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首页> 外文期刊>Applied Microbiology and Biotechnology >Bacterial acetone and butanol production by industrial fermentation in the Soviet Union: use of hydrolyzed agricultural waste for biorefinery
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Bacterial acetone and butanol production by industrial fermentation in the Soviet Union: use of hydrolyzed agricultural waste for biorefinery

机译:苏联通过工业发酵生产细菌丙酮和丁醇:将水解的农业废料用于生物精炼

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Clostridial acetone-butanol fermentation from renewable carbohydrates used to be the largest biotechnological process second only to yeast ethanol fermentation and the largest process ever run under sterile conditions. With the rising prices for mineral oil, it has now the economical and technological potential to replace petrochemistry for the production of fuels from renewable resources. Various methods for using non-food biomass such as cellulose and hemicellulose in agricultural products and wastes have been developed at laboratory scale. To our knowledge, the AB plants in Russia were the only full-scale industrial plants which used hydrolyzates of lignocellosic waste for butanol fermentation. These plants were further developed into the 1980s, and the process was finally run in a continual mode different from plants in Western countries. A biorefinery concept for the use of all by-products has been elaborated and was partially put into practice. The experience gained in the Soviet Union forms a promising basis for the development of modern large-scale processes to replace a considerable fraction of the current chemical production of fuel for our future needs on a sustainable basis.
机译:从可再生碳水化合物中梭菌丙酮-丁醇发酵曾经是最大的生物技术过程,仅次于酵母乙醇发酵,并且是有史以来在无菌条件下进行的最大过程。随着矿物油价格的上涨,它现在具有经济和技术潜力,可以代替石油化学来利用可再生资源生产燃料。在实验室规模上已经开发出各种在农产品和废物中使用非食品生物质(例如纤维素和半纤维素)的方法。据我们所知,俄罗斯的AB工厂是唯一使用木质纤维素废液水解物进行丁醇发酵的大规模工业工厂。这些植物被进一步发展到1980年代,该过程最终以不同于西方国家植物的连续模式运行。已经详细阐述了使用所有副产物的生物精炼概念,并将其部分付诸实践。苏联获得的经验为发展现代大规模工艺提供了有希望的基础,以可持续方式替代当前化学燃料的相当一部分以满足我们未来的需求。

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