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Backward and forward multilevel indicators for identifying key sectors of China's intersectoral CO2 transfer network

机译:向后和前进的多级指标识别中国跨部门二氧化碳转运网络的关键部门

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摘要

Many countries face a dilemma of economic growth and carbon emission mitigation, which is highly associated with energy consumption. In order to initiate effective policies for controlling carbon emissions, it is important to identify the key sectors in the value chain, thus proposing corresponding measures. To date, however, energy and carbon emissions have been studied mainly from a production or consumption perspective, with important interactions between sectors being seldom considered. In response, a new CO2 flow model is presented in which input-output analysis and network theory are combined with multilevel indicators to identify the key sectors affecting carbon emissions in terms of total, immediate, and mediative centrality effects. The model is demonstrated with an analysis of 2007 and 2012 China sectoral data, showing that Production & Supply of Electric Power, Steam and Hot Water (PESH), Nonmetal Mineral Products (NMMP), and Coal Mining & Dressing (CMDG) played key roles in China's carbon transfer network; the roles of Electronic & Telecommunications Equipment (ETET), Instruments & Office Machinery (IOMY), and Electric Equipment & Machinery (EEMY) had the largest immediacy effect; and, acting as key transmission sectors, PESH, Smelting & Pressing of Metals (SPOM), and NMMP controlled a large share of CO2 transfer. The measures used are closely related to, and provide new insights into, the traditional indicators of sector centrality. At the same time, the proposed multilevel indicators are supplements for techniques that aim to instruct sector-level carbon mitigation policies.
机译:许多国家面临经济增长和碳排放缓解的困境,这与能耗高度相关。为了启动控制碳排放的有效政策,重要的是要识别价值链中的关键部门,从而提出相应的措施。然而,迄今为止,主要从生产或消费角度研究了能量和碳排放,在很少考虑的部门之间的重要互动。作为响应,提出了一种新的CO2流模型,其中输入 - 输出分析和网络理论与多级指标相结合,以确定在总,即时和硫化性中心效应方面影响碳排放的关键部门。该模型分析了2007年和2012年中国部门数据,表明生产和供应电力,蒸汽和热水(滤网),非金属矿物产品(NMMP)和煤矿和敷料(CMDG)发挥了关键作用在中国的碳转运网络中;电子和电信设备(ETET),仪器和办公机械(IOMY)和电气设备和机械(EEMY)的角色具有最大的即时性效果;并且,作为关键传输部门,粉刺,熔炼和金属(SPOM)的压制,NMMP控制了大量二氧化碳转移。所使用的措施与传统的部门集中性指标密切相关,并提供新的见解。与此同时,建议的多级指标是用于指导部门级碳缓解政策的技术的补充。

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