纤维素乙醇
生物燃料
原材料
生物炼制
乙醇燃料
生命周期评估
制浆造纸工业
生物能源
废物管理
化石燃料
环境科学
温室气体
生产(经济)
生化工程
工程类
化学
经济
纤维素
生态学
有机化学
化学工程
生物
宏观经济学
作者
Qian Qian,Zhongyang Luo,Haoran Sun,Wei Qi,Jinrui Shi,Longfei Li
标识
DOI:10.1016/j.biortech.2024.130595
摘要
Poplar is widely used in the paper industry and accompanied by abundant branches waste, which is potential feedstock for bioethanol production. Acid-chlorite pretreatment can selectively remove lignin, thereby significantly increasing enzymatic efficiency. Moreover, lignin residues valorization via gasification-syngas fermentation can achieve higher fuel yield. Herein, environmental and economic aspects were conducted to assess technological routes, which guides further process optimization. Life cycle assessment results show that wood-based biorefineries especially coupling scenarios have significant advantages in reducing global warming potential in contrast to fossil-based automotive fuels. Normalization results indicate that acidification potential surpasses other indicators as the primary impact category. In terms of economic feasibility, coupling scenarios present better investment prospects. Bioethanol yield is the most critical factor affecting market competitiveness. Minimum ethanol selling price below ethanol international market price is promising with higher-levels technology. Further work should be focused on technological breakthrough, consumable reduction or replacement.
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