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Life cycle assessment of ethanol produced in a biorefinery from liquid hot water pretreated switchgrass

机译:液体热水预处理换双生物料中生物术中生产的乙醇的生命周期评估

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Life cycle assessments of fuel bioethanol produced in Uruguay from liquid hot water pretreated switchgrass were performed for two scenarios: the production of ethanol and electricity and a biorefinery producing ethanol, electricity, furfural, acetic, and formic acid.Experimental data and material and energy balances derived from the simulations were used to analyze the global warming potential of fuel bioethanol. Greenhouse gas (GHG) emissions in both scenarios were lower than the reference emissions for fossil fuel. The biorefinery scenario had a better performance in terms of environmental impacts, and the biofuel produced met GHG reduction requirements. Switchgrass composition, enzyme dosage, fermentation and hydrolysis efficiency, and solids content had a significant effect on environmental performance, with enzyme use being the most significant factor. A multi-objective optimization was used to find the values of solid content and enzyme dose that minimize GHG emissions and the minimum ethanol selling price (MESP). An enzyme dosage of 37 mg(protein)/g(glucan) and solids content of 21% w/w were the optimal conditions for bioethanol production with an associated GHG value of 2 +/- 5 g CO2 eq./MJ(ethanol) and a MESP of $0.84/L. (C) 2021 Elsevier Ltd. All rights reserved.
机译:乌拉圭生产的燃料生物乙醇的生命周期评估来自液体热水预处理的切换术,两种情况进行:生产乙醇和电力和生物遗料,生产乙醇,电力,糠醛,醋酸和甲酸。实验数据和材料和能量余额源自模拟用于分析燃料生物乙醇的全球变暖潜力。两种情况的温室气体(GHG)排放量低于化石燃料的参考排放。生物犯规方案在环境影响方面具有更好的性能,生物燃料产生了GHG减少要​​求。切换紫色组成,酶剂量,发酵和水解效率,固体含量对环境性能有显着影响,酶使用是最重要的因素。多目标优化用于找到固体含量和酶剂量的值,最小化温室气体排放和最低乙醇销售价格(MES)。 37mg(蛋白质)/ g(葡聚糖)和固体含量为21%w / w的酶剂量是生物乙醇产生的最佳条件,其相关的温室气体增长2 +/- 5g co2 eq./mj(乙醇)和0.84 / L的MES。 (c)2021 elestvier有限公司保留所有权利。

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