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Comparisons of allometric and climate-derived estimates of tree coarse root carbon stocks in forests of the United States

机译:美国森林中树木粗根碳储量的异速生长和气候衍生估计的比较

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摘要

BackgroundRefined estimation of carbon (C) stocks within forest ecosystems is a critical component of efforts to reduce greenhouse gas emissions and mitigate the effects of projected climate change through forest C management. Specifically, belowground C stocks are currently estimated in the United States’ national greenhouse gas inventory (US NGHGI) using nationally consistent species- and diameter-specific equations applied to individual trees. Recent scientific evidence has pointed to the importance of climate as a driver of belowground C stocks. This study estimates belowground C using current methods applied in the US NGHGI and describes a new approach for merging both allometric models with climate-derived predictions of belowground C stocks.
机译:背景森林森林生态系统中碳(C)储量的精确估算是通过森林碳管理减少温室气体排放和减轻预计的气候变化影响的努力的重要组成部分。具体来说,目前在美国国家温室气体清单(US NGHGI)中使用适用于个别树木的国家/地区特定物种和直径的方程式估算地下C量。最近的科学证据指出,气候是地下碳储量驱动因素的重要性。这项研究使用美国NGHGI中应用的当前方法估算了地下C,并描述了一种将两种测长模型与气候得出的地下C储量预测相结合的新方法。

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