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代谢通量网络与发酵产氢分析。

Metabolic flux network and analysis of fermentative hydrogen production.

机构信息

School of Earth and Environmental Sciences, The University of Adelaide, Adelaide, SA 5005, Australia.

出版信息

Biotechnol Adv. 2011 Jul-Aug;29(4):375-87. doi: 10.1016/j.biotechadv.2011.02.001. Epub 2011 Feb 26.

Abstract

Fermentative hydrogen production (FHP) has received a great R & D interest in recent decades, as it offers a potential means of producing H₂ from a variety of renewable resources, even wastewater via a low energy continuous process. Various extracellular metabolites including ethanol, acetate, butyrate and lactate can be produced during the fermentation, building a complex metabolic network of the FHP. Except for the recognition of its complexity, the metabolic flux network has not been well understood. Studies on biochemical reactions and metabolic flux network associated with the FHP in anaerobic fermentation system have only been drawn attention in recent years. This review summarizes the biochemical reactions taking place in the metabolic network of FHP. We discuss how the key operation factors influence metabolism in the FHP process. Recently developed and applied technologies for metabolic flux analysis have been described. Future studies on the metabolic network to enhance fermentative hydrogen production by strict anaerobes are recommended. It is expected that this review can provide useful information in terms of fundamental knowledge and update technology for scientists and research engineers in the field of biological hydrogen production.

摘要

发酵产氢(FHP)在近几十年受到了极大的研发关注,因为它提供了一种从各种可再生资源(甚至废水)中通过低能耗连续过程生产氢气的潜在方法。在发酵过程中可以产生各种细胞外代谢物,包括乙醇、乙酸、丁酸和乳酸,从而构建了 FHP 的复杂代谢网络。除了认识到其复杂性之外,对代谢通量网络还没有很好的理解。近年来,人们才开始关注厌氧发酵系统中与 FHP 相关的生化反应和代谢通量网络的研究。本文综述了 FHP 代谢网络中发生的生化反应。我们讨论了关键操作因素如何影响 FHP 过程中的代谢。还描述了最近开发和应用的代谢通量分析技术。建议对代谢网络进行未来研究,以通过严格厌氧菌来提高发酵产氢。希望本综述能够为生物制氢领域的科学家和研究工程师提供有用的基础知识和更新技术信息。

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