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Strategic supply system design - a holistic evaluation of operational and production cost for a biorefinery supply chain

机译:战略供应系统设计 - 生物食品供应链的运营和生产成本的整体评价

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Pioneer cellulosic biorefineries across the United States rely on a conventional feedstock supply system based on one-year contracts with local growers, who harvest, locally store, and deliver feedstock in low-density format to the conversion facility. While the conventional system is designed for high biomass yield areas, pilot scale operations have experienced feedstock supply shortages and price volatilities due to reduced harvests and competition from other industries. Regional supply dependency and the inability to actively manage feedstock stability and quality, provide operational risks to the biorefinery, which translate into higher investment risk. The advanced feedstock supply system based on a network of depots can mitigate many of these risks and enable wider supply system benefits. This paper compares the two concepts from a system-level perspective beyond mere logistic costs. It shows that while processing operations at the depot increase feedstock supply costs initially, they enable wider system benefits including supply risk reduction (leading to lower interest rates on loans), industry scale-up, conversion yield improvements, and reduced handling equipment and storage costs at the biorefinery. When translating these benefits into cost reductions per liter of gasoline equivalent (LGE), we find that total cost reductions between -$0.46 to -$0.21 per LGE for biochemical and -$0.32 to -$0.12 per LGE for thermochemical conversion pathways are possible. Naturally, these system level benefits will differ between individual actors along the feedstock supply chain. Further research is required with respect to depot sizing, location, and ownership structures. Published 2015. This article is a U.S. Government work and is in the public domain in the USA. Biofuels, Bioproducts and Biorefining published by Society of Industrial Chemistry and John Wiley & Sons Ltd.
机译:在美国跨国的先驱纤维素生物猎物依赖于传统的原料供应系统,基于与当地种植者的一年合同,当地种植者收获,局部储存,并以低密度格式提供原料到转换设施。虽然传统系统专为高生物量产量区域而设计,但由于从其他行业的收获和竞争降低,导频规模运营经历了原料供应短缺和价格波动。区域供应依赖性和无法积极管理原料稳定性和质量,为生物熟料提供运营风险,转化为更高的投资风险。基于仓库网络的先进原料供应系统可以减轻许多这些风险并实现更广泛的供应系统的益处。本文将两种概念与超出仅仅是物流成本之外的系统级视角。它表明,虽然在仓库的处理操作最初增加原料供应成本的同时,它们可以实现更广泛的系统益处,包括供应风险减少(导致贷款的较低利率),行业扩展,转换产量改进和减少处理设备和储存成本。在生物遗料。将这些益处转化为每升汽油等同物(LGE)的成本降低(LGE),我们发现总成本降低至0.46美元至-21美元 - 每缘为0.21美元,为热化学转换途径为0.32至0.12美元。当然,这些系统级别的益处将在沿着原料供应链的个体演员之间有所不同。需要进一步的研究,相对于仓库尺寸,位置和所有权结构需要进一步的研究。 2015年出版。本文是美国政府工作,并在美国的公共领域。由工业化学和约翰瓦里和儿子有限公司发表的生物燃料,生物化素和生物化。

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