环境科学
封面(代数)
土地覆盖
地球科学
气候变化
全球变化
遥感
天体生物学
土地利用
土(古典元素)
地球观测
环境资源管理
地质学
卫星
天文
工程类
物理
海洋学
土木工程
机械工程
作者
Huihui Feng,Shu Wang,Bin Zou,Yunfeng Nie,Shuchao Ye,Ying Ding,Sijia Zhu
标识
DOI:10.1016/j.asr.2022.09.054
摘要
• It summarized research progress and prospects of LUCC impacts on eco-environments. • LUCC affects Earth’s eco-environment by altering the surface-atmospheric interaction. • Mechanisms of LUCC impacts are surface radiation budget and matter conservation. • Challenges remain because of uncertainties in data, methodologies and evolution. • Future studies on data assimilation, contribution, physical and full-process are required. Land use and cover change (LUCC) is one of the key variables dominating land-atmosphere interactions and strongly affects the Earth’s eco-environments by altering surface properties. Numerous studies have been carried out to assess the impact of LUCC. However, the Earth is a large, open and complex system characterized by complex interactions between its eco-environments and drivers. This study aimed to summarize previous studies of the impact of LUCC on the Earth’s eco-environments and discuss the progress and limitations in suggesting future directions. Previous studies have confirmed that LUCC has a wide range of impacts on the Earth’s eco-environments, which are represented by the alternation of climate (temperature, precipitation, wind, and humidity), hydrology (soil moisture, runoff, and evapotranspiration), ecology and environmental (air, water, and soil) pollution. Physically, the impacts were mainly attributed to the disturbance of the surface radiation budget and matter conservation caused by LUCC. Although great achievements have been made, several challenges remain because of the unavoidable uncertainties in data sources and methodologies and the complexity of eco-environmental evolution. Therefore, data assimilation, physical-based investigations, contribution isolation, and full-process analysis are required to overcome these challenges in future research. The results of this study helped to capture the impact of LUCC and its physical mechanisms, which provide useful clues for future research and support the relative land use management for sustainable development.
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