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Titlebook: Bioelectrochemical Systems; Vol.2 Current and Em Prasun Kumar,Chandrasekhar Kuppam Book 2020 Springer Nature Singapore Pte Ltd. 2020 Bioele

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Bio-electrochemical Remediation of Petroleum Hydrocarbons,ochemical link between microbes (also known as exoelectrogens or, focusing only on bacteria, electrochemically active bacteria) and electrodes. Bioelectrochemistry can be used as a strategy in bioremediation when traditional bioremediation is not an option due to the lack of suitable electron accept
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Rice Paddy-Field Microbial Fuel Cells: Fundamental and Recent Progress,xtensively examined in the laboratory for applying them to processes that convert organic wastes into electric power. It is also possible to exploit MFCs at the interface between water and sediment in the aquatic environment, and these MFCs are termed sediment MFCs (S-MFCs). One option of S-MFCs is
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Current Applications and Future Perspectives of Microbial Fuel Cell Technology, last few years, MFC technology has been extensively investigated due to its capacity for wastewater treatment with simultaneous generation of bioelectricity, with many efforts devoted to increasing the efficiency of these devices. Although their practical implementation remains a challenge, the sco
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The Role of Microbial Electrolysis Cell in Bioenergy Production: Current Applications and Pilot Pla and simultaneous wastewater treatment. As compared to other alternative technologies, the MEC has shown numerous strengths: primarily, the MECs pledge the feasibility to generate H. at proportionately less energy consumption than the usual energy demand for water electrolysis. In addition, MECs are
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Surface Modification Approaches for Methane Oxidation in Bioelectrochemical Systems,r, given the vast reserves of CH. it is important to develop robust and sustainable processes for converting CH. into value-added products. This chapter explores the use of bioelectrochemical systems (BESs) for converting CH. directly into electricity. Colonization of methanotrophs on the electrode
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