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Electrical energy generation in a double-compartment microbial fuel cell using Shewanella spp. strains isolated from Odontesthes regia

机译:使用Shewanella SPP的双隔室微生物燃料电池中的电能产生。 从odontiesthes regia隔绝的菌株

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This study is focused on electrical energy generation in a double-compartment microbial fuel cell. Carbon felt impregnated with multi-walled carbon nanotubes was used as an anode, which contained gold nanoparticles and Shewanella spp. grown under aerobic conditions was used as a biocatalyst. The electrodes, used before and after biofilm growth, were characterized by scanning electron microscopy and cyclic voltammetry. The results revealed the formation of Shewanella spp. colonies on the electrode surface and electrochemical activity under aerobic and anaerobic conditions. During biofilm growth in Luria Bertani medium, a stabilized average power density of 281?mW?m??2 was recorded. Subsequently, the cell reached a maximum current density of 0.11?mA?cm??2 after 72?h of operation and a coulombic efficiency of 65% under anaerobic conditions.
机译:该研究专注于双隔室微生物燃料电池中的电能产生。 含有多壁碳纳米管浸渍的碳含有含有金纳米颗粒和雪兰菜SPP的阳极。 在有氧条件下生长用作生物催化剂。 通过扫描电子显微镜和循环伏安法表征在生物膜生长之前和之后使用的电极。 结果表明,雪兰菜SPP的形成。 在有氧和厌氧条件下电极表面和电化学活性的菌落。 在生物膜生长期间,在Luria Bertani培养基中,记录了281μm的稳定平均功率密度。 随后,电池在72℃的72℃的最大电流密度为0.11ΩmO2时达到0.11Ω·cm 2。在厌氧条件下的45%的库仑效率为65%。

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