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‘The Influence of Land Use Change On Global-Scale Fluxes of Carbon from Terrestrial Ecosystems’

机译:“土地利用变化对全球陆地生态系统碳通量的影响”

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摘要

A process-based approach to modelling the effects of land use change and climate change on the carbon balance of terrestrial ecosystems was applied at global scale. Simulations were run both with and without land use change. In the absence of land use change between 1700 and 1990, carbon storage in terrestrial ecosystems was predicted to increase by 145 Pg C. When land use change was represented during this period, terrestrial ecosystems became a net source of 97 Pg C. Land use change was directly responsible for a flux of 222 Pg C, slightly higher but close to estimates from other studies. The model was then run between 1990 and 2100 with a climate simulated by a GCM. Simulations were run with three land use change scenarios: 1. no land use change; 2. land use change specified by the SRES B2 scenario, and; 3. land use change scaled with population change in the B2 scenario. In the first two simulations with no or limited land use change, the net terrestrial carbon sink was substantial (358 and 257 Pg C, respectively). However, with the population-based land-use change scenario, the losses of carbon through land use change were close to the carbon gains through enhanced net ecosystem productivity, resulting in a net sink near zero. Future changes in land use are highly uncertain, but will have a large impact on the future terrestrial carbon balance. This study attempts to provide some bounds on how land use change may affect the carbon sink over the nextcentury.
机译:在全球范围内,采用了基于过程的方法来模拟土地利用变化和气候变化对陆地生态系统碳平衡的影响。在有土地使用变化和没有土地使用变化的情况下都进行了模拟。在1700年至1990年之间没有土地用途变化的情况下,预计陆地生态系统中的碳存储量将增加145 PgC。当在此期间代表土地用途变化时,陆地生态系统将成为97 Pg C的净来源。直接导致了222 Pg C的通量,略高,但接近其他研究的估计值。然后,该模型在1990年至2100年之间运行,并由GCM模拟了气候。用三种土地利用变化方案进行了模拟:1.土地利用没有变化; 2. SRES B2方案指定的土地用途变化,以及; 3.在B2情景中,土地利用变化与人口变化成比例。在没有土地使用变化或土地使用变化有限的前两个模拟中,陆地净碳汇是大量的(分别为358和257 Pg C)。但是,在以人口为基础的土地利用变化的情况下,土地利用变化造成的碳损失与通过提高生态系统净生产力产生的碳损失接近,导致净汇接近零。土地使用的未来变化高度不确定,但将对未来的陆地碳平衡产生重大影响。这项研究试图为下个世纪土地用途的变化如何影响碳汇提供一些界限。

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  • 来源
    《Climatic Change》 |2004年第3期|185-209|共25页
  • 作者单位

    Centre for Ecology and Hydrology;

    NASA GISS;

    Department of Mathematics Heriot-Watt University;

    Centre for Ecology and Hydrology;

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  • 原文格式 PDF
  • 正文语种 eng
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