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Incorporating location routing model and decision making techniques in industrial waste management: Application in the automotive industry

机译:工业废物管理中的位置路由模型和决策技术:在汽车工业中的应用

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摘要

Increase in the consumption of natural resources in recent decades, followed by increased waste volume, has caused irreparable damage to the environment and society. The problems brought about by the waste in today's societies, if not attended to, may become more devastating in the future for generations after us. A myriad of research has been published in the area of industrial waste management; however, no study until now has pointed to the management of wastes produced in the automotive industry. Therefore, this study sought to describe an industrial waste transportation system in the automotive industry by proposing a capacitated location routing model with a heterogeneous fleet of vehicles. This research attempted to demonstrate the model efficiency considering a case from the SAIPA car Company in Iran. First, the waste collection network was considered based on a mixed integer bi-objective optimization model. Decisions about the route of collection vehicles, the location of collection centers, the inventory level in these centers, the reduction of the costs, the risk posed to the population, the categorization of transportation of different waste types and the estimation of the number of vehicles in the transportation phase were also made in this study. Second, to test the model as well as performing several numerical examples, the improved version of the epsilon-constraint was applied via the CPLEX solver embedded in the GAMS software. Decisions were also made regarding the optimal technology for the disposal of non-recyclable wastes and the selection of optimal sites for both disposal and recycle facilities, considering the irreconcilable economic, social, environmental, and technical criteria. Moreover, a hybrid multi-criteria decision-making approach, combining best worst method with PROMETHEE-Ⅱ was proposed. Generally, numerical examples proved that the proposed MIP model with the consideration heterogeneous transport fleet and waste collection in separated manner was a safe solution in order to reduce logistics costs in the presence of transportation risk criteria.
机译:近几十年来增加自然资源的消费,其次是浪费量增加,对环境和社会造成了不可挽回的损害。在今天的社会中,废物带来的问题,如果没有参加,则在我们之后的未来可能会变得更加毁灭。在工业废物管理领域发表了一项无数的研究;然而,直到现在目前尚未研究汽车行业生产的废物管理。因此,本研究寻求通过提出具有车辆的异构队列的电容定位路由模型来描述汽车工业的工业废物运输系统。考虑到伊朗的Saipa Car Company,这项研究试图展示模型效率。首先,基于混合整数双目标优化模型考虑废物收集网络。关于收集车道的决定,收集中心的位置,这些中心的库存水平,降低成本,占人口的风险,不同废物类型的运输分类以及车辆数量的估算在该研究中也进行了运输阶段。其次,为了测试模型以及执行若干数值示例,通过嵌入在Gams软件中的CPLEL求解器应用了epsilon-约束的改进版本。考虑到不可调和的经济,社会,环境和技术标准,还讨论了处置不可循环废物的最佳技术以及选择可处理和回收设施的最佳场所的决策。此外,提出了一种混合的多标准决策方法,结合了最佳最糟糕的方法与普通丙烯-Ⅱ。通常,数值示例证明了具有考虑因素的MIP模型,以分离的方式的代价异构运输船队和废物收集是一种安全的解决方案,以降低运输风险标准存在下的物流成本。

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