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Integrated supply chain design for commodity chemicals production via woody biomass fast pyrolysis and upgrading

机译:通过木质生物质快速热解和升级生产商品化学品的集成供应链设计

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This study investigates the optimal supply chain design for commodity chemicals (BTX, etc.) production via woody biomass fast pyrolysis and hydroprocessing pathway. The locations and capacities of distributed preprocessing hubs and integrated biorefinery facilities are optimized with a mixed integer linear programming model. In this integrated supply chain system, decisions on the biomass chipping methods(roadside chipping vs. facility chipping) are also explored. The economic objective of the supply chain model is to maximize the profit for a 20-year chemicals production system. In addition to the economic objective, the model also incorporates an environmental objective of minimizing life cycle greenhouse gas emissions, analyzing the trade-off between the economic and environmental considerations. The capital cost, operating cost, and revenues for the biorefinery facilities are based on techno-economic analysis, and the proposed approach is illustrated through a case study of Minnesota, with Minneapolis-St. Paul serving as the chemicals distribution hub.
机译:这项研究调查了通过木质生物质快速热解和加氢处理途径生产商品化学品(BTX等)的最佳供应链设计。使用混合整数线性规划模型优化了分布式预处理中心和集成的生物精炼设施的位置和容量。在这个集成的供应链系统中,还探索了关于生物质切削方法(路边切削与设施切削)的决策。供应链模型的经济目标是使20年化学品生产系统的利润最大化。除经济目标外,该模型还纳入了将生命周期温室气体排放降至最低的环境目标,并分析了经济因素与环境因素之间的权衡。生物炼油厂设施的资本成本,运营成本和收入基于技术经济分析,并且通过明尼苏达州明尼阿波利斯街的案例研究说明了所提出的方法。保罗担任化学品分销中心。

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