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Multicriteria optimization of copper scrap management strategy

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  • Bonnin, Marie
  • Azzaro-Pantel, Catherine
  • Domenech, Serge
  • Villeneuve, Jacques

Abstract

A model of copper scrap management at country level is proposed, taking all copper scrap collection streams into account, with their associated environmental impacts and costs. The method is applied to the treatment of printed wiring boards (PWB) in France. Considering the initial physical properties and composition of this scrap, seven flowsheets are constructed for the production of refined copper. Then, depending on the number of PWB treated in each processing chain, the production rate, energy consumption, operating cost and environmental impacts are evaluated. Three bi-objective optimizations are conducted based on the NSGA II multi-objective genetic algorithm: production versus energy consumption, production versus operating cost and production versus environmental impacts. Pareto fronts are obtained for each optimization, giving the set of non-dominated solutions. Then the decision support tool TOPSIS is used to find the best compromise solution for waste management.

Suggested Citation

  • Bonnin, Marie & Azzaro-Pantel, Catherine & Domenech, Serge & Villeneuve, Jacques, 2015. "Multicriteria optimization of copper scrap management strategy," Resources, Conservation & Recycling, Elsevier, vol. 99(C), pages 48-62.
  • Handle: RePEc:eee:recore:v:99:y:2015:i:c:p:48-62
    DOI: 10.1016/j.resconrec.2015.03.013
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    1. Sverdrup, Harald U. & Ragnarsdottir, Kristin Vala & Koca, Deniz, 2014. "On modelling the global copper mining rates, market supply, copper price and the end of copper reserves," Resources, Conservation & Recycling, Elsevier, vol. 87(C), pages 158-174.
    2. Das, A. & Vidyadhar, A. & Mehrotra, S.P., 2009. "A novel flowsheet for the recovery of metal values from waste printed circuit boards," Resources, Conservation & Recycling, Elsevier, vol. 53(8), pages 464-469.
    3. Agrawal, Archana & Sahu, K.K., 2010. "Problems, prospects and current trends of copper recycling in India: An overview," Resources, Conservation & Recycling, Elsevier, vol. 54(7), pages 401-416.
    4. Minoglou, Minas & Komilis, Dimitrios, 2013. "Optimizing the treatment and disposal of municipal solid wastes using mathematical programming—A case study in a Greek region," Resources, Conservation & Recycling, Elsevier, vol. 80(C), pages 46-57.
    5. Ruhrberg, Martin, 2006. "Assessing the recycling efficiency of copper from end-of-life products in Western Europe," Resources, Conservation & Recycling, Elsevier, vol. 48(2), pages 141-165.
    6. Ahluwalia, Poonam Khanijo & Nema, Arvind K., 2007. "A life cycle based multi-objective optimization model for the management of computer waste," Resources, Conservation & Recycling, Elsevier, vol. 51(4), pages 792-826.
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    Cited by:

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    8. Chen, Wu & Wang, Minxi & Li, Xin, 2016. "Analysis of copper flows in the United States: 1975–2012," Resources, Conservation & Recycling, Elsevier, vol. 111(C), pages 67-76.

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