MS

MS1

MS

MS

MS

Analyte

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

MPN/100mL

52.1

186.9

85.2

< 10.0

41.3

10

10

10

10

9.9

41.3

20.2

< 10.0

10

20.2

10

Siuslaw Mainstem Enterococcus Data: Water Year 2007

Sample

Date

10/11/2006

11/9/2006

11/21/2006

1/30/2007

2/22/2007

3/22/2007

4/12/2007

4/26/2007

5/9/2007

5/31/2007

6/12/2007

6/28/2007

7/10/2007

7/24/2007

8/6/2007

8/23/2007

Tribal Water Quality Data Summary

October 2006-September 2007

Sample

ID

MS

MS

MS

MS

MS

MS

MS

MS

MS

MS

MS

MS

MS

MS

MS

MS

Analyte

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

MPN/100mL

10

52.1

10

< 10.0

10

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

9.9

10

< 10.0

21

3) BLM Boat Ramp [43.398019, 124.286034 – Coos Watershed]

The BLM Sonde station is located approximately 6 river miles from the mouth of the

Lower Coos Bay Estuary. This is a marine dominated site. The Coos Estuary and its

watershed are located in the lowlands of the southwestern Oregon Coast Range. It is the

largest Oregon estuary completely contained within state boundaries and is the fifth

largest estuary in the Pacific Northwest (South Slough National Estuarine Research

Reserve (SSNERR) Management Plan, 13). The Coos River and its estuary are

considered to be a “drowned river mouth” system. ODEQ lists 303(d) impairments to

water quality in the upper bay and jetty inlet/ South Slough area of Coos Bay. The lower

jetty inlet/ South Slough (river mile 0 to 5.3) and upper bay (river mile 7.8 to 12.3) are

currently listed for fecal coliform year round. Additional listings of potential concern for

the upper bay are heavy metals (tributyltin, copper, lead, chromium, lead, and nickel) and

st

temperature (Oct 1 to May 31 ). Although surface waters immediately adjacent to the

BLM Boat Ramp sonde station are not 303(d) listed, the monitoring of potential impacts

to water quality from non point sources located upbay and downbay of this site are within

tribal interest due to the historic association with tribal subsistence resources within the

bay such as shellfish harvesting and fishing.

BLM Boat Ramp Continuous/Sonde Data Analysis

The following box and whisker plots display sonde temperature, dissolved oxygen, and

pH data collected at this site. The graphs have been produced with the appropriate ODEQ

standards and/or 303(d) listing in an attempt to facilitate rapid visual understanding of the

trends occurring at the site. Data collected at the BLM Boat Ramp site do not indicate

impairments to water quality have been or are occurring at the site. Due to equipment

failure only 20 points of continuous data spanning 10 hours were recorded in early

January.

Tribal Water Quality Data Summary

October 2006-September 2007

22

Coos Bay, BLM Temperature Trend: Water Year 2007

25

20

Temperature °C

DEQ Upper Limit for Salmon and Trout Rearing and Migration: 18°C

15

Q3

Max

Median

Min

Q1

N=20

10

5

0

Oct-06

Nov-06

Dec-06

Jan-07

Feb-07

Mar-07

Apr-07

May-07

Jun-07

Jul-07

Aug-07

Sep-07

Date

Boxplot 7

Coos Bay, BLM Dissolved Oxygen Trend: Water Year 2007

14.00

12.00

N=20

Dissolved Oxygen mg/l

10.00

Q3

Max

Median

Min

Q1

8.00

6.00

DEQ Lower Dissolved Oxygen Limit for Estuaries: 6.5 mg/l

4.00

2.00

0.00

Oct-06

Nov-06

Dec-06

Jan-07

Feb-07

Mar-07

Apr-07

May-07

Jun-07

Jul-07

Aug-07

Sep-07

Date

Boxplot8

Tribal Water Quality Data Summary

October 2006-September 2007

23

Coos Bay, BLM pH Trend: Water Year 2007

9.0

8.5

DEQ Upper pH Limit for Estuaries: 8.5

N=20

8.0

pH

7.5

Q3

Max

Median

Min

Q1

7.0

6.5

DEQ Lower pH Limit for Estuaries: 6.5

6.0

5.5

5.0

Oct-06

Nov-06

Dec-06

Jan-07

Feb-07

Mar-07

Apr-07

May-07

Jun-07

Jul-07

Aug-07

Sep-07

Date

Boxplot 9

Monthly Coos Bay BLM Temperature C°: Water Year 2007

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Oct06

12.80

15.20

11.80

9.20

10.90

11.85

1.29

Nov06

11.70

13.70

11.20

8.10

10.40

11.09

1.01

Dec06

10.50

11.20

9.90

8.10

9.30

9.88

0.72

Jan07

8.70

9.60

8.60

8.50

8.50

8.69

0.30

Feb07

9.90

10.60

9.50

7.20

8.90

9.36

0.71

Mar07

11.10

12.40

10.70

7.50

10.20

10.57

0.90

Apr07

11.90

12.80

11.40

9.60

11.00

11.40

0.62

May07

13.50

15.50

12.50

8.80

11.30

12.39

1.52

Jun07

15.00

17.80

14.00

8.80

12.40

13.64

1.80

Jul07

17.40

19.30

16.10

9.30

14.10

15.57

2.29

Aug07

16.80

19.00

15.30

9.30

12.80

14.79

2.41

Sep07

14.60

17.80

13.30

9.30

11.90

13.23

1.86

Monthly Coos Bay BLM Dissolved Oxygen Concentration mg/l: Water Year 2007

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Oct06

8.70

10.70

8.30

6.30

7.95

8.38

0.57

Nov06

9.60

10.90

9.10

6.80

8.60

9.14

0.70

Dec06

10.20

11.10

9.80

8.10

9.50

9.81

0.52

Jan07

10.10

10.20

9.95

8.70

9.68

9.81

0.38

Tribal Water Quality Data Summary

October 2006-September 2007

Feb07

10.10

11.40

9.80

8.00

9.60

9.85

0.49

Mar07

10.10

11.40

9.80

8.20

9.60

9.85

0.48

Apr07

9.90

10.70

9.80

8.50

9.60

9.78

0.25

May07

9.40

11.50

8.50

5.20

8.10

8.65

1.00

Jun07

8.70

12.40

7.90

4.30

7.40

8.06

1.10

Jul07

8.20

11.00

7.70

3.10

7.20

7.72

1.05

Aug07

8.80

11.40

8.10

5.20

7.40

8.09

1.02

Sep07

8.50

11.20

8.00

6.00

7.60

8.11

0.74

24

Monthly Coos Bay BLM pH: Water Year 2007

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Oct06

7.80

8.00

7.80

7.60

7.80

7.81

0.06

Nov06

7.80

8.00

7.70

7.30

7.60

7.69

0.12

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Oct06

33.70

34.30

33.40

32.30

33.00

33.32

0.46

Nov06

30.50

34.00

24.65

8.90

19.00

24.43

6.41

Dec06

8.00

8.00

7.90

7.30

7.80

7.88

0.13

Jan07

8.00

8.00

7.90

7.90

7.90

7.95

0.05

Feb07

8.00

8.10

8.00

7.60

8.00

7.99

0.07

Mar07

7.90

8.10

7.70

7.50

7.60

7.75

0.18

Apr07

7.70

7.80

7.70

7.50

7.60

7.68

0.07

May07

7.90

8.00

7.70

7.40

7.60

7.74

0.14

Jun07

7.80

8.10

7.70

7.10

7.60

7.69

0.18

Jul07

7.80

8.00

7.70

7.30

7.70

7.73

0.11

Aug07

7.80

8.00

7.70

7.40

7.60

7.72

0.13

Sep07

7.90

8.10

7.80

7.40

7.60

7.78

0.17

Jul07

32.70

34.00

32.00

27.30

31.20

31.94

0.99

Aug07

33.20

34.10

32.80

30.10

32.30

32.72

0.66

Sep07

33.10

33.70

32.70

31.20

32.20

32.63

0.55

Aug07

2.00

626.00

1.00

0.00

1.00

2.48

19.50

Sep07

3.00

841.00

2.00

0.00

1.00

5.19

36.67

Monthly Coos Bay BLM Salinity ppt: Water Year 2007

Dec06

27.70

32.70

22.50

2.60

18.00

21.96

7.10

Jan07

26.30

32.00

25.50

23.90

24.68

25.95

2.19

Feb07

29.10

33.00

25.90

7.40

21.30

24.74

5.77

Mar07

28.20

33.10

24.30

6.80

20.30

23.54

5.95

Apr07

28.90

33.00

26.00

20.10

23.40

26.23

3.25

May07

31.30

33.60

29.50

24.70

28.00

29.64

2.06

Jun07

32.30

34.00

31.20

26.30

30.20

31.22

1.38

Monthly Coos Bay BLM Turbidity NTU: Water Year 2007

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Oct06

2.00

140.00

1.00

0.00

1.00

1.51

3.93

Nov06

6.00

510.00

4.00

0.00

3.00

5.20

14.27

Dec06

6.00

55.00

4.00

0.00

2.00

4.87

4.46

Jan07

3.00

5.00

2.00

1.00

2.00

2.35

1.04

Tribal Water Quality Data Summary

October 2006-September 2007

Feb07

4.00

32.00

2.00

0.00

1.00

2.65

2.70

Mar07

4.00

104.00

3.00

0.00

2.00

3.69

4.25

Apr07

2.00

15.00

2.00

0.00

1.00

2.03

1.55

May07

3.00

13.00

2.00

1.00

2.00

2.62

1.28

Jun07

3.00

26.00

2.00

0.00

1.00

2.17

1.85

Jul07

2.00

132.00

1.00

-1.00

1.00

2.13

4.67

25

Coos Bay BLM Boat Ramp Bacteria Data

CTCLUSI began collecting water samples for microbiological analysis of E.coli and

Enterococcus in Coos Bay in May 2006. Because the data set for this parameter is

relatively small, no statistical analysis has been applied to these data. The following

tables list all bacteria data collected by our program for this site during water year 2007.

Our program currently compares single grab samples to ODEQ and EPA established

numeric criteria for Freshwaters and Estuarine Waters of either 1) no single sample

exceeding 406 E.coli organisms per 100 milliliters (406 MPN) or 2) The federal

Environmental Protection Agency (EPA) recommendation of the safe standard for

Enterococcus to be no more than 158 colony forming units (158 MPN) per 100 milliliters

of marine water. No samples collected by our program during water year 2007 at this site

have exceeded either of these criteria.

Coos Bay BLM E. coli Data: Water Year 2007

Sample

Date

10/18/2006

10/18/2006

11/1/2006

11/1/2006

11/20/2006

11/20/2006

12/4/2006

12/4/2006

12/20/2006

12/20/2006

1/3/2007

1/3/2007

2/21/2007

2/21/2007

3/6/2007

3/7/2007

3/21/2007

3/21/2007

4/11/2007

4/11/2007

4/25/2007

4/25/2007

5/8/2007

5/8/2007

6/13/2007

6/27/2007

7/9/2007

7/9/2007

7/25/2007

8/7/2007

9/5/2007

9/26/2007

Tribal Water Quality Data Summary

October 2006-September 2007

Sample ID

BLM High Tide

BLM Low Tide

BLM High Tide

BLM Low Tide

BLM High Tide

BLM Low Tide

BLM High Tide

BLM Low Tide

BLM High Tide

BLM Low Tide

BLM High Tide

BLM Low Tide

BLM High Tide

BLM Low Tide

BLM Low Tide

BLM High Tide

BLM High Tide

BLM Low Tide

BLM High Tide

BLM Low Tide

BLM High Tide

BLM Low Tide

BLM High Tide

BLM Low Tide

BLM High Tide

BLM High Tide

BLM High Tide

BLM Low Tide

BLM Low Tide

BLM

BLM

BLM Low Tide

Analyte

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

MPN/100mL

< 10.0

< 10.0

< 10.0

< 10.0

10

20.2

< 10.0

10

10

10

< 10.0

20.2

10

< 10.0

41.3

10

< 10.0

51.6

173.1

20.2

< 10.0

< 10.0

10

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

26

Coos Bay BLM Enterococcus Data: Water Year 2007

Sample

Date

10/18/2006

10/18/2006

11/1/2006

11/1/2006

11/20/2006

11/20/2006

12/4/2006

12/4/2006

12/20/2006

12/20/2006

1/3/2007

1/3/2007

2/21/2007

2/21/2007

3/6/2007

3/7/2007

3/21/2007

3/21/2007

4/11/2007

4/11/2007

4/25/2007

5/8/2007

5/8/2007

6/13/2007

6/27/2007

7/9/2007

7/9/2007

8/7/2007

9/5/2007

9/26/2007

Sample ID

BLM High Tide

BLM Low Tide

BLM High Tide

BLM Low Tide

BLM High Tide

BLM Low Tide

BLM High Tide

BLM Low Tide

BLM High Tide

BLM Low Tide

BLM High Tide

BLM Low Tide

BLM High Tide

BLM Low Tide

BLM Low Tide

BLM High Tide

BLM High Tide

BLM Low Tide

BLM High Tide

BLM Low Tide

BLM Low Tide

BLM High Tide

BLM Low Tide

BLM High Tide

BLM High Tide

BLM High Tide

BLM Low Tide

BLM

BLM

BLM Low Tide

Analyte

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

MPN/100mL

< 10.0

< 10.0

< 10.0

< 10.0

10

10

10

< 10.0

< 10.0

< 10.0

20.2

10

30.6

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

10

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

20.2

4) Kentuck Slough [43.43143, 124.17237 – Coos Watershed]

The Kentuck Slough discrete (grab sample) monitoring site is located within the river

mile 1 to 2.2 reach of the tributary. Water quality at this site is both tidally influenced and

watershed driven. Kentuck Slough is a tributary that flows into the Upper Coos Bay

Subsystem. Kentuck Slough is 303(d) listed as being impaired for fecal coliform along

river mile 0.0 to 2.2 during fall, winter, and spring months, indicating a storm event and

watershed driven impairment. Although not listed for sediment or nutrient loading,

cumulative impacts to water quality associated with these watershed dynamics and

current land use have been documented in this reach. The following graphs attempt to

discern baseline trends from the 2007 water year data collected semi-monthly at the

Tribes’ Kentuck Slough sampling location. Each graph compares discrete high tide and

low tide data collected for each parameter throughout the entire water year. This was

Tribal Water Quality Data Summary

October 2006-September 2007

27

done partly to determine whether or not there is a significant tidal influence on any of the

parameters measured by our program. Although these are discrete data, we have created

line graphs in an attempt to facilitate the quick visual identification of potentially

emerging baseline patterns occurring within the 2007 water year and simultaneously

comparing these data to 303(d) and other ODEQ standards.

Kentuck Slough High Tide v. Low Tide Temperature Comparison: Water Year 2007

25

20

DEQ Upper Limit for Salmon and Trout Rearing and Migration:18 °C

Celsius

15

High Tide

Low Tide

10

5

9/30/2007

9/2/2007

8/5/2007

7/8/2007

6/10/2007

5/13/2007

4/15/2007

3/18/2007

2/18/2007

1/21/2007

12/24/2006

11/26/2006

10/29/2006

10/1/2006

0

Date

Tribal Water Quality Data Summary

October 2006-September 2007

28

Kentuck Slough High Tide v. Low Tide Dissolved Oxygen Comparison: Water Year 2007

16

14

Dissolved Oxygen mg/l

12

10

High Tide

Low Tide

8

6

DEQ Lower Dissolved Oxygen Limit for Estuaries: 6.5 mg/l

4

2

9/30/2007

9/2/2007

8/5/2007

7/8/2007

6/10/2007

5/13/2007

4/15/2007

3/18/2007

2/18/2007

1/21/2007

12/24/2006

11/26/2006

10/29/2006

10/1/2006

0

Date

Kentuck Slough Hide Tide v. Low Tide Turbidity Comparison: Water Year 2007

70

60

50

Turbidity NTU

DEQ High Flow NTU 50

40

High Tide

Low Tide

30

20

10

DEQ Low Flow NTU 5

9/30/2007

9/2/2007

8/5/2007

7/8/2007

6/10/2007

5/13/2007

4/15/2007

3/18/2007

2/18/2007

1/21/2007

12/24/2006

11/26/2006

10/29/2006

10/1/2006

0

Date

Tribal Water Quality Data Summary

October 2006-September 2007

29

Kentuck Slough High Tide: Water Year 2007

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Temp

°C

11.88

17.30

10.67

5.44

8.27

10.66

3.31

SpCond

0.12

0.27

0.11

0.08

0.10

0.12

0.05

DO%

Sat

99.70

123.20

93.35

74.60

91.50

96.19

11.24

DO

mg/l

11.47

13.70

11.23

8.22

10.06

10.73

1.38

Sal ppt

pH

0.06

0.13

0.05

0.04

0.05

0.06

0.02

7.62

7.67

7.58

7.37

7.51

7.55

0.09

Turbidity

NTU

7.14

50.53

4.62

2.05

3.32

8.05

11.61

Kentuck Slough Low Tide: Water Year 2007

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Temp

°C

12.82

19.56

9.87

6.89

7.95

10.71

3.52

SpCond

0.14

0.78

0.12

0.07

0.11

0.17

0.18

DO%

Sat

98.80

127.90

95.70

84.10

91.58

98.15

11.49

DO

mg/l

11.20

13.50

10.91

8.87

10.29

10.90

1.05

Sal ppt

pH

0.07

0.38

0.06

0.03

0.05

0.08

0.09

7.51

7.70

7.43

7.22

7.33

7.44

0.14

Turbidity

NTU

7.09

63.18

4.08

2.11

3.81

9.12

15.74

Kentuck Slough Bacteria Data

CTCLUSI began collecting water samples for microbiological analysis of E.coli and

Enterococcus at this site in April 2006. Because the data set for this parameter is

relatively small, no statistical analysis has been applied to these data. The following

tables list all bacteria data collected by our program for this site during water year 2007.

Our program currently compares single grab samples to ODEQ and EPA established

numeric criteria for Freshwaters and Estuarine Waters of either 1) no single sample

exceeding 406 E.coli organisms per 100 milliliters (406 MPN) or 2) The federal

Environmental Protection Agency (EPA) recommendation of the safe standard for

Enterococcus to be no more than 158 colony forming units (158 MPN) per 100 milliliters

of marine water. Of the sites currently monitored by our program, Kentuck Slough has

the highest levels of E. coli and Enterococcus. In addition, this site is the only one where

bacteria standards have been exceeded. Samples collected by our program that met or

exceeded the standards are in italicized and highlighted in grey in the tables below.

Tribal Water Quality Data Summary

October 2006-September 2007

30

Kentuck Slough E. coli Data: Water Year 2007

Sample

Date

10/18/2006

10/18/2006

11/1/2006

11/1/2006

11/20/2006

11/20/2006

12/4/2006

12/4/2006

12/20/2006

12/20/2006

1/3/2007

1/3/2007

2/21/2007

2/21/2007

3/6/2007

3/7/2007

3/21/2007

3/21/2007

4/11/2007

4/11/2007

4/25/2007

4/25/2007

5/8/2007

5/8/2007

6/13/2007

6/27/2007

7/9/2007

7/9/2007

7/25/2007

8/7/2007

9/5/2007

9/26/2007

Sample

ID

KSHT

KSLT1

KSLT

KSHT

KSHT1

KSLT1

KSHT

KSLT1

KSHT

KSLT

KSLT

KSHT

KSLT

KSHT

KSLT

KSHT

KSHT

KSLT

KSLT1

KSHT1

KSHT

KSLT

KSHT

KSLT

KSHT1

KSHT

KSLT

KSHT1

KSLT1

KSLT1

KS1

KSLT1

Analyte

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

MPN/100mL

288.2

132.3

419.5

249.1

305.1

118.7

51.6

30.6

10.0

30.6

132.3

259.0

118.7

72.4

10.0

20.2

52.1

52.1

186.9

30.6

20.1

63.2

30.6

108.9

213.3

74.5

122.3

86.0

97.9

354.5

119.9

73.8

Kentuck Slough Enterococcus Data: Water Year 2007

Sample

Date

10/18/2006

10/18/2006

11/1/2006

11/1/2006

11/20/2006

11/20/2006

12/4/2006

12/4/2006

12/20/2006

Tribal Water Quality Data Summary

October 2006-September 2007

Sample

ID

KSHT

KSLT1

KSHT

KSLT

KSLT1

KSHT1

KSHT

KSLT1

KSLT

Analyte

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

MPN/100mL

121.1

20.2

63.2

143.5

41.3

62.6

10.0

30.6

< 10.0

31

12/20/2006

1/3/2007

1/3/2007

2/21/2007

2/21/2007

3/6/2007

3/7/2007

3/21/2007

3/21/2007

4/11/2007

4/11/2007

4/25/2007

4/25/2007

5/8/2007

5/8/2007

6/13/2007

6/27/2007

7/9/2007

7/9/2007

8/7/2007

9/5/2007

9/26/2007

KSHT

KSLT

KSHT

KSLT

KSHT

KSLT

KSHT

KSLT

KSHT

KSHT1

KSLT1

KSHT

KSLT

KSHT

KSLT

KSHT1

KSHT

KSLT

KSHT1

KSLT1

KS1

KSLT1

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

10.0

63.2

122.3

20.2

30.6

< 10.0

10.0

< 10.0

< 10.0

< 10.0

63.2

< 10.0

< 10.0

< 10.0

10.0

20.2

< 10.0

50.7

159.6

86.0

< 10.0

20.2

5) Sixes River [42.810972, 124.445361 – Sixes Watershed]

The Sixes River stream monitoring site is located approximately 7 river miles from the

mouth of the river. This is a freshwater site and as such water quality at the site is likely

watershed and/or storm event driven. This is a discrete monitoring site (see Stream

Discrete Monitoring under Monitoring Methods and Frequency). The Sixes River

headwaters in the Klamath Mountains and flows into the Pacific Ocean north of Cape

Blanco near Sixes, Oregon, draining approximately 85,645 acres of land. This basin is

one of the largest occurring in the southern Oregon coast. The land uses in the watershed

are dominated by forestry, ranching, and rural residences. The water quality of the Sixes

River and many of its tributaries is 303(d) listed by ODEQ as impaired by elevated

temperature in the summer.

The following graphs attempt to compare baseline trends emerging from the nearly three

years of data collected semi-monthly at the Tribes’ Sixes River sampling location. Each

graph compares discrete data collected for each parameter throughout the entire water

year. Although these are discrete data, we have created line graphs in an attempt to

facilitate the quick visual identification of emerging baseline patterns occurring within

and between water years 2005, 2006 and 2007 while simultaneously comparing these

data to ODEQ standards.

In addition to the semi-monthly sampling, CTCLUSI deploys an automated VEMCO

temperature datalogger at this site during summer months. The VEMCOs are used for

long – term deployment and record the temperature at the site at 30 minute intervals.

Tribal Water Quality Data Summary

October 2006-September 2007

32

VEMCO data collected by our program in the summer of 2007 were viewed and

summarized

using

an

ODEQ

developed

MS

Excel

macro

called

HYDROSTATSimple203.xls.

A single set of macroinvertebrate and basic habitat data were collected at this site in

August of 2007. Because the nature of the data does not allow statistical analysis it is not

included here. This data will be included in later reports after additional collections have

been completed.

Sixes River Summer 2007 VEMCO Temperature Analysis

30.0

Temperature degrees (C)

25.0

20.0

DEQ Standard 18° C

7-Day Avgs

Statewide Std

15.0

10.0

5.0

09/28/07

09/21/07

09/14/07

09/07/07

08/31/07

08/24/07

08/17/07

08/10/07

08/03/07

07/27/07

07/20/07

07/13/07

07/06/07

06/29/07

06/22/07

06/15/07

06/08/07

06/01/07

0.0

Dates

Tribal Water Quality Data Summary

October 2006-September 2007

33

Sixes River Temperature Comparison: Water Years 2005, 2006 and 2007

25

20

Temperature °C

DEQ Upper Limit for Salmon and Trout Migration: 18 °C

15

2007 Water Year

2006 Water Year

2005 Water Year

10

5

0

10/1

10/29

11/26

12/24

1/21

2/18

3/18

4/15

5/13

6/10

7/8

8/5

9/2

9/30

Date (Month/Day)

The following table lists the discrete summer 2005, 2006 and 2007 temperature data

collected by our program at the Sixes River site that either met or exceeded the 18°C

standard for salmon and trout rearing and migration. Throughout the 2005, 2006 and

2007 summer sampling season, all but the early June temperature measurements either

met or exceeded the state standard. All three sets of summer data appear to indicate a

summer warming trend beginning in late May that peaks in August. The VEMCO

temperature data collected throughout August and September 2007 also indicates a

similar warming trend.

Tribal Water Quality Data Summary

October 2006-September 2007

34

Date

7/13/2005

8/10/2005

8/24/2005

9/7/2005

Date

6/21/2006

6/29/2006

7/26/2006

8/9/2006

8/22/2006

9/5/2006

9/25/2006

Date

Time

15:13

15:15

16:00

13:52

Time

15:13

14:30

14:04

14:53

14:10

13:40

14:02

Time

Temp °C

20.5

21.1

21.0

18.9

Temp °C

19.0

19.6

22.0

22.1

20.0

19.2

18.1

Temp °C

6/26/2007

8/7/2007

9/4/2007

12:54

13:00

13:00

18.73

19.71

19.14

Sixes River Dissolved Oxygen Comparison: Water Years 2005, 2006 and 2007

30

Dissolved Oxygen mg/L

25

20

2007 Water Year

2006 Water Year

2005 Water Year

15

10

DEQ Absolute Minimum for Cold-Water Aquatic Life: 6.0 mg/l

5

0

10/1

10/29

11/26

12/24

1/21

2/18

3/18

4/15

5/13

6/10

7/8

8/5

9/2

9/30

Date (Month/Day)

Tribal Water Quality Data Summary

October 2006-September 2007

35

Sixes River Turbidity Comparison: Water Years 2005, 2006 and 2007

600

500

Turbidity NTU

400

2007 Water Year

2006 Water Year

2005 Water Year

300

200

100

0

10/1

10/29

11/26

12/24

1/21

2/18

3/18

4/15

5/13

6/10

7/8

8/5

9/2

9/30

Date (Month/Day)

Sixes River Specific Conductivity Comparison: Water Years 2005, 2006 and 2007

0.12

0.1

SpCond ms/cm

0.08

2007 Water Year

2006 Water Year

2005 Water Year

0.06

0.04

0.02

0

10/1

10/29

11/26

12/24

1/21

2/18

3/18

4/15

5/13

6/10

7/8

8/5

9/2

9/30

Date (Month/Day)

Tribal Water Quality Data Summary

October 2006-September 2007

36

Sixes River pH Comparisons: Water Years 2005, 2006 and 2007

9

DEQ Upper Limit: 8.5 pH

8.5

8

pH

7.5

2007 Water Year

2006 Water Year

2005 Water Year

7

6.5

DEQ Lower Limit: 6.5 pH

6

5.5

5

10/1

10/29

11/26

12/24

1/21

2/18

3/18

4/15

5/13

6/10

7/8

8/5

9/2

9/30

Date (Month/Day)

Tribal Water Quality Data Summary

October 2006-September 2007

37

Sixes River Statistics: Water Year 2005

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Temp

18.6

21.1

13.8

7.1

10.7

14.5

4.8

SpCond

0.1

0.1

0.1

0.1

0.1

0.1

0.0

DO mg/l

16.1

26.6

13.6

8.8

11.5

14.8

5.5

pH

6.9

7.2

6.7

6.5

6.6

6.8

0.3

Turbidity

3.3

169.0

0.9

0.6

0.8

18.8

47.7

Sixes River Statistics: Water Year 2006

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Temp

18.6

22.1

12.2

6.0

9.7

13.9

4.9

SpCond

0.1

0.1

0.1

0.0

0.1

0.1

0.0

DO mg/l

12.1

16.0

11.0

7.4

9.1

10.8

2.1

pH

7.5

7.8

7.4

7.0

7.4

7.4

0.2

Turbidity

7.3

521.0

1.8

0.0

1.0

44.8

122.5

Sixes River Statistics: Water Year 2007

Statistics

Q3

Max

Median

Min

Q1

Mean

Std Dev

Temp

16.9

19.7

12.2

7.2

9.9

13.2

4.2

SpCond

0.1

0.1

0.1

0.0

0.1

0.1

0.0

DO mg/l

11.8

12.3

11.1

7.7

9.4

10.6

1.6

pH

7.4

7.7

7.4

7.1

7.3

7.4

0.2

Turbidity

4.5

17.4

2.8

0.4

0.8

3.5

4.0

Sixes River Bacteria Data

The WQP began collecting water samples for microbiological analysis of E. coli and

Enterococcus at this site in April 2006. Because the data set for this parameter is

relatively small, no statistical analysis has been applied to these data. The following

tables list all bacteria data collected by our program for this site during water year 2007.

Our program currently compares single grab samples to ODEQ and EPA established

numeric criteria for Freshwaters and Estuarine Waters of either 1) no single sample

exceeding 406 E. coli organisms per 100 milliliters (406 MPN) or 2) The federal

Environmental Protection Agency (EPA) recommendation of the safe standard for

Tribal Water Quality Data Summary

October 2006-September 2007

38

Enterococcus to be no more than 158 colony forming units (158 MPN) per 100 milliliters

of marine water. A single sample for Enterococcus collected by our program during water

year 2007 exceeded the criteria.

Sixes River E. coli Data: Water Year 2007

Sample

Date

10/9/2006

10/31/2006

11/17/2006

12/6/2006

12/20/2006

1/2/2007

2/20/2007

3/8/2007

3/19/2007

4/10/2007

5/7/2007

6/11/2007

6/26/2007

7/23/2007

8/7/2007

9/4/2007

9/24/2007

Sample

ID

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Analyte

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

E. coli.

MPN/100mL

20.2

10

< 10.0

20.2

10

< 10.0

51.6

< 10.0

10

30.6

< 10.0

< 10.0

51.6

10

< 10.0

10

331

Sixes River Enterococcus Data: Water Year 2007

Sample

Date

10/9/2006

10/31/2006

11/17/2006

12/6/2006

12/20/2006

1/2/2007

1/29/2007

2/20/2007

3/8/2007

3/19/2007

4/10/2007

5/7/2007

5/29/2007

6/11/2007

6/26/2007

7/23/2007

8/7/2007

9/4/2007

9/24/2007

Tribal Water Quality Data Summary

October 2006-September 2007

Sample

ID

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Sixes

Analyte

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

Enterococci

MPN/100mL

< 10.0

20.1

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

< 10.0

186.9

39

Issues of Tribal Concerns

Tribal water quality issues of concern continue to be the impairments listed on EPA’s

Clean Water Act 303 (d) Lists. These impairments are more than likely attributed to

multiple non-point sources contributions and land use practices within the watersheds.

Point source contributions to these impairments have not been assessed by the WQP. An

inventory of known point sources would be valuable information in addressing tribal

water quality issues. Detailed information on the types of impairments found at each

monitoring site can be found under the Site Description and Location section of this

report.

Conclusion

The completion of this report summarizes the hard work and long hours put in by tribal

staff to develop and implement a WQP that meets both Tribal needs and EPA program

requirements. The WQP continues to evolve to meet new program requirements found

within EPA’s Final Guidance on Awards of Grants to Indian Tribes under Section 106 of

the Clean Water Act for Fiscal Years 2007 and Beyond. With the continued support of

EPA, the WQP will continue to assess, protect, and improve water quality within our

ancestral watersheds.

Tribal Water Quality Data Summary

October 2006-September 2007

40

This is a copy of a public record, reproduced as it was published. It is not legal advice, and it may not be the version a court would rely on. Check the official source before you cite it.

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