Nexus(标准)
废品
物流分析
资源(消歧)
能源消耗
情景分析
温室气体
自然资源经济学
环境科学
中国
消费(社会学)
环境经济学
过程(计算)
水能关系
业务
工程类
废物管理
经济
计算机科学
法学
政治学
计算机网络
财务
嵌入式系统
生态学
社会学
电气工程
操作系统
生物
机械工程
社会科学
作者
Shaohui Zhang,Baolian Yi,Ernst Worrell,Fabian Wagner,Wina Crijns-Graus,Pallav Purohit,Yoshihide Wada,Olli Varis
标识
DOI:10.1016/j.jclepro.2019.05.392
摘要
MESSAGEix model are widely used for forecasting long-term energy consumption and emissions, as well as modelling the possible GHGs mitigations. However, because of the complexity of manufacturing sectors, the MESSAGEix model aggregate detailed technology options and thereby miss linkages across sub-sectors, which leads to energy saving potentials are often not very realistic and cannot be used to design specific policies. Here, we integrate Material/Energy/water Flow Analysis (MEWFA) and nexus approach into the MESSAGEix to estimate resource-energy-environment nexus in China's iron and steel industry. Results show that between 2010 and 2050 energy efficiency measures and route shifting of China's steel industry will decrease raw material input by 14%, energy use by 7%, water consumption by 8%, CO2 emissions by 7%, NOx emissions by 9%, and SO2 emissions by 14%, respectively. However, water withdrawal and PM2.5 emissions will increase by 14% and 20%, respectively. The main reason is that water withdrawal and PM2.5 emissions in the process of BF-BOF are over 4 times lower than the process scrap-EAF. Therefore, policy makers should consider nexus effects when design integrated policy to achieve multiple targets. Finally, future directions on enhancing the representation of manufacturing sectors in IAMs are given.
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