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底物对希瓦氏菌 PV-4 在微生物燃料电池中发电的影响。

Influence of substrate on electricity generation of Shewanella loihica PV-4 in microbial fuel cells.

机构信息

College of Chemical Engineering, Huaqiao University, 361021 Xiamen, P, R, China.

出版信息

Microb Cell Fact. 2014 May 16;13:69. doi: 10.1186/1475-2859-13-69.

Abstract

BACKGROUND

The substrate, serving as carbon and energy source, is one of the major factors affecting the performance of microbial fuel cells (MFCs). We utilized BIOLOG system to rapidly screen substrates for electricigens, and further evaluated influence of these substrates on electricity generation of Shewanella loihica PV-4 in MFCs.

RESULTS

Three of most favorable substrates (lactate acid, formic acid and cyclodextrin) with OD590/750 of 0.952, 0.880 and 0.849 as well as three of most unfavorable substrates (galactose, arabinose and glucose) with OD590/750 of 0.248, 0.137 and 0.119 were selected by BIOLOG system under aerobic conditions. The chronoamperometry results showed that MFCs fed with these substrates exhibited different current behaviors. Cyclic voltammograms results showed that arabinose, galactose and glucose promoted electron transfer from outer membrane c-Cyts of cells to the electrode surface. Lactic acid, formic acid and cyclodextrin produced lower quantity of electric charge of 10.13 C, 9.83 C and 10.10 C, the corresponding OD600 value was 0.180, 0.286 and 0.152 in BES; while galactose, arabinose and glucose generated higher quantity of electric charge of 12.34 C, 13.42 C and 17.45 C, and increased OD600 values were 0.338, 0.558 and 0.409 in BES. SEMs results showed that plenty of plump and stretched cells as well as appendages were observed when lactic acid, formic acid, and cyclodextrin were utilized as substrates, while sparse cells in short shape were obtained when galactose, arabinose and glucose were used as substrates.

CONCLUSIONS

These results suggest that substrate not only has important role in electrochemical performances of MFCs but also in biological properties of electricigens. Lactic acid, formic acid, and cyclodextrin beneficial for cell growth under aerobic conditions are unfavourable for planktonic cell growth and current generation under anaerobic conditions, while consumptions of galactose, arabinose and glucose adverse to cell growth under aerobic conditions are favourable for planktonic cell growth and current generation under anaerobic conditions due to the increase of cell numbers with more outer membrane c-Cyts transferring electrons between the electrode surface and cells.

摘要

背景

作为碳源和能源的基质是影响微生物燃料电池(MFC)性能的主要因素之一。我们利用 BIOLOG 系统快速筛选电活性菌的基质,并进一步评估这些基质对 Shewanella loihica PV-4 在 MFC 中发电的影响。

结果

在有氧条件下,BIOLOG 系统选择了三种最有利的基质(乳酸、甲酸和环糊精),其 OD590/750 值分别为 0.952、0.880 和 0.849,以及三种最不利的基质(半乳糖、阿拉伯糖和葡萄糖),其 OD590/750 值分别为 0.248、0.137 和 0.119。恒电流安培结果表明,用这些基质喂养的 MFC 表现出不同的电流行为。循环伏安结果表明,阿拉伯糖、半乳糖和葡萄糖促进了细胞外膜 c-Cyts 向电极表面的电子转移。乳酸、甲酸和环糊精产生的电荷量较低,分别为 10.13 C、9.83 C 和 10.10 C,对应的 BES 中的 OD600 值分别为 0.180、0.286 和 0.152;而半乳糖、阿拉伯糖和葡萄糖产生的电荷量较高,分别为 12.34 C、13.42 C 和 17.45 C,BES 中的 OD600 值分别增加到 0.338、0.558 和 0.409。SEM 结果表明,当使用乳酸、甲酸和环糊精作为基质时,观察到大量丰满和拉伸的细胞以及附属物,而当使用半乳糖、阿拉伯糖和葡萄糖作为基质时,得到的是稀疏的短形状细胞。

结论

这些结果表明,基质不仅在 MFC 的电化学性能方面起着重要作用,而且在电活性菌的生物特性方面也起着重要作用。在有氧条件下有利于细胞生长的乳酸、甲酸和环糊精不利于厌氧条件下的浮游细胞生长和电流产生,而在有氧条件下不利于细胞生长的半乳糖、阿拉伯糖和葡萄糖有利于厌氧条件下的浮游细胞生长和电流产生,因为更多的外膜 c-Cyts 将电子在电极表面和细胞之间传递,从而增加了细胞数量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb9a/4032171/4f03ba64b339/1475-2859-13-69-1.jpg

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