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Linking climate change and socioeconomic development to urban land use simulation: Analysis of their concurrent effects on carbon storage

机译:将气候变化与社会经济发展与城市土地利用仿真联系起来:分析它们对碳储存的并发效果

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Land use/cover change (LUCC) in the context of rapid urbanization process has exerted profound influences on carbon storage and ecosystem functions. Exploring the relationships between various urbanization patterns and carbon storage is conductive to developing scientific carbon storage polices. This study incorporated climate change and socioeconomic development into the urbanization process, and designed six future urbanization scenarios based on the combination of the Representative Concentration Pathways (RCPs) and the Shared Socioeconomic Pathways (SSPs). A hierarchical framework that integrates system dynamic, land-use simulation and carbon storage evaluation models was proposed to predict urban land use change under six concurrent scenarios of climate and socioeconomic conditions, and examine their synergic effects on carbon storage. Hubei Province, a rapidly urbanized area in central China, was selected as a case study. The results show that the decline of carbon storage from 2015 to 2030 ranges from 16.40 Tg to 24.22 Tg under different scenarios, and the scenario featuring steady climate conditions, low population growth, moderate economic growth and high-quality urbanization (e. g., technology innovation) will better maintain carbon storage. Our findings also demonstrate the spatially heterogeneous patterns of carbon storage change at regional scale, and more severe carbon storage loss in the medium-sized cities than the metropolis. This study suggests that targeted ecological conservation strategies should be developed for different cities.
机译:在快速城市化进程的背景下,土地使用/覆盖变化(LUCC)对碳储存和生态系统功能产生了深刻的影响。探索各种城市化模式与碳储存之间的关系是开发科学碳储存杆的导电性。本研究将气候变化和社会经济发展纳入城市化进程,并根据代表集中途径(RCP)和共享社会经济途径(SSP)的结合设计了六个未来的城市化情景。建议将系统动态,土地利用仿真和碳储存评估模型整合的分层框架,以预测在六种同时的气候和社会经济条件的情况下的城市土地利用变化,并检查其对碳储存的协同作用。湖北省是中国中部迅速城市化的地区,被选为案例研究。结果表明,2015年到2030年的碳储存下降到不同情景的16.40 TG至24.22 TG,以及稳定的气候条件,人口增长低,经济增长低,高质量的城市化(例如,技术创新)的情景。将更好地保持碳储存。我们的调查结果还展示了区域规模的碳储存变化的空间异质模式,比大都市的中等城市更严重的碳储存损失。本研究表明,应为不同的城市制定有针对性的生态保护策略。

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