ERL特刊精选|聚焦气候变化下人地系统的相互作用

特刊详情
客座编辑
- 李辉东,中国科学院沈阳应用生态研究所
- Minchao Wu,瑞典隆德大学
- TC Chakraborty,美国太平洋西北国家实验室
- Anna Rutgersson,瑞典乌普萨拉大学
- Torbern Tagesson,瑞典隆德大学
- Bing Xue,德国柏林工业大学
- Zhonghua Zheng,英国曼彻斯特大学
主题范围
Human-Earth system interactions play a critical role in global climate and have become increasingly important in recent decades due to the rapid pace of infrastructure and socioeconomic development. Human activities affect ecosystems worldwide. These activities, which include deforestation, afforestation, agronomy and forest management, urban expansion, renewable energy generation, etc., have largely reshaped the global land surface. The significant impacts on global ecological structure and functioning induced by these changes also influence other Earth system components, including the marine system through land-sea-atmosphere interactions and the atmosphere through changes in global heat, moisture, and carbon budgets. Regional and global socioeconomic activities, such as agriculture and energy production, may evolve over time with the natural systems through a wide range of biophysical and biogeochemical feedbacks on the Earth system from global to regional and from seasonal to centennial scales. Human activity, therefore, has become an additional dimension that complicates the existing interactions between components of the Earth system, imposing additional challenges for assessing the tipping points of climate change and for understanding the fate of the Earth system in the future Anthropocene. Therefore, further efforts for better understanding human-Earth system interactions are urgently needed. This requires synergy across scientific disciplines for developing new concepts and/or research methods drawn from multiple domains and perspectives, e.g., from survey data and social science frameworks to Earth observing systems and Earth system models.
This focus collection aims to further understand human-Earth system interactions for better serving regional and global sustainability and facilitating the achievement of UN Sustainable Development Goals. We welcome the latest research advancements in improving our understanding of human-Earth system interactions through state-of-the-art monitoring, modelling, and policy-based analysis.
We seek to address the following key areas, which cover but are not limited to:
- Human-nature coupled ecosystem processes
- Land use change and landscape pattern dynamics
- Ecosystem response and feedback to climate extremes
- Human-induced changes in biophysical and biogeochemical feedbacks in the Earth system
- Ecosystem-renewable energy interaction
- Shipping impacts on the environment and climate
- State-of-the-art methods including Earth observation and modelling for quantifying human-Earth system interactions
- Future socioeconomic changes and feedbacks to the environments
- Ecosystem services, regional planning, and sustainability
特刊文章
Editorial
Human–Earth system interactions under climate change
Huidong Li et al 2025 Environ. Res. Lett. 20 070201
Perspective
Amplifying feedback loop between drought, soil desiccation cracking, and greenhouse gas emissions
Farshid Vahedifard et al 2024 Environ. Res. Lett. 19 031005
Letter
Community forestry dominates the recent land greening amid climate change in Nepal
Shenshen Gao et al 2023 Environ. Res. Lett. 18 104014
Nan Wang et al 2023 Environ. Res. Lett.18 104038
Lejiang Yu et al 2023 Environ. Res. Lett. 18 124019
Relating three-decade surge in space cooling demand to urban warming
Haiwei Li et al 2023 Environ. Res. Lett. 18 124033
Ming Yan et al 2024 Environ. Res. Lett. 19 014032
Anastasiya Shyrokaya et al 2024 Environ. Res. Lett. 19 014037
Xiaoning Xie et al 2024 Environ. Res. Lett. 19 014061
Lina Eklund et al 2024 Environ. Res. Lett. 19 014077
Human population density and blue carbon stocks in mangroves soils
Shih-Chieh Chien et al 2024 Environ. Res. Lett. 19 034017
Pingting Gu et al 2024 Environ. Res. Lett. 19 044038
Hongxun Huang et al 2024 Environ. Res. Lett. 19 044051
Yongling Zhao et al 2024 Environ. Res. Lett. 19 064002
Mengmeng Shao et al 2024 Environ. Res. Lett. 19 064026
Rachel C Engstrand et al 2024 Environ. Res. Lett.19 064036
Socio-political dynamics in clean energy transition
Saverio Perri et al 2024 Environ. Res. Lett. 19 074017
The forest loss within small reservoirs surpasses that of large reservoirs across the tropics
Feng Yang et al 2024 Environ. Res. Lett. 19 084014
Phosphorus speciation in coastal sediment of Osaka Bay: relation to anthropogenic phosphorus loading
Muhammad Shahinur Rahman et al 2024 Environ. Res. Lett. 19 094020
Sensitivity and vulnerability to summer heat extremes in major cities of the United States
Xiaojiang Li et al 2024 Environ. Res. Lett. 19 094039
Water budget-based evapotranspiration product captures natural and human-caused variability
Shubham Goswami et al 2024 Environ. Res. Lett. 19 094034
Biogeographic patterns shape the bacterial community beyond permafrost gradients
Sizhong Yang et al 2024 Environ. Res. Lett. 19 124084
Ana Russo et al 2025 Environ. Res. Lett. 20 014075
Tropical montane forest loss dominated by increased 1–10 hectare-sized patches
Xinyue He et al 2025 Environ. Res. Lett. 20 024039
Topical Review
Research advances in mechanisms of climate change impacts on soil organic carbon dynamics
Yadong Guo et al 2023 Environ. Res. Lett. 18 103005
期刊介绍

- 2024年影响因子:5.6 Citescore: 11.1
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