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比较两种不同方法(U 型管微生物燃料电池和平板法)检测出的产电细菌。

Comparison of exoelectrogenic bacteria detected using two different methods: U-tube microbial fuel cell and plating method.

机构信息

Department of Civil and Environmental Engineering, Pusan National University, Busan, Korea.

出版信息

Microbes Environ. 2012;27(1):49-53. doi: 10.1264/jsme2.me11205. Epub 2011 Dec 1.

Abstract

In a microbial fuel cell (MFC), exoelectrogens, which transfer electrons to the electrode, have been regarded as a key factor for electricity generation. In this study, U-tube MFC and plating methods were used to isolate exoelectrogens from the anode of an MFC. Disparate microorganisms were identified depending on isolation methods, despite the use of an identical source. Denaturing gel gradient electrophoresis (DGGE) analysis showed that certain microorganisms became dominant in the U-tube MFC. The predominant bacterium was similar to Ochrobactrum sp., belonging to the Alphaproteobacteria, which was shown to be able to function as an exoelectrogen in a previous study. Three isolates, one affiliated with Bacillus sp. and two with Paenibacillus sp., were identified using the plating method, which belonged to the Gram-positive bacteria, the Firmicutes. The U-tube MFCs were inoculated with the three isolates using the plating method, operated in the batch mode and the current was monitored. All of the U-tube MFCs inoculated with each isolate after isolation from plates produced lower current (peak current density: 3.6-16.3 mA/m(2)) than those in U-tube MFCs with mixed culture (48.3-62.6 mA/m(2)). Although the isolates produced low currents, various bacterial groups were found to be involved in current production.

摘要

在微生物燃料电池 (MFC) 中,向电极传递电子的异化菌被认为是发电的关键因素。本研究采用 U 型管 MFC 和电镀方法从 MFC 的阳极中分离异化菌。尽管使用了相同的来源,但根据分离方法鉴定出了不同的微生物。变性凝胶梯度电泳 (DGGE) 分析表明,某些微生物在 U 型管 MFC 中占主导地位。优势细菌类似于先前研究中被证明能够作为异化菌的 Ochrobactrum sp.,属于α变形菌。采用平板法鉴定了三种分离株,一种与芽孢杆菌属有关,两种与类芽孢杆菌属有关,它们都属于革兰氏阳性菌,Firmicutes。采用平板法将这三种分离株接种到 U 型管 MFC 中,采用分批模式运行并监测电流。从平板上分离出的三种分离株接种到 U 型管 MFC 后产生的电流均低于混合培养物的 U 型管 MFC(峰值电流密度:3.6-16.3 mA/m²)(48.3-62.6 mA/m²)。尽管分离株产生的电流较低,但发现了各种细菌群参与电流产生。

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