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Soil wind erosion evaluation and sustainable management of typical steppe in Inner Mongolia, China

机译:中国内蒙古典型草原土壤风蚀评价与可持续管理

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摘要

Soil wind erosion is an important ecological environmental problem that is widespread in arid and semi-arid regions. Currently, related studies are mainly focused on spatiotemporal characteristics or analysis of effector mechanisms, and they do not facilitate direct servicing of management decisions. In this paper, we used the Xilingol typical steppe in Inner Mongolia, China, as a study site to develop a decision framework for a comprehensive understanding of soil wind erosion and to promote sustainable management of steppes. In this study, we used the Revised Wind Erosion Equation model to simulate soil wind erosion. We combined this model with linear trend analysis to evaluate the ecological effects of soil wind erosion and wind erosion intensity, and delineated the gravity center migration path. We used the constraint line method to reveal the mechanisms by which climatic factors affected soil wind erosion, achieved the spatial visualization of wind-breaking and sand-fixing service flow, and proposed decision-based regional sustainable development suggestions. The results showed that long-term soil wind erosion will lead to soil coarsening and loss of soil nutrients. Soil wind erosion in the study site showed worsening trends and risks, and as such, ecological environment conservation and management are urgently required. The study framework promotes a clear understanding of the complex relationship of human-earth systems. The study results will aid in the ecological remediation of steppe landscapes and the prevention of desertification and will provide a foundation for win-win management of ecological conservation and economic development in arid and semi-arid regions.
机译:土壤风侵蚀是一个重要的生态环境问题,在干旱和半干旱地区普及。目前,相关研究主要集中在效应机制的时空特征或分析,并且他们不促进管理决策的直接服务。在本文中,我们在中国内蒙古的西泠典型的草原,作为一个研究现场,为全面了解土壤风侵蚀并促进干旱的可持续管理,制定决策框架。在这项研究中,我们使用了修改后的风蚀等式模型来模拟土风腐蚀。我们将该模型与线性趋势分析相结合,评价土壤风蚀和风蚀强度的生态效应,并描绘了重力中心迁移路径。我们利用约束方法来揭示气候因素受到土壤风蚀的机制,实现了绕组和砂定制的空间可视化,并提出了基于决策的区域可持续发展建议。结果表明,长期土壤风蚀将导致土壤腐蚀性和土壤营养素丧失。研究现场的土壤风蚀显示出现恶化的趋势和风险,因此,迫切需要生态环境保护和管理。研究框架促进了对人土系统复杂关系的清楚了解。该研究结果将有助于草原景观的生态修复和防止荒漠化,并将为干旱和半干旱地区进行生态保护和经济发展的双赢管理。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|111488.1-111488.13|共13页
  • 作者单位

    School of Natural Resources Faculty of Geographical Science Beijing Normal University Beijing 100875 China State Key Laboratory of Earth Surface Process and Resource Ecology Beijing Normal University Beijing 100875 China;

    School of Natural Resources Faculty of Geographical Science Beijing Normal University Beijing 100875 China State Key Laboratory of Earth Surface Process and Resource Ecology Beijing Normal University Beijing 100875 China;

    School of Natural Resources Faculty of Geographical Science Beijing Normal University Beijing 100875 China State Key Laboratory of Earth Surface Process and Resource Ecology Beijing Normal University Beijing 100875 China;

    School of Natural Resources Faculty of Geographical Science Beijing Normal University Beijing 100875 China State Key Laboratory of Earth Surface Process and Resource Ecology Beijing Normal University Beijing 100875 China;

    School of Natural Resources Faculty of Geographical Science Beijing Normal University Beijing 100875 China State Key Laboratory of Earth Surface Process and Resource Ecology Beijing Normal University Beijing 100875 China;

    School of Natural Resources Faculty of Geographical Science Beijing Normal University Beijing 100875 China State Key Laboratory of Earth Surface Process and Resource Ecology Beijing Normal University Beijing 100875 China;

    School of Natural Resources Faculty of Geographical Science Beijing Normal University Beijing 100875 China State Key Laboratory of Earth Surface Process and Resource Ecology Beijing Normal University Beijing 100875 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Soil wind erosion; Ecological effects; Wind-breaking and sand-fixing service flow; Arid and semi-arid regions; Sustainable management;

    机译:土壤风腐蚀;生态效应;绕组和砂固定的服务流动;干旱和半干旱地区;可持续管理;

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