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Sustainable network design for multi-purpose pellet processing depots under biomass supply uncertainty

机译:生物量供应不确定性下多用途颗粒处理场的可持续网络设计

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This study develops a two-stage stochastic mixed-integer programming model to manage multi-purpose pellet processing depots under feedstock supply uncertainty. The proposed optimization model would help to minimize cost and mitigate emissions from the supply chain network. We consider three alternative Biomass Processing and Densification Depot (BPDD) technologies; namely, conventional pellet processing, high moisture pellet processing, and ammonia fiber expansion. These three technologies pre-process/pre-treat and densify different types of biomass into more highly densified intermediate products for different markets in order to improve movability and overall supply network performance in terms of costs and emissions. A hybrid decomposition algorithm was developed that combines Sample Average Approximation with an enhanced Progressive Hedging (PH) algorithm to solve this challenging NP-hard problem. Some heuristics such as Rolling Horizon (RH) heuristic, variable fixing technique were later applied to further enhance the PH algorithm. Mississippi and Alabama were selected as a testing ground and ArcGIS was employed to visualize and validate the modeling results. The results of the analysis reveal promising insights that could lead to recommendations to help decision makers achieve a more cost-effective environmentally-friendly supply chain network.
机译:这项研究建立了一个两阶段的随机混合整数规划模型,以在原料供应不确定的情况下管理多用途颗粒加工场。所提出的优化模型将有助于最小化成本并减轻供应链网络的排放。我们考虑了三种替代的生物质处理和致密化库(BPDD)技术;即,常规粒料加工,高水分粒料加工和氨纤维膨胀。这三种技术可以对不同类型的生物质进行预处理/预处理,并将其压缩为更高密度的中间产品,以用于不同的市场,从而在成本和排放方面提高可移动性和整体供应网络的性能。开发了一种混合分解算法,将样本平均逼近与增强的渐进对冲(PH)算法结合在一起,以解决这一具有挑战性的NP难题。后来应用了一些启发式算法,例如Rolling Horizo​​n(RH)启发式,可变固定技术,以进一步增强PH算法。选择了密西西比州和阿拉巴马州作为测试场地,并使用ArcGIS来可视化和验证建模结果。分析结果揭示了有前途的见解,这些见解可能会导致提出建议,以帮助决策者建立更具成本效益的环保供应链网络。

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