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Spatial variability and major controlling factors of CO sink strength in Asian terrestrial ecosystems: evidence from eddy covariance data

机译:亚洲陆地生态系统中CO汇强度的空间变异性和主要控制因素:来自涡度协方差数据的证据

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摘要

Asian terrestrial ecosystems cover an extensive area characterized by a large variety in climates and ecosystem properties. The observations of ecosystem CO flux in this area are increasing both in duration and spatial density, but no synthesis has yet been conducted. We surveyed CO flux observation data obtained by eddy covariance methods at 49 sites in terrestrial Asia. The measurements at most sites (44 of 49) began after 2000. The net ecosystem uptake of CO (NEE) varied greatly among sites and years and averaged -132.6pl73.7, -250.1pl206.1, and -180.1pl361.7 g C mpo yrp#, in boreal, temperate, and tropical Asia, respectively, and the coefficient of variation among sites increased from boreal to tropical Asia. The site-averaged annual NEE was correlated linearly with the mean annual temperature (Tair) and also correlated logarithmically with the precipitation. Multiple regression analysis and stepwise analysis indicated that photosynthetic active radiation (PAR) and Tair were the most significant predictors of the annual NEE. The study results suggest that Asian terrestrial ecosystems are currently significant net CO sinks and that the sink strength is largely controlled by temperature, moisture, and light conditions.
机译:亚洲陆地生态系统覆盖范围广泛,其特点是气候和生态系统特性多种多样。在该地区观察到的生态系统CO通量的持续时间和空间密度都在增加,但尚未进行任何合成。我们调查了通过涡流方差方法在亚洲49个站点获得的CO通量观测数据。大多数站点(49个站点中的44个)的测量始于2000年之后。站点和年份之间的生态系统对CO的净吸收(NEE)差异很大,平均为-132.6pl73.7,-250.1pl206.1和-180.1pl361.7 g Cmpo yrp#,分别在北亚,温带和热带亚洲,站点间的变异系数从北亚向热带亚洲增加。站点平均年度NEE与年平均温度(Tair)线性相关,并且与降水量呈对数相关。多元回归分析和逐步分析表明,光合有效辐射(PAR)和Tair是年度NEE的最重要预测因子。研究结果表明,亚洲陆地生态系统目前是大量的CO净汇,而且汇的强度在很大程度上受温度,湿度和光照条件的控制。

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