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Integrating vegetation suitability in sustainable revegetation for the Loess Plateau, China

机译:将植被适宜性整合在中国黄土高原的可持续重新植被中

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摘要

Revegetation is accelerating globally due to its benefits for ecosystem restoration, desertification prevention, and climate change mitigation. The Loess Plateau has suffered serious erosion in the past decades, and revegetation projects, such as those under the 'Grain for Green' program, have been conducted for soil erosion prevention. The irrational distribution of artificial plantations had negative consequences, including vegetation degradation, soil drying, and decreases in streamflow. Determining the suitable plant species is critical in guiding the design of revegetation programs and may help delimit the suitable boundaries for artificial plantations. In this study, we used an eco-hydrological model to quantify the suitability of two typical revegetation species (Robinia pseudoacacia and Stipa bungeana) using a developed vegetation suitability equation, which estimates the water use/water stress trade-off. The results showed that R. pseudoacacia was more sensitive to water stress than S. bungeana. The water use of both species varied along the precipitation gradient, and S. bungeana generally had a higher water use than R. pseudoacacia. Suitable areas for R. pseudoacacia were mainly located in the northeastern part of the plateau. By overlaying the suitable boundaries for R. pseudoacacia on the current land cover, we found that the area of forests distributed in unsuitable regions reached 7.31% of the entire Loess Plateau. Converting forests beyond the suitable boundary to grasslands would increase the water yield (0.51%-12.23%) and slightly decrease the soil retention capacity (0.01%-0.08%), resulting in a 'win-win' situation for sustainable plant-soil ecosystems and soil-water conservations. Additionally, the suitable area of R. pseudoacacia is predicted to shrink under projected future drying trends. In conclusion, vegetation suitability in the future planning and design of revegetation projects should be considered to effectively tackle the impacts of environmental degradation and climate change in the Loess Plateau.
机译:由于其对生态系统恢复,荒漠化防治和气候变化缓解的益处,即可全球加速全球。在过去的几十年里,黄土高原遭受了严重的侵蚀,并为土壤侵蚀预防而进行了重新植被项目,例如“绿色粮食计划”。人工种植园的非理性分布具有负面后果,包括植被降解,土壤干燥和流出中的减少。确定合适的植物物种对于引导膝上计划的设计至关重要,并且可以帮助分隔人造种植园的合适边界。在这项研究中,我们使用了生态水文模型使用发达的植被适应性方程来量化两种典型的植物植被物种(Robinia Pseudoacacia和Stipa Bungeana)的适用性,估计水使用/水胁迫折衷。结果表明,R.伪曲目对水分应激比S.Bungeana更敏感。两种物种的用水沿着沉淀梯度变化,S.Bungeana通常具有比R.伪曲目更高的用水量。 R.Pseudoacacia的合适区域主要位于高原东北部。通过覆盖当前陆地覆盖物的伪田曲线的合适边界,我们发现在不合适地区分布的森林面积达到整个黄土高原的7.31%。将森林转换为草原的合适边界将增加水产量(0.51%-12.23%),略微降低土壤保留能力(0.01%-0.08%),导致可持续植物 - 土壤生态系统的“双赢”情况和土壤水别保护。另外,预计将在未来的未来干燥趋势下缩小的合适面积。总之,应考虑未来规划和设计的植被适宜性,以有效地解决黄土高原环境退化和气候变化的影响。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|143572.1-143572.13|共13页
  • 作者单位

    State Key Laboratory of Urban and Regional Ecology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences P.O. Box 2871 Beijing 100085 China;

    State Key Laboratory of Earth Surface Processes and Resource Ecology Faculty of Geographical Science Beijing Normal University No. 19 XinjieKouWai Street Beijing 100875 China;

    State Key Laboratory of Urban and Regional Ecology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences P.O. Box 2871 Beijing 100085 China;

    State Key Laboratory of Urban and Regional Ecology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences P.O. Box 2871 Beijing 100085 China;

    State Key Laboratory of Urban and Regional Ecology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences P.O. Box 2871 Beijing 100085 China Academy for Multidisciplinary Studies Capital Normal University No. 105 Xisanhuanbeilu Road Beijing 100048 China;

    State Key Laboratory of Urban and Regional Ecology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences P.O. Box 2871 Beijing 100085 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Optimality theory; Suitable boundary; Land use change; Environmental degradation; Ecosystem management;

    机译:最优理论;合适的边界;土地利用变化;环境恶化;生态系统管理;

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