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Life-cycle energy efficiency and environmental impacts of bioethanol production from sweet potato

机译:甘薯生产生物乙醇的生命周期能源效率和环境影响

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Life-cycle assessment (LCA) was used to evaluate the energy efficiency and environmental impacts of sweet potato-based bioethanol production. The scope covered all stages in the life cycle of bioethanol production, including the cultivation and treatment, transport, as well as bioethanol conversion of sweet potato. Results show that the net energy ratio of sweet potato-based bioethanol is 1.48 and the net energy gain is 6.55. MJ/L. Eutrophication is identified as the most significant environmental impact category, followed by acidification, global warming, human toxicity, and photochemical oxidation. Sensitivity analysis reveals that steam consumption during bioethanol conversion exerts the most effect on the results, followed by sweet potato yields and fertilizers input. It is suggested that substituting coal with cleaner energy for steam generation in bioethanol conversion stage and promotion of better management practices in sweet potato cultivation stage could lead to a significant improvement of energy and environmental performance.
机译:生命周期评估(LCA)用于评估基于甘薯的生物乙醇生产的能源效率和环境影响。范围涵盖了生物乙醇生产生命周期的所有阶段,包括甘薯的种植和处理,运输以及生物乙醇转化。结果表明,甘薯基生物乙醇的净能量比为1.48,净能量增益为6.55。 MJ / L。富营养化被认为是最重要的环境影响类别,其次是酸化,全球变暖,人类毒性和光化学氧化。敏感性分析表明,生物乙醇转化过程中的蒸汽消耗对结果影响最大,其次是甘薯产量和肥料投入。建议在生物乙醇转化阶段用更清洁的能源代替煤炭来产生蒸汽,并在红薯栽培阶段推广更好的管理方法,可以显着改善能源和环境绩效。

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