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富含菊粉的饲料生物燃料:全面综述。

Biofuels from inulin-rich feedstocks: A comprehensive review.

机构信息

Carbohydrate and Protein Biotechnology Laboratory, Department of Biotechnology, Punjabi University, Patiala 147 002, India.

Carbohydrate and Protein Biotechnology Laboratory, Department of Biotechnology, Punjabi University, Patiala 147 002, India.

出版信息

Bioresour Technol. 2022 Feb;346:126606. doi: 10.1016/j.biortech.2021.126606. Epub 2021 Dec 30.

Abstract

Biofuels are considered as a pre-eminent alternate to fossil fuels to meet the demand of future energy supply in a sustainable manner. Conventionally, they are produced from lignocellulosic raw materials. Saccharification of lignocellulosic raw materials for bioethanol production is a cumbersome process as compared to inulin-rich feedstocks. Various inulin-rich feedstocks, viz. jerusalem artichoke, chicory, dahlia, asparagus sp., etc. has also been exploited for the production of biofuels, viz. bioethanol, acetone, butanol, etc. The ubiquitous availability of inulin-rich feedstocks and presence of large amount of inulin makes them a robust substrate for biofuels production. Different strategies, viz. separate hydrolysis and fermentation, simultaneous saccharification and fermentation and consolidated bioprocessing have been explored for the conversion of inulin-rich feedstocks into biofuels. These bioprocess strategies are simple and efficient. The present review elaborates the prospective of inulin-rich feedstocks for biofuels production. Bioprocess strategies exploited for the conversion of inulin-rich feedstocks have also been highlighted.

摘要

生物燃料被认为是化石燃料的卓越替代品,以可持续的方式满足未来能源供应的需求。传统上,它们是由木质纤维素原料生产的。与富含菊粉的原料相比,木质纤维素原料的糖化用于生产生物乙醇是一个繁琐的过程。各种富含菊粉的原料,如菊苣、朝鲜蓟、大丽花、芦笋等,也被用于生产生物燃料,如生物乙醇、丙酮、丁醇等。菊粉丰富的原料无处不在,而且菊粉含量很高,这使得它们成为生物燃料生产的强有力的基质。已经探索了不同的策略,如单独的水解和发酵、同步糖化和发酵以及整合生物加工,以将富含菊粉的原料转化为生物燃料。这些生物加工策略简单高效。本综述阐述了富含菊粉的原料在生物燃料生产中的前景。还强调了用于转化富含菊粉的原料的生物加工策略。

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