Global increase in methane production under future warming of lake bottom waters
Joachim Jansen(Uppsala University), Eleanor Jennings(Dundalk Institute of Technology), Love Råman Vinnå(Swiss Federal Institute of Aquatic Science and Technology), R. Iestyn Woolway(Bangor University), Gesa A. Weyhenmeyer(Uppsala University), Tadhg N. Moore(Virginia Tech), Lars J. Tranvik(Uppsala University), Clément Albergel(European Centre for Space Applications and Telecommunications), Wim Thiery(Vrije Universiteit Brussel), Rafael Marcé(Centre d'Estudis Avançats de Blanes), Marjorie Perroud(University of Geneva), Luke Grant(Environment and Climate Change Canada), Donald C. Pierson(Uppsala University), Małgorzata Gołub(Uppsala University), David Bastviken(Linköping University), Sapna Sharma(Association of Research Libraries), Sebastian Sobek(Uppsala University), Sofia La Fuente(Vrije Universiteit Brussel), Benjamin M. Kraemer(Leibniz Institute of Freshwater Ecology and Inland Fisheries)
Cited by 92
Related Papers
ERA5-Land: a state-of-the-art global reanalysis dataset for land applications
|Earth system science data|2021|4.6k
Lakes and reservoirs as regulators of carbon cycling and climate
|Limnology and Oceanography|2009|2.7k
The Global Methane Budget 2000-2017
|NOAA Institutional Repository|2019|2.7k
ESA CCI Soil Moisture for improved Earth system understanding: State-of-the art and future directions
|Remote Sensing of Environment|2017|1.5k
Global lake responses to climate change
|Nature Reviews Earth & Environment|2020|1.4k