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梭菌发酵可再生生物质生产丁醇。

Butanol production from renewable biomass by clostridia.

机构信息

Metabolic and Biomolecular Engineering National Research Laboratory, Department of Chemical and Biomolecular Engineering (BK21 Program), BioProcess Engineering Research Center, Center for Systems and Synthetic Biotechnology, Institute for the BioCentury, KAIST, Republic of Korea.

出版信息

Bioresour Technol. 2012 Nov;123:653-63. doi: 10.1016/j.biortech.2012.07.104. Epub 2012 Aug 7.

Abstract

Global energy crisis and limited supply of petroleum fuels have rekindled the worldwide focus towards development of a sustainable technology for alternative fuel production. Utilization of abundant renewable biomass offers an excellent opportunity for the development of an economical biofuel production process at a scale sufficiently large to have an impact on sustainability and security objectives. Additionally, several environmental benefits have also been linked with the utilization of renewable biomass. Butanol is considered to be superior to ethanol due to its higher energy content and less hygroscopy. This has led to an increased research interest in butanol production from renewable biomass in recent years. In this paper, we review the various aspects of utilizing renewable biomass for clostridial butanol production. Focus is given on various alternative substrates that have been used for butanol production and on fermentation strategies recently reported to improve butanol production.

摘要

全球能源危机和石油燃料供应有限,重新点燃了全球对替代燃料生产可持续技术的关注。利用丰富的可再生生物质为经济的生物燃料生产过程的发展提供了极好的机会,其规模之大足以对可持续性和安全目标产生影响。此外,利用可再生生物质还与一些环境效益有关。与乙醇相比,丁醇由于其较高的能量含量和较低的吸湿性而被认为更优越。这导致近年来人们对利用可再生生物质生产丁醇的研究兴趣日益增加。本文综述了利用可再生生物质生产梭菌丁醇的各个方面。重点介绍了近年来用于丁醇生产的各种替代底物和用于提高丁醇生产的发酵策略。

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