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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/m~2 was achieved at an ionic strength of 291 mM. The maximum power density was increased by 167% to 9.6 mW/m~2 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/m~2. 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.
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),并在高达1488 mM(8%NaCl)的高离子强度下使用乳酸作为离子源来发电。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1,146 mM时,最大功率密度增加了167%,达到9.6 mW / m〜2。然而,将离子强度进一步提高到1,488 mM导致功率密度降低到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。

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