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Not just a climate problem

The safety and health risks of methane super-emitter events

Bibliographic Data

ID15545867
AuthorsSofia Bisogno (0009-0008-1915-7290, Healthy Start, corresponding author), Chowdhury G Moniruzzaman (0000-0003-1505-9366, Healthy Start), Nicholas Heath (0000-0003-0328-4398, Healthy Start), C Efstathiou (0000-0002-2226-5291, Healthy Start), Jeremy K Domen (0000-0002-0481-5579, Healthy Start), Lee Ann L Hill (0000-0001-9919-9416, Healthy Start), Jasmine Lee (0000-0002-3925-5778), Jasmine R Lee (0000-0003-3847-1679, Healthy Start), Drew R Michanowicz (0000-0002-2538-4819, Healthy Start), Quintin Munoz (0009-0001-9693-4064, Healthy Start), Yanelli Nunez (0000-0003-0950-8639, City University of New York), Sebastian T Rowland (0000-0001-6290-5372, Healthy Start), D Bon (0000-0002-0186-5087), Daniel Cusworth (0000-0003-0158-977X), Seth B C Shonkoff (0000-0002-2696-0259, Lawrence Berkeley National Laboratory), Kelsey R Bilsback (0000-0002-5996-1522, Healthy Start)
Year2025
Volume20
Issue9
Pages094025-094025
Publication date2025-08-22
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueEnvironmental Research Letters (JOURNAL)
Journal identifiersISSN: 1748-9326 • E-ISSN: 1748-9326
PublisherIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/addedd
OpenAlexW4413478434
LanguageEN
Citations received1
References cited33

Methane super-emitter events (>100 kg methane hr −1 ) are prevalent across the oil and gas supply chain and are being targeted for methane mitigation policies due to their climate impacts; however, few studies have evaluated the air quality impacts and direct safety and public health risks. Here, we evaluate seven upstream oil and gas methane super-emitter events to examine the safety (explosivity) risks from methane and the short-term, noncancer health risks from benzene and other key co-emitted non-methane volatile organic compounds (NMVOCs). We used airborne instrument and satellite-measured methane emissions rates to estimate hourly air concentrations of methane using US EPA’s American Meteorological Society/Environmental Protection Agency Regulatory Model (AERMOD), a regulatory-grade dispersion model, and applied estimated speciated NMVOC-methane molar ratios to calculate hourly air concentrations of NMVOCs. We assessed when and where hourly modeled methane and NMVOC air concentrations exceeded national safety (0.5% methane) and state-based health (8 ppb and 53 ppb benzene) benchmarks. Large methane super-emitters (>2900 kg hr −1 ) had safety benchmark exceedances as far as 270 m from the source, indicating that safety risks are greatest for facility workers and nearby communities. Health benchmark exceedances were the greatest and most frequent close to the source (<300 m), but, in contrast to the safety risks, reached beyond one kilometer (1.1–19 km) for modeled methane super-emitters (210–15 800 kg hr −1 ), posing health risks to residents and sensitive populations. We also found that smaller methane super-emitters may pose outsized health risks: our second lowest methane emission case (539 kg hr −1 ) yielded the highest benzene air concentration (28 000 ppb), farthest 8 ppb benzene exceedance distance (19 km), and highest frequency of health benchmark exceedances between 1–5 km (2.6%). Our study demonstrates that policies and early detection efforts that control methane super-emitters should prioritize factors beyond methane emissions rate magnitude, such as gas composition, to provide the strongest co-benefits for public health and safety

Common emitter · Methane · Air Quality and Health Impacts · Atmospheric and Environmental Gas Dynamics · Chemistry · Environmental Science · Materials Science · Wind and Air Flow Studies

  • Benzene and other hazardous air pollutants in consumer-grade natural gas in Europe

    Open Access•Tamara L Sparks, Yannai Kashtan et al.•Environmental Research Letters•2026

Unique citing works1
Citations per year1
Citation span2026 - 2026 (1)
Citation velocitycurrent
Highly citedNo
Citation typesNeutral: 1

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