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High resolution carbon emissions simulation and spatial heterogeneity analysis based on big data in Nanjing City, China

机译:基于南京市大数据的高分辨率碳排放仿真与空间异质性分析

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The accurate examination of the spatial distribution of carbon emissions is critical for carbon reduction strategies. Large uncertainties still exist for previous studies which tried to simulate carbon emissions in spatial, and the resolution needs to be improved to a large extent. At a city level, this study collected various sources of big data and designed a new methodology to examine carbon emissions in Nanjing city at a high resolution of 300 m. In addition, regional differences were compared, and influence factors were analyzed. This study found, the core urban area in Nanjing presented an obvious intensity variation, but the emission intensities were much lower than in those from the peripheral region where industrial land was mainly distributed. Broad areas away from urban areas, where cropland and rural residential land were distributed, presented low carbon emission intensities. Regionally, the districts in the core urban area always presented high emission intensities. The characteristics of land usage and social-economic development were key factors in determining carbon emissions. An increase in ecological land and a decrease in developed land will help carbon reduction strategies greatly. For social and economic development, adjustments in the structure of industry and energy use efficiency improvements will play key roles in the reduction of carbon emissions. (C) 2019 Elsevier B.V. All rights reserved.
机译:准确检测碳排放的空间分布对于碳还原策略至关重要。以前的研究仍然存在大的不确定性,这试图模拟空间中的碳排放,并且在很大程度上需要提高分辨率。这项研究在一个城市,本研究收集了各种大数据来源,并设计了一种新的方法,以高分辨率为300米的高分辨率检查南京市的碳排放。此外,比较了区域差异,分析了影响因素。本研究发现,南京核心城市地区提出了明显的强度变化,但排放强度远低于工业土地主要分布的外围地区的污染强度。远离城市地区的广阔地区,田园和农村住宅用地分配,呈现出低碳排放强度。地区,核心城市地区的地区总是提出了高排放强度。土地使用和社会经济发展的特点是确定碳排放的关键因素。生态土地的增加和发达的土地的减少将有助于碳还原策略。为了社会和经济发展,行业结构和能源利用效率的调整将在减少碳排放时发挥关键作用。 (c)2019 Elsevier B.v.保留所有权利。

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