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Supply chain design for the generation of bioethanol from agricultural biomass

机译:农业生物量生成生物乙醇的供应链设计

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Biomass residues generated from agricultural production (corn and barley) represent an important source of potentially sustainable raw material for the production of bioethanol. However, the use of agricultural waste for the production of alternative fuels will only be successful if sufficient biomass can be guaranteed for bioethanol generation. This paper studies the problem of designing a supply chain to produce bioethanol through the use of agricultural biomass (corn and barley) with a four-echelon approach, a transport channel and two agricultural raw materials (corn and barley). The decisions to be made are the opening of storage centers, biorefineries, mixing plants and finding the optimal biomass and bioethanol flow between the facilities. The proposed approach is presented as a mixed integer mathematical programming model (MILP); additionally, a practical case study is presented for the area of Tulancingo, Hidalgo, in Mexico, which is solved with CPLEX (Version 12.5). Finally, an analysis of results and conclusions are presented.
机译:从农业生产(玉米和大麦)产生的生物质残留物代表了生产生物乙醇的潜在可持续原料的重要来源。然而,如果可以保证对生物乙醇生成的足够的生物量,则使用农业废物的生产仅是成功的。本文研究了设计供应链的问题,通过使用农业生物量(玉米和大麦)具有四梯级方法,运输通道和两种农业原料(玉米和大麦)来生产生物乙醇。要制造的决定是储存中心,生物料,混合植物的开放,并在设施之间找到最佳生物质和生物乙醇流动。所提出的方法作为混合整数数学编程模型(MILP)呈现;此外,在墨西哥的少女曲板,Hidalgo面积介绍了一个实际的案例研究,该研究与CPLEX(12.5版)求解。最后,提出了对结果和结论的分析。

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