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A multi-regional structural path analysis of the energy supply chain in China's construction industry

机译:中国建筑业能源供应链的多区域结构路径分析

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摘要

© 2016 Elsevier Ltd.The construction industry in China exerts significant environmental impacts and uses considerable resources because of rapid urbanization. This study conducted a structural path analysis (SPA) based on the multi-regional input-output table to quantify environmental impact transmission in the entire supply chain. Results indicated that the direct resource input (the first stage) along with on-site construction (the zeroth stage) consumed the highest amount of energy in the supply chain and accounted for approximately 50% of total energy consumption. Regional analysis showed that energy consumption in the construction industry at the provincial level was self-sufficient. Sectoral analysis demonstrated that the direct inputs from the sectors of "manufacture of non-metallic mineral products" and "smelting and pressing of metals" generated the most important energy flows, whereas the sectors of "production and distribution of electric power and heat power" and "extraction of petroleum and natural gas" significantly but indirectly influenced energy use. Sensitivity analysis exhibited that the system boundary of SPA could be narrowed down into the first two upstream stages that contained nearly 50% of energy flow information or expanded toward the first five upstream stages that represented 80% of total energy consumption.
机译:©2016 Elsevier Ltd.由于迅速的城市化进程,中国的建筑业对环境产生了重大影响,并占用了大量资源。这项研究基于多区域投入产出表进行了结构路径分析(SPA),以量化整个供应链中的环境影响传递。结果表明,直接资源投入(第一阶段)和现场建设(零阶段)消耗了供应链中的最高能源量,约占总能源消耗的50%。区域分析表明,省级建筑业的能耗是自给自足的。部门分析表明,“非金属矿物产品制造”和“金属冶炼和压制”部门的直接投入产生了最重要的能量流,而“电力和热力的生产和分配”部门和“石油和天然气的提取”显着但间接地影响了能源的使用。敏感性分析表明,SPA的系统边界可以缩小到包含近50%的能量流信息的前两个上游阶段,或扩展到代表总能耗的前五个上游阶段。

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