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Biocapacity optimization in regional planning

机译:区域规划中的生物承载力优化

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摘要

Ecological overshoot has been accelerating across the globe. Optimizing biocapacity has become a key to resolve the overshoot of ecological demand in regional sustainable development. However, most literature has focused on reducing ecological footprint but ignores the potential of spatial optimization of biocapacity through regional planning of land use. Here we develop a spatial probability model and present four scenarios for optimizing biocapacity of a river basin in Northwest China. The potential of enhanced biocapacity and its effects on ecological overshoot and water consumption in the region were explored. Two scenarios with no restrictions on croplands and water use reduced the overshoot by 29 to 53%, and another two scenarios which do not allow croplands and water use to increase worsened the overshoot by 11 to 15%. More spatially flexible transition rules of land use led to higher magnitude of change after optimization. However, biocapacity optimization required a large amount of additional water resources, casting considerable pressure on the already water-scarce socio-ecological system. Our results highlight the potential for policy makers to manage/optimize regional land use which addresses ecological overshoot. Investigation on the feasibility of such spatial optimization complies with the forward-looking policies for sustainable development and deserves further attention.
机译:生态过冲在全球范围内一直在加速。优化生物承载力已成为解决区域可持续发展中生态需求过高的关键。但是,大多数文献都集中在减少生态足迹上,但忽略了通过土地利用区域规划进行生物承载力空间优化的潜力。在这里,我们开发了一个空间概率模型,并提出了四种优化西北流域生物承载力的方案。探索了该地区生物承载力增强的潜力及其对生态超调和用水的影响。在没有限制耕地和用水的两种情况下,超量减少了29%至53%,而在没有增加耕地和用水的两种情况下,超量增加了11%至15%。土地使用在空间上更灵活的过渡规则导致优化后的变化幅度更大。然而,生物承载力的优化需要大量额外的水资源,给已经缺水的社会生态系统带来了巨大压力。我们的结果凸显了政策制定者管理/优化解决生态过剩问题的区域土地使用的潜力。对这种空间优化的可行性进行的研究符合可持续发展的前瞻性政策,值得进一步关注。

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