全新世
泥炭
碳循环
强迫(数学)
放气
轨道强迫
沉积作用
大气科学
碳纤维
冰芯
环境科学
气候学
水循环
辐射压力
地质学
海洋学
气候变化
化学
地貌学
沉积物
生态学
生态系统
复合材料
有机化学
复合数
材料科学
生物
作者
Thomas Kleinen,Victor Brovkin,Werner von Bloh,David Archer,Guy Munhoven
摘要
We are investigating the late Holocene rise in CO 2 by performing four experiments with the climate‐carbon‐cycle model CLIMBER2‐LPJ. Apart from the deep sea sediments, important carbon cycle processes considered are carbon uptake or release by the vegetation, carbon uptake by peatlands, and CO 2 release due to shallow water sedimentation of CaCO 3 . Ice core data of atmospheric CO 2 between 8 ka BP and preindustrial climate can only be reproduced if CO 2 outgassing due to shallow water sedimentation of CaCO 3 is considered. In this case the model displays an increase of nearly 20 ppmv CO 2 between 8 ka BP and present day. Model configurations that do not contain this forcing show a slight decrease in atmospheric CO 2 . We can therefore explain the late Holocene rise in CO 2 by invoking natural forcing factors only, and anthropogenic forcing is not required to understand preindustrial CO 2 dynamics.
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