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不同斑块大小的森林碎片中的生态系统碳储存。

Ecosystem carbon storage in forest fragments of differing patch size.

机构信息

Laboratory of Geospatial Technology for the Middle and Lower Yellow River Regions, College of Environment and Planning, Henan University, Kaifeng, 475004, China.

School of Environmental Science and Engineering of Sun Yat-sen University, No. 135, Xingang Xi Road, Guangzhou, 510275, P. R. China.

出版信息

Sci Rep. 2017 Oct 13;7(1):13173. doi: 10.1038/s41598-017-13598-4.

Abstract

Forest fragmentation threatens the ecosystem carbon (C) storage. The distribution patterns of ecosystem C density are poorly documented for fragmented forests of differing patch size. The objectives of this study were to examine C density in these forest ecosystems and the influence of edge effects on C density. Allometric equations were used to quantify aboveground biomass. Carbon density was estimated by analyzing the C concentration of each component. We found that ecosystem carbon density ranged from 173.9 Mg ha in the small sized forest fragments, to 341.1 Mg ha in the contiguous evergreen sub-tropical forest. Trees (46.5%) and mineral soil (50.2%) were the two largest contributors to the total ecosystem C pool in all fragments. Both C and nitrogen (N) in soil and fine roots were highly heterogeneous among the different fragment sizes and soil depths. We concluded that ecosystem C density of forest fragments were significantly influenced by patch size and edge effects. The fragmented forests in southern China play an important role in the C budget, and need urgent conservation. These results are likely to be further integrated into forest management plans and generalized into other contexts, to evaluate C stocks at the landscape scale.

摘要

森林破碎化威胁着生态系统的碳(C)储存。对于不同斑块大小的破碎化森林,生态系统 C 密度的分布模式尚未得到充分记录。本研究的目的是检验这些森林生态系统中的 C 密度以及边缘效应对 C 密度的影响。使用异速方程来量化地上生物量。通过分析每个成分的 C 浓度来估计碳密度。我们发现,生态系统碳密度从小型森林斑块中的 173.9 Mg ha 到连续常绿亚热带森林中的 341.1 Mg ha 不等。在所有片段中,树木(46.5%)和矿物土壤(50.2%)是总生态系统 C 库的两个最大贡献者。不同片段大小和土壤深度之间的土壤和细根中的 C 和氮(N)都高度不均匀。我们得出结论,森林片段的生态系统 C 密度受到斑块大小和边缘效应的显著影响。中国南方的破碎化森林在碳预算中起着重要作用,需要紧急保护。这些结果很可能进一步整合到森林管理计划中,并推广到其他背景下,以评估景观尺度上的碳储量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7154/5640670/558f55499cf7/41598_2017_13598_Fig1_HTML.jpg

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