甲烷
环境科学
全球变暖
纬度
气候变化
代表性浓度途径
温室气体
沉积物
大气(单位)
大气甲烷
底水
大气科学
水文学(农业)
气候模式
海洋学
地质学
生态学
气象学
地理
古生物学
岩土工程
大地测量学
生物
作者
Joachim Jansen,R. Iestyn Woolway,Benjamin M. Kraemer,Clément Albergel,David Bastviken,Gesa A. Weyhenmeyer,Rafael Marcé,Sapna Sharma,Sebastian Sobek,Lars J. Tranvik,Marjorie Perroud,Małgorzata Gołub,Tadhg N. Moore,Love Råman Vinnå,Sofia La Fuente,Luke Grant,Donald C. Pierson,Wim Thiery,Eleanor Jennings
摘要
Lakes are significant emitters of methane to the atmosphere, and thus are important components of the global methane budget. Methane is typically produced in lake sediments, with the rate of methane production being strongly temperature dependent. Local and regional studies highlight the risk of increasing methane production under future climate change, but a global estimate is not currently available. Here, we project changes in global lake bottom temperatures and sediment methane production rates from 1901 to 2099. By the end of the 21st century, lake bottom temperatures are projected to increase globally, by an average of 0.86-2.60°C under Representative Concentration Pathways (RCPs) 2.6-8.5, with greater warming projected at lower latitudes. This future warming of bottom waters will likely result in an increase in methane production rates of 13%-40% by the end of the century, with many low-latitude lakes experiencing an increase of up to 17 times the historical (1970-1999) global average under RCP 8.5. The projected increase in methane production will likely lead to higher emissions from lakes, although the exact magnitude of the emission increase requires more detailed regional studies.
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