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Impacts of climate and CO_2 changes on the vegetation growth and carbon balance of Qinghai-Tibetan grasslands over the past five decades

机译:近50年来气候和CO_2变化对青藏草原植被生长和碳平衡的影响

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摘要

Climate change has significantly influenced global and regional terrestrial carbon balances. After being systematically calibrated against eddy-covariance measurements, meteorological observation, soil inventory data and satellite observed LAI (Leaf Area Index) in the Qinghai-Tibetan Plateau (Tan et al., 2010), the process-based ecosystem model called ORCHIDEE (ORganizing Carbon and Hydrology In Dynamic EcosystEms) was used in this study to investigate climate change and rising atmospheric CO_2 concentration driven spatio-temporal changes in vegetation net primary production (NPP) and net ecosystem production (NEP) of Qinghai-Tibetan grasslands from 1961 to 2009. Overall, our simulation suggests that Qinghai-Tibetan grassland NPP significantly increased with a rate of 1.9 Tg C yr~(-2) (1 Tg= 10~(12) g) since 1961. At the regional scale, change in precipitation, temperature, and atmospheric CO_2 concentration accounts for 52%, 34%, 39% of the increase in NPP, respectively, but their relative roles are not constant across the study area. Increase in NPP over the central and southwestern Qinghai-Tibetan Plateau is primarily attributed to precipitation changes, while rising atmospheric CO_2 concentration is the main cause of NPP increase in eastern plateau. The model simulation also suggests that Qinghai-Tibetan grassland NEP increased from a net carbon source of -0.5 Tg C yr~(-1) in the 1960s to a net carbon sink of 21.8 Tg C yr~(-1) in the 2000s, mainly due to the rising atmospheric CO_2 concentration and precipitation change. Although recent climate warming benefited vegetation growth, rising temperature did not significantly accelerate net carbon uptake from Qinghai-Tibetan grassland ecosystems due to enhanced soil carbon decomposition accompanying increase in temperature.
机译:气候变化已极大地影响了全球和区域陆地碳平衡。在针对青藏高原的涡度协方差测量,气象观测,土壤清单数据和卫星观测的LAI(叶面积指数)进行系统校准之后(Tan等,2010),基于过程的生态系统模型称为ORCHIDEE(组织本研究利用动态生态系统中的碳和水文学研究了1961年至2009年青藏高原草原植被的净初级生产(NPP)和净生态系统生产(NEP)的气候变化和大气CO_2浓度上升驱动的时空变化。 。总的来说,我们的模拟结果表明,自1961年以来,青藏高原的草原NPP以1.9 Tg C yr〜(-2)(1 Tg = 10〜(12)g)的速率显着增加。温度和大气CO_2浓度分别占NPP增加的52%,34%和39%,但在整个研究区域中,它们的相对作用不是恒定的。青藏高原中部和西南部NPP的增加主要是由于降水变化,而大气CO_2浓度升高是东部高原NPP增加的主要原因。模型模拟还表明,青藏高原的草地NEP从1960年代的-0.5 Tg C yr〜(-1)的净碳源增加到2000年代的21.8 Tg C yr〜(-1)的净碳汇,主要是由于大气中CO_2浓度的上升和降水的变化。尽管最近的气候变暖使植被生长受益,但由于温度升高导致土壤碳分解增加,升高的温度并未显着加速青藏高原草地生态系统的净碳吸收。

著录项

  • 来源
    《Global and planetary change》 |2012年第12期|p.73-80|共8页
  • 作者单位

    Institute of Tibetan Plateau Research, Chinese Academy of Sciences, Beijing 100085, China,College of Urban and Environmental Sciences and Sino-French Institute for Earth System Science, Peking University, Beijing 100871, China,College of Urban and Environmental Sciences, Peking University, Beijing 100871, China;

    LSCE, UMR CEA-CNRS, Bat 709, CE, L'Orme des Merisiers, F-91191 Gif-sur-Yvette, France;

    College of Urban and Environmental Sciences and Sino-French Institute for Earth System Science, Peking University, Beijing 100871, China;

    LSCE, UMR CEA-CNRS, Bat 709, CE, L'Orme des Merisiers, F-91191 Gif-sur-Yvette, France;

    College of Urban and Environmental Sciences and Sino-French Institute for Earth System Science, Peking University, Beijing 100871, China,State Key Laboratory of Vegetation and Environmental Change, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China;

    LSCE, UMR CEA-CNRS, Bat 709, CE, L'Orme des Merisiers, F-91191 Gif-sur-Yvette, France;

    LSCE, UMR CEA-CNRS, Bat 709, CE, L'Orme des Merisiers, F-91191 Gif-sur-Yvette, France;

    Department of Environmental Studies, University of California, Santa Cruz, CA 95064, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    carbon cycle; carbon balance; climate warming; grassland; Qinghai-Tibetan Plateau;

    机译:碳循环碳平衡;气候变暖;草原;青藏高原;

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