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Eddy covariance and biometric measurements show that a savanna ecosystem in Southwest China is a carbon sink

机译:涡度协方差和生物特征测量表明中国西南的稀树草原生态系统是碳汇

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摘要

Savanna ecosystems play a crucial role in the global carbon cycle. However, there is a gap in our understanding of carbon fluxes in the savanna ecosystems of Southeast Asia. In this study, the eddy covariance technique (EC) and the biometric-based method (BM) were used to determine carbon exchange in a savanna ecosystem in Southwest China. The BM-based net ecosystem production (NEP) was 0.96 tC ha−1 yr−1. The EC-based estimates of the average annual gross primary productivity (GPP), ecosystem respiration (Reco), and net ecosystem carbon exchange (NEE) were 6.84, 5.54, and −1.30 tC ha−1 yr−1, respectively, from May 2013 to December 2015, indicating that this savanna ecosystem acted as an appreciable carbon sink. The ecosystem was more efficient during the wet season than the dry season, so that it represented a small carbon sink of 0.16 tC ha−1 yr−1 in the dry season and a considerable carbon sink of 1.14 tC ha−1 yr−1 in the wet season. However, it is noteworthy that the carbon sink capacity may decline in the future under rising temperatures and decreasing rainfall. Consequently, further studies should assess how environmental factors and climate change will influence carbon-water fluxes.
机译:稀树草原生态系统在全球碳循环中起着至关重要的作用。但是,我们对东南亚稀树草原生态系统中碳通量的理解存在差距。在这项研究中,涡度协方差技术(EC)和基于生物特征的方法(BM)用于确定中国西南稀树草原生态系统中的碳交换。基于BM的净生态系统产量(NEP)为0.96 tC ha -1 yr -1 。基于EC的年平均总初级生产力(GPP),生态系统呼吸(Reco)和净生态系统碳交换(NEE)的估计为6.84、5.54和-1.30 tC ha -1 yr从 −1 分别从2013年5月到2015年12月,表明这个稀树草原生态系统充当了可观的碳汇。生态系统在雨季比旱季更有效,因此在旱季和雨季,生态系统的碳汇较小,为0.16 tC ha -1 yr -1 。在雨季,碳汇大约为1.14 tC ha -1 yr -1 。然而,值得注意的是,未来随着温度升高和降雨减少,碳汇能力可能下降。因此,进一步的研究应评估环境因素和气候变化将如何影响碳水通量。

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