化石燃料
可再生能源
生物生产
温室气体
环境科学
生物炼制
可再生燃料
生化工程
生物燃料
烟气
废物管理
沼气
生物量(生态学)
自然资源经济学
工程类
生物技术
生物
海洋学
电气工程
地质学
经济
生态学
作者
Zihe Liu,Kai Wang,Yun Chen,Tianwei Tan,Jens Nielsen
出处
期刊:Nature Catalysis
[Nature Portfolio]
日期:2020-03-18
卷期号:3 (3): 274-288
被引量:322
标识
DOI:10.1038/s41929-019-0421-5
摘要
Concerns regarding petroleum depletion and global climate change caused by greenhouse gas emissions have spurred interest in renewable alternatives to fossil fuels. Third-generation (3G) biorefineries aim to utilize microbial cell factories to convert renewable energies and atmospheric CO2 into fuels and chemicals, and hence represent a route for assessing fuels and chemicals in a carbon-neutral manner. However, to establish processes competitive with the petroleum industry, it is important to clarify/evaluate/identify the most promising CO2 fixation pathways, the most appropriate CO2 utilization models and the necessary productivity levels. Here, we discuss the latest advances in 3G biorefineries. Following an overview of applications of CO2 feedstocks, mainly from flue gas and waste gasification, we review prominent opportunities and barriers in CO2 fixation and energy capture. We then summarize reported CO2-based products and industries, and describe trends and key challenges for future advancement of 3G biorefineries. A shift from sugar-based feedstocks and biomass to the use of atmospheric CO2 for the bioproduction of fuels and chemicals is desirable. This Review describes how microorganisms can be engineered for CO2 fixation and industrial valorization of this key molecule.
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