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通过合成气发酵从食物垃圾和难处理生物质中获取生物化学制品:综述。

Biochemicals from food waste and recalcitrant biomass via syngas fermentation: A review.

机构信息

Swedish Centre for Resource Recovery, University of Borås, 50190 Borås, Sweden.

Swedish Centre for Resource Recovery, University of Borås, 50190 Borås, Sweden.

出版信息

Bioresour Technol. 2018 Jan;248(Pt A):113-121. doi: 10.1016/j.biortech.2017.06.075. Epub 2017 Jun 15.

Abstract

An effective method for the production of value-added chemicals from food waste and lignocellulosic materials is a hybrid thermal-biological process, which involves gasification of the solid materials to syngas (primarily CO and H) followed by fermentation. This paper reviews the recent advances in this process. The special focus is on the cultivation methods that involve the use of single strains, defined mixed cultures and undefined mixed cultures for production of carboxylic acids and higher alcohols. A rate limiting step in these processes is the low mass transfer between the gas and the liquid phases. Therefore, novel techniques that can enhance the gas-liquid mass transfer including membrane- and trickle-bed bioreactors were discussed. Such bioreactors have shown promising results in increasing the volumetric mass transfer coefficient (ka). High gas pressure also influences the mass transfer in certain batch processes, although the presence of impurities in the gas would impede the process.

摘要

从食物垃圾和木质纤维素材料生产增值化学品的有效方法是一种混合热-生物工艺,该工艺涉及将固体材料气化生成合成气(主要是 CO 和 H),然后进行发酵。本文综述了该工艺的最新进展。特别关注涉及使用单菌株、定义混合培养物和未定义混合培养物生产羧酸和高级醇的培养方法。这些过程中的限速步骤是气相和液相之间的低传质速率。因此,讨论了可以增强气-液传质的新型技术,包括膜和滴流床生物反应器。这些生物反应器在提高体积传质系数(ka)方面显示出了有前景的结果。高气压也会影响某些间歇过程中的传质,尽管气体中的杂质会阻碍该过程。

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