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首页> 外文期刊>Biofuels, bioproducts & biorefining: Biofpr >A techno-economic analysis of the corn stover feedstock supply system for cellulosic biorefineries
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A techno-economic analysis of the corn stover feedstock supply system for cellulosic biorefineries

机译:纤维素生物料理玉米秸秆原料供应系统的技术经济分析

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The primary feedstock choice for most first-generation commercial cellulosic biorefineries in the Midwest is corn stover. Their rated capacities are between 76 and 114 million liters per year (MLPY). For uninterrupted operation of these plants, a year-round supply of corn stover needs to be secured, requiring a robust, efficient, and cost-effective feedstock supply system. Thus, the main objective of this work is to stochastically analyze the techno-economics of corn stover supply system for a 114 MLPY cellulosic biorefinery in the Midwest using production-scale experimental field data collected in Iowa. This study analyzes the resources requirements (equipment, labor, fuel, and consumables) and costs of different components of the supply chain that include harvesting (windrowing and baling), in-field bale collection and stacking at the field-edge, handling and transportation of bales from the field-edge to the distributed storage facilities and then to the biorefinery plant, storage, and finally the audit of nutrients removed during stover collection from the field. Additionally, this study identifies and ranks different supply chain parameters based on their relative influence on the overall resources and costs requirements. A 114 MLPY cellulosic biorefinery annually requires around 0.95 million corn stover bales supply, 250 000 hours equivalent of labor and 4.3 million L of diesel fuel. The average cost of biorefinery gate delivered corn stover is estimated to be 121.9 $-std. t(-1). This cost is identified to be the most sensitive to bale density followed by harvest rate, bale length, baler field efficiency, and annual harvest days. (c) 2016 Society of Chemical Industry and John Wiley & Sons, Ltd
机译:中西部最第一代商业纤维素生物料理的主要原料选择是玉米秸秆。他们的额定能力每年76至11400万升(MLPY)。对于这些植物的不间断运行,需要确保一系列玉米秸秆供应,需要坚固,高效,经济高效的原料供应系统。因此,这项工作的主要目的是随机分析了在IOWA中收集的生产规模实验场数据中西中西部的114毫巴纤维素生物颗粒的玉米秸秆供应系统的技术经济学。本研究分析了供应链的资源要求(设备,劳动,燃料和耗材)和包括收获(卷绕和母线),现场捆包收集和堆叠在现场边缘,处理和运输的情况下的不同部件的成本从田间边缘到分布式存储设施的捆包,然后到生物熟料植物,储存,最后从场上托盘集合中取出的营养物质的审计。此外,本研究根据对整体资源和成本要求的相对影响,确定和排列不同的供应链参数。每年114毫米纤维素生物美食需要约95百万盎司的玉米秸秆大包,25万小时等同的劳动力和430万升柴油燃料。玉米秸秆提供的生物炉门的平均成本估计为121.9美元。 t(-1)。该成本被确定为对捆包密度最敏感的,然后是收获率,捆包长度,打包机场效率和年度收获日。 (c)2016化学工业协会和约翰瓦里和儿子有限公司

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