Downscaling of planetary boundaries and sustainability management: A nexus analysis of water, land and major functions at the national-provincial level

Nairong Tan, Xiaolei Wang, Hao Wang, Zhuoqun Gao, Xiaoying Chang, Tao Ma
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引用次数: 3

Abstract

This study introduces planetary boundaries as a global sustainability benchmark to expand the evaluation of the major function zoning. We established the relationship between the resource boundaries and China's sustainability management system while calculating the national and provincial indicators of land and water boundaries and major functions. The results showed that the efficiency of land resources was related to the distribution of forest, grassland, and wetland ecosystems; the efficiency of water resources was related to the basin and economic distribution. Linear downscaling methods are less applicable and effective in studies of planetary boundaries. The provincial water and land boundary are not consistent with the top-down decomposition results of planetary boundaries. The spatial mismatch between regional development and population will lead to the overexploitation of national resources and the environment. For basin regions rich in water resources and biome regions rich in ecological resources, the boundary threshold should be increased for major function clustering based on efficiency advantages. For main agricultural production zones and key ecological function zones beyond the water boundary, water allocation should reduce industrial and residential water use, and improve agricultural and ecological water efficiency to ensure food security and ecological safety. For optimization development zones, industrial transfer to the surrounding areas would optimize the industrial water structure and reduce virtual water consumption.

地球边界的缩小和可持续性管理:国家-省一级的水、土地和主要功能的联系分析
本研究引入行星边界作为全球可持续性基准,扩展了主要功能区划的评价。通过计算国土水界指标和主要功能指标,建立了资源边界与中国可持续性管理体系的关系。结果表明:土地资源效率与森林、草地和湿地生态系统的分布有关;水资源利用效率与流域和经济分布有关。线性降尺度方法在行星边界研究中适用性和有效性较差。省际水陆边界与行星边界自上而下分解结果不一致。区域发展与人口的空间不匹配将导致国家资源和环境的过度开发。对于水资源丰富的流域区域和生态资源丰富的生物群系区域,基于效率优势,应提高主要功能聚类的边界阈值。对于水界以外的农业主产区和重点生态功能区,水资源配置应减少工业和生活用水,提高农业和生态用水效率,确保粮食安全和生态安全。对于优化开发区来说,产业向周边转移可以优化产业水结构,降低虚拟用水量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
6.60
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