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微生物燃料电池中阳极及阳极电解液群落生长的表征以及阻抗的影响

Characterization of anode and anolyte community growth and the impact of impedance in a microbial fuel cell.

作者信息

Sanchez-Herrera Diana, Pacheco-Catalan Daniella, Valdez-Ojeda Ruby, Canto-Canche Blondy, Dominguez-Benetton Xochitl, Domínguez-Maldonado Jorge, Alzate-Gaviria Liliana

机构信息

Renewable Energy Unit, Centro de Investigación Científica de Yucatán A.C (CICY), Calle 43 No. 130 Col. Chuburná de Hidalgo, C.P. 97200, Mérida, Yucatán, México.

Biotechnology Unit, CICY A.C, Mérida, Yucatán, México.

出版信息

BMC Biotechnol. 2014 Dec 9;14:102. doi: 10.1186/s12896-014-0102-z.

Abstract

BACKGROUND

A laboratory-scale two-chamber microbial fuel cell employing an aerated cathode with no catalyst was inoculated with mixed inoculum and acetate as the carbon source. Electrochemical impedance spectroscopy (EIS) was used to study the behavior of the MFC during initial biofilm (week 1) and maximum power density (week 20). EIS were performed on the anode chamber, biofilm (without anolyte) and anolyte (without biofilm). Nyquist plots of the EIS data were fitted with two equivalent electrical circuits to estimate the contributions of intrinsic resistances to the overall internal MFC impedance at weeks 1 and 20, respectively.

RESULTS

The results showed that the system tended to increase power density from 15 ± 3 (week 1) to 100 ± 15 mW/m(2) (week 20) and current density 211 ± 7 (week 1) to 347 ± 29 mA/m(2) (week 20). The Samples were identified by pyrosequencing of the 16S rRNA gene and showed that initial inoculum (week 1) was constituted by Proteobacteria (40%), Bacteroidetes (22%) and Firmicutes (18%). At week 20, Proteobacterial species were predominant (60%) for electricity generation in the anode biofilm, being 51% Rhodopseudomonas palustris. Meanwhile on anolyte, Firmicutes phylum was predominant with Bacillus sp. This study proved that under the experimental conditions used there is an important contribution from the interaction of the biofilm and the anolyte on cell performance. Table 1 presents a summary of the specific influence of each element of the system under study.

CONCLUSIONS

The results showed certain members of the bacterial electrode community increased in relative abundance from the initial inoculum. For example, Proteobacterial species are important for electricity generation in the anode biofilms and Firmicutes phylum was predominant on anolyte to transfer electron. R1 is the same in the three systems and no variation is observed over time. The biofilm makes a significant contribution to the charge transfer processes at the electrode (R2 and Cdl) and, consequently, on the performance of the anode chamber. The biofilm can act as a barrier which reduces diffusion of the anolyte towards the electrode, all the while behaving like a porous material. The anolyte and its interaction with the biofilm exert a considerable influence on diffusion processes, given that it presents the highest values for Rd which increased at week 20.

摘要

背景

一个实验室规模的双室微生物燃料电池,采用无催化剂的曝气阴极,接种混合接种物并以醋酸盐作为碳源。利用电化学阻抗谱(EIS)研究该微生物燃料电池在初始生物膜形成阶段(第1周)和最大功率密度阶段(第20周)的行为。EIS测量分别在阳极室、生物膜(无阳极电解液)和阳极电解液(无生物膜)上进行。EIS数据的奈奎斯特图分别用两个等效电路拟合,以估计在第1周和第20周时固有电阻对微生物燃料电池整体内部阻抗的贡献。

结果

结果表明,该系统的功率密度从15±3 mW/m²(第1周)增加到100±15 mW/m²(第20周),电流密度从211±7 mA/m²(第1周)增加到347±29 mA/m²(第20周)。通过对16S rRNA基因进行焦磷酸测序鉴定样本,结果显示初始接种物(第1周)由变形菌门(40%)、拟杆菌门(22%)和厚壁菌门(18%)组成。在第20周时,阳极生物膜中用于发电的主要是变形菌门物种(60%),其中沼泽红假单胞菌占51%。同时在阳极电解液中,厚壁菌门以芽孢杆菌属为主。本研究证明,在所使用的实验条件下,生物膜与阳极电解液的相互作用对电池性能有重要贡献。表1总结了所研究系统各元素的具体影响。

结论

结果表明,细菌电极群落的某些成员在相对丰度上相对于初始接种物有所增加。例如,变形菌门物种对阳极生物膜中的发电很重要,而厚壁菌门在阳极电解液中占主导地位以传递电子。三个系统中的R1相同,且未观察到随时间的变化。生物膜对电极处的电荷转移过程(R2和Cdl)有显著贡献,因此对阳极室的性能也有显著贡献。生物膜可以起到屏障作用,减少阳极电解液向电极的扩散,同时其行为类似于多孔材料。阳极电解液及其与生物膜的相互作用对扩散过程有相当大的影响,因为在第20周时它的Rd值最高且有所增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a85f/4299683/9c036a24d4eb/12896_2014_102_Fig1_HTML.jpg

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