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Ecological network analysis for urban metabolism and carbon emissions based on input-output tables: A case study of Guangdong province

机译:基于投入输出表的城市新陈代谢和碳排放生态网络分析 - 以广东省为例

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摘要

Global warming has received more and more attention in recent years for its inevitable influence on population, species, soil, ocean, water and so on. It is essential to investigate the urban metabolism of carbon emissions which is a main cause of global warming and most of it occurs in the process of production and living in urban areas. In this paper, a carbon emission metabolic network is established to explore the emission reduction strategies by modeling carbon dioxide flows and identifying the mutual relationships based on the input-output analysis. Specifically, Eff-Lorenz curve derived from the painting of Lorenz curve is developed to compare the efficiency of carbon emissions from different sectors. The newly developed method has been applied to Guangdong province to demonstrate its availability and benefit. It is revealed that carbon emissions mainly concentrated in the secondary and tertiary industries with electric power generation, manufacturing industry, domestic consumption and transportation ranking at the top. The competition relationship reveals good interactions in terms of emission reduction while a mutualism relationship provides effective pathways to mitigate carbon emissions between pairwise sectors simultaneously. In Guangdong province, upgrading the dean combustion technology in electric power generation and energy extraction sectors would drive other sectors to cut emissions and adjusting the production structure of the construction sector also contribute to achieve this goal. The results are expected to provide corresponding and holistic reference for decision makers to develop the mitigation policies.
机译:近年来,全球变暖越来越受到对人口,物种,土壤,海洋,水等的不可避免的影响。重要的是调查碳排放的城市代谢,这是全球变暖的主要原因,大部分发生在生产和生活在城市地区的过程中。在本文中,建立了一种碳排放代谢网络来探讨通过模拟二氧化碳流量并基于输入输出分析识别相互关系的减排策略。具体而言,源自洛伦茨曲线绘画的Eff-Lorenz曲线是开发的,以比较来自不同部门的碳排放的效率。新开发的方法已应用于广东省以展示其可用性和利益。据透露,碳排放主要集中在二级和第三产业中,拥有电力发电,制造业,国内消费和排名在顶部。竞争关系在减排方面揭示了良好的相互作用,而互相关系提供有效的途径,以同时减轻成对扇区之间的碳排放。在广东省,升级院长燃烧技术在发力发电和能源开拓部门将推动其他部门削减排放,调整建筑业的生产结构也有助于实现这一目标。预计结果将为决策者提供相应的和整体参考,以制定缓解政策。

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