风化作用
碳循环
碳酸盐
碳汇
环境科学
硅酸盐
地球科学
碳酸盐矿物
水槽(地理)
全球变化
二氧化碳
自行车
气候变化
硅酸盐矿物
环境化学
地球化学
地质学
化学
生态学
海洋学
生态系统
地理
有机化学
地图学
考古
生物
作者
Zaihua Liu,G.L. Macpherson,Chris Groves,Jonathan B. Martin,Daoxian Yuan,Sibo Zeng
标识
DOI:10.1016/j.earscirev.2018.05.007
摘要
Carbonate mineral weathering coupled with aquatic photosynthesis on the continents, herein termed coupled carbonate weathering (CCW), represents a current atmospheric CO2 sink of about 0.5 Pg C/a. Because silicate mineral weathering has been considered the primary geological CO2 sink, CCW's role in the present carbon cycle has been neglected. However, CCW may be helping to offset anthropogenic atmospheric CO2 increases as carbonate minerals weather more rapidly than silicates. Here we provide an overview of atmospheric CO2 uptake by CCW and its impact on global carbon cycling. This overview shows that CCW is linked to climate and land-use change through changes in the water cycle and water-born carbon fluxes. Projections of future changes in carbon cycling should therefore include CCW as linked to the global water cycle and land-use change.
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