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首页> 外文期刊>Environmental Research Letters >Influence of dynamic vegetation on carbon-nitrogen cycle feedback in the Community Land Model (CLM4)
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Influence of dynamic vegetation on carbon-nitrogen cycle feedback in the Community Land Model (CLM4)

机译:社区土地模型(CLM4)中动态植被对碳氮循环反馈的影响

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Land carbon sensitivity to atmospheric CO2 concentration (βL) and climate warming (γL) is a crucial part of carbon-climate feedbacks that affect the magnitude of future warming. Although these sensitivities can be estimated by earth system models, their dependence on model representation of land carbon dynamics and the inherent model assumptions has rarely been investigated. Using the widely used Community Land Model version 4 as an example, we examine how βL and γL vary with prescribed versus dynamic vegetation covers. Both sensitivities are found to be larger with dynamic compared to prescribed vegetation on decadal timescale in the late twentieth century, with a more robust difference in γL. The latter is a result of dynamic vegetation model deficiencies in representing the competitions between deciduous versus evergreen trees and tree versus grass over the tropics and subtropics. The biased vegetation cover changes the regional characteristics of carbon-nitrogen cycles such that plant productivity responds less strongly to the enhancement of nitrogen mineralization with warming, so more carbon is lost to the atmosphere with rising temperature. The result calls for systematic evaluations of land carbon sensitivities with varying assumptions for land cover representations to help prioritize development effort and constrain uncertainties in carbon-climate feedbacks.
机译:土地碳对大气CO2浓度(βL)和气候变暖(γL)的敏感性是影响未来变暖幅度的碳气候反馈的关键部分。尽管可以通过地球系统模型来估算这些敏感性,但很少研究它们对土地碳动力学模型表示和内在模型假设的依赖性。以广泛使用的社区土地模型第4版为例,我们研究了βL和γL在规定植被覆盖量与动态植被覆盖量之间如何变化。在二十世纪后期,与规定的植被相比,两种敏感性在动态条件下都更大,而γL的差异更大。后者是动态植被模型缺陷的结果,该模型缺乏在热带和亚热带地区代表落叶乔木与常绿乔木,树木乔木与草之间的竞争的结果。有偏见的植被覆盖改变了碳氮循环的区域特征,因此植物生产力对变暖对氮矿化作用的响应较弱,因此随着温度升高,更多的碳会流失到大气中。结果要求对土地碳敏感性进行系统的评估,并以不同的假设来假设土地覆被,以帮助确定开发工作的优先顺序并限制碳气候反馈中的不确定性。

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