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Robust design and operations of hydrocarbon biofuel supply chain integrating with existing petroleum refineries considering unit cost objective

机译:考虑单位成本目标的烃类生物燃料供应链的稳健设计和运营与现有炼油厂的整合

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This paper addresses the optimal design and planning of the advanced hydrocarbon biofuel supply chain with the unit cost objective. Benefited from the drop-in properties of advanced hydrocarbon biofuels, the supply chain takes advantage of the existing petroleum infrastructure, which may lead to significant capital and transportation savings. A mixed-integer linear programming model is proposed to simultaneously consider the supply chain design, integration strategy selection, and production planning. A robust optimization approach which tradeoffs the performance and conservatism is adopted to deal with the demand and supply uncertainty. Moreover, the unit cost objective makes the final products more cost-competitive. The resulting mixed-integer linear fractional programming model is solved by tailored optimization algorithm. County level cases in Illinois are analyzed and compared to show the advantage of the proposed optimization framework. The results show that the preconversion to petroleum-upgrading pathway is more economical when applying the unit cost objective.
机译:本文针对具有单位成本目标的先进烃类生物燃料供应链进行了优化设计和规划。得益于先进的碳氢化合物生物燃料的优良特性,供应链可以利用现有的石油基础设施,从而可以节省大量的资金和运输费用。提出了混合整数线性规划模型,以同时考虑供应链设计,集成策略选择和生产计划。权衡性能和保守性的鲁棒优化方法被用来处理需求和供应的不确定性。此外,单位成本目标使最终产品更具成本竞争力。通过量身定制的优化算法解决了混合整数线性分数规划模型。对伊利诺伊州的县级案例进行了分析和比较,以显示建议的优化框架的优势。结果表明,应用单位成本目标时,向石油升级途径的预转化更为经济。

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