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Electricity generation at high ionic strength in microbial fuel cell by a newly isolated Shewanella marisflavi EP1

机译:新分离的希瓦氏菌Marisflavi EP1在微生物燃料电池中以高离子强度发电

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Increasing the ionic strength of the electrolyte in a microbial fuel cell (MFC) can remarkably increase power output due to the reduction of internal resistance. However, only a few bacterial strains are capable of producing electricity at a very high ionic strength. In this report, we demonstrate a newly isolated strain EP1, belonging to Shewanella marisflavi based on polyphasic analysis, which could reduce Fe(III) and generate power at a high ionic strength of up to 1,488 mM (8% NaCl) using lactate as the electron donor. Using this bacterium, a measured maximum power density of 3.6 mW/m2 was achieved at an ionic strength of 291 mM. The maximum power density was increased by 167% to 9.6 mW/m2 when ionic strength was increased to 1,146 mM. However, further increasing the ionic strength to 1,488 mM resulted in a decrease in power density to 5.2 mW/m2. Quantification of the internal resistance distribution revealed that electrolyte resistance was greatly reduced from 1,178 to 50 Ω when ionic strength increased from 291 to 1,488 mM. These results indicate that isolation of specific bacterial strains can effectively improve power generation in some MFC applications. Keywords Microbial fuel cell - Shewanella marisflavi - Ionic strength - Internal resistance
机译:由于内部电阻的减小,增加微生物燃料电池(MFC)中电解质的离子强度可以显着增加功率输出。但是,只有少数细菌菌株能够以非常高的离子强度产生电。在本报告中,我们通过多相分析证明了一种新分离的菌株EP1,属于希瓦氏菌(Shewanella marisflavi),它可以还原Fe(III),并以乳酸为离子源,在高达1488 mM(8%NaCl)的高离子强度下发电。电子给体。使用该细菌,离子强度为291 mM时,测得的最大功率密度为3.6 mW / m 2 。当离子强度增加到1146 mM时,最大功率密度增加了167%,达到9.6 mW / m 2 。但是,将离子强度进一步提高到1,488 mM会使功率密度降低到5.2 mW / m 2 。内阻分布的量化显示,当离子强度从291 mM增加到1488 mM时,电解质电阻从1178大大降低到50Ω。这些结果表明,在某些MFC应用中,特定细菌菌株的分离可以有效改善发电。关键词微生物燃料电池-Marisflavi希瓦氏菌-离子强度-内阻

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