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Optimal design of advanced drop-in hydrocarbon biofuel supply chain integrating with existing petroleum refineries under uncertainty

机译:不确定条件下与现有炼油厂整合的先进碳氢化合物生物燃料供应链的优化设计

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This paper addresses the optimal design of an advanced hydrocarbon biofuel supply chain integrated with existing petroleum refineries. Three major insertion points from the biofuel supply chain to the petroleum refineries are investigated and analyzed, including bio-intermediates co-processed with crude oil, bio-intermediates co-processed with refinery intermediates, and finished biofuels blended with conventional petroleum products. A multiperiod, mixed-integer linear programming model is proposed that accounts for diverse conversion pathway, technology, and insertion point selections, biomass season-ality, geographical diversity, biomass degradation, demand distribution and government incentives. This model simultaneously optimizes the supply chain design, insertion point selection, and production planning. In addition, the conversion rate, operation cost associated with insertion points in petroleum refinery, as well as the biomass availability and product demand are modeled as fuzzy numbers to account for the data uncertainty. A fuzzy possibilistic programming approach is applied to this model, where possibility, necessity and credibility measures are adopted according to the decision makers' preference. This model is illustrated by the county level case study of Illinois. Compared to traditional biofuel supply chains, advanced hydrocarbon biofuel supply chain integrating with existing petroleum refinery infrastructure significantly reduces capital cost and total annualized cost.
机译:本文介绍了与现有炼油厂整合的先进碳氢化合物生物燃料供应链的优化设计。研究和分析了从生物燃料供应链到炼油厂的三个主要插入点,包括与原油共同加工的生物中间体,与炼油中间体共同加工的生物中间体以及与常规石油产品混合的成品生物燃料。提出了一个多周期,混合整数的线性规划模型,该模型考虑了多种转换途径,技术和插入点选择,生物量季节性,地理多样性,生物量退化,需求分配和政府激励措施。该模型同时优化了供应链设计,插入点选择和生产计划。另外,将转化率,与炼油厂的插入点相关的运营成本以及生物质的可利用性和产品需求建模为模糊数,以说明数据不确定性。该模型采用模糊可能性规划方法,并根据决策者的偏好采取了可能性,必要性和可信性措施。伊利诺伊州的县级案例研究说明了该模型。与传统的生物燃料供应链相比,先进的碳氢化合物生物燃料供应链与现有的炼油厂基础设施相结合,大大降低了资本成本和年度总成本。

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