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Analysis of environmental and economic tradeoffs in switchgrass supply chains for biofuel production

机译:分析柳枝bio生物燃料生产供应链中的环境与经济权衡

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This study considered the environmental advantages of switchgrass, along with the economic challenges in its logistics, in the design of a sustainable switchgrass supply chain in Tennessee. Applying a multi objective optimization model to high-resolution spatial data, potential tradeoffs among the objectives of minimizing feedstock costs, GHG (greenhouse gas) emissions, and soil erosion were identified for a set of conversion facilities on an efficient frontier. The tradeoff relationship was primarily driven by the type of agricultural land converted to switchgrass. Hay and pasture lands were more cost effective but resulted in higher soil carbon losses and soil erosion after being converted to switchgrass. Converting crop lands reduced GHG emissions and soil erosion but caused higher feedstock cost primarily due to the higher opportunity cost of land use. The respective average costs of abating GHG emissions and soil erosion on the efficient frontier were $2378 Mg-1 and $10 Mg-1. The compromise solution conversion facility site generated 63% higher feedstock cost compared to the cost minimizing location, while reducing soil erosion by 70 fold and diminishing GHG emissions by 27%. Reducing soil erosion may be a more cost effective environmental criterion than reducing GHG emissions in developing a sustainable switchgrass supply chain in Tennessee. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究在田纳西州可持续柳枝supply供应链设计中考虑了柳枝environmental的环境优势以及物流方面的经济挑战。将多目标优化模型应用于高分辨率空间数据,可以在有效边界上为一组转换设施确定在最小化原料成本,温室气体(GHG)排放和土壤侵蚀等目标之间的潜在权衡。权衡关系主要是由转换为柳枝switch的农地类型驱动的。干草和牧场土地更具成本效益,但在转换为柳枝after后导致更高的土壤碳损失和土壤侵蚀。转换耕地减少了温室气体排放和水土流失,但主要由于土地利用机会成本较高而导致了较高的原料成本。在有效边界上减少温室气体排放和土壤侵蚀的平均成本分别为2378 Mg-1和10 Mg-1。与将成本最小化的位置相比,折衷的解决方案转换设施站点产生的原料成本高出63%,同时将土壤侵蚀减少了70倍,并将温室气体排放量减少了27%。在田纳西州建立可持续的柳枝supply供应链中,减少土壤侵蚀可能比减少温室气体排放更具成本效益。 (C)2016 Elsevier Ltd.保留所有权利。

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