American Petroleum Institute v. Environmental Protection Agency

684 F.3d 1342, 401 U.S. App. D.C. 417, 42 Envtl. L. Rep. (Envtl. Law Inst.) 20157, 2012 WL 2894566, 74 ERC (BNA) 2153, 2012 U.S. App. LEXIS 14567
Court of Appeals for the D.C. Circuit·Decided July 17, 2012·No. 10-1079, 10-1080·Published·Cited by 15 cases

Opinion

Opinion for the Court filed by Senior Circuit Judge GINSBURG.

GINSBURG, Senior Circuit Judge:

In 2010, the EPA promulgated a final rule adopting a new, one-hour primary national ambient air quality standard (NAAQS) for nitrogen dioxide. The American Petroleum Institute, the Utility Air Regulatory Group, and the Interstate Natural Gas Association of America (collectively the API) petition for review of that rule, claiming the EPA, in adopting the NAAQS, was arbitrary and capricious and violated the Clean Air Act. The API also challenges a statement in the preamble to the final rule regarding the EPA’s intended implementation of the NAAQS. We deny the petitions insofar as they challenge the EPA’s adoption of the NAAQS, but because the EPA’s statement in the preamble was not final, we lack jurisdiction to consider those portions of the petitions.

I. Background

The Clean Air Act requires the EPA to establish a primary and a secondary NAAQS for any pollutant “reasonably ... anticipated to endanger public health or welfare.” 42 U.S.C. § 7408(a)(1)(A). The EPA must set the primary NAAQS at a level “requisite to protect the public health” with “an adequate margin of safety.” 42 U.S.C. § 7409(b)(1).

In 1971, in order to control the emission of harmful nitrogen oxides, * the EPA established a primary NAAQS for nitrogen dioxide (N02) of 53 parts per billion (ppb) for the annual average in any given area. See National Primary and Secondary Ambient Air Quality Standards, 36 Fed.Reg. 8186, 8187 (April 30, 1971). Then as now the NAAQS focused specifically upon N02 as an indicator for the broader category of nitrogen oxides; because those gases are typically emitted together and in similar proportions, detection of one usually indicates the presence of the others. Combustion processes, especially those occurring in automobile and truck engines and electricity-generating plants, account for most of the production of these compounds. Nitrogen oxides have a variety of documented adverse effects upon human health, including increased airway hyper-responsiveness (contraction of the bronchioles) in asthmatics and increased respiratory illness in children.

The EPA began a review of the NAAQS for N02 in 2005 and revised the primary NAAQS in 2010. In the time since its prior review, accumulated epidemiological and clinical evidence suggested adverse health effects occurred at lower concentrations of N02, and for exposures of a much shorter duration, than scientists previously had suspected. For that reason, the EPA *1346 began to consider whether, because the existing NAAQS focused upon the annual average concentration in an area, an additional NAAQS was necessary to protect against the adverse effects of short-term spikes in exposure to N02. In 2005, the EPA made a general call for information, 70 Fed.Reg. 73,236 (Dec. 9, 2005), and in 2007, after notice and comment, it published the methodology it would use to review the NAAQS for N02, see EPA, Integrated Review Plan for the Primary National Ambient Air Quality Standard for Nitrogen Dioxide (Aug. 2007). The Review Plan described the EPA’s plans to synthesize the results of existing epidemiological and clinical research regarding the health effects of exposure to N02, develop forecasts of improved air quality under a hypothetical new NAAQS set at various levels then under consideration, submit such analyses for external review, and after public notice and comment adopt a new NAAQS. Id. at 2-3.

In 2008, pursuant to the Review Plan, the EPA released its Integrated Science Assessment, in which it undertook “to critically evaluate and assess the latest scientific information published since [the review it conducted in 1993].” Environmental Protection Agency, Integrated Science Assessment for Oxides of Nitrogen-Health Criteria xxvii (2008) (hereinafter ISA). The ISA discussed epidemiological evidence that showed “positive associations of short-term ambient N02 concentrations below the current NAAQS level with increased numbers of [emergency room] visits and hospital admissions for respiratory causes.” Id. at 5:11. Many studies observed such effects in areas with average daily concentrations of N02 between 3 and 50 ppb. Id. The EPA also presented its updated version of a meta-analysis * of clinical studies on the health effects of N02 that had been done by L.J. Folinsbee in 1992 and that it had reviewed in its earlier assessment of the NAAQS. Id. at 3:14-16. The agency made three changes to the 1992 meta-analysis: It removed one underlying study involving specific airway responses to ragweed, added a new study involving non-specific airway responses, and measured the effects at short-term concentration levels as low as 100 ppb. Id. at 3:16. The results of the updated meta-analysis showed a statistically significant 66 percent of resting asthmatics experienced an increase in hyperresponsiveness in the presence of N02 concentrations of 100 ppb. Id. The results did not, however, reveal a dose-response relationship — one in which the measured health effect, here the proportion of asthmatics experiencing hyperresponsiveness, increases due to an increased concentration or dose of some agent, here N02 — which would have provided a stronger indication that short-term exposure to N02 causes hyperresponsiveness in asthmatics. Indeed, at levels of 200-300 ppb and over 300 ppb still about 60 percent of asthmatics experienced hyperresponsiveness. Id. Considering the various clinical and epidemiological studies together, however, the EPA concluded the evidence was “sufficient to infer a causal relationship” between short-term exposure to N02 at levels as low as 100 ppb and various types of respiratory morbidity; it also concluded the data were “suggestive but not sufficient to infer a causal relationship” between short-term exposures and mortality. Id. at 5:5.

The EPA also assessed risks from N02 exposure under three different assumptions about future air quality: (1) future *1347 air quality remains at its current level (the “as is” assumption) (2) future air quality just meets the existing NAAQS of 53 ppb (the “just meets” assumption), and (3) future air quality just meets several different potential hourly NAAQS, to wit, 50, 100, 150, and 200 ppb (the “new NAAQS” assumption). See EPA, Risk and Exposure Assessment to Support the Review of the N02 Primary National Ambient Air Quality Standard 59, 120 (Nov. 2008) (hereinafter REA). The EPA explained that, although it had few actual data showing any areas experienced short-term exposures above the levels of the NAAQS under consideration in the third scenario, REA at 89-95, its simulation procedure showed that at the current level of air quality, people near roads are now and would be in the future exposed numerous times in a year to concentrations above 100 ppb (the short-term exposure level at which the ISA concluded adverse health effects were likely to occur), REA at 97-99.

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American Petroleum Institute v. Environmental Protection Agency, 684 F.3d 1342, 401 U.S. App. D.C. 417, 42 Envtl. L. Rep. (Envtl. Law Inst.) 20157, 2012 WL 2894566, 74 ERC (BNA) 2153, 2012 U.S. App. LEXIS 14567 (D.C. Cir. 2012).

684 F.3d 1342 (American Petroleum Institute v. Environmental Protection Agency) — published by Counsel Stack Legal Research, free access to 12M+ legal documents.

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