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Biodiesel supply chain optimization via a hybrid system dynamics-mathematical programming approach

机译:通过混合系统动力学-数学编程方法优化生物柴油供应链

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Development of biofuels causes reduction of environmental pollution, but certain limitations affect their production. In this research, a hybrid system dynamics-mathematical programming approach is developed to design and plan a biodiesel supply chain from biomass fields to consumption markets. The supply chain faces limitations in biodiesel production. Water resource limitations for biodiesel production, land limitations for biomass procurement, and technological issues are the most important limitations considered in the system dynamics model. In addition, competition between fossil fuels and biodiesel is taken into account. The proposed methodology, firstly, estimates the most important parameters in biodiesel supply chain in a given planning horizon. Then, estimated parameters are used as inputs of the mathematical model and the optimal supply chain decisions are made by means of a stochastic mixed-integer programming model. Besides, a scenario-based approach is used to model the disruption risks for links and biomass fields. Finally, a numerical experiment is presented to show the applicability of the methodology according to some interviews with experts in Iran. Results demonstrate the potential appropriate market of biodiesel in Iran while several resource and technology limitations and environmental pollution avoid growth of biodiesel market. Moreover, a sensitivity analysis is performed on risk preferences of decision makers and government policies adopted to improve the biodiesel market. (C) 2016 Elsevier Ltd. All rights reserved.
机译:开发生物燃料可减少环境污染,但某些限制因素会影响其生产。在这项研究中,开发了一种混合系统动力学-数学规划方法来设计和规划从生物质领域到消费市场的生物柴油供应链。供应链在生物柴油生产中面临局限性。系统动力学模型中考虑的最重要的限制是生物柴油生产的水资源限制,生物质采购的土地限制和技术问题。此外,还考虑了化石燃料与生物柴油之间的竞争。首先,所提出的方法会在给定的计划范围内估算生物柴油供应链中最重要的参数。然后,将估计的参数用作数学模型的输入,并通过随机混合整数规划模型确定最佳的供应链决策。此外,基于情景的方法用于对链接和生物量场的破坏风险进行建模。最后,根据对伊朗专家的一些采访,提出了数值实验,以证明该方法的适用性。结果表明,伊朗可能存在适当的生物柴油市场,同时由于资源和技术的局限性以及环境污染,生物柴油市场没有增长。此外,针对决策者的风险偏好和为改善生物柴油市场而采取的政府政策进行了敏感性分析。 (C)2016 Elsevier Ltd.保留所有权利。

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