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城市绿地植物群落结构特征对碳固存的影响。

Effects of plant community structural characteristics on carbon sequestration in urban green spaces.

机构信息

College of Landscape Architecture and Art, Henan Agricultural University, Zhengzhou, China.

College of Environmental Science and Forestry, State University of New York, Syracuse, NY, USA.

出版信息

Sci Rep. 2024 Mar 28;14(1):7382. doi: 10.1038/s41598-024-57789-2.

Abstract

The structural characteristics of plant communities in urban green spaces have a significant impact on their carbon sequestration function. In this study, comprehensive data were collected from 106 plant communities (each 20 m × 20 m) in Zhengzhou Green Expo Park. We assessed aboveground and soil carbon storage, alongside maintenance carbon emissions, to quantify carbon dynamics. Our primary objective was to establish a statistical model that correlates the structural attributes of plant communities with their total annual carbon sequestration. This model aims to provide a quantitative framework for optimizing community structures to maximize carbon sequestration in urban green spaces. The results showed that density and coverage were significantly and positively correlated with aboveground and soil carbon stocks. Density and mean height were significantly and positively correlated with maintenance carbon emissions. Density played a key structural role in regulating the total carbon sequestration of the plant communities, being 27.24 times more effective than coverage. The total annual carbon sequestration of the plant community reached an optimal value of 327.67 kg CO-eq/y at a density and cover of 0.15 and 1, respectively. This study provides valuable data for increasing the carbon sink ability of urban green spaces through plant structure regulation and supporting low-carbon development strategies in urban management.

摘要

城市绿地植物群落的结构特征对其碳固存功能有重要影响。本研究综合采集了郑州市绿博园 106 个(20m×20m)植物群落的数据,评估了地上和土壤碳储量以及维护碳排放量,以量化碳动态。本研究旨在建立一个统计模型,将植物群落的结构特征与它们的年总碳固存量相关联,为优化群落结构以最大化城市绿地的碳固存提供定量框架。结果表明,密度和盖度与地上和土壤碳储量呈显著正相关。密度和平均高度与维护碳排放量呈显著正相关。密度在调节植物群落的总碳固存方面起着关键的结构作用,其效果是盖度的 27.24 倍。当密度和盖度分别为 0.15 和 1 时,植物群落的年总碳固存量达到了 327.67kg CO-eq/y 的最佳值。本研究为通过植物结构调节提高城市绿地的碳汇能力,以及支持城市管理中的低碳发展战略提供了有价值的数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f82/10978906/66c5f592a088/41598_2024_57789_Fig1_HTML.jpg

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