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A new simulation model for multi-agricultural biomass logistics system in bioenergy production.

机译:生物能源生产中多农业生物质物流系统的新仿真模型。

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摘要

This paper presents the development of a new logistics model and its application to supply a mixture of agricultural feedstocks to a proposed cellulosic ethanol plant. The new model, IBSAL-MC (Integrated Biomass Supply Analysis & Logistics-Multi Crop), is developed based on the framework of IBSAL. IBSAL-MC is a hybrid push-pull logistics model which pushes the field operations to harvest and collect as much biomass as possible within the harvest season while pulling downstream operations to meet the daily demand of the ethanol plant. The proposed ethanol plant would be located near Prince Albert, Saskatchewan, Canada. Despite the abundance of wheat straw in the region (more than five times the annual demand), the daily demand of the ethanol plant would be fully met for only 104 days. In terms of the total annual demand, only 92% of it would be met. The logistics cost varies between $62.06 and $63.46 t-1 with 90% confidence level. The capacity of the required on-farm storage and at-plant storage are estimated at 400 t and 3500 t of biomass, respectively. Several managerial insights were also given to improve the biomass logistics system in terms of demand fulfilment, logistics costs and resource utilisation.
机译:本文介绍了一种新的物流模型的开发及其在为拟建的纤维素乙醇工厂提供农业原料混合物方面的应用。基于IBSAL的框架,开发了新模型IBSAL-MC(生物质供应综合分析与物流-多种作物)。 IBSAL-MC是一种混合推挽式物流模型,可推动田间作业在收获季节内收获并收集尽可能多的生物质,同时拉动下游作业以满足乙醇厂的日常需求。拟建的乙醇工厂将位于加拿大萨斯喀彻温省的阿尔伯特亲王城附近。尽管该地区小麦秸秆丰富(超过年需求量的五倍),但乙醇厂的每日需求仅需104天就能完全满足。就年度总需求而言,仅能满足其中的92%。物流成本在$ 62.06和$ 63.46 t -1 之间变化,置信水平为90%。所需的农场存储和工厂存储的容量分别估计为400吨和3500吨生物量。在满足需求,物流成本和资源利用方面,还提供了一些管理见解以改善生物质物流系统。

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