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On the contribution of CO2fertilization to the missing biospheric sink

机译:CO2施肥对生物圈汇缺失的贡献

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摘要

A gridded biospheric carbon model is used to investigate the impact of the atmospheric CO2increase on terrestrial carbon storage. The analysis shows that the calculated CO2fertilization sink is dependent not just on the mathematical formulation of the “β factor” but also on the relative controls of net primary productivity (NPP), carbon residence times, and resource availability. The modeled evolution of the biosphere for the period 1850–1990 shows an increasing lag between NPP and the heterotrophic respiration. The time evolution of the modeled biospheric sink (i.e., difference between enhanced NPP and enhanced respiration) does not match that obtained by deconvolution of the ice core CO2time series. Agreement between the two is reasonable for the first half of the period, but during the recent decades the deconvoluted CO2increase is much too fast to be explained by the CO2fertilization effect only. Therefore other mechanisms than CO2fertilization should also contribute to the missing sink. Our results suggest that about two thirds to three fourths of the 1850–1990 integrated missing sink is due to the CO2greening of the biosphere. The remainder may be due to the increased level of nitrogen deposition starting aro
机译:采用网格化生物圈碳模型研究了大气CO2增加对陆地碳储量的影响。分析表明,计算出的CO2肥化汇不仅取决于“β因子”的数学公式,还取决于净初级生产力(NPP)、碳停留时间和资源可用性的相对控制。1850-1990年期间生物圈的模拟演化表明,NPP和异养呼吸之间的滞后性越来越大。模拟生物圈汇的时间演变(即增强的NPP和增强的呼吸之间的差异)与通过对冰芯CO2时间序列进行反卷积得到的时间演变不匹配。在前半段,两者之间的一致性是合理的,但在近几十年中,去卷曲的二氧化碳增长太快了,不能仅仅用二氧化碳施肥效应来解释。因此,除CO2施肥外,其他机制也应有助于减少汇。我们的研究结果表明,在1850-1990年的综合缺失汇中,大约三分之二到四分之三是由于生物圈的二氧化碳绿化。其余的可能是由于氮沉积水平的增加,开始

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