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Quantifying atmospheric methane emissions from oil and natural gas production in the Bakken shale region of North Dakota

Authors :
Mackenzie L. Smith
Adam R. Brandt
Tim Yeskoo
A. Gvakharia
Sonja Wolter
Michael Trainer
Stephen Conley
Colm Sweeney
Eric A. Kort
Kenneth C. Aikin
Jeff Peischl
Anna Karion
T. B. Ryerson
Source :
Journal of Geophysical Research: Atmospheres. 121:6101-6111
Publication Year :
2016
Publisher :
American Geophysical Union (AGU), 2016.

Abstract

We present in situ airborne measurements of methane (CH4) and ethane (C2H6) taken aboard a NOAA DHC-6 Twin Otter research aircraft in May 2014 over the Williston Basin in northwestern North Dakota, a region of rapidly growing oil and natural gas production. The Williston Basin is best known for the Bakken shale formation, from which a significant increase in oil and gas extraction has occurred since 2009. We derive a CH4 emission rate from this region using airborne data by calculating the CH4 enhancement flux through the planetary boundary layer downwind of the region. We calculate CH4 emissions of (36 ± 13), (27 ± 13), (27 ± 12), (27 ± 12), and (25 ± 10) × 103 kg/h from five transects on 3 days in May 2014 downwind of the Bakken shale region of North Dakota. The average emission, (28 ± 5) × 103 kg/h, extrapolates to 0.25 ± 0.05 Tg/yr, which is significantly lower than a previous estimate of CH4 emissions from northwestern North Dakota and southeastern Saskatchewan using satellite remote sensing data. We attribute the majority of CH4 emissions in the region to oil and gas operations in the Bakken based on the similarity between atmospheric C2H6 to CH4 enhancement ratios and the composition of raw natural gas withdrawn from the region.

Details

ISSN :
21698996 and 2169897X
Volume :
121
Database :
OpenAIRE
Journal :
Journal of Geophysical Research: Atmospheres
Accession number :
edsair.doi...........21c4461170c232093d9a223436501b0b