预测 21 世纪全球人口与土地利用变化之间的空间相互作用

IF 9.1 Q1 ENVIRONMENTAL STUDIES
Di Yang, Wei-Xin Luan, Xiaoling Zhang
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引用次数: 0

摘要

以往关于全球城市用地扩张的研究主要集中在如何容纳不断增长的人口,而没有充分考虑城市用地与生态服务之间的权衡。因此,研究这种扩张对生态服务系统的影响,同时研究人口增长与可用城市用地之间的潜在权衡非常重要。在此,我们量化了不同的全球土地扩张方案对协调全球人口变化和实现联合国可持续发展目标 11(可持续城市和人类住区)的贡献。我们采用综合框架预测全球土地消耗,并在共同的社会经济路径(SSP)下制定全球土地扩张与人口之间的权衡策略,旨在弥补这一领域的知识差距。我们的研究结果表明,在全球土地扩张和人口增长之间实施权衡战略可以成功降低未来全球土地消耗水平。例如,在 SSP1 情景下,我们的研究结果表明,实施权衡政策可以大幅减少土地消耗,同时增加碳汇,保护全球生态服务系统。具体来说,到 21 世纪末,将土地转化为森林或草地可帮助减少 8.07% 的土地消耗。这些见解对于设计土地利用政策非常有价值,这些政策既能纳入基于数据的解决方案,又能应对城市可持续发展的挑战,同时还能适应人口增长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Projecting spatial interactions between global population and land use changes in the 21st century

Projecting spatial interactions between global population and land use changes in the 21st century
Previous research on global urban land expansion has primarily focused on accommodating the growing population without adequately considering the trade-offs between urban land and ecological services. Consequently, it is important to investigate the effect of this expansion on the ecological service system, while also examining the potential trade-offs between population growth and available urban land. Here, we quantify how different global land expansion options contribute to reconciling global population changes and to compliance with the UN Sustainable Development Goal 11 on sustainable cities and human settlements. Using an integrated framework for projecting global land consumption with the trade-off strategy between global land expansion and population under shared socioeconomic pathways (SSPs), we aim to bridge the knowledge gap in this area. The results of our study suggest that implementing a trade-off strategy between global land expansion and population growth can successfully reduce the levels of global land consumption in the future. Under the SSP1 scenario, for instance, our findings indicate that implementing trade-off policies can significantly reduce land consumption while increasing carbon sinks and protecting the global ecological service system. Specifically, converting land to forest or grassland can help decrease land consumption by 8.07% by the end of the 21st century. These insights can be valuable in designing land use policies that incorporate data-based solutions and address the challenges of sustainable urban development while also accommodating population growth.
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