Efficiently preserving material resources in manufacturing: Industrial symbiosis revisited

IF 3.2 3区 工程技术 Q2 ENGINEERING, INDUSTRIAL Cirp Annals-Manufacturing Technology Pub Date : 2024-01-01 DOI:10.1016/j.cirp.2024.05.006
J.R. Duflou (1) , K. Wegener (1) , A.E. Tekkaya (1) , M. Hauschild (1) , F. Bleicher (2) , J. Yan (2) , B. Hendrickx
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Abstract

The fraction of materials that does not reach the target product in discrete manufacturing is very significant. Directing secondary material streams towards other manufacturing processes, possibly after intermediate pre-processing, offers opportunities for more energy and resource efficient recycling routes. This paper contributes to the exploration of such symbiotic recycling strategies by identifying relevant process mechanisms and by systematically scanning the manufacturing domain for relevant process combinations. Emerging and proven symbiotic combinations within the discrete manufacturing domain are reviewed, with proper attention for the quantification of the thus avoided environmental impact. A series of representative case studies illustrates the feasibility of applying industrial symbiosis principles in a discrete manufacturing context, with uniform data sheets providing detailed information on relevant research achievements.

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在制造业中有效保护材料资源:再论工业共生
在离散制造过程中,没有达到目标产品的材料比例非常大。将二次材料流引导到其他制造工艺中,可能在中间预处理之后,为能源和资源效率更高的回收路线提供了机会。本文通过确定相关工艺机制和系统扫描制造领域的相关工艺组合,为探索此类共生回收战略做出了贡献。本文对离散制造领域中新出现的和经过验证的共生组合进行了综述,并对由此避免的环境影响进行了适当的量化。一系列具有代表性的案例研究说明了在离散制造业中应用工业共生原理的可行性,并通过统一的数据表提供了相关研究成果的详细信息。
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来源期刊
Cirp Annals-Manufacturing Technology
Cirp Annals-Manufacturing Technology 工程技术-工程:工业
CiteScore
7.50
自引率
9.80%
发文量
137
审稿时长
13.5 months
期刊介绍: CIRP, The International Academy for Production Engineering, was founded in 1951 to promote, by scientific research, the development of all aspects of manufacturing technology covering the optimization, control and management of processes, machines and systems. This biannual ISI cited journal contains approximately 140 refereed technical and keynote papers. Subject areas covered include: Assembly, Cutting, Design, Electro-Physical and Chemical Processes, Forming, Abrasive processes, Surfaces, Machines, Production Systems and Organizations, Precision Engineering and Metrology, Life-Cycle Engineering, Microsystems Technology (MST), Nanotechnology.
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