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Estimation of Global Grassland Net Ecosystem Carbon Exchange Using a Model Tree Ensemble Approach

机译:使用模型树集合方法估算全球草地净净生态系统碳交换

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摘要

Understanding the net ecosystem CO_2 exchange (NEE) between terrestrial ecosystems and the atmosphere is crucial for accurate estimation of carbon budgets, which remains unclear for grassland ecosystems. Here we upscaled site-level NEE from 44 grassland flux towers (1,457 site-months) to the global scale by using a model tree ensemble approach that considers the management activities (grazing and cutting) (MTE-GM). Cross-validation showed that MTE-GM performs reasonably well in terms of among-site variability and seasonal variation, with a Nash-Sutcliffe efficiency of 0.90 and 0.86 and an R2 of 0.91 and 0.86, respectively. Radiation (shortwave and longwave), temperature, leaf area index, and fraction of absorbed photosynthetic active radiation had the highest relative explanatory power in predicting NEE. Based on MTE-GM, mean annual NEE of global grassland was 72 ± 4 g C m~(-2) year~(-1) (1.9 ± 0.11 Pg C year~(-1)) during 1982-2011, suggesting that the grassland ecosystems have been acting as a small carbon source during the past three decades. However, grasslands in temperate and continental regions had the largest carbon sink of -61.9 ± 5.7 and -51.8 ± 7.9 g C m~(-2) year~(-1), respectively. Moreover, we found that elimination of grassland management effect resulted in an extra emission of 1.7% CO_2 to the atmosphere (CO_2 sink from the management is 0.03 Pg C year~(-1)). From the 1980s to the 2000s, 38% (22%) and 17% (18%) of pixels showed an increased (decreased) carbon uptake and decreased (increased) carbon release, respectively. Uncertainty assessment suggested that there would be higher confidence in NEE estimates in most parts of middle- to high-latitude regions in the Northern Hemisphere.
机译:了解地面生态系统和大气之间的净生态系统CO_2交换(NEE)对于准确估算碳预算至关重要,但草原生态系统仍不清楚。在这里,我们通过使用模型树集合方法,我们从44种草地助焊塔(1,457个网站)的网站级别Nee从考虑管理活动(MTE-GM)(MTE-GM)。交叉验证表明,MTE-GM在现场变异性和季节性变化方面具有相当良好的性能,NASH-SUTCLIFFE效率为0.90和0.86,分别为0.91和0.86的R2。吸收光合作用主动辐射的辐射(短波和长波),温度,叶面积指数和分数具有预测NEE的相对解释力。基于MTE-GM的基于MTE-GM,平均全球草地的年度NEE为72±4 G C m〜(-2)年〜(-1)(1.9±0.11 pg C年〜(-1))在1982 - 2011年期间,这表明这一点在过去的三十年中,草原生态系统一直在担任小碳源。然而,温带和大陆地区的草原分别具有最大的碳汇,分别为-61.9±5.7和-51.8±7.9 g c m〜(-2)年〜(-1)。此外,我们发现消除草地管理效果导致额外的1.7%CO_2到大气(CO_2来自管理的CO_2),是0.03 pg C〜(-1))。从20世纪80年代到2000年代,38%(22%)和17%(18%)像素分别显示出增加(减少)碳吸收和下降(增加)碳释放。不确定性评估表明,在北半球中的大部分部分到高纬度地区的大部分部分都会有更高的信心。

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  • 作者单位

    School of Geography and Tourism Shaanxi Normal University Xi'an China;

    School of Geography and Tourism Shaanxi Normal University Xi'an China;

    State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau Northwest A&

    F University Yangling China;

    School of Geography and Tourism Shaanxi Normal University Xi'an China;

    State Key Laboratory of Urban and Regional Ecology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing China;

    State Key Laboratory of Earth Surface Processes and Resource Ecology Faculty of Geographical Science Beijing Normal University Beijing China;

    State Key Laboratory of Urban and Regional Ecology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing China;

    School of Geography and Tourism Shaanxi Normal University Xi'an China;

    School of Geography and Tourism Shaanxi Normal University Xi'an China;

    School of Geography and Tourism Shaanxi Normal University Xi'an China;

    School of Geography and Tourism Shaanxi Normal University Xi'an China;

    School of Geography and Tourism Shaanxi Normal University Xi'an China;

    School of Geography and Tourism Shaanxi Normal University Xi'an China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物分布与生物地理学;
  • 关键词

    Estimation of Global; Grassland Net Ecosystem; Carbon Exchange Using;

    机译:全球估计;草地净生态系统;碳交换使用;

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