TY - JOUR
T1 - Aircraft-Based Estimate of Total Methane Emissions from the Barnett Shale Region
AU - Karion, Anna
AU - Sweeney, Colm
AU - Kort, Eric A.
AU - Shepson, Paul B.
AU - Brewer, Alan
AU - Cambaliza, Maria
AU - Conley, Stephen A.
AU - Davis, Ken
AU - Deng, Aijun
AU - Hardesty, Mike
AU - Herndon, Scott C.
AU - Lauvaux, Thomas
AU - Lavoie, Tegan
AU - Lyon, David
AU - Newberger, Tim
AU - Pétron, Gabrielle
AU - Rella, Chris
AU - Smith, MacKenzie
AU - Wolter, Sonja
AU - Yacovitch, Tara I.
AU - Tans, Pieter
N1 - Publisher Copyright:
© 2015 American Chemical Society.
PY - 2015/7/7
Y1 - 2015/7/7
N2 - We present estimates of regional methane (CH4) emissions from oil and natural gas operations in the Barnett Shale, Texas, using airborne atmospheric measurements. Using a mass balance approach on eight different flight days in March and October 2013, the total CH4 emissions for the region are estimated to be 76 ± 13 × 103 kg hr-1 (equivalent to 0.66 ± 0.11 Tg CH4 yr-1; 95% confidence interval (CI)). We estimate that 60 ± 11 × 103 kg CH4 hr-1 (95% CI) are emitted by natural gas and oil operations, including production, processing, and distribution in the urban areas of Dallas and Fort Worth. This estimate agrees with the U.S. Environmental Protection Agency (EPA) estimate for nationwide CH4 emissions from the natural gas sector when scaled by natural gas production, but it is higher than emissions reported by the EDGAR inventory or by industry to EPA's Greenhouse Gas Reporting Program. This study is the first to show consistency between mass balance results on so many different days and in two different seasons, enabling better quantification of the related uncertainty. The Barnett is one of the largest production basins in the United States, with 8% of total U.S. natural gas production, and thus, our results represent a crucial step toward determining the greenhouse gas footprint of U.S. onshore natural gas production. (Graph Presented).
AB - We present estimates of regional methane (CH4) emissions from oil and natural gas operations in the Barnett Shale, Texas, using airborne atmospheric measurements. Using a mass balance approach on eight different flight days in March and October 2013, the total CH4 emissions for the region are estimated to be 76 ± 13 × 103 kg hr-1 (equivalent to 0.66 ± 0.11 Tg CH4 yr-1; 95% confidence interval (CI)). We estimate that 60 ± 11 × 103 kg CH4 hr-1 (95% CI) are emitted by natural gas and oil operations, including production, processing, and distribution in the urban areas of Dallas and Fort Worth. This estimate agrees with the U.S. Environmental Protection Agency (EPA) estimate for nationwide CH4 emissions from the natural gas sector when scaled by natural gas production, but it is higher than emissions reported by the EDGAR inventory or by industry to EPA's Greenhouse Gas Reporting Program. This study is the first to show consistency between mass balance results on so many different days and in two different seasons, enabling better quantification of the related uncertainty. The Barnett is one of the largest production basins in the United States, with 8% of total U.S. natural gas production, and thus, our results represent a crucial step toward determining the greenhouse gas footprint of U.S. onshore natural gas production. (Graph Presented).
UR - https://www.scopus.com/pages/publications/84936110175
U2 - 10.1021/acs.est.5b00217
DO - 10.1021/acs.est.5b00217
M3 - Article
C2 - 26148550
AN - SCOPUS:84936110175
SN - 0013-936X
VL - 49
SP - 8124
EP - 8131
JO - Environmental Science and Technology
JF - Environmental Science and Technology
IS - 13
ER -