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How does urbanization affect carbon emission intensity under a hierarchical nesting structure? Empirical research on the China Yangtze River Delta urban agglomeration

机译:城市化如何影响等级嵌套结构下的碳排放强度? 中国长江三角洲城市集聚的实证研究

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Urbanization is an important direction for China's future social development and an important focus of its carbon emission reduction path. China's current administrative management is a vertical nested structure, and the characteristics of high-scale regions have a non-negligible impact on low-scale areas. Taking the county scale of the basic unit of economic and social development as the research scale, according to the panel data of the Yangtze River Delta from 2008 to 2016, a two-level hierarchical linear model (HLM) for carbon emission intensity is constructed, especially considering the characteristics of high-scale regions (i.e., low-carbon pilot cities) at the second level, and is combined with the mediating effect test method to analyze the impact path of urban development on carbon emissions intensity. The results show that (1) there is a spatial nesting relationship between regions of different scales, and the city scale can explain 85.21% of the carbon emissions intensity, which is much higher than the county scale. (2) There is anN-shaped curve relationship between urban development and carbon emissions intensity. After considering the high-scale factor (low-carbon pilot cities) at the city scale (the second level of the HLM), if a high-scale city is a low-carbon pilot city, then improvement in the level of urbanization in the county can promote a reduction in carbon intensity. (3) The impact path of urban development (sic) per capita gross domestic product (the proportion of secondary industry, patent application volume) -> carbon emissions intensity and urban development -> the proportion of tertiary industry -> carbon emissions intensity is significant. However, the path of the proportion of tertiary industry -> urban development -> carbon emissions intensity is not significant.
机译:城市化是中国未来社会发展的重要方向,以及其碳排放减排路径的重要焦点。中国目前的行政管理是一种垂直嵌套结构,高尺寸区域的特点对低尺寸区域的影响不可能。以2008年至2016年的长江三角洲的小组数据为研究规模,以2008年至2016年的长江三角洲的小组数据为基本单位,建造了两级分层线性模型(HLM),构建了一种用于碳排放强度的两级等级线性模型(HLM),特别考虑在第二级高尺寸区(即低碳试验城市)的特点,并与调解效果试验方法相结合,分析城市发展对碳排放强度的影响路径。结果表明(1)不同规模的区域之间存在空间嵌套关系,城市规模可以解释碳排放强度的85.21%,远远高于县标。 (2)城市发展与碳排放强度之间存在Ann形曲线关系。在考虑到城市规模的大型因素(低碳试点城市)(HLM的第二级),如果大尺寸城市是低碳试点城市,那么在城市化水平上提高县可以促进碳强度的降低。 (3)城市发展的影响路径(SIC)人均国内生产总值(二级行业的比例,专利申请量) - >碳排放强度和城市发展 - >第三产业的比例 - >碳排放强度是显着的。然而,第三产业比例的路径 - >城市发展 - >碳排放强度并不重要。

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