Global Methane Emission Estimates from a Dual-Isotope Inversion: New Constraints from δD-CH <sub>4</sub>
Bibhasvata Dasgupta(University of Applied Sciences Utrecht), Thomas Röckmann(Utrecht University), J. B. Miller(Cooperative Institute for Research in Environmental Sciences), Cathrine Lund Myhre(NILU), Christine Groot Zwaaftink(Kjeller Innovasjon (Norway)), Peter Sperlich(National Institute of Water and Atmospheric Research), Sander Houweling(Space Research Organisation Netherlands), Ceres Woolley Maisch(University of Applied Sciences Utrecht), Ingeborg Levin(Heidelberg University), James L. France(British Antarctic Survey), Cordelia Veidt(Heidelberg University), Malika Menoud(Utrecht University), N. J. Warwick(University of Cambridge), Shinji Morimoto(Tohoku University), Euan G. Nisbet(Royal Holloway University of London), Rebecca Fisher(Royal Holloway University of London), Sylvia Michel(Institute of Arctic and Alpine Research), Ben Riddell‐Young(Cooperative Institute for Research in Environmental Sciences), Sudhanshu Pandey(Jet Propulsion Laboratory), Ryo Fujita(Tohoku University), Carina van der Veen(Utrecht University), Rowena Moss(National Institute of Water and Atmospheric Research), Stephen M. Platt(NILU)
Cited by 1
Related Papers
The Global Methane Budget 2000-2017
|NOAA Institutional Repository|2019|2.7k
Three decades of global methane sources and sinks
|Nature Geoscience|2013|2.4k
The global methane budget 2000–2012
|Earth system science data|2016|1.1k
Contribution of anthropogenic and natural sources to atmospheric methane variability
|Nature|2006|1.1k
Very Strong Atmospheric Methane Growth in the 4 Years 2014–2017: Implications for the Paris Agreement
|Global Biogeochemical Cycles|2019|789