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Collection activity channels selection in a reverse supply chain under a carbon cap-and-trade regulation

机译:在碳帽和交易调节下,集合活动渠道选择反向供应链

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Manufacturers face challenges while collecting used products in their reverse supply chain from several scattered geographic regions. These regions are different in terms of quality of used products returned, quantity returned, the timing of the returns, and regions' distance from the central remanufacturing facility. The paper proposes a mixed-integer linear programming model for such manufacturer to decide on an optimal combination of channels for collecting used products from these regions in a finite multiperiod situation. In each region the manufacturer has two potential sources of collection activity for the manufacturer are -1) through a regional independent collection firm, and 2) direct collection from regional customers. The decision problem is considered under constrains of the quantity and quality of returned products, carbon emission cap-and-trade regulation. A numerical analysis using parameter value estimated using field studies in India for steel drums is presented. The results of the analysis suggest that manufacturers and carbon policymakers should consider the quantity of returned product over the product life cycle. Further, the target for long term carbon emission reduction has implication to a manufacturer's channels selection for collection activity from multiple regions. Results of analysis also indicate the effect of timing for carbon-cap-and-trade policy implementation on the selection of channels for collection activity in a multi-region problem. (C) 2020 Elsevier Ltd. All rights reserved.
机译:制造商面临挑战,同时收集其反向供应链中的使用产品,从几个散射的地理区域收集使用。这些地区在返回的二手产品质量方面存在不同,返回数量,返回的时间和地区距中央再制造设施的距离。本文提出了一种混合整数线性编程模型,用于这种制造商来决定在有限的多层种情况下从这些地区收集来自这些区域的使用的通道的最佳组合。在每个地区,制造商为制造商有两个潜在的收集活动来源,通过区域独立收集公司,2)从区域客户直接收集。决策问题被认为是退回产品数量和质量,碳排放章节和贸易监管的限制。介绍了使用印度的现场研究估计的参数值的数值分析。分析结果表明,制造商和碳政策制定者应考虑在产品生命周期内偿还返回产品的数量。此外,长期碳排放减少的目标对制造商的渠道选择从多个地区的收集活动有所意义。分析结果还表明了碳帽和贸易政策实施的时间对多区域问题中收集活动渠道的选择。 (c)2020 elestvier有限公司保留所有权利。

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