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Organic-waste-derived butyric acid-to-biodiesel supply-chain network: Strategic planning design using a deterministic snapshot model

机译:有机废物衍生的丁酸与生物柴油供应链网络:使用确定性快照模型的战略规划设计

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摘要

An integrated optimization model for an organic-waste-derived butyric acid-to-butanol supply-chain network (BABSCN) is proposed to minimize the total network cost by simultaneously optimizing both strategic biodiesel production and waste management planning decisions. This model is useful for ensuring effective organic-waste provision for large-scale biodiesel production and waste management. The proposed mixed-integer linear-programming model optimizes the activities ranging from organic-waste preprocessing to butyric acid (BA), transportation of BA to biorefinery, butanol (BuOH) production and mixing with diesel to the distribution of biodiesel. This model is useful for forecasting organic-waste management biodiesel supply chains in South Korea in 2030. The case study results show that a total network cost of $US 3.16/gallon of B3 contains 3% BuOH from organic waste products combined with diesel. The biorefinery-related cost accounts for 98.3% of the total network cost, followed by the organic waste procurement cost (1.1%) and biodiesel distribution cost (0.6%). A scenario-based analysis shows that a 7%-BuOH increase in biodiesel increases the total network cost by 18.8%.
机译:提出了一种用于有机废物衍生的丁酸与丁醇供应链网络(BABSCN)的集成优化模型,通过同时优化战略生物柴油生产和废物管理规划决策,尽量减少总网络成本。该型号可用于确保大型生物柴油生产和废物管理的有效有机废物供应。所提出的混合整数线性编程模型优化了从有机废物预处理到丁酸(BA)的活动,将Ba的丁醇(Buoh)生产和与柴油混合到生物柴油的分布中。该型号可用于预测2030年韩国有机废物管理生物柴油供应链。案例研究结果表明,全网络成本为3.16 /加仑B3含有3%的BUOH从有机废物与柴油结合使用。与生物遗产相关的成本占总网络成本的98.3%,其次是有机废物采购成本(1.1%)和生物柴油分配成本(0.6%)。基于场景的分析表明,生物柴油的7%-BuOH增加将总网络成本增加18.8%。

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