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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Integrating multimodal transport into cellulosic biofuel supply chain design under feedstock seasonality with a case study based on California
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Integrating multimodal transport into cellulosic biofuel supply chain design under feedstock seasonality with a case study based on California

机译:以原料季节性为基础,将多式联运纳入纤维素生物燃料供应链设计中,以加利福尼亚为例

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摘要

A multistage, mixed integer programing model was developed that fully integrates multimodal transport into the cellulosic biofuel supply chain design under feedstock seasonality. Three transport modes are considered: truck, single railcar, and unit train. The goal is to minimize the total cost for infrastructure, feedstock harvesting, biofuel production, and transportation. Strategic decisions including the locations and capacities of transshipment hubs, biorefineries, and terminals and tactical decisions on system operations are optimized in an integrated manner. When the model was implemented to a case study of cellulosic ethanol production in California, it was found that trucks are convenient for short-haul deliveries while rails are more effective for long-haul transportation. Taking the advantage of these benefits, the multimodal transport provides more cost effective solutions than the single-mode transport (truck).
机译:开发了一个多阶段,混合整数规划模型,该模型在原料季节性因素的影响下将多式联运完全整合到了纤维素生物燃料供应链设计中。考虑了三种运输方式:卡车,单轨车和单元火车。目标是最大程度地减少基础设施,原料收获,生物燃料生产和运输的总成本。包括转运中心,生物炼油厂和码头的位置和能力在内的战略决策以及系统运行的战术决策都以集成方式进行了优化。当将该模型应用于加利福尼亚州纤维素乙醇生产的案例研究时,发现卡车便于短途运输,而铁路对于长途运输更有效。利用这些优势,多式联运比单式运输(卡车)提供了更具成本效益的解决方案。

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