Determinants of spatiotemporal changes of land use carbon emissions for counties in Shaanxi Province, China

IF 5.8 3区 环境科学与生态学 0 ENVIRONMENTAL SCIENCES Environmental Science and Pollution Research Pub Date : 2024-09-13 DOI:10.1007/s11356-024-34835-0
Wei Zhou, Xin Fu, Christopher Auffrey, Yujiao Zhang
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Abstract

In China, urban sprawl and developed land expansion challenge the country’s “carbon peak” and “carbon neutrality” goals. Counties as the basic governance units are crucial for effective carbon reduction policies. This study examines land use carbon emissions (LUCE) in Shaanxi Province at the county level, essential for China’s low-carbon strategy. Analyzing data from 107 counties between 2000 and 2020, we found that developed land, though increasing, is the primary carbon source with a slowing growth rate. The Conversion of Cropland to Forests and Grasslands national policy mitigated the impact on carbon absorption. Carbon emissions displayed positive autocorrelation and spatial heterogeneity, varying across the region. Using the Spatial Durbin Error Model, we linked county-level emissions to GDP per capita, population, urbanization rate, and research and development expenditure for direct and indirect influence. These factors correlate with fossil fuel use and high-quality industrial development. Promoting public transits and reducing private car use are vital for achieving local and regional low-carbon goals.

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中国陕西省县域土地利用碳排放时空变化的决定因素
在中国,城市无序扩张和发达地区土地扩张挑战着中国的 "碳峰值 "和 "碳中和 "目标。县域作为基本治理单元,对于有效的碳减排政策至关重要。本研究考察了陕西省县级土地利用碳排放(LUCE)情况,这对中国的低碳战略至关重要。通过分析 2000 年至 2020 年期间 107 个县的数据,我们发现,虽然开发土地在不断增加,但其主要碳源的增长速度却在放缓。国家 "退耕还林还草 "政策减轻了对碳吸收的影响。碳排放量显示出正自相关性和空间异质性,在整个地区各不相同。利用空间杜宾误差模型,我们将县级排放与人均 GDP、人口、城市化率和研发支出联系起来,以获得直接和间接影响。这些因素与化石燃料的使用和高质量的工业发展相关。促进公共交通和减少私家车使用对于实现地方和区域低碳目标至关重要。
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来源期刊
CiteScore
8.70
自引率
17.20%
发文量
6549
审稿时长
3.8 months
期刊介绍: Environmental Science and Pollution Research (ESPR) serves the international community in all areas of Environmental Science and related subjects with emphasis on chemical compounds. This includes: - Terrestrial Biology and Ecology - Aquatic Biology and Ecology - Atmospheric Chemistry - Environmental Microbiology/Biobased Energy Sources - Phytoremediation and Ecosystem Restoration - Environmental Analyses and Monitoring - Assessment of Risks and Interactions of Pollutants in the Environment - Conservation Biology and Sustainable Agriculture - Impact of Chemicals/Pollutants on Human and Animal Health It reports from a broad interdisciplinary outlook.
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