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Spillover effect of technological innovation on CO_2 emissions in China's construction industry

机译:技术创新对中国建筑业CO_2排放的溢出效应

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摘要

Given the leading role of the construction industry in fossil fuel consumption, it is essential to identify the drivers responsible for carbon emission in that sector. Based on the panel data of 30 provinces in China in the period between 2000 and 2015, this study estimated the spatial distribution and driving innovation factors of construction carbon emissions (CCE) by using Moran's I index and spatial econometric models as underlying methods. The empirical results show that there were significant spatial dependence and clustering characteristics in provincial CCE. The net value of machinery and equipment, labor productivity, technical renovation input, construction gross domestic product, and the total construction profit prohibit greater emission reductions. Specifically, the economy related performance indicators cause smaller positive impacts on emission growth than the machinery- and labor-related factors. In addition, it is also noted that proportion of technical personnel and the ratio of technical equipment have significantly positive effects on CCE abatement. The findings of this study would be beneficial for local government to adopt stratified and effective emission reduction methods in the provincial construction industry.
机译:鉴于建筑业在化石燃料消耗中的主导作用,必须确定负责该部门碳排放的司机。根据2000年至2015年期间中国30个省份的面板数据,本研究估计了通过使用Moran的I指数和空间计量计量模型作为底层方法,估计了建筑碳排放(CCE)的空间分布和推动创新因素。经验结果表明,省级CCE存在显着的空间依赖性和聚类特征。机械设备净值,劳动生产率,技术改造投入,建设国内生产总值,以及总建筑利润禁止减排。具体而言,经济相关的绩效指标对排放增长造成比机械和劳动力相关的因素的较小积极影响。此外,还注意到技术人员的比例和技术设备的比例对CCE减少具有显着积极的积极影响。本研究的调查结果将有利于当地政府在省建工业中采用分层和有效排放减排方法。

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