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Shifts in ecosystem water use efficiency on china's loess plateau caused by the interaction of climatic and biotic factors over 1985-2015

机译:在1985 - 2015年期间对中国的黄土高原互动引起的生态系统用水效率的转变

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摘要

Ecosystem water use efficiency (WUE), defined as the ratio of gross primary productivity (GPP) to total ecosystem evapotranspiration (ET), is an important indicator of the coupling between the terrestrial carbon and water cycles. China's Loess Plateau (CLP) has been experiencing climatic warming in recent decades and large-scale revegetation since the early 2000s. Understanding the combined effects of revegetation and climate change on ecosystem WUE patterns is important for a better prediction of future changes of the water and carbon cycles in the region. In this study, we decompose ecosystem WUE into a two-component process, i.e., the ratio of carbon uptake to plant transpiration, GPP/T, and the ratio of plant transpiration to total evapotranspiration, T/ET. Based on this, we investigate the temporal variations of ecosystem WUE and examine the underlying controls of WUE dynamics on CLP during 1985-2015. We find that ecosystem WUE on CLP remains more or less unchanged during 1985-1999 as a result of an increased T/ET that is largely offset by a decreased GPP/T induced by increases in atmospheric vapor pressure deficit. In comparison, ecosystem WUE significantly increases during 2000-2015, owing to the increased leaf area index, which promotes the fraction of plant transpiration over total ET (i.e., T/ET). In facing the upcoming peak of greenness and continuing climate warming, our results suggest that CLP's ecosystem WUE may experience a downward trend in the future due to diminishing positive effects of leaf area index but increasing negative effects of atmospheric vapor pressure deficit. Our study highlights the importance of decomposing ecosystem WUE into component processes to better understand the mechanisms that underlying the changes of ecosystem WUE and to predict future ecosystem WUE dynamics.
机译:生态系统用水效率(WUE)定义为总初级生产率(GPP)与总生态系统蒸散(ET)的比例,是陆地碳和水循环之间的耦合的重要指标。中国黄土高原(CLP)在近几十年以来一直在经历气候变暖,自2000年代初自2000年代以来的大规模植被。了解对生态系统WUE模式的植物植物和气候变化的综合影响对于更好地预测该地区的水和碳循环的未来变化更好。在该研究中,我们将生态系统Wue分解为双组分过程,即碳吸收与植物蒸腾的比率,GPP / T和植物蒸腾与总蒸发的总蒸腾,T / ET的比率。基于这一点,我们调查了生态系统WUE的时间变化,并在1985 - 2015年期间研究了CLP对电力动力学的基础控制。我们发现,在1985 - 1999期间,CLP上的生态系统WUE在1985-1999期间仍然不变,因此由于大气蒸气压力缺陷的增加而诱导的GPP / T增加,因此在很大程度上抵消。相比之下,由于叶面积指数增加,生态系统WUE在2000 - 2015年期间显着增加,这促进了植物蒸腾的一小部分(即,T / ET)。在面对即将到来的绿色高峰和持续的气候变暖方面,我们的结果表明,由于叶面积指数的积极作用减少,但CLP的生态系统Wue可能会遇到未来的下降趋势,但随着大气蒸气压力缺陷的负面影响。我们的研究突出了分解生态系统WUE进入组件流程的重要性,以更好地了解生态系统WUE的变化的机制,并预测未来生态系统的WUE动态。

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  • 作者单位

    South China Normal Univ Sch Geog Shipai Campus Guangzhou 510631 Peoples R China;

    South China Normal Univ Sch Geog Shipai Campus Guangzhou 510631 Peoples R China;

    South China Normal Univ Sch Geog Shipai Campus Guangzhou 510631 Peoples R China;

    Tsinghua Univ Dept Hydraul Engn State Key Lab Hydrosci &

    Engn Beijing 100084 Peoples R China;

    Chinese Acad Sci Synth Res Ctr Chinese Ecosyst Res Network Inst Geog Sci &

    Nat Resources Res Key Lab Ecosyst Network Observat &

    Modeling Beijing 100101 Peoples R China;

    Chinese Acad Sci Synth Res Ctr Chinese Ecosyst Res Network Inst Geog Sci &

    Nat Resources Res Key Lab Ecosyst Network Observat &

    Modeling Beijing 100101 Peoples R China;

    Univ Chinese Acad Sci Coll Resources &

    Environm Beijing 100190 Peoples R China;

    Chinese Acad Sci Synth Res Ctr Chinese Ecosyst Res Network Inst Geog Sci &

    Nat Resources Res Key Lab Ecosyst Network Observat &

    Modeling Beijing 100101 Peoples R China;

    South China Normal Univ Sch Geog Shipai Campus Guangzhou 510631 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业基础科学;农业气象学;林业与各业的关系;
  • 关键词

    Loess plateau; Water use efficiency; Revegetation; Climate change; Temporal dynamics;

    机译:黄土高原;用水效率;再训练;气候变化;时间动态;

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