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A Basin-Scale Estimation of Carbon Stocks of a Forest Ecosystem Characterized by Spatial Distribution and Contributive Features in the Liuxihe River Basin of Pearl River Delta

机译:珠江三角洲流溪河流域森林生态系统碳储量的空间分布和贡献特征的流域规模估算

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Forest ecosystems make a greater contribution to carbon (C) stocks than any other terrestrial ecosystem. To understand the role of regional forest ecosystems in global climate change and carbon exchange, forest C stocks and their spatial distribution within the small (2300 km 2 ) Liuxihe River basin in China were analyzed to determine the different contributors to the C stocks. Forest C stocks were quantified by measuring the biomass of trees, understory vegetation, litter and roots, as well as soil organic C, using data from field samples and laboratory experiments. The results showed that forests stored 38.04 Tg·C in the entire basin, with secondary and planted forests accounting for 89.82% and 10.18%, respectively, of the stored C. Five types of forests, a subtropical evergreen broad-leaved forest, a subtropical coniferous and broad-leaved mixed forest, a subtropical coniferous forest, a timber forest, and a non-wood forest, stored 257.55 ± 15.01, 218.92 ± 9.59, 195.24 ± 18.29, 177.42 ± 17.55, and 117.86 ± 6.04 Mg·C·ha ?1 , respectively. In the forest ecosystem C stocks of the basin, soils on average contributed about 73.78%, not including root underground biomass. The results of this study, which provide baseline forest C stock data for ecosystem services and regional C flux research, are useful to support the basin-scale forest management and land use change.
机译:森林生态系统对碳(C)储量的贡献比其他任何陆地生态系统都大。为了了解区域森林生态系统在全球气候变化和碳交换中的作用,分析了中国小溪流域(2300 km 2)内森林碳储量及其空间分布,以确定造成碳储量不同的因素。利用田间采样和实验室实验数据,通过测量树木,林下植被,凋落物和根以及土壤有机碳的生物量来量化森林碳储量。结果表明,全流域森林蓄积38.04 Tg·C,其中次生林和人工林分别占蓄积C的89.82%和10.18%。五种类型的森林,亚热带常绿阔叶林,亚热带针叶和阔叶混交林,亚热带针叶林,木材林和非木材林,存储量为257.55±15.01、218.92±9.59、195.24±18.29、177.42±17.55和117.86±6.04 Mg·C·ha分别为。在流域的森林生态系统碳储量中,土壤平均贡献了约73.78%,不包括地下地下生物量。这项研究的结果为生态系统服务和区域碳通量研究提供了基准森林碳储量数据,有助于支持流域规模的森林管理和土地利用变化。

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