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Evaluating opportunities to improve material and energy impacts in commodity supply chains

机译:评估改善商品供应链中的物质和能源影响的机会

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摘要

When evaluated at the scale of individual processes, next-generation technologies may be more energy and emissions intensive than current technology. However, many advanced technologies have the potential to reduce material and energy consumption in upstream or downstream processing stages. In order to fully understand the benefits and consequences of technology deployment, next-generation technologies should be evaluated in context, as part of a supply chain. This work presents the Materials Flow through Industry (MFI) supply chain modeling tool. The MFI tool is a cradle-to-gate linear network model of the US industrial sector that can model a wide range of manufacturing scenarios, including changes in production technology and increases in industrial energy efficiency. The MFI tool was developed to perform supply chain scale analyses in order to quantify the impacts and benefits of next-generation technologies and materials at that scale. For the analysis presented in this paper, the MFI tool is utilized to explore a case study comparing three lightweight vehicle supply chains to the supply chain of a conventional, standard weight vehicle. Several of the lightweight vehicle supply chains are evaluated under manufacturing scenarios that include next-generation production technologies and next-generation materials. Results indicate that producing lightweight vehicles is more energy and emission intensive than producing the non-lightweight vehicle, but the fuel saved during vehicle use offsets this increase. In this case study, greater reductions in supply chain energy and emissions were achieved through the application of the next-generation technologies than from application of energy efficiency increases.
机译:如果按单个过程的规模进行评估,则下一代技术可能比当前技术在能源和排放方面更为密集。但是,许多先进技术都有潜力减少上游或下游加工阶段的材料和能耗。为了充分理解技术部署的好处和后果,应根据供应链的一部分对下一代技术进行评估。这项工作介绍了物料通过行业(MFI)的供应链建模工具。 MFI工具是美国工业领域的从摇篮到大门的线性网络模型,可以对各种制造场景进行建模,包括生产技术的变化和工业能源效率的提高。开发MFI工具是为了执行供应链规模分析,以便量化该规模的下一代技术和材料的影响和收益。对于本文中介绍的分析,使用MFI工具探索了一个案例研究,将三个轻型车辆的供应链与常规的标准重量车辆的供应链进行了比较。在包括下一代生产技术和下一代材料在内的制造方案下,对几种轻型汽车供应链进行了评估。结果表明,生产轻型车辆比生产非轻型车辆更加耗能和排放,但是在车辆使用过程中节省的燃料抵消了这一增长。在本案例研究中,与应用提高能源效率相比,通过应用下一代技术可以更大程度地减少供应链的能源和排放。

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