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全面且定量的黑暗发酵生物制氢综述。

A comprehensive and quantitative review of dark fermentative biohydrogen production.

机构信息

Institute of Chemical Engineering, Research Area Biochemical Engineering, Gumpendorferstraße 1a, Vienna University of Technology, Vienna 1060, Austria.

出版信息

Microb Cell Fact. 2012 Aug 27;11:115. doi: 10.1186/1475-2859-11-115.

Abstract

Biohydrogen production (BHP) can be achieved by direct or indirect biophotolysis, photo-fermentation and dark fermentation, whereof only the latter does not require the input of light energy. Our motivation to compile this review was to quantify and comprehensively report strains and process performance of dark fermentative BHP. This review summarizes the work done on pure and defined co-culture dark fermentative BHP since the year 1901. Qualitative growth characteristics and quantitative normalized results of H2 production for more than 2000 conditions are presented in a normalized and therefore comparable format to the scientific community.Statistically based evidence shows that thermophilic strains comprise high substrate conversion efficiency, but mesophilic strains achieve high volumetric productivity. Moreover, microbes of Thermoanaerobacterales (Family III) have to be preferred when aiming to achieve high substrate conversion efficiency in comparison to the families Clostridiaceae and Enterobacteriaceae. The limited number of results available on dark fermentative BHP from fed-batch cultivations indicates the yet underestimated potential of this bioprocessing application. A Design of Experiments strategy should be preferred for efficient bioprocess development and optimization of BHP aiming at improving medium, cultivation conditions and revealing inhibitory effects. This will enable comparing and optimizing strains and processes independent of initial conditions and scale.

摘要

生物氢气生产(BHP)可以通过直接或间接的生物光解、光合发酵和暗发酵来实现,其中只有后者不需要输入光能。我们编译这篇综述的动机是量化和全面报告暗发酵 BHP 的菌株和工艺性能。本文综述了自 1901 年以来关于纯培养和定义共培养暗发酵 BHP 的工作。超过 2000 种条件下的定性生长特性和定量归一化 H2 生产结果以归一化的格式呈现,以便与科学界进行比较。基于统计学的证据表明,嗜热菌株具有较高的底物转化率效率,但中温菌株具有较高的容积生产率。此外,与梭菌科和肠杆菌科相比,在以实现高底物转化率效率为目标时,Thermoanaerobacterales(家族 III)的微生物应优先考虑。关于分批培养的暗发酵 BHP 的可用结果数量有限,表明该生物加工应用的潜力尚未得到充分认识。对于旨在改善培养基、培养条件和揭示抑制作用的 BHP 的高效生物过程开发和优化,应优先采用实验设计策略。这将使菌株和工艺的比较和优化能够独立于初始条件和规模进行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/decb/3443015/dab78bf23aea/1475-2859-11-115-1.jpg

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