# Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

> Briefs, arguments, decisions, and more.

URL: https://www.frixlaw.com/law-library/documents/crs%3AR49070

## Record

- **Collection:** Congressional research report
- **Document type:** Reports
- **Published:** August 4, 2026
- **Citation:** R49070

## Text

Regulation of Hazardous Air Pollutants Under
the Clean Air Act: A Primer
August 4, 2026

Congressional Research Service
https://crsreports.congress.gov
R49070

SUMMARY

Regulation of Hazardous Air Pollutants Under
the Clean Air Act: A Primer

R49070
August 4, 2026
Jonathan D. Haskett

Analyst in Environmental
Under provisions in the Clean Air Act (CAA), the U.S. Environmental Protection Agency (EPA)
Policy
regulates two main classes of air pollutants: criteria air pollutants and hazardous air pollutants
(HAPs). HAPs, which are “air pollutants that can cause serious illnesses, such as cancer, or
death,” are regulated under Section 112 of the CAA. Within Section 112 there are two classes of
HAPs: (1) those that are emitted regularly through ordinary activities such as manufacturing or
the provision of goods and services, and (2) those that, in case of accidental release, may cause
serious injury or death. Each of these classes has its own regulatory framework. HAPs emitted in the course of ordinary
activities are regulated through the setting of National Emission Standards for Hazardous Air Pollutants (NESHAPs).

Regulation of HAPs emissions has a three-phase framework that includes (1) HAPs identification, (2) HAPs regulation, and
(3) review of HAPs emissions standards. In the identification phase, EPA identifies and lists HAPs and their sources. The
CAA includes mechanisms for both listing and delisting HAPs and their sources. In the regulation phase, EPA sets standards
to regulate the emissions of the identified HAPs from the identified sources. These standards are based on technological
capabilities for HAPs emissions control. The standards distinguish between major sources of HAPs (those that emit at or
above the threshold of 10 tons per year of a HAP or 25 tons per year of any combination of HAPs) and area sources (which
emit less than the threshold amounts of HAPs). Major sources are subject to regulation based on the Maximum Achievable
Control Technology (MACT) standard. Area sources are generally subject to regulation based on a less stringent Generally
Available Control Technology (GACT) standard. MACT and GACT are technological standards informed by the availability
and efficacy of emissions control technologies. In developing the standards, EPA considers cost, health, and environmental
effects. In the review phase, the standards are examined to determine their efficacy at controlling emissions of HAPs. For
major sources this includes a technology-based review to determine if emissions control is adequate, followed by a healthbased determination of residual risk, if necessary. Area sources regulated under the GACT standard are subject to
technology-based review but not residual risk review.
Section 112’s prevention of accidental release provisions are intended to prevent or mitigate the accidental and potentially
catastrophic release of hazardous substances that may be lethal or seriously adverse to human health or the environment. EPA
addresses the prevention of catastrophic releases of hazardous substances through a three-part program that includes (1)
listing regulated substances and threshold quantities of the more dangerous hazardous substances; (2) requiring source
facilities to create and register a risk management plan (RMP) that includes a hazard assessment, a program for preventing
accidental releases, and a response program in the event a release occurs; and (3) under a general duty clause, requiring
owners of sources to identify hazards, maintain a safe facility, and prevent or minimize accidental releases.
In the 119th Congress, Members have taken action to modify or oversee EPA’s HAPs regulations under Section 112,
including the regulatory standards that apply to different source types and the associated review processes. For example, in
2024, EPA promulgated a rule that a major source of HAPs subject to CAA Section 112(c)(6) could not transition to
regulation under the GACT standard even if its HAPs emissions fell below the major source emissions threshold. In 2025
Congress passed legislation repealing this rule. Members have also introduced legislation to address EPA’s setting of
NESHAPs for HAPs sources. In 2026 EPA repealed the Mercury and Air Toxics Standards (MATS) NESHAP rule. In 2026,
Congress considered a resolution under the Congressional Review Act (S.J.Res. 188) disapproving the repeal. The motion to
proceed with consideration of S.J.Res. 188 was rejected by the Senate. In the 119th Congress Members have also introduced
legislation to make changes to Section 112 of the CAA, including the addition of substances to the list of regulated HAPs, the
removal of some exemptions for oil and gas sources of HAPs, and the removal of the possibility for citizen suits under
Section 112 of the CAA.

Congressional Research Service

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

Contents
Introduction ..................................................................................................................................... 1
Historical Background ..................................................................................................................... 1
Hazardous Air Pollutants: Regulatory Framework .......................................................................... 3
Overview of the Regulatory Framework ................................................................................... 3
Phases of the Regulatory Framework........................................................................................ 5
Identification ....................................................................................................................... 5
Regulation ........................................................................................................................... 9
Review .............................................................................................................................. 13
Preventing the Catastrophic Release of Hazardous Substances .................................................... 14
HAPs Activities in the 119th Congress........................................................................................... 17

Contacts
Author Information........................................................................................................................ 20

Congressional Research Service

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

Introduction
Hazardous air pollutants (HAPs) are toxic pollutants that can cause serious health effects such as
cancer and birth defects, as well as harmful environmental effects.1 The effects of HAPs are
generally localized, with their highest concentrations occurring near their source.2 In 1970,
Congress recognized HAPs as a distinct class of air pollutants and, in order to protect public
health and welfare, enacted legislation to regulate them as such in Section 112 of the Clean Air
Act (CAA). Congress amended the CAA in 1990, making changes to the regulatory framework
for HAPs. Specifically, these changes were to facilitate the control of HAPs emissions by
identifying HAPs and sources of HAPs, setting emissions standards for HAPs, and reviewing
standards using technology-based and health-risk-based criteria. In addition to these changes,
Congress sought to prevent the catastrophic release of the most dangerous, and potentially lethal,
hazardous substances by the addition of a specific regulatory framework for this purpose.
Since 1990, the U.S. Environmental Protection Agency (EPA) has changed the lists of HAPs and
their source categories, including adding some pollutants and source categories and removing
others, and has changed their regulation.3 In addition to the changes EPA has made, Congress has
taken an active role in the evaluation of Section 112 and the changes EPA has made to the way
the agency regulates HAPs. Congress has taken an interest in recent EPA rulemaking related to
the regulatory impact of HAPs standards. Some Members of Congress introduced challenges to
EPA’s rulemaking under the Congressional Review Act (CRA).4
This report provides an overview of CAA Section 112. It provides a chronology of the
development of Section 112, including the ways in which the 1990 CAA amendments changed
the approach and structure of HAPs regulation. The report next describes the regulation of HAPs
emissions from stationary sources that occur in the course of normal activities, such as
manufacturing or providing goods and services. The report also describes the distinct regulatory
framework that aims to prevent the catastrophic, accidental release of highly dangerous and
potentially lethal hazardous substances. The report concludes with a discussion of congressional
action in the 119th Congress regarding the regulation of HAPs. These actions include the
introduction of legislation to address EPA’s rulemaking on the classification of HAPs sources
within the regulatory framework and the setting of standards for source categories of HAPs. The
concluding section also provides information on legislation Members have introduced to change
some CAA provisions governing the regulation of HAPs.

Historical Background
The CAA designated two categories of air pollutants: criteria pollutants and hazardous air
pollutants.5 Provisions to regulate criteria air pollutants are set out in Section 109 of the CAA,
1 U.S. Environmental Protection Agency (EPA), “Managing Air Quality—Air Pollutant Types,” https://www.epa.gov/

air-quality-management-process/managing-air-quality-air-pollutant-types.
2 Iowa Department of Natural Resources, “Air Pollutants,” https://www.iowadnr.gov/environmental-protection/airquality/air-pollutants.
3 Categories of industrial and other sources that emit hazardous air pollutants (HAPs) are referred to as source
categories. See EPA, “Regulatory and Guidance Information by Topic: Air,” https://www.epa.gov/regulatoryinformation-topic/regulatory-and-guidance-information-topic-air.
4 5 U.S.C. Ch. 8: Congressional Review of Agency Rulemaking.
5 Leslie S. Ritts and Ben Snowden, “The Regulation of Hazardous Air Pollutants,” in The Clean Air Act Handbook, 4th
edition, ed. Julie R. Domike and Alec C. Zacaroli (American Bar Association, 2016), p. 249 (hereinafter Ritts and
Snowden, Clean Air Act Handbook, 2016).

Congressional Research Service

1

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

which requires EPA to establish National Ambient Air Quality Standards (NAAQS) for air
pollutants that endanger public health or welfare.6 Provisions to regulate HAPs are set out in
Section 112 of the CAA.7 CAA Section 112(a)(6) defines a hazardous air pollutant as any air
pollutant listed in CAA Section 112(b). A 1990 House report states that HAPs are “air pollutants
that can cause serious illnesses, such as cancer, or death.”8 HAPs are distinguished from criteria
air pollutants as being “associated with more serious health impacts, such as cancer, neurological
disorders, and reproductive dysfunctions.”9
For each HAP, the 1970 amendments to the CAA required EPA to establish health-based National
Emission Standards for Hazardous Air Pollutants (NESHAPs) that provide “an ample margin of
safety to protect public health.”10 NESHAPs are standards for stationary sources that are intended
to control emissions of HAPs and to protect the public from pollutants that EPA has stated “are
known or suspected to cause cancer or other serious health effects, such as reproductive effects or
birth defects, or adverse environmental effects.”11 From the passage of the 1970 CAA
amendments until the 1990 CAA amendments, EPA would first list a substance as a HAP and
then would set a health-based standard for the substance. Using this health-based standard, from
1970 through 1990, EPA listed and set standards for eight HAPs: beryllium, mercury, vinyl
chloride, asbestos, benzene, radionuclides, arsenic, and coke oven emissions.12 EPA had finalized
standards for seven of these listed HAPs—all those other than coke oven emissions—by 1990
when the CAA was amended. EPA finalized standards for coke oven emissions after 1990.13
The health-based standards of the 1970 CAA amendments required EPA to perform a risk
assessment in order to set emissions control standards for a HAP.14 Such a risk assessment was
required to determine an emissions limit that would “further the protection of public health by
minimizing the health risks.”15 From 1970 until the promulgation of the 1990 amendments, this
risk assessment process included setting limits for so-called nonthreshold carcinogens—those

6 42 U.S.C. §7409. EPA has promulgated National Ambient Air Quality Standards (NAAQS) for six criteria air

pollutants or groups of pollutants: sulfur dioxide (SO2), particulate matter (PM), nitrogen dioxide (NO2), carbon
monoxide (CO), ozone (O3), and lead (Pb). See also EPA, “Criteria Air Pollutants,” https://www.epa.gov/criteria-airpollutants.
7 42 U.S.C. §7412.
8 U.S. Congress, House Committee on Energy and Commerce, Clean Air Act Amendments of 1990, report on H.R. 3030
including additional, supplemental, and dissenting views, 101st Cong,, 2nd sess., H. Rept. 101-490, part 1, May 17,
1990, p. 315. See also Robert J. Martineau Jr. and Ben Snowden, “Hazardous Air Pollutants,” in The Clean Air Act
Handbook, 3rd edition, ed. Julie R. Domike and Alec C. Zacaroli (American Bar Association, 2011), pp. 231-232
(hereinafter Martineau and Snowden, Clean Air Act Handbook, 2011).
9 42 U.S.C. §7412(a). See also House Committee on Energy and Commerce, Clean Air Act Amendments of 1990, report
on H.R. 3030, H. Rept. 101-490, May 17, 1990, p. 315.
10 See also P.L. 91-604, §112(b)(1)(B).
11 EPA, “National Emission Standards for Hazardous Air Pollutants Compliance Monitoring,”
https://www.epa.gov/compliance/national-emission-standards-hazardous-air-pollutants-compliance-monitoring. See
also House Committee on Energy and Commerce, Clean Air Act Amendments of 1990, report on H.R. 3030, H. Rept.
101-490, May 17, 1990, p. 315.
12 Martineau and Snowden, Clean Air Act Handbook, 2011, p. 232.
13 Martineau and Snowden, Clean Air Act Handbook, 2011, p. 232. See also 40 C.F.R. Part 61. National Emissions
Standards for Hazardous Air Pollutants.
14 Martineau and Snowden, Clean Air Act Handbook, 2011, p. 232.
15 EPA, “National Emissions Standards for Hazardous Air Pollutants: Proposed Standard for Vinyl Chloride,” 40
Federal Register 59534, December 24, 1975.

Congressional Research Service

2

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

carcinogens for which EPA could not establish an “atmospheric concentration which poses
absolutely no public health risk.”16
Some commentators have stated that Congress regarded the pace of listing and regulating HAPs
under the framework of the 1970 amendments as excessively slow and as a failure to implement
an air toxics program.17 In 1989, a report by the Senate Environment and Public Works
Committee (EPW) noted the slow pace of the air toxics program under Section 112 in listing
HAPs under the process EPA was following.18 The EPW report proposed restructuring the
regulation of HAPs under Section 112 to be based on source categories of air pollutants rather
than the pollutants themselves.19 The restructuring of Section 112 after this report changed the
basis of regulation from pollutants to source categories of pollutants. Health-based standards were
still preserved; as the report stated, “Authority to issue health-based standards is preserved in
modified form to be used for especially serious pollution problems.”20 In the 1990 amendments to
the CAA, Congress restructured Section 112 by including an initial list of 189 HAPs, as well as a
definition and a regulatory framework for stationary sources of HAPs. In addition to this
regulatory restructuring, these amendments also contained provisions regarding the accidental
release of hazardous substances.21
In the 1990 amendments Congress directed EPA to list major sources and area sources of these
189 HAPs and to regulate emissions of these HAPs from these sources by setting NESHAPs.22
Major sources were defined as those that emit HAPs above a threshold level, while sources of
HAPs that emit below this level were defined as area sources. Detailed descriptions of major
sources and area sources appear later in the “Listing of Source Categories” section of this
report.23

Hazardous Air Pollutants: Regulatory Framework
Overview of the Regulatory Framework
As part of its standard-setting process for developing NESHAPs, EPA includes cost, health,
environmental, and energy considerations.24 In assessing the costs of controlling HAPs, EPA
estimates the cost of pollution control equipment, labor, monitoring, recordkeeping, and
reporting.25 In addition to assessing these costs, the EPA guidance documents also require the
16 Ritts and Snowden, Clean Air Act Handbook, 2016, p. 251. See also 40 Federal Register 59534, December 24, 1975.
17 Ritts and Snowden, Clean Air Act Handbook, 2016, p. 252. See also Robert J. Martineau Jr., “Development of

Emissions Standards for Hazardous Air Pollutants,” in The Clean Air Act Handbook, ed. Robert J. Martineau Jr. and
David P. Novello (American Bar Association, 1998), p. 198.
18 U.S. Congress, Senate Committee on Environment and Public Works, Clean Air Act Amendments of 1989, report to
accompany S. 1630, 101st Cong., 1st sess., S.Rept. 101-228, December 20, 1989, pp. 131-132.
19 Senate Committee on Environment and Public Works, Clean Air Act Amendments of 1989, S.Rept. 101-228, p. 133.
20 Senate Committee on Environment and Public Works, Clean Air Act Amendments of 1989, S.Rept. 101-228, p. 133.
21 42 U.S.C. §7412(r).
22 Clean Air Act (CAA) §112(b)(1). See also Ritts and Snowden, Clean Air Act Handbook, 2016, p. 254.
23 CAA §112(a)(1)-(2).
24 CAA §112(d)(2): “Taking into consideration the cost of achieving such emission reduction, and any non-air quality
health and environmental impacts and energy requirements.” See also CAA §112(f)(2): “Promulgate standards for such
category or subcategory if promulgation of such standards is required in order to provide an ample margin of safety to
protect public health.”
25 John L. Sorrels and Thomas G. Walton, “Chapter 2—Cost Estimation: Concepts and Methodology,” in Economic
(continued...)

Congressional Research Service

3

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

agency to analyze impacts on consumers, small businesses, government entities (including
administrative costs and savings), and international trade, as well as energy and employment
effects.26
In assessing the health and environmental effects of HAPs, EPA takes into account the increased
dangers to human health, including cancer, neurological effects, reproductive effects, and other
health problems.27 In addition, EPA takes into account the potential for environmental dangers to
plants and animals from HAPs, such as HAPs that are ingested and concentrated through the food
chain.28 EPA also takes into account the energy requirements of the pollution control devices and
emissions from the electricity generation for meeting their energy needs.29
Under the amended regulatory structure for limiting the risks of HAPs, EPA distinguishes
between major sources and area sources in the standard-setting development of NESHAPs.30 For
major sources of HAPs, the NESHAPs include both cost and health assessments.31 As an example
of the consideration of health and cost effects, for the major source NESHAP for ferroalloys
production, EPA considered “whether the Ferroalloys Production NESHAP provides an ample
margin of safety to protect public health and whether more stringent standards are necessary to
prevent an adverse environmental effect, taking into consideration costs, energy, safety, and other
relevant factors.”32 For area sources of HAPs, the NESHAPs include cost assessments. As some
commentators have noted, “In setting GACT [Generally Available Control Technology] standards
for area sources EPA can consider costs and technical feasibility.”33 As an example of area source
cost analysis, the Clay Ceramics Manufacturing, Glass Manufacturing, and Secondary
Nonferrous Metals Processing area source NESHAP included estimates of capital costs and

and Cost Analysis for Air Pollution Regulations, EPA, 2017, p. 8, https://www.epa.gov/economic-and-cost-analysisair-pollution-regulations/chapter-2-cost-estimation-concepts-and. See also Larry Sorrels, Regulatory Impact Analysis
for the Final Reclassification of Major Sources as Area Sources Under Section 112 of the Clean Air Act, EPA, EPA452/R-20-005, 2020, p. 9. See also EPA, “Guidelines for Preparing Economic Analyses—Third Edition,” EPA-240-R24-001, 2024.
26 EPA uses a variety of methods, models, and tools to estimate economic impacts. See EPA, “Guidelines for Preparing
Economic Analyses—Third Edition,” EPA-240-R-24-001, 2024. In this source, p. 1-6 references industry sectors,
small businesses, state or local governments, consumers, and workers; p. 8-31 references international trade; p. 5-10
references energy prices; and p. 8-18 references employment effects. See also EPA, “Economic and Cost Analysis for
Air Pollution Regulations,” https://www.epa.gov/economic-and-cost-analysis-air-pollution-regulations.
27 CAA §112(b)(2): “Substances which are known to be, or may reasonably be anticipated to be, carcinogenic,
mutagenic, teratogenic, neurotoxic, which cause reproductive dysfunction, or which are acutely or chronically toxic.”
28 CAA §112(b)(2): “Adverse environmental effects whether through ambient concentrations, bioaccumulation,
deposition, or otherwise.” See also EPA, “Health and Environmental Effects of Hazardous Air Pollutants,”
https://www.epa.gov/haps/health-and-environmental-effects-hazardous-air-pollutants.
29 EPA, “National Emission Standards for Hazardous Air Pollutants: Lime Manufacturing Plants Technology Review,”
89 Federal Register 57738, 57746, July 16, 2024, https://www.govinfo.gov/content/pkg/FR-2024-07-16/pdf/202414692.pdf: “These secondary impacts typically include the energy needed to power the control devices, solid waste and
wastewater generated from operation of the control devices, and air emissions that result from the generation of
electricity used to operate the control devices.”
30 Ritts and Snowden, Clean Air Act Handbook, 2016, pp. 257-258.
31 40 C.F.R. §63.41.
32 EPA, “National Emissions Standards for Hazardous Air Pollutants: Ferroalloys Production,” 80 Federal Register
37366, 37372, June 30, 2015, https://www.govinfo.gov/content/pkg/FR-2015-06-30/pdf/2015-15038.pdf.
33 Roy S. Belden and Angela R. Morrison, “Chapter 8: Control of Hazardous Air Pollutants,” in Clean Air Act
Essentials, 3rd edition (American Bar Association, 2021), p. 172 (hereinafter Belden and Morrison, Clean Air Act
Essentials, 2021). Generally Available Control Technology is described in the “Generally Achievable Control
Technology (GACT) Standards” section of this report.

Congressional Research Service

4

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

annualized costs that included “costs of the control and monitoring equipment, operation and
maintenance expenses, performance testing, and recordkeeping costs.”34
Since the 1990 amendments to the CAA, EPA has taken action to regulate HAPs under the
amended regulatory structure. EPA has revised the list of HAPs by removing four substances
from the list and by adding one substance.35 In addition to modifying the list of HAPs, EPA has
issued final NESHAPS for over 230 source categories of HAPs, including chemical plants,
petroleum refineries, aerospace manufacturers, and steel mills.36 EPA has changed the lists of
source categories—for example, adding marine loading operations and removing petroleum dry
cleaners.37

Phases of the Regulatory Framework
There are three phases to the regulatory framework for limiting emissions of HAPs from
stationary sources: identification, regulation, and review.38 In the identification phase, EPA
identifies and lists HAPs and the major sources and area sources that emit these listed HAPs. In
the regulation phase, EPA sets control standards to regulate the emissions of the listed HAPs from
the listed sources. In the review phase, EPA subjects major source standards to an initial
technology and residual health risk review to determine if the standards are adequate for
controlling emissions of HAPs to protect public health and the environment. Subsequent reviews
do not include the health-based residual risk assessment. For area sources, all reviews are
technology-based.

Identification
The identification phase of the regulatory framework involves listing HAPs and listing source
categories that emit those HAPs.

Listing of HAPs
The first main part of the identification phase is listing HAPs. As part of the 1990 amendments to
the CAA, Congress included an initial list of 189 HAPs in statute.39 The list included pollutants
believed to be harmful to public health or the environment, those “air pollutants that can cause
serious illnesses, ... or death,”40 and as noted earlier, those “often associated with more serious
34 EPA, “National Emission Standards for Hazardous Air Pollutants for Area Sources: Clay Ceramics Manufacturing,

Glass Manufacturing, and Secondary Nonferrous Metals Processing,” 72 Federal Register 73180, 73194, December 26,
2007, https://www.govinfo.gov/content/pkg/FR-2007-12-26/pdf/E7-24720.pdf. See also EPA, “Clay Ceramics
Manufacturing Area Sources: National Emission Standards for Hazardous Air Pollutants (NESHAP)—Rule History:
12/26/2007 Final Rule,” https://www.epa.gov/stationary-sources-air-pollution/clay-ceramics-manufacturing-areasources-national-emission.
35 EPA, “Amendments to the List of Hazardous Air Pollutants (HAP) of Section 112(b) of the Clean Air Act (CAA),”
https://www.epa.gov/haps/amendments-list-hazardous-air-pollutants-hap-section-112b-clean-air-act-caa.
36 EPA, “National Emission Standards for Hazardous Air Pollutants (NESHAP),” https://www.epa.gov/stationarysources-air-pollution/national-emission-standards-hazardous-air-pollutants-neshap-8.
37 Ritts and Snowden, Clean Air Act Handbook, 2016, p. 263.
38 Air Knowledge: A Partnership Program of U.S. EPA, “TOXC102-CI: Regulation of Hazardous Air Pollutants
(HAPs) from Stationary Sources,” https://airknowledge.gov/ILT/TOXC102/Current/CI/
01TOXC102_CI_Course_PowerPoint.pdf (hereinafter Air Knowledge EPA, “TOXC102”).
39 CAA §112(b)(1). See also Belden and Morrison, Clean Air Act Essentials, 2021, p. 160.
40 House Committee on Energy and Commerce, Clean Air Act Amendments of 1990, report on H.R. 3030, H. Rept. 101490, May 17, 1990, p. 315.

Congressional Research Service

5

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

health impacts, such as cancer, neurological disorders, and reproductive dysfunctions.”41 The
listed HAPs have a variety of chemical and physical characteristics. Some are gases under
ambient conditions while others occur as vapors or mineral fibers. The list of HAPs includes both
individual chemical compounds (such as acetaldehyde) and groups of chemical compounds (such
as arsenic compounds).42 In addition to the variety of chemical and physical characteristics, listed
HAPs are associated with a multitude of industrial processes that include fiber production,
pharmaceutical production, and the production of organic and inorganic chemicals, among
others.43
The CAA includes provisions for adding or removing pollutants from the list through a
rulemaking process. This process is triggered by a periodic review of the list by the EPA
Administrator.44 The Administrator may add pollutants that
present, or may present, through inhalation or other routes of exposure, a threat of adverse
human health effects (including, but not limited to, substances which are known to be, or
may reasonably be anticipated to be, carcinogenic, mutagenic, teratogenic, neurotoxic,
which cause reproductive dysfunction, or which are acutely or chronically toxic) or adverse
environmental effects whether through ambient concentrations, bioaccumulation,
deposition, or otherwise.45

The Administrator may remove a pollutant from the list if it is determined that “there is adequate
data on the health and environmental effects of the substance to determine that emissions,
ambient concentrations, bioaccumulation or deposition of the substance may not reasonably be
anticipated to cause any adverse effects to the human health or adverse environmental effects.”46
Modifications to the list, either additions or deletions, may occur through a determination by the
EPA Administrator, and alternatively, any person may petition the EPA Administrator to modify
the list.47
Since 1990, EPA has made five modifications to the list. Specifically, EPA delisted four
substances and added one substance.48 The substances that have been delisted since 1990 are
caprolactam (1996), surfactant alcohol ethoxylates and their derivatives (2000), ethylene glycol
monobutyl ether (2004), and methyl ethyl ketone (2005).49 One substance, 1-bromopropane, was
added in 2022.50

41 House Committee on Energy and Commerce, Clean Air Act Amendments of 1990, report on H.R. 3030, H. Rept. 101-

490, May 17, 1990, p. 315. See also Martineau and Snowden, Clean Air Act Handbook, 2011, p. 236.
42 42 U.S.C. §7412(b)(1).
43 EPA, “Initial List of Categories of Sources Under Section 112(c)(1) of the Clean Air Act Amendments of 1990,” 57
Federal Register 31576, 31592, July 16, 1992, https://archives.federalregister.gov/issue_slice/1992/7/16/3157431611.pdf.
44 42 U.S.C. §7412(b)(2).
45 42 U.S.C. §7412(b)(2).
46 42 U.S.C. §7412(b)(3)(C).
47 42 U.S.C. §7412(b)(3).
48 EPA, “Amendments to the List of Hazardous Air Pollutants (HAP) of Section 112(b) of the Clean Air Act (CAA),”
https://www.epa.gov/haps/amendments-list-hazardous-air-pollutants-hap-section-112b-clean-air-act-caa (hereinafter
EPA, “Amendments to the List of HAPs”).
49 EPA, “Amendments to the List of HAPs.”
50 EPA, “Amendments to the List of HAPs.”

Congressional Research Service

6

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

Listing of Source Categories
The second main part of the identification phase is listing stationary sources of these HAPs and
classifying them as major sources and area sources.51 As noted above, individual facilities that
emit these listed HAPs are classified as either major sources or as area sources for regulation
based on their level of HAPs emissions.52 Major sources are those that, per year, emit or have the
potential to emit 10 tons or more of any HAP and 25 tons or more of a combination of HAPs.53
Area sources are those that emit HAPs below the threshold level defined for major sources.54 EPA
establishes different NESHAPs for major sources and for area sources.
Sources that typically have emissions at or above the threshold level, and can therefore be
considered major sources, include petroleum refineries, hazardous waste combustors, and
integrated iron and steel manufacturing facilities.55 Examples of sources that typically have
emissions below the threshold level, and can therefore be considered area sources, include glass
manufacturing plants, paints and allied products manufacturing plants, and gasoline dispensing
facilities.56 Some source categories, such as boilers, have both major source and area source
standards.57 EPA is required to list all source categories of major sources that emit HAPs listed in
Section 112(b).58 EPA is required to list all categories of area sources “which the Administrator
finds present a threat of adverse effects to human health or the environment (by such sources
individually or in the aggregate) warranting regulation under this section.”59 EPA used a variety
of emissions data, including “reports, studies, memoranda and other emissions data sources,” to
identify sources of listed HAPs that were then added to the list of categories.60
In addition to identifying major source categories and area source categories, EPA has
responsibilities for addressing hazardous air pollution in urban areas. Specifically, EPA must list
“sufficient categories or subcategories of area sources to ensure that area sources representing 90
percent of the area source emissions of the 30 hazardous air pollutants that present the greatest
threat to public health in the largest number of urban areas are subject to regulation under this
section.”61 To meet this listing requirement, EPA identified a subset of 30 HAPs from area sources
51 42 U.S.C. §§7412(a)(1), 7412(a)(2), and 7412(d)(1). See also U.S. Department of Energy, “National Emission

Standards for Hazardous Air Pollutants (NESHAP) Compliance Monitoring,” https://www.energy.gov/ehss/articles/
national-emission-standards-hazardous-air-pollutants-neshap-compliance-monitoring. Listed HAPs are those listed in
42 U.S.C. §7412(b).
52 42 U.S.C. §§7412(a)(1) and 7412(a)(2).
53 42 U.S.C. §7412(a)(1).
54 42 U.S.C. §7412(a)(2). See also 42 U.S.C. §7412(k)(1-3).
55 EPA, “National Emission Standards for Hazardous Air Pollutants (NESHAP).”
56 EPA, “National Emission Standards for Hazardous Air Pollutants (NESHAP).”
57 EPA, “Industrial, Commercial, and Institutional Boilers and Process Heaters: National Emission Standards for
Hazardous Air Pollutants (NESHAP) for Major Sources,” https://www.epa.gov/stationary-sources-airpollution/industrial-commercial-and-institutional-boilers-and-process-0. See also EPA, “Industrial, Commercial, and
Institutional Area Source Boilers: National Emission Standards for Hazardous Air Pollutants (NESHAP),”
https://www.epa.gov/stationary-sources-air-pollution/industrial-commercial-and-institutional-area-source-boilers.
58 42 U.S.C. §7412(c). EPA is required to list sources that emit one or more of the HAPs included in the CAA in
Section 112(b). EPA does not use the Standard Industrial Code (SIC) system to identify categories of emissions
sources; sources are instead identified by their subpart identified in the Code of Federal Regulations. For example, Iron
and Steel Foundries (major sources) have the identifier 40 C.F.R. §63 Subpart EEEEE. See EPA, “National Emission
Standards for Hazardous Air Pollutants (NESHAP).”
59 42 U.S.C. §7412(c)(3).
60 EPA, “Documentation for Developing the Initial Source Category List,” EPA-450/3-91-030, 1992, p. 2-2.
61 42 U.S.C. §7412(c)(3). See also EPA, “Urban Air Toxic Pollutants,” https://www.epa.gov/haps/urban-air-toxicpollutants; and EPA, “Area Sources of Urban Air Toxics,” https://www.epa.gov/haps/area-sources-urban-air-toxics.

Congressional Research Service

7

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

that posed the greatest threat to public health in urban areas from the HAPs listed under Section
112(b)(1).62 In evaluating the relative hazards of the HAPs EPA considered the “physical
properties, sources of exposure, [and] health hazards”63 of the HAPs and estimated emissions to
develop this list.64
Under Section 112(c)(6), EPA is required to list source categories and subcategories of seven
“specific persistent and bioaccumulative pollutants.”65 These pollutants—alkylated lead
compounds, polycyclic organic matter, hexachlorobenzene, mercury, polychlorinated biphenyls,
2,3,7,8-tetrachlorodibenzofurans, and 2,3,7,8-tetrachlorodibenzo-p-dioxin—are specified in
statute. EPA has stated that these specific pollutants have been identified for their persistence in
the environment and their tendency to bioaccumlate.66 For these substances EPA is required to
“list categories and subcategories of sources assuring that sources accounting for not less than 90
per centum of the aggregate emissions of each such pollutant are subject to standards under
subsection (d)(2) or (d)(4).”67
Major source and area source categories and subcategories can be added to or deleted from the
list of HAPs emissions sources.68 The statute does not define differences between categories and
subcategories, but EPA may consider “whether there were differences in processes, sizes, or other
factors affecting emissions and control technologies that would warrant subcategorization.”69
Under the 1990 CAA amendments, the EPA Administrator can add categories and subcategories
to the list at any time using the same criteria regarding emissions of HAPs used in the formation
of the initial list.70 These are the criteria used in listing major and area sources stated in Sections
112(c)(1) and 112(c)(3). As an example of listing, marine loading operations were added as a
major source category in 1993.71 If a source category is listed due to emissions of a unique
chemical substance that can be shown not to “reasonably be anticipated to cause any adverse
effects to the human health or adverse environmental effects,” the EPA Administrator can delete
the source category.72 In the case of a cancer risk, the source category can be delisted if the
lifetime risk from emissions from this category is 1 in 1 million or less.73 In the case of other,
noncancer health and environmental risks where no source emissions in the category exceed a
level needed to protect public health and the environment, the source category can be delisted.74
Deletions can be made by the EPA Administrator based on the Administrator’s own decision or
62 42 U.S.C. §7412(c)(3)(i-ii). See also EPA, National Air Toxics Program: The Integrated Urban Strategy Report to

Congress, EPA-453/R-99-007, 2000, p. 3-1 (hereinafter EPA, Urban Strategy Report). See also EPA, “About Urban
Air Toxics,” https://www.epa.gov/haps/about-urban-air-toxics.
63 EPA, Urban Strategy Report, p. 3-1.
64 EPA, Urban Strategy Report, p. 3-1.
65 EPA, “Review of Final Rule Reclassification of Major Sources as Area Sources Under Section 112 of the Clean Air
Act,” 89 Federal Register 73293, September 10, 2024, https://www.govinfo.gov/content/pkg/FR-2024-09-10/pdf/202420074.pdf. See also 42 U.S.C. §7412(c)(6).
66 42 U.S.C. §7412(c)(6). See also Air Knowledge EPA, “TOXC102.”
67 42 U.S.C. §7412(c)(6).
68 42 U.S.C. §7412(c)(5) and 42 U.S.C. §7412(c)(9).
69 72 Federal Register 53825, September 20, 2007.
70 42 U.S.C. §7412(c)(5).
71 EPA, “Listing of Marine Vessel Loading Operations Under Section 112(c) of the Clean Air Act,” 58 Federal
Register 60021, November 12, 1993, https://archives.federalregister.gov/issue_slice/1993/11/12/6001760022.pdf#page=5.
72
42 U.S.C. §7412(b)(3)(C), 42 U.S.C. §7412(b)(3)(D), and 42 U.S.C. §7412(c)(9).
73 42 U.S.C. §7412(c)(9)(B)(i).
74 42 U.S.C. §7412(c)(9)(B)(ii).

Congressional Research Service

8

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

based on a petition by a member of the public.75 As an example of delisting, the source category
of uranium hexafluoride production was removed in 2002.76

Regulation
The second phase of the regulatory framework is the establishment of standards to limit and
control emissions of HAPs. The framework provides both technology-based and health-based
standards intended to reduce the adverse effects of HAPs.77 For HAPs for which a health
threshold is in place, “The Administrator may consider such threshold level, with an ample
margin of safety, when establishing emission standards under this subsection.”78
The framework distinguishes between major sources and area sources of HAPs, and provides
mechanisms for regulating and controlling emissions of HAPs from these sources.79 The
framework also specifically regulates the subcategory of area sources “representing 90 percent of
the area source emissions of the 30 hazardous air pollutants that present the greatest threat to
public health in the largest number of urban areas,” the listing of which is described in the
previous section.80
The establishment of standards described in this section of the report and the review process
described in a subsequent section are the components of an iterative regulatory process to develop
standards for emissions of HAPs from stationary sources. The first stage involves establishing
technology-based standards. The second stage requires the EPA to review the standards every
eight years to determine if there are “developments in practices, processes, or control
technologies” that may be appropriate to incorporate into the standards.81 The second stage also
involves a one-time health-based evaluation of the standards that are based on Maximum
Achievable Control Technology (MACT) to determine whether additional standards are needed to
address any remaining residual risk associated with HAPs emissions.82 Based on the results of the
review, EPA may be directed to revise the standards.83
The standards developed by EPA are promulgated as NESHAPs for the source categories and
subcategories of listed HAPs.84 NESHAPs for major and area source categories use different

75 42 U.S.C. §7412(c)(9)(B).
76 EPA, “National Emission Standards for Hazardous Air Pollutants: Revision of Source Category List Under Section

112 of the Clean Air Act,” 67 Federal Register 6521, February 12, 2002, https://www.govinfo.gov/content/pkg/FR2002-02-12/pdf/02-3348.pdf.
77 Ritts and Snowden, Clean Air Act Handbook, 2016, p. 253.
78 42 U.S.C. §7412(d)(4). The term health threshold appears in the statute but is not defined in the statute. EPA uses
values from the EPA’s Integrated Risk Information System (IRIS) as part of the regulatory process promulgated under
CAA Section 112. See EPA, “Integrated Risk Information System,” https://www.epa.gov/iris. According to Mills and
Foureman, IRIS contains “[a]gency consensus scientific positions and quantitative values on cancer and noncancer
health effects that may result from lifetime oral or inhalation exposure to specific chemical substances in the
environment.” Amy Mills and Gary L. Foureman, “US EPA’s IRIS Pilot Program: Establishing IRIS as a Centralized,
Peer-Reviewed Data Base with Agency Consensus1,” Toxicology, vol. 127, no. 1 (1998), p. 85.
79 Ritts and Snowden, Clean Air Act Handbook, 2016, p. 254.
80 42 U.S.C. §7412(c)(3). See also EPA, “Urban Air Toxic Pollutants,” https://www.epa.gov/haps/urban-air-toxicpollutants”; and Ritts and Snowden, Clean Air Act Handbook, 2016, p. 300.
81 42 U.S.C. §7412(d)(6).
82
42 U.S.C. §7412(f)(2). See also Belden and Morrison, Clean Air Act Essentials, 2021, p. 174.
83 Ritts and Snowden, Clean Air Act Handbook, 2016, p. 292.
84 42 U.S.C. §7412(c)(2). See also 42 U.S.C. §7412(d).

Congressional Research Service

9

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

technological emissions control standards, described below. EPA has promulgated NESHAPs for
over 100 source categories.85

Maximum Achievable Control Technology (MACT) Standards
NESHAPs for major sources are promulgated under MACT standards.86 For MACT standards,
EPA is required to set standards for sources of the listed pollutants that achieve “the maximum
degree of reduction in emissions” taking into account cost and “non-air-quality health and
environmental impacts and energy requirements.”87 The Senate Committee on Environment and
Public Works has stated, “In setting MACT standards, EPA is to give priority to pollution
prevention measures like process changes and materials substitution.”88
EPA established MACT standards for both new and existing sources of HAPs emissions. The
MACT standards for new sources are based on “emissions levels that are already being achieved
by the best-controlled and lowest-emitting sources in an industry.”89 The MACT standards for
existing sources, where there are more than 30 sources, are based on “the level of performance
already achieved by the average of the top-performing 12 percent of similar sources.”90 The
MACT standards for existing sources where there are fewer than 30 sources are set based on “the
best average emission limitation achieved by the best performing 5 sources.”91 These MACT
standards set minimum levels of emissions control known as the “MACT floor.”92 States may set
emissions standards for HAPs that are more stringent than the MACT floor, but such standards
may not be less stringent.93 As discussed in the next section, MACT standards are subject to a
review and revision process by EPA every eight years that includes a technology assessment.94
MACT standards are also subject to a subsequent, one-time, health-based risk assessment.95
For some source categories the NESHAP includes standards for both major and area sources. For
example, the NESHAP for perchloroethylene (PCE) dry cleaning facilities includes MACT
standards for major sources of dry cleaning using PCE, and for area sources of dry cleaning using
PCE includes Generally Achievable Control Technology (GACT) standards, which are described
in the following section. 96 In some cases the MACT and GACT standards are equally stringent.
For example, EPA determined that the major source (MACT) and area source (GACT) standards
for hazardous waste combustors should be equally stringent.97
85 EPA, “National Emission Standards for Hazardous Air Pollutants (NESHAP).”
86 42 U.S.C. §7412(d)(2).
87 42 U.S.C. §7412(d)(2).
88 Senate Committee on Environment and Public Works, Clean Air Act Amendments of 1989, S. Rept. 101-228, p. 148.
89 EPA, “Risk and Technology Review of the National Emissions Standards for Hazardous Air Pollutants,”

https://www.epa.gov/stationary-sources-air-pollution/risk-and-technology-review-national-emissions-standardshazardous. See also 42 U.S.C. §7412(d)(3).
90 EPA, “Setting Emissions Standards for Major Sources of Toxic Air Pollutants,” https://www.epa.gov/clean-air-actoverview/setting-emissions-standards-major-sources-toxic-air-pollutants. See also 42 U.S.C. §7412(d)(3)(A).
91 42 U.S.C. §7412(d)(3)(B).
92 Ritts and Snowden, Clean Air Act Handbook, 2016, p. 280.
93 42 U.S.C. 85 Subchapter I, Part A, §7416. Retention of State Authority.
94 42 U.S.C. §7412(d)(6). See also 42 U.S.C. §7412(f)(2).
95 42 U.S.C. §7412(d)(6). See also 42 U.S.C. §7412(f)(2).
96 EPA, “National Emission Standards for Hazardous Air Pollutants: National Perchloroethylene Air Emission
Standards for Dry Cleaning Facilities Technology Review,” 90 Federal Register 1041, 1043, January 7, 2025,
https://www.govinfo.gov/content/pkg/FR-2025-01-07/pdf/2024-31223.pdf.
97 Belden and Morrison, Clean Air Act Essentials, 2021, p. 172.

Congressional Research Service

10

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

Generally Achievable Control Technology (GACT) Standards
The EPA Administrator can promulgate MACT standards for area sources of HAPs, but the CAA
also provides the Administrator with the option of promulgating GACT standards for area
sources.98 As GACT standards are less strict than MACT standards, some commentators have
stated that they may facilitate the development of standards for area sources.99 EPA has a degree
of flexibility in determining GACT standards based on cost and technical feasibility.100 The
GACT standards reflect the application of “methods, practices and techniques which are
commercially available and appropriate for application by the sources in the category considering
economic impacts and the technical capabilities of the firms to operate and maintain the
emissions control systems.”101
A GACT standard does not have the same requirements as a MACT standard.102 For example, a
GACT standard does not have a minimum emissions control level or “floor” as a MACT standard
has.103 Another difference is that while area source NESHAPs under the GACT standard are
subject to subsequent technology-based review, they are not subject to the subsequent healthbased risk assessment to which major source NESHAPs are subject (as described in the “Review”
section).104
The regulation of area sources includes specific provisions to address HAPs in urban areas, as the
statute states that “emissions of hazardous air pollutants from area sources may individually, or in
the aggregate, present significant risks to public health in urban areas.”105 As noted in the
previous section, EPA is required to “identify not less than 30 hazardous air pollutants which, as
the result of emissions from area sources, present the greatest threat to public health in the largest
number of urban areas.”106 Having identified the 30 HAPs that present the greatest danger to
public health in urban areas, EPA is directed to regulate the area sources responsible for the
emission of 90% of these 30 identified HAPs.107 To address these pollutants, in 1999, EPA
developed and implemented the Integrated Urban Air Toxics Strategy. The strategy includes
•
•

•

source-specific and sector-based standards, which include regulatory activities
designed to address air toxics on a national level;
national, regional, and community-based initiatives focusing on multimedia and
cumulative risks to address and resolve issues at the local level through
partnerships with state, tribal, and local governments and community
stakeholders;
national-level air toxics assessments using analytical tools such as emissions
inventories, monitoring networks, and analytical assessments to identify risks,
track progress, and help prioritize efforts; and

98 42 U.S.C. §7412(d)(2). See also 42 U.S.C. §7412(f) and 42 U.S.C. §7412(d)(5).
99 Ritts and Snowden, Clean Air Act Handbook, 2016, p. 300.
100 Belden and Morrison, Clean Air Act Essentials, 2021, p. 172.
101 Senate Committee on Environment and Public Works, Clean Air Act Amendments of 1989, S.Rept. 101-228, p. 171.
102 Ritts and Snowden, Clean Air Act Handbook, 2016, p. 300.
103 Belden and Morrison, Clean Air Act Essentials, 2021, p. 172.
104 Ritts and Snowden, Clean Air Act Handbook, 2016, p. 300. See also 42 U.S.C. §7412(d)(5).
105 42 U.S.C. §7412(k)(1).
106 42 U.S.C. §7412(k)(3)(B)(i). See also EPA, “Urban Air Toxic Pollutants,” https://www.epa.gov/haps/urban-air-

toxic-pollutants; and EPA, “Area Sources of Urban Air Toxics,” https://www.epa.gov/haps/area-sources-urban-airtoxics.
107 42 U.S.C. §7412(c)(3).

Congressional Research Service

11

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

•

outreach and education consisting of activities involving state, tribal, and local
agencies, cities, communities, and other groups and organizations that help EPA
implement its program to reduce air toxics emissions.108

“Once-In Always-In” MACT Guidance
The “once-in always-in” issue centers on whether a source that has been classified as a major
source subject to MACT standards can become an area source not subject to MACT standards by
reducing HAPs emissions below the major source threshold.109 In 1995, EPA issued a guidance
memorandum to clarify when a major source of HAPs could become an area source rather than
comply with major source requirements by obtaining federally enforceable limits on its potential
to emit HAPs.110 This memorandum stated that, once a source was subject to MACT standards as
a major source, it remained subject to MACT standards and could not become an area source not
subject to MACT standards, even if it reduced emissions below the major source threshold.111
In 2018 EPA issued a guidance memorandum withdrawing its “once-in always-in policy,” stating
that “sources of hazardous air pollutants previously classified as ‘major sources’ may be
reclassified as ‘area sources’ at any time, provided the facility limits its potential to emit below
major source thresholds.”112 In 2020 EPA promulgated a rule that allowed for reclassification
from major source to area source if the source emissions fell below the major source threshold.113
In 2024, however, EPA promulgated a rule that stated that sources of the seven toxic air pollutants
listed in Section 112(c)(6) of the CAA, once having been listed as major sources subject to
MACT standards, would have to continue to comply with MACT standards even if their
emissions fell below threshold levels and they were reclassified as area sources.114 In 2025
Congress enacted legislation (P.L. 119-20) disapproving the rule. This statute repealed the “oncein always-in” rule for sources of these seven HAPs, making it possible for them to be reclassified
as area sources if their emissions were below threshold amounts, and therefore to be no longer
subject to MACT standards.115

108 EPA, “Integrated Urban Air Toxics Strategy,” https://www.epa.gov/haps/integrated-urban-air-toxics-strategy.
109 Harvard Law School Environmental and Energy Law Program, “Once In Always In Guidance for Major Sources

Under the Clean Air Act,” https://eelp.law.harvard.edu/tracker/once-in-always-in-guidance-for-major-sources-underthe-clean-air-act/.
110 Memorandum from J. Seitz, Director, EPA Office of Air Quality Planning and Standards, “Potential to Emit for
MACT Standards—Guidance on Timing Issues,” 1995, https://www.epa.gov/sites/default/files/201802/documents/pteguid.pdf (hereinafter EPA, MACT Guidance, 1995).
111 Ritts and Snowden, Clean Air Act Handbook, 2016, p. 261.
112 EPA, “Guidance for Reclassification of Major Sources as Area Sources Under Section 112 of the Clean Air Act,”
https://www.epa.gov/stationary-sources-air-pollution/guidance-reclassification-major-sources-area-sources-undersection. See also EPA, “Reclassification of Major Sources as Area Sources Under Section 112 of the Clean Air Act,”
Guidance Memorandum, 2018.
113 EPA, “Reclassification of Major Sources as Area Sources Under Section 112 of the Clean Air Act,” 85 Federal
Register 73854, November 19, 2020, https://www.govinfo.gov/content/pkg/FR-2020-11-19/pdf/2020-22044.pdf.
114 EPA, “Review of Final Rule Reclassification of Major Sources as Area Sources Under Section 112 of the Clean Air
Act,” 89 Federal Register 73293, September 10, 2024, https://www.govinfo.gov/content/pkg/FR-2024-09-10/pdf/202420074.pdf. EPA, “Review of Final Rule Reclassification of Major Sources as Area Sources Under Section 112 of the
Clean Air Act,” 89 Federal Register 73293, 73295. See also EPA, “EPA Proposes to Strengthen 2020 Air Toxics
Regulation to Prevent Emissions Increases and Protect Public Health,” press release, September 22, 2023,
https://www.epa.gov/newsreleases/epa-proposes-strengthen-2020-air-toxics-regulation-prevent-emissions-increasesand.
115 EPA, “Congressional Review Act Revocation of 2024 Review of Final Rule Reclassification of Major Sources as
Area Sources Under Section 112 of the Clean Air Act,” 91 Federal Register 58, January 2, 2026.

Congressional Research Service

12

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

Review
The third phase of the regulatory framework for limiting HAPs emissions from stationary sources
is the iterative process of review to determine if there is sufficient control of risk from HAPs.116 If
EPA determines during the review process that controls are insufficient, the Administrator may
choose to revise the standards through the process described in the previous section. This review
process has both technology-based and health-based review elements.117 In the 1990 CAA
amendments Congress included an iterative review process that included health and
environmental risk assessments to determine if the technology-based standards were sufficient to
control the risks from HAPs.118
Eight years after promulgating a NESHAP, EPA is required to review the standard and determine
if revision is necessary.119 There are two elements of this review: a technology review and a
health-based residual risk review.120 The technology review is required for both MACT- and
GACT-based NESHAPs for major and area sources.121 The technology review is the first stage of
the review process and examines whether there are “developments in practices, processes, or
control technologies” that may be appropriate to incorporate into the standards.122 This review
includes an evaluation of whether more efficient, cost-effective technologies have become
available, indicating a need for tighter standards.123 The technology review is required to be
repeated no less often than every eight years after the NESHAP is promulgated.124
The health-based residual risk review is required within eight years after the NESHAP is
promulgated and occurs only once.125 The residual risk review is required for all sources for
which MACT standards have been established.126 No residual risk review is required for area
sources subject only to GACT standards.127 In the residual risk analysis, EPA is required to review
any “residual risk” to public health and the environment that remains after implementation of
MACT standards.128 EPA must promulgate emissions standards necessary to provide “an ample
116 Air Knowledge EPA, “TOXC102.”
117 EPA, “Risk and Technology Review of the National Emissions Standards for Hazardous Air Pollutants,”

https://www.epa.gov/stationary-sources-air-pollution/risk-and-technology-review-national-emissions-standardshazardous.
118 Ritts and Snowden, Clean Air Act Handbook, 2016, p. 253. See also, EPA, “Risk and Technology Review of the
National Emissions Standards for Hazardous Air Pollutants.”
119 42 U.S.C. §7412(d)(6).
120 EPA, “Risk and Technology Review of the National Emissions Standards for Hazardous Air Pollutants.”
121
42 U.S.C. §7412(f)(2) and 42 U.S.C. § 7412(d)(6). See also EPA, “National Emission Standards for Hazardous Air
Pollutants: Iron and Steel Foundries Major Source Residual Risk and Technology Review and Area Source Technology
Review,” 85 Federal Register 56080, 56082, September 10, 2020, https://www.govinfo.gov/content/pkg/FR-2020-0910/pdf/2020-14143.pdf.
122 42 U.S.C. §7412(d)(6).
123 EPA, “Setting Emissions Standards for Major Sources of Toxic Air Pollutants,” https://www.epa.gov/clean-air-actoverview/setting-emissions-standards-major-sources-toxic-air-pollutants.
124 42 U.S.C. §7412(d)(6).
125 42 U.S.C. §7412(f)(2). See also Ritts and Snowden, Clean Air Act Handbook, 2016, p. 253. See also EPA, “Risk
and Technology Review of the National Emissions Standards for Hazardous Air Pollutants.”
126 Ritts and Snowden, Clean Air Act Handbook, 2016, p. 292.
127 EPA, “Review of Final Rule Reclassification of Major Sources as Area Sources Under Section 112 of the Clean Air
Act,” 88 Federal Register 66336, 66339, September 27, 2023, https://www.govinfo.gov/content/pkg/FR-2023-09-27/
pdf/2023-21041.pdf: “Unlike MACT standards required for major sources, GACT standards are not required to be
updated pursuant to residual risk reviews.”
128 Belden and Morrison, Clean Air Act Essentials, 2021, p. 174.

Congressional Research Service

13

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

margin of safety” to protect public health based on the residual risk review or determine that the
standards being reviewed already provide such a margin without any revision.129
EPA’s interpretation of the requirement to “provide an ample margin of safety to protect public
health” has effectively established a range of permissible risk levels within which it may set
residual risk standards for carcinogenic HAPs.130 EPA generally uses the same approach that the
agency used in the 1989 benzene NESHAP.131 Following the benzene NESHAP, EPA has
established a three-tiered regulatory framework for setting standards for carcinogens, known as
the “fuzzy bright line.”132 The approach to addressing residual risk by EPA is determined by the
level of risk:
EPA must eliminate risks above one hundred in one million (1 in 10,000), does not have
to address risks below one in one million (1 in 1,000,000), and has discretion to set a
residual risk standard somewhere in between.... In a second step, EPA can consider whether
providing the public with “an ample margin of safety” requires risks to be reduced further
than this “safe” level, based on EPA’s consideration of health information and other factors
such as cost, economic impact, and technological feasibility.133

For MACT standards EPA combines the two types of review—that is, the technology assessment
and the residual risk review—into a joint Risk and Technology Review (RTR), in the review at
the end of the first eight-year period for MACT standards.134 As noted above, subsequent reviews
do include the technological assessments after the first review but do not include the residual risk
assessment in subsequent reviews.135

Preventing the Catastrophic Release of Hazardous
Substances
Section 112(r) of the CAA includes distinct provisions to prevent and minimize the consequences
of the accidental catastrophic release of hazardous substances.136 Such releases occurred at a
chemical plant in Bhopal, India, in 1984, killing thousands, and at a chemical plant in Institute,

129 42 U.S.C. §7412(f)(2)(A).
130 42 U.S.C. §7412(f)(2)(A).
131 EPA, Residual Risk: Report to Congress, EPA-453/R-99-001, 1999, p. ES-6.
132 EPA, “Technical and Regulatory Support to Develop a Rulemaking to Potentially Modify the NESHAP Subpart W

Standard for Radon Emissions from Operating Uranium Mills (40 CFR 61.250),” 2014, Table 2, p. 10. See also Alex
Jackson, “EPA’s Fuzzy Bright Line Approach to Residual Risk,” Ecology Law Quarterly, vol. 36 (2009), pp. 439-466.
133 EPA, “Technical and Regulatory Support to Develop a Rulemaking to Potentially Modify the NESHAP Subpart W
Standard for Radon Emissions from Operating Uranium Mills (40 CFR 61.250),” 2014, Table 2, p. 10. See also EPA,
Residual Risk: Report to Congress, EPA-453/R-99-001, 1999.
134 Ritts and Snowden, Clean Air Act Handbook, 2016, p. 291.
135 EPA, “Risk and Technology Review of the National Emissions Standards for Hazardous Air Pollutants.” See also
Air Knowledge EPA, “TOXC102.”
136 42 U.S.C. §7412(r).

Congressional Research Service

14

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

WV, in 1985, injuring hundreds.137 These accidents prompted Congress to include Section 112(r)
in the 1990 CAA amendments.138
Section 112(r) includes the establishment of an independent Chemical Safety and Hazard
Investigation Board (CSB).139 The CSB is responsible for investigating accidents involving
releases of hazardous substances “resulting in a fatality, serious injury or substantial property
damages”;140 conducting studies, including incident investigations; and preparing reports on the
handling of toxic materials and measures to reduce the risk of accidents.141
EPA Program for Preventing Catastrophic Releases of Hazardous Substances
EPA’s program for preventing the catastrophic releases of hazardous substances includes the following three
components:
1. Promulgation of a list of regulated substances and threshold quantities that “are known to cause or may
reasonably be anticipated to cause death, injury, or serious adverse effects to human health or the environment.”
42 U.S.C. §7412(r)(3)-(5).
2. The implementation of a risk management plan (RMP) by owners and operators “to detect and prevent or
minimize accidental releases of such substances from the stationary source, and to provide a prompt emergency
response to any such releases in order to protect human health and the environment.” 42 U.S.C.
§7412(r)(7)(B)(ii).
3. The implementation of a general duty clause that requires owners and operators of stationary sources “to
identify hazards which may result from such releases using appropriate hazard assessment techniques, to design
and maintain a safe facility taking such steps as are necessary to prevent releases, and to minimize the
consequences of accidental releases which do occur.” 42 U.S.C. §7412(r)(1).

Section 112(r)(3) requires EPA to promulgate a list of hazardous substances to be regulated with
respect to accidental release and “threshold quantities” or levels at which death, injury, and
serious adverse effects are reasonably likely to occur.142 This list is distinct from the list of HAPs
in Section 112(b)(1), although some substances, such as phosgene and hydrogen fluoride, appear
on both lists.143 The statute states that substances on the list of substances regulated under Section
112(r) are evaluated for inclusion in the list based on “(i) the severity of any acute adverse health
effects associated with accidental releases of the substance; (ii) the likelihood of accidental
releases of the substance; and (iii) the potential magnitude of human exposure to accidental
releases of the substance.”144
As set out in the Code of Federal Regulations, the list of substances regulated under Section
112(r) may be revised, with substances being added or removed from the list by the action of the
137

42 U.S.C. §7412(r)(3): These are hazardous substances, the release of which “may reasonably be anticipated to
cause death, injury, or serious adverse effects to human health or the environment.” See also Senate Committee on
Environment and Public Works, Clean Air Act Amendments of 1989, S.Rept. 101-228, p. 134. See also E. Broughton,
“The Bhopal Disaster and Its Aftermath: A Review,” Environmental Health, vol. 4, no. 6 (2005). See also R. C. Baron
et al., “Surveillance for Adverse Health Effects Following a Chemical Release in West Virginia,” Disasters, vol. 12,
no. 4 (1988), p. 356. See also Martineau and Snowden, Clean Air Act Handbook, 2011, p. 285.
138 Ritts and Snowden, Clean Air Act Handbook, 2016, p. 315.
139 42 U.S.C. §7412(r)(6).
140 42 U.S.C. §7412(r)(6(C)(i).
141 42 U.S.C. §7412(r)(6). See also U.S. Chemical Safety Board (CSB), “U.S. Chemical Safety Board Issues Final
Report on Toxic Hydrogen Fluoride Incidents,” press release, May 27, 2025, https://www.csb.gov/us-chemical-safetyboard-issues-final-report-on-toxic-hydrogen-fluoride-incidents/.
142 42 U.S.C. §7412(r)(3). See also 42 U.S.C. §7412(r)(5).
143 42 U.S.C. §7412(b)(1). See also EPA, “How Did EPA Select the List of Regulated Substances?”
https://www.epa.gov/rmp/how-did-epa-select-list-regulated-substances.
144 42 U.S.C. §7412(r)(4)(A).

Congressional Research Service

15

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

EPA Administrator or by petition. The list is to be reviewed every five years.145 A substance may
be added to the list “if, in the case of an accidental release, it is known to cause or may be
reasonably anticipated to cause death, injury, or serious adverse effects to human health or the
environment.”146 A substance may be deleted from the list “if adequate data on the health and
environmental effects of the substance are available to determine that the substance, in the case of
an accidental release, is not known to cause and may not be reasonably anticipated to cause death,
injury, or serious adverse effects to human health or the environment.”147
Section 112(r)(7)(ii) requires preparation of a risk management plan (RMP) by an owner or
operator of a stationary source of a regulated or hazardous substance above a threshold level.148
RMPs have three components: (1) a hazard assessment, (2) a program for preventing accidental
releases, and (3) a response program in the event that a release occurs.149 The hazard assessment
requires estimates of potential regulated substance release quantities, downwind effects, a fiveyear release history, and a worst-case scenario.150 The program for preventing accidental releases
entails provisions for preventing accidental releases that include maintenance, safety precautions,
monitoring, and employee training at the source location.151 The response program is to include
specific actions to be taken in the event of an accidental release, including informing the public
and notifying local emergency health care responders.152 Facilities must submit their RMPs to
EPA, to the CSB, to the state where the source is located, and to the local agency tasked with
planning for and responding to accidental releases.153
Section 112(r) includes a general duty clause that applies to owners and operators of stationary
sources that store or use listed substances or other hazardous materials, including those owners
and operators not required to submit an RMP.154 The CAA states the general duty clause in
Section 112(r)(1):
The owners and operators of stationary sources producing, processing, handling or storing
such substances have a general duty ... to identify hazards which may result from such
releases using appropriate hazard assessment techniques, to design and maintain a safe
facility taking such steps as are necessary to prevent releases, and to minimize the
consequences of accidental releases which do occur.155

The requirements under the general duty clause are not limited to the substances listed under
Section 112(r)(3); they also include “any other extremely hazardous substance.”156 The
requirements of the general duty clause in Section 112(r)(1) are the same as those for employers
and employees under the Occupational Safety and Health Act: “To identify hazards which may
result from such releases using appropriate hazard assessment techniques, to design and maintain

145 42 U.S.C. §7412(r)(3). See also 40 C.F.R. §68.130.
146 40 C.F.R. §68.120 Petition process (b).
147 40 C.F.R. §68.120 Petition process (c).
148 42 U.S.C. §7412(r)(7)(B)(ii).
149 42 U.S.C. §7412(r)(7)(B)(ii).
150 42 U.S.C. §7412(r)(7)(B)(ii)(I).
151 42 U.S.C. §7412(r)(7)(B)(ii)(II).
152 42 U.S.C. §7412(r)(7)(B)(ii)(III).
153 42 U.S.C. §7412(r)(7)(B)(iii).
154

EPA, “The General Duty Clause,” EPA 550-F-20-002, 2020, p. 2.

155 42 U.S.C. §7412(r)(1).
156 42 U.S.C. §7412(r)(1).

Congressional Research Service

16

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

a safe facility taking such steps as are necessary to prevent releases, and to minimize the
consequences of accidental releases which do occur.”157
EPA has provided guidance to owners and operators of facilities to comply with the general duty
clause, stating that these owners and operators should
(1) Adopt or follow any relevant industry codes, practices or consensus standards (for the
process or facility as a whole as well as for particular chemicals or pieces of equipment),
(2) Be aware of unique circumstances of your facility which may require a tailored accident
prevention program, and
(3) Be aware of accidents and other incidents in your industry that indicate potential
hazards.158

The general duty clause does not require a risk management plan but does provide authority for
enforcement actions through administrative penalties and civil actions.159

HAPs Activities in the 119th Congress
In the 119th Congress, Members have introduced legislation and conducted oversight to address
EPA’s regulation of HAPs under Section 112 of the CAA. This legislative activity and oversight
has included action by Members on EPA’s rulemaking on the classification of major and area
HAPs sources and EPA’s rulemaking on the NESHAPs of specific HAPs sources.160 Congress has
options to examine rules promulgated by EPA under Section 112. If Members of Congress
disagree with the rules, they can introduce legislation through the use of the CRA, within the
statutory time frame, to repeal rules.161 Members used the CRA to challenge EPA’s rulemaking on
the regulation of HAPs. Some of these challenges were successful, while other challenges were
not successful.162
Members of Congress have also introduced legislation to change provisions of the CAA
governing the regulation of HAPs. Bills have included proposed legislation to add substances to
the list of HAPs in Section 112(b) of the CAA, legislation to remove the exemption for
aggregation of oil and gas sources of HAPs, and legislation to remove the possibility for citizen
suits under Section 112 of the CAA. Key examples and discussion of related congressional
actions in the 119th Congress regarding Section 112 of the CAA are presented below. These
examples do not comprise a comprehensive review of legislation or action that may have
provisions relevant to Section 112, which would be beyond the scope of this report.
The first example of recent congressional action on EPA regulation of HAPs is the legislative
activity in response to the “once-in always-in” rule. In 2024, as noted above, EPA promulgated a
rule that stated that sources of the seven toxic air pollutants listed in Section 112(c)(6), once
having been listed as major sources subject to the relevant NESHAP, would have to continue to
157 42 U.S.C. §7412(r)(1). See also 29 U.S.C. §654.
158 EPA, “Fact Sheet: The General Duty Clause,” EPA 550-F-09-002, March 2009, https://archive.epa.gov/

epa/sites/production/files/2013-10/documents/gdc-fact.pdf. See also EPA, “Guidance for Implementation of the
General Duty Clause Clean Air Act Section 112(r)(1),” EPA 550-B00-002, 2000.
159 Belden and Morrison, Clean Air Act Essentials, 2021, p. 184.
160 CRS In Focus IF10015, Congressional Oversight and Investigations, by Todd Garvey, Mark J. Oleszek, and Ben
Wilhelm.
161 5 U.S.C. Chapter 8: Congressional Review of Agency Rulemaking.
162 For example, Congress has disapproved rulemaking on standards for tire manufacturing under Section 112 using the
CRA (see H.J.Res. 61).

Congressional Research Service

17

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

comply with those standards even if their emissions fell below threshold levels and they were
reclassified as area sources.163 This applied a new “once-in always-in” rule to existing major
sources of these seven HAPs whereby they could be reclassified as area sources but would still be
subject to the major source NESHAP.164 On March 5, 2025, S.J.Res. 31 was introduced, which
disapproved of the rule and which subsequently repealed the rule under the CRA, also as noted
above.165
On June 30, 2025, S.J.Res. 31 became law (P.L. 119-20), repealing the new “once-in always-in”
rule for sources of these seven HAPs. This repeal made it possible for sources of these HAPs to
be removed from regulation under MACT standards if their emissions were below threshold
amounts.166 The transition from major source to area source is sometimes referred to as “MM2A.”
Sources that are reclassified as area sources will now become subject to area source NESHAPs
for their source category.167
Some Members supported the repeal of this rule, saying that the repeal would provide an
incentive to reduce emissions and that the rule was harmful to the manufacturing and energy
sectors.168 Other Members opposed the repeal, saying that the rule prevented regression to higher
levels of dangerous air pollution and ensured air pollution control by industrial facilities such as
oil refineries.169
Another key example of recent congressional action on EPA regulation of HAPs is the legislative
activity in response to the Mercury Air Toxics Standards rule. In 2024 EPA promulgated a rule,
commonly referred to as the Mercury and Air Toxics Standards (MATS) rule, that required certain
coal-fired electricity generating units to meet a more stringent standard for filterable particulate
163 EPA, “Review of Final Rule Reclassification of Major Sources as Area Sources Under Section 112 of the Clean Air

Act,” 89 Federal Register 73293, 73295. The seven HAPs covered by this rule as stated in CAA Section 112(c)(6) are
alkylated lead compounds, polycyclic organic matter, hexachlorobenzene, mercury, polychlorinated biphenyls, 2,3,7,8tetrachlorodibenzofurans, and 2,3,7,8-tetrachlorodibenzo-p-dioxin.
164 EPA, “Review of Final Rule Reclassification of Major Sources as Area Sources Under Section 112 of the Clean Air
Act,” 89 Federal Register 73293. See also EPA, “EPA Proposes to Strengthen 2020 Air Toxics Regulation to Prevent
Emissions Increases and Protect Public Health,” press release, September 22, 2023, https://www.epa.gov/
newsreleases/epa-proposes-strengthen-2020-air-toxics-regulation-prevent-emissions-increases-and. See also EPA,
“Fact Sheet: Reclassification of Major Sources as Area Sources Under Section 112 of the Clean Air Act (MM2A)—
Final Action,” https://www.epa.gov/system/files/documents/2024-09/mm2a-final_fact-sheet.pdf. A history of the
“once-in, always-in policy” is provided in this fact sheet.
165 S.J.Res. 31. See also 5 U.S.C. Chapter 8: Congressional Review of Agency Rulemaking.
166 EPA, “Guidance for Reclassification of Major Sources as Area Sources Under Section 112 of the Clean Air Act,”
https://www.epa.gov/stationary-sources-air-pollution/guidance-reclassification-major-sources-area-sources-undersection.
167 EPA, “Reclassification of Major Sources as Area Sources Under Section 112 of the Clean Air Act,”
https://www.epa.gov/stationary-sources-air-pollution/reclassification-major-sources-area-sources-under-section-112.
See also Belden and Morrison, Clean Air Act Essentials, 2021, p. 172.
168 Rep. Randy Weber, “Providing for Congressional Disapproval of the Rule Submitted by the Environmental
Protection Agency Relating to ‘Review of Final Rule Reclassification of Major Sources as Area Sources Under Section
112 of the Clean Air Act,’” Congressional Record, vol. 171, no. 86, May 21, 2025, p. H2213. See also Rep. Troy
Balderson, “Providing for Congressional Disapproval of the Rule Submitted by the Environmental Protection Agency
Relating to ‘Review of Final Rule Reclassification of Major Sources as Area Sources Under Section 112 of the Clean
Air Act,’” Congressional Record, vol. 171, no. 86, May 21, 2025, p. H2214.
169 Rep. Frank Pallone, “Providing for Congressional Disapproval of the Rule Submitted by the Environmental
Protection Agency Relating to ‘Review of Final Rule Reclassification of Major Sources as Area Sources Under Section
112 of the Clean Air Act,’” Congressional Record, vol. 171, no. 86, May 21, 2025, p. H2213. See also Rep. Paul
Tonko, “Providing for Congressional Disapproval of the Rule Submitted by the Environmental Protection Agency
Relating to ‘Review of Final Rule Reclassification of Major Sources as Area Sources Under Section 112 of the Clean
Air Act,’” Congressional Record, vol. 171, no. 86, May 21, 2025, p. H2214.

Congressional Research Service

18

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

matter (fPM) emissions, among other requirements.170 Some Members of Congress opposed this
rule and introduced legislation in 2025 to repeal it or prevent the rule’s enforcement. The
Combating Overregulation And Limitation of Proven, Operable, Working Energy Resources Act,
or COAL POWER Act (H.R. 3870), included provisions to repeal the MATS rule, and the
Reliable Grid Act (H.R. 3751) included provisions to prohibit the EPA Administrator from
enforcing the MATS rule.
On June 17, 2025, EPA proposed to “Repeal specific amendments to the NESHAP for Coal- and
Oil-Fired Electric Utility Steam Generating Units (EGUs), commonly referred to as the Mercury
and Air Toxics Standards (MATS), that were promulgated on May 7, 2024.”171 On February 19,
2026, EPA finalized “the repeal of certain amendments, finalized in 2024, to the MATS Rule.”172
This action repealed specific amendments to the MATS rule for the coal- and oil-fired EGU
source category, among others. In the 2026 repeal, EPA stated the following:
The EPA is repealing the revised filterable particulate matter (fPM) emission standard,
which serves as a surrogate for non-mercury hazardous air pollutant (HAP) metals for
existing coal-fired EGUs; the revised fPM emission standard compliance demonstration
requirements; and the revised mercury (Hg) emission standard for lignite-fired EGUs.173

The repeal of the MATS rule was challenged under the CRA.174 In April 2026, a Senator
introduced S.J.Res. 188 that disapproved of the rule repealing the MATS rule. The motion to
proceed with consideration of S.J.Res. 188 was rejected by the Senate, and the joint resolution did
not proceed.
EPA’s regulatory impact analysis (RIA) of the repeal of the MATS rule estimated that there would
be compliance cost savings for the electric power industry with the repeal.175 The RIA also
estimated that with the repeal there would be increases in emissions of mercury and nonmercury
heavy metals.176 EPA has identified mercury as a neurotoxin.177 The RIA estimated that the repeal
of the MATS rule would result in hundreds of millions of dollars in compliance cost savings for
the power industry178 while having no effect on retail electricity prices.179

170 EPA, “National Emission Standards for Hazardous Air Pollutants: Coal- and Oil-Fired Electric Utility Steam

Generating Units Review of the Residual Risk and Technology Review,” 89 Federal Register 38508, May 7, 2024,
https://www.govinfo.gov/content/pkg/FR-2024-05-07/pdf/2024-09148.pdf.
171 EPA, “National Emission Standards for Hazardous Air Pollutants: Coal- and Oil-Fired Electric Utility Steam
Generating Units,” 90 Federal Register 25535, June 17, 2025, https://www.govinfo.gov/content/pkg/FR-2025-06-17/
pdf/2025-10992.pdf.
172 EPA, “Mercury and Air Toxics Standards,” https://www.epa.gov/stationary-sources-air-pollution/mercury-and-airtoxics-standards.
173 EPA, “National Emission Standards for Hazardous Air Pollutants: Coal- and Oil-Fired Electric Utility Steam
Generating Units: Final Repeal,” 91 Federal Register 9088, February 24, 2026, https://www.govinfo.gov/content/pkg/
FR-2026-02-24/pdf/2026-03638.pdf.
174 5 U.S.C. Chapter 8: Congressional Review of Agency Rulemaking.
175 EPA, “Regulatory Impact Analysis for the Final Repeal of Amendments to National Emission Standards for
Hazardous Air Pollutants: Coal- and Oil-Fired Electric Utility Steam Generating Units,” EPA-452/R-26-001, 2026, p.
ES-3 (hereinafter EPA, RIA MATS Repeal 2026).
176 EPA, RIA MATS Repeal 2026, p. ES-4.
177
EPA, “Health Effects of Exposures to Mercury,” https://www.epa.gov/mercury/health-effects-exposures-mercury.
178 EPA, RIA MATS Repeal 2026, Table ES-1, p. ES-3.
179 EPA, RIA MATS Repeal 2026, Table ES-3, p. ES-4.

Congressional Research Service

19

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

In addition to these examples of congressional action, in the 119th Congress, Members have
challenged the promulgation of NESHAPS for other HAPs source categories under the CRA. In
2025, a Senator introduced S.J.Res. 66 to challenge the EPA NESHAP for “Coke Ovens: Pushing,
Quenching, and Battery Stacks, and Coke Oven Batteries ” under the CRA.180 In the same year a
Senator also introduced S.J.Res. 67 to challenge the EPA NESHAP for “Integrated Iron and Steel
Manufacturing Facilities” under the CRA.181 In 2025 a Representative introduced H.J.Res. 61 to
challenge the EPA NESHAP for “Rubber Tire Manufacturing” under the CRA.182 This challenge
to the NESHAP for “Rubber Tire Manufacturing” under the CRA was successful, and the rule
was revoked.183
Members have introduced legislation to make changes to Section 112 of the CAA, including the
addition of substances to the list of HAPs in Section 112(b), removing the exemption for
aggregation of oil and gas sources of HAPs, and the removal of the possibility for citizen suits
under Section 112 of the CAA. Representative Haley M. Stevens introduced H.R. 6990, the
Prevent Release Of Toxic Emissions, Contamination, and Transfer Act of 2026, also known as the
PROTECT Act of 2026, that would add “as a class all perfluoroalkyl and polyfluoroalkyl
substances with at least one fully fluorinated carbon atom to the list of hazardous air pollutants
under Section 112(b) of the Clean Air Act.” Representative Yvette D. Clarke introduced H.R.
6081, Closing Loopholes for Oil and other Sources of Emissions Act, also known as the CLOSE
Act, to add hydrogen sulfide to the list of HAPs under Section 112(b) of the CAA. This
legislation also included provisions to repeal the exemption of oil and gas sources under Section
112(n)(4) of the CAA. Senator Lisa Blunt Rochester introduced S. 3529, the Public Health Air
Quality Act of 2025, which would require HAPs fenceline monitoring at some facilities. Senator
Mike Lee introduced S. 3049, the Fair Air Enforcement Act of 2025, to repeal Section 304 of the
CAA that includes provisions for citizen suits; the legislation includes conforming amendments
for Section 112 of the CAA.

Author Information
Jonathan D. Haskett
Analyst in Environmental Policy

180 EPA, “National Emission Standards for Hazardous Air Pollutants for Coke Ovens: Pushing, Quenching, and Battery

Stacks, and Coke Oven Batteries; Residual Risk and Technology Review, and Periodic Technology Review,” 90
Federal Register 29997, July 8, 2025, https://www.govinfo.gov/content/pkg/FR-2025-07-08/pdf/2025-12626.pdf.
181 EPA, “National Emission Standards for Hazardous Air Pollutants: Integrated Iron and Steel Manufacturing
Facilities Technology Review: Interim Final Rule,” 90 Federal Register 29485, July 3, 2025, https://www.govinfo.gov/
content/pkg/FR-2025-07-03/pdf/2025-12407.pdf.
182 EPA, “National Emission Standards for Hazardous Air Pollutants: Rubber Tire Manufacturing,” 89 Federal Register
94886, November 29, 2026, https://www.federalregister.gov/d/2024-26895/page-94886.
183 EPA, “Rubber Tire Manufacturing: National Emission Standards for Hazardous Air Pollutants (NESHAP),”
https://www.epa.gov/stationary-sources-air-pollution/rubber-tire-manufacturing-national-emission-standardshazardous.

Congressional Research Service

20

Regulation of Hazardous Air Pollutants Under the Clean Air Act: A Primer

Disclaimer
This document was prepared by the Congressional Research Service (CRS). CRS serves as nonpartisan
shared staff to congressional committees and Members of Congress. It operates solely at the behest of and
under the direction of Congress. Information in a CRS Report should not be relied upon for purposes other
than public understanding of information that has been provided by CRS to Members of Congress in
connection with CRS’s institutional role. CRS Reports, as a work of the United States Government, are not
subject to copyright protection in the United States. Any CRS Report may be reproduced and distributed in
its entirety without permission from CRS. However, as a CRS Report may include copyrighted images or
material from a third party, you may need to obtain the permission of the copyright holder if you wish to
copy or otherwise use copyrighted material.

Congressional Research Service

R49070 · VERSION 2 · NEW

21

---

Source: Frix Law Library, https://www.frixlaw.com/law-library/documents/crs%3AR49070. Public record. Not legal advice.
