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A Preliminary Study of the Carbon Emissions Reduction Effects of Land Use Control

机译:土地利用控制中的碳减排效果初探

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Land use change not only directly influences carbon storage in terrestrial ecosystems but can also cause energy-related carbon emissions. This study examined spatiotemporal land use change across Jiangsu Province, China; calculated vegetation carbon storage loss caused by land use change and energy-related carbon emissions; analysed the relationship among land use change, carbon emissions and social-economic development; and optimized land use structure to maximize carbon storage. Our study found that 13.61% of the province's land area underwent a change in type of land use between 1995 and 2010, mainly presented as built-up land expansion and cropland shrinkage, especially in southern Jiangsu. Land use change caused a 353.99?×?10(4) t loss of vegetation carbon storage loss. Energy-related carbon emissions increased 2.5 times from 1995 to 2013; the energy consumption structure has been improved to some extent while still relying on coal. The selected social-economic driving forces have strong relationships with carbon emissions and land use changes, while there are also other determinants driving land use change, such as land use policy. The optimized land use structure will slow the rate of decline in vegetation carbon storage compared with the period between 1995 and 2010 and will also reduce energy-related carbon emissions by 12%.
机译:土地利用变化不仅直接影响陆地生态系统中的碳存储,而且还可能导致与能源有关的碳排放。本研究调查了中国江苏省的时空土地利用变化。计算出的土地利用变化和与能源有关的碳排放量导致的植被碳储量损失;分析了土地利用变化,碳排放与社会经济发展之间的关系;优化的土地利用结构,以最大限度地提高碳储量。我们的研究发现,在1995年至2010年间,全省土地面积发生了13.61%的变化,主要表现为建成区土地扩张和耕地面积减少,特别是在苏南地区。土地利用变化导致植被碳储量损失353.99××10(4)t。从1995年到2013年,与能源有关的碳排放量增长了2.5倍;仍然依靠煤炭,能源消费结构有所改善。选定的社会经济驱动力与碳排放量和土地利用变化有密切关系,同时还有其他决定因素驱动土地利用变化,例如土地使用政策。与1995年至2010年相比,优化的土地利用结构将减缓植被碳储量的下降速度,还将使与能源有关的碳排放量减少12%。

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