原材料
代谢工程
纤维素乙醇
发酵
生化工程
商品化学品
碳足迹
制浆造纸工业
生物制造
废物管理
化学工业
产量(工程)
附加值
化学
环境科学
生物技术
食品科学
有机化学
工程类
温室气体
材料科学
生物
纤维素
酶
经济
冶金
催化作用
宏观经济学
生态学
作者
Xiaoqiang Ma,Liang Hong,Smaranika Panda,Vincent Kin Yuen Fung,Jie Zhou,Kang Zhou
标识
DOI:10.1016/j.copbio.2021.08.017
摘要
Engineering microbes to produce value-added chemicals from C6/C5 sugars sometimes requires long biosynthetic pathways, which causes carbon loss due to involving multiple metabolic branch nodes, leading to a lower product yield. Using C2 feedstocks derived from gaseous, cellulosic, and plastic wastes could establish shorter biosynthetic pathways to produce some target chemicals, for example, acetyl-CoA-derived natural products. Utilizing these waste-derived feedstocks would also contribute to reducing the carbon footprint of the chemical industry. In this review, we highlighted the promising waste-processing technologies that could provide C2 feedstocks that are compatible with microbial fermentation. We also analyzed the recent metabolic engineering works in which the microorganisms/fermentation processes were modified/optimized to utilize acetate, ethanol, or ethylene glycol more efficiently.
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