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Distributed biomass supply chain cost optimization to evaluate multiple feedstocks for a biorefinery

机译:分布式生物质供应链成本优化,以评估生物炼油厂的多种原料

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Conventional practices of siting all biomass preprocessing operations at the biorefinery is widely believed to be the most cost-effective solution for feedstock supply because of economies of scale. However, biomass preprocessing operations could be decentralized by moving the preprocessing operations to distributed biomass preprocessing centers, also known as "depots" located near biomass sources. This study presents a comparative case study with multiple biomass resources to analyze biorefinery feedstock supply logistics designs having distributed depots and a primary depot co-located with the biorefinery. A mixed-integer linear programming model was developed to simultaneously optimize feedstock sourcing decisions, and optimal preprocessing depot locations and size, utilizing biomass resources from agricultural residue, energy and municipal solid waste to meet carbohydrate specifications and feedstock demand for a biochemical conversion process. Results from a case study in the US showed that a biorefinery could increase its feedstock supply draw area and supply volume by 57.3%, 177.4% respectively without increasing the feedstock delivered cost by adopting distributed depot-in the feedstock supply chain design. A distributed-depot-based supply chain can be more economical by selecting optimal mix of biomass resource, optimal siting and depot scales during feedstock supply chain design. The findings from this study indicate that a biorefinery can utilize dynamic blending to meet the feedstock quality specifications as well as larger supply radius in the distributed depot-based supply chain design to access more available biomass to handle potential feedstock supply uncertainty.
机译:由于规模经济,普遍认为将所有生物质预处理过程设在生物炼油厂的常规做法是原料供应的最具成本效益的解决方案。但是,可通过将预处理操作转移到位于生物质源附近的分布式生物质预处理中心(也称为“仓库”)来分散生物质预处理操作。这项研究提出了一个具有多种生物质资源的比较案例研究,以分析生物炼油厂原料供应物流设计,该设计具有分布式油库和与该生物炼油厂位于同一地点的主要油库。开发了一个混合整数线性规划模型,以同时优化原料采购决策,优化预处理仓库的位置和规模,利用农业残余物,能源和城市固体废物中的生物质资源来满足碳水化合物规格和生化转化过程中的原料需求。美国一项案例研究的结果表明,通过在原料供应链设计中采用分布式仓库,生物精炼厂可以分别增加其原料供应汲取面积和供应量57.3%,177.4%,而不会增加原料交付成本。通过在原料供应链设计中选择生物质资源的最佳组合,最佳选址和仓库规模,可以使基于分布式仓库的供应链更加经济。这项研究的结果表明,生物精炼厂可以利用动态混合来满足原料质量规格以及基于分布式仓库的供应链设计中更大的供应半径,以获取更多可用生物量来应对潜在的原料供应不确定性。

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