- Main
Attribution of individual methane and carbon dioxide emission sources using EMIT observations from space
- Thorpe, Andrew K;
- Green, Robert O;
- Thompson, David R;
- Brodrick, Philip G;
- Chapman, John W;
- Elder, Clayton D;
- Irakulis-Loitxate, Itziar;
- Cusworth, Daniel H;
- Ayasse, Alana K;
- Duren, Riley M;
- Frankenberg, Christian;
- Guanter, Luis;
- Worden, John R;
- Dennison, Philip E;
- Roberts, Dar A;
- Chadwick, K Dana;
- Eastwood, Michael L;
- Fahlen, Jay E;
- Miller, Charles E
Published Web Location
https://doi.org/10.1126/sciadv.adh2391Abstract
Carbon dioxide and methane emissions are the two primary anthropogenic climate-forcing agents and an important source of uncertainty in the global carbon budget. Uncertainties are further magnified when emissions occur at fine spatial scales (<1 km), making attribution challenging. We present the first observations from NASA's Earth Surface Mineral Dust Source Investigation (EMIT) imaging spectrometer showing quantification and attribution of fine-scale methane (0.3 to 73 tonnes CH4 hour-1) and carbon dioxide sources (1571 to 3511 tonnes CO2 hour-1) spanning the oil and gas, waste, and energy sectors. For selected countries observed during the first 30 days of EMIT operations, methane emissions varied at a regional scale, with the largest total emissions observed for Turkmenistan (731 ± 148 tonnes CH4 hour-1). These results highlight the contributions of current and planned point source imagers in closing global carbon budgets.
Many UC-authored scholarly publications are freely available on this site because of the UC's open access policies. Let us know how this access is important for you.