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- W4313593619 abstract "The biocatalytic activity of anode electrodes in microbial fuel cell systems is usually established using biofilm layers, which due to their instability, may detach during the operation. In this work, a biohybrid constituted of a carbon paste, an LDH, and bacteria was coated on the anode surface and the role of each component in the cell performance was studied. It was seen that incorporating K. pneumoniae in carbon paste coating reduced the charge transfer resistance compared with the biofilm form. The addition of CoMgAl and Ni2Zn0.5Fe LDH compounds to the carbon paste/bacteria biohybrid further decreased the charge transfer resistance. According to the CV graphs, carbon paste+bacteria and LDH+ carbon paste+bacteria biohybrids presented their first oxidation peaks in the range of -0.27 to -0.01 V vs. SCE, all lower than 0.1 V vs. SCE for the biofilm. The application of Ni2Zn0.5Fe-MBCP as an LDH in the biohybrid anode electrode produced the output voltage of 449 mV and the maximum power density of 472.17 mW m−3 in the microbial fuel cell, which were the highest among the studied electrodes. The results confirmed that the biohybrid coating has the potential to be used as an alternative to biofilm to improve the biocatalytic activity of anode electrodes." @default.
- W4313593619 created "2023-01-06" @default.
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- W4313593619 date "2023-01-01" @default.
- W4313593619 modified "2023-10-14" @default.
- W4313593619 title "Carbon paste/LDH/bacteria biohybrid for the modification of the anode electrode of a microbial fuel cell" @default.
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- W4313593619 doi "https://doi.org/10.1016/j.jtice.2022.104668" @default.
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