风电场减少了草地植物群落的多样性,导致植物群落趋同。

IF 2.3 Q2 ECOLOGY
Xuancheng Zhao, Fengshi Li, Yuan Yuan, Guna Ari, Yongzhi Yan, Qing Zhang, Aruhan Olhnuud, Pengtao Liu
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引用次数: 0

摘要

气候变暖已成为全球共同关注的热点问题,风能已成为重要的清洁能源。风力发电场通常建在草原等荒地上,可能会对原始生态系统和生物多样性造成破坏。然而,风力发电场对植物群落功能多样性的影响仍然是一个结果不明确的主题。本研究选择108个样地,通过野外植被调查,鉴定出10个植物功能性状。我们使用一般线性回归分析来评估风电场对植被群落多样性的影响,重点关注10个不同的植物功能性状。研究表明,风电场对草地植物群落的影响显著,导致植物多样性和功能性状的减少,导致物种组成趋同。此外,风电场增加了某些功能特征,如高度和叶面积,同时降低了磷含量。此外,这些植物群落的生产力因风电场的存在而降低。本研究强调了内蒙古风电场对植物多样性的负面影响,旨在为风电场的优化配置提供科学建议,以保护生物多样性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wind farms reduce grassland plant community diversity and lead to plant community convergence.

Climate warming has become a hot issue of common concern all over the world, and wind energy has become an important clean energy source. Wind farms, usually built in wild lands like grassland, may cause damage to the initial ecosystem and biodiversity. However, the impact of wind farms on the functional diversity of plant communities remains a subject with unclear outcomes. In this study, we chose 108 sample plots and identified 10 plant functional traits through a field vegetation survey. We used general linear regression analysis to assess how wind farm influenced vegetation community diversity, focusing on ten distinct plant functional traits. The study revealed that wind farm had significant impacts on grassland plant communities, diminishing diversity and functional traits, which leads to species composition convergence. Additionally, wind farm increased certain functional traits, like height and leaf area, while decreasing phosphorus content. Furthermore, the productivity of these plant communities was reduced by wind farm presence. This study highlights the negative consequences of wind farms in Inner Mongolia on plant diversity, aiming to offer scientific recommendations for the optimal arrangement of wind farms to safeguard biodiversity.

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