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在合成气发酵过程中,将棉籽提取物纳入梭菌 P11 发酵培养基中的可行性。

Feasibility of incorporating cotton seed extract in Clostridium strain P11 fermentation medium during synthesis gas fermentation.

机构信息

Department of Biosystems and Agricultural Engineering, Oklahoma State University, Stillwater, OK 74078, USA.

出版信息

Bioresour Technol. 2010 Dec;101(24):9673-80. doi: 10.1016/j.biortech.2010.07.054. Epub 2010 Jul 17.

DOI:10.1016/j.biortech.2010.07.054
PMID:20696571
Abstract

Biomass gasification followed by fermentation of syngas to ethanol is a potential process to produce bioenergy. To make this process more economical, the complexity of media should be reduced while using less costly components. In this study, the feasibility of incorporating cotton seed extract (CSE) as a media component for syngas fermentation to produce ethanol using Clostridium strain P11 was evaluated. A factorial experiment was conducted to screen and evaluate the effect of different media components, in relation to CSE, on ethanol production. Also, different CSE concentrations as well as the presence of MES buffer were tested to determine their effect on ethanol production. Bottle fermentations with media containing only 1.0 gL(-1) CSE produced more ethanol after 15 d (1.17 gL(-1)) than fermentation using any other media. Further bottle experiments showed that media containing only 0.5 gL(-1) CSE produced more ethanol after 15 days (2.67 gL(-1)) than a control media (0.6 gL(-1)) and media containing only 1.0 gL(-1) CSE (2.16 gL(-1)). Fermentations in 5- and 7.5-L stirred fermentors with 0.5 gL(-1) CSE media achieved ethanol concentrations similar to those observed in bottle studies. These results indicate that CSE can replace all the vitamin and mineral media components generally used for fermentation of syngas to ethanol by Clostridium strain P11, thereby improving the process economics.

摘要

生物质气化后发酵合成气生产乙醇是生产生物能源的一种有潜力的方法。为了使这个过程更经济,应该减少培养基的复杂性,同时使用成本更低的成分。在这项研究中,评估了棉籽油提取物(CSE)作为培养基成分,用于利用梭状芽孢杆菌 P11 发酵合成气生产乙醇的可行性。进行了析因实验,以筛选和评估不同培养基成分(包括 CSE)对乙醇生产的影响。还测试了不同的 CSE 浓度以及 MES 缓冲液的存在,以确定它们对乙醇生产的影响。在仅含有 1.0 gL(-1) CSE 的培养基中进行的瓶发酵在 15 天后产生的乙醇量(1.17 gL(-1))高于使用任何其他培养基的发酵。进一步的瓶实验表明,在仅含有 0.5 gL(-1) CSE 的培养基中,15 天后产生的乙醇量(2.67 gL(-1))高于对照培养基(0.6 gL(-1))和仅含有 1.0 gL(-1) CSE 的培养基(2.16 gL(-1))。在 5 升和 7.5 升搅拌发酵罐中进行的发酵,使用 0.5 gL(-1) CSE 培养基,达到了与瓶研究中观察到的相似的乙醇浓度。这些结果表明,CSE 可以替代通常用于梭状芽孢杆菌 P11 发酵合成气生产乙醇的维生素和矿物质培养基成分,从而提高工艺经济性。

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