Disassembly system design and analysis with environmental and economic parts selection using life cycle inventory database by input-output tables

Q2 Social Sciences
Tetsuo Yamada, Yusuke Suzuki, Y. Kinoshita, T. Masui, N. Itsubo, M. Inoue
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引用次数: 0

Abstract

To prevent material starvation and global warming caused by manufacturing, disassembly systems for end-of-life (EOL) products should be environmentally and economically designed to promote a closed-loop supply chain for assembly products. With parts selection in the disassembly systems, parts/materials with higher CO2 volumes should be recycled for environmental reasons. On the other hand, parts/materials with higher profit, which is the difference between the revenue of recovered materials and disassembly costs, should be disassembled for economic reasons. A disassembly system design considering not only the environmental loads but also the recovered parts/materials is proposed by using a product lifecycle management (PLM) tool. However, from a technical and financial standpoint, it is not easy for the disassembly factory sites to create the 3D-CAD models and obtain the environmental information using the PLM tool. This paper proposes a disassembly system design with the environmental and economic parts selection using a life cycle inventory database by input-output tables.
采用投入产出表的生命周期库存数据库,对环境和经济的部件选择进行拆卸系统设计和分析
为了防止制造造成的材料短缺和全球变暖,报废产品的拆卸系统应该设计得环保和经济,以促进组装产品的闭环供应链。在拆卸系统中选择部件时,出于环境原因,应回收二氧化碳含量较高的部件/材料。另一方面,利润较高的零件/材料,即回收材料的收益与拆卸成本的差额,出于经济原因,应该进行拆卸。利用产品生命周期管理(PLM)工具,提出了一种既考虑环境负荷又考虑回收零件/材料的拆卸系统设计。然而,从技术和财务的角度来看,拆解工厂现场使用PLM工具创建3D-CAD模型并获取环境信息并不容易。本文提出了一种基于投入产出表的生命周期库存数据库的环保经济零部件选择拆卸系统设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Sustainable Manufacturing
International Journal of Sustainable Manufacturing Social Sciences-Social Sciences (miscellaneous)
CiteScore
1.90
自引率
0.00%
发文量
0
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