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Microbial Communities and Electrochemical Performance of Titanium-Based Anodic Electrodes in a Microbial Fuel Cell

机译:微生物燃料电池中钛基阳极电极的微生物群落和电化学性能

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Four types of titanium (Ti)-based electrodes were tested in the same microbial fuel cell (MFC) anodic compartment. Their electrochemical performances and the dominant microbial communities of the electrode biofilms were compared. The electrodes were identical in shape, macroscopic surface area, and core material but differed in either surface coating (Pt- or Ta-coated metal composites) or surface texture (smooth or rough). The MFC was inoculated with electrochemically active, neutrophilic microorganisms that had been enriched in the anodic compartments of acetate-fed MFCs over a period of 4 years. The original inoculum consisted of bioreactor sludge samples amended with Geobacter sulfurreducens strain PCA. Overall, the Pt- and Ta-coated Ti bioanodes (electrode-biofilm association) showed higher current production than the uncoated Ti bioanodes. Analyses of extracted DNA of the anodic liquid and the Pt- and Ta-coated Ti electrode biofilms indicated differences in the dominant bacterial communities. Biofilm formation on the uncoated electrodes was poor and insufficient for further analyses. Bioanode samples from the Pt- and Ta-coated Ti electrodes incubated with Fe(III) and acetate showed several Fe(III)-reducing bacteria, of which selected species were dominant, on the surface of the electrodes. In contrast, nitrate-enriched samples showed less diversity, and the enriched strains were not dominant on the electrode surface. Isolated Fe(III)-reducing strains were phylogenetically related, but not all identical, to Geobacter sulfurreducens strain PCA. Other bacterial species were also detected in the system, such as a Propionicimonas-related species that was dominant in the anodic liquid and Pseudomonas-, Clostridium-, Desulfovibrio-, Azospira-, and Aeromonas-related species.
机译:在同一微生物燃料电池(MFC)阳极室中测试了四种类型的钛(Ti)基电极。比较了它们的电化学性能和电极生物膜的主要微生物群落。电极的形状,宏观表面积和芯材相同,但表面涂层(Pt或Ta涂层的金属复合材料)或表面纹理(光滑或粗糙)不同。在MFC中接种了电化学活性的嗜中性微生物,该微生物在4年的时间里富含乙酸盐喂养的MFC的阳极室。原始接种物由生物反应器污泥样品组成,并经还原性Geobacter sulphreducens菌株PCA修正。总体而言,Pt和Ta涂层的钛生物阳极(电极与生物膜的结合)显示出比未涂层的Ti生物阳极更高的电流产生。阳极液以及Pt和Ta包覆的Ti电极生物膜提取DNA的分析表明,优势细菌群落存在差异。未涂覆电极上的生物膜形成不良,不足以进行进一步分析。用Fe(III)和乙酸盐孵育的Pt和Ta涂层Ti电极的生物阳极样品在电极表面显示出几种还原Fe(III)的细菌,其中选定的种占优势。相反,富含硝酸盐的样品显示较少的多样性,并且富含的菌株在电极表面上不是主要的。分离的还原Fe(III)的菌株与地理还原硫细菌PCA在系统发育上相关,但并非全部相同。在系统中还检测到其他细菌种类,例如在阳极液中占优势的丙酸单胞菌相关种类以及假单胞菌,梭菌,脱硫弧菌,偶氮螺旋菌和气单胞菌相关的种类。

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