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Environmental sustainability of bioethanol produced from sweet sorghum stem on saline-alkali land

机译:盐碱地甜高粱茎产生的生物乙醇的环境可持续性

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Life cycle assessment was conducted to evaluate the energy efficiency and environmental impacts of a bioethanol production system that uses sweet sorghum stem on saline-alkali land as feedstock. The system comprises a plant cultivation unit, a feedstock transport unit, and a bioethanol conversion unit, with 1000 L of bioethanol as a functional unit. The net energy ratio is 3.84, and the net energy gain is 17.21 MJ/L. Agrochemical production consumes 76.58% of the life cycle fossil energy. The category with the most significant impact on the environment is eutrophication, followed by acidification, fresh water aquatic ecotoxicity, human toxicity, and global warming. Allocation method, waste recycling approach, and soil salinity significantly influence the results. Using vinasse to produce pellet fuel for steam generation significantly improves energy efficiency and decreases negative environmental impacts. Promoting reasonable management practices to alleviate saline stress and increasing agrochemical utilization efficiency can further improve environmental sustainability. (C) 2015 Elsevier Ltd. All rights reserved.
机译:进行了生命周期评估,以评估使用以盐碱地为原料的甜高粱茎的生物乙醇生产系统的能源效率和环境影响。该系统包括植物栽培单元,原料运输单元和生物乙醇转化单元,其中1000 L生物乙醇为功能单元。净能量比为3.84,净能量增益为17.21 MJ / L。农用化学品生产消耗生命周期中化石能源的76.58%。对环境影响最大的类别是富营养化,其次是酸化,淡水水生生态毒性,人类毒性和全球变暖。分配方法,废物回收方法和土壤盐分会显着影响结果。使用酒糟生产蒸汽产生的颗粒燃料可显着提高能源效率并减少负面的环境影响。推广合理的管理措施以减轻盐分压力并提高农用化学品的利用效率,可以进一步改善环境的可持续性。 (C)2015 Elsevier Ltd.保留所有权利。

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