产氢菌Enterobacter sp.和Clostridium sp.的分离鉴定及产氢特性
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福建省重点科技项目(No.2005I016)和厦门市科技项目(No.3502Z20041070)资助。


Isolation and Characterization of H2-producing Strains Enterobacter sp. and Clostridium sp.
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This work was supported by the Key Project of Science and Technology of Fujian Province of China (No.2005I016) and the Project of Science and Technology of Xiamen of China (No.3502Z20041070).

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    摘要:

    在高温水体中分离得到2株具有较高产氢活性的微生物菌株Z-16和C-32。根据两菌株的16S rDNA序列分析,初步鉴定菌株Z-16为Enterobacter sp.,菌株C-32为Clostridium sp.。研究了起始pH值、反应温度、碳源等对菌株放氢活性的影响。菌株Z-16的最适产氢条件为:反应系统起始pH7.0,反应温度35℃,以蔗糖为产氢底物。在最适条件下,菌株Z-16的氢转化率为2.68mol H2/mol蔗糖。菌株C-32的最适产氢条件为:反应系统起始pH 8.0,反应温度35℃,以麦芽糖为产氢底物。在最适条件下,菌株C-32的氢转化率为2.71mol H2/mol 麦芽糖。以葡萄糖为碳源时,菌株Z-16和菌株C-32的氢转化率分别为2.35和2.48mol H2/mol葡萄糖。

    Abstract:

    Two hydrogen-producing bacterial strains were newly isolated and identified as Enterobacter sp. Z-16 and Clostridium sp. C-32 by 16S rDNA sequence analysis. Various parameters for hydrogen production, including substrates, initial pH and temperature, have been studied. The optimum condition for hydrogen production of strain Z-16 were achieved as: initial pH7.0, temperature 35℃, sucrose as the favorite substrate. In comparison, The optimum condition for hydrogen production of strain C-32 were obtained as: initial pH8.0, temperature 35℃, maltose as the favorite substrate . Under batch fermentative hydrogen production conditions, the maximal hydrogen conversion rate for strain Z-16 and strain C-32 were 2.68 mol H2/mol sucrose and 2.71mol H2/mol maltose, respectively. Using glucose as substrate, the hydrogen conversion rate of strain Z-16 and strain C-32 were 2.35 and 2.48 mol H2/mol glucose, respectively. This research suggest a good application potential of strain Z-16 and C-32 in the future biological hydrogen production.

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支晓鹏,刘清锋,邬小兵,徐惠娟,龙敏南. 产氢菌Enterobacter sp.和Clostridium sp.的分离鉴定及产氢特性[J]. 生物工程学报, 2007, 23(1):

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