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Evaluating the convergence between eddy-covariance and biometric methods for assessing carbon budgets of forests

机译:评估涡度协方差和生物特征方法之间的收敛性以评估森林的碳预算

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摘要

The eddy-covariance (EC) micro-meteorological technique and the ecology-based biometric methods (BM) are the primary methodologies to quantify CO2 exchange between terrestrial ecosystems and the atmosphere (net ecosystem production, NEP) and its two components, ecosystem respiration and gross primary production. Here we show that EC and BM provide different estimates of NEP, but comparable ecosystem respiration and gross primary production for forest ecosystems globally. Discrepancies between methods are not related to environmental or stand variables, but are consistently more pronounced for boreal forests where carbon fluxes are smaller. BM estimates are prone to underestimation of net primary production and overestimation of leaf respiration. EC biases are not apparent across sites, suggesting the effectiveness of standard post-processing procedures. Our results increase confidence in EC, show in which conditions EC and BM estimates can be integrated, and which methodological aspects can improve the convergence between EC and BM.
机译:涡旋协方差(EC)微气象技术和基于生态的生物特征识别方法(BM)是量化陆地生态系统与大气之间的CO2交换(净生态系统生产,NEP)及其两个组成部分(生态系统呼吸和生态系统)的主要方法。初级生产总值。在这里,我们表明EC和BM提供了不同的NEP估算值,但具有全球森林生态系统可比的生态系统呼吸作用和初级总产值。方法之间的差异与环境或林分变量无关,但是对于碳通量较小的北方森林而言,差异始终更为明显。 BM估计值容易低估净初级生产力,而高估了叶片呼吸。 EC偏差在站点之间并不明显,这表明标准后处理程序的有效性。我们的结果增加了对EC的信心,表明可以在哪些条件下整合EC和BM估计,以及哪些方法方面可以改善EC和BM之间的融合。

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