Microbial fuel cell: A green eco-friendly agent for tannery wastewater treatment and simultaneous bioelectricity/power generation

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초록

This review paper emphasised on the origin of hexavalent chromium toxicity in tannery wastewater and its remediation using novel Microbial Fuel Cell (MFC) technology, including electroactive bacteria, which are known as exoelectrogens, to simultaneously treat wastewater and its action in the production of bioenergy and the mechanism of Cr6+ reduction. Also, there are various parameters like electrode, pH, mode of operation, time of operation, and type of exchange membrane used for promising results shown in enhancing MFC production and remediation of Cr6+. Destructive anthropological activities, such as leather making and electroplating in-dustries are key sources of hexavalent chromium contamination in aquatic repositories. When Cr6+ enters the food chain and enters the human body, it has the potential to cause cancer. MFC is a green innovation that generates energy economically through the reduction of toxic Cr6+ to less toxic Cr3+. The organic substrates utilized at the anode of MFC act as electrons (e) donors. This review also highlighted the utilization of cheap substrates to make MFCs more economically suitable and the energy production at minimum cost.

키워드

Tannery wastewater; Hexavalent chromium; Microbial fuel cells; Reduction; Power generation; Environmental sustainability; HEXAVALENT CHROMIUM REDUCTION; CONTINUOUS ELECTRICITY-GENERATION; SIMULTANEOUS CR(VI) REDUCTION; POWER-GENERATION; AIR-CATHODE; LEATHER INDUSTRY; ENERGY RECOVERY; ELECTRON-TRANSFER; BIOREMEDIATION; BIOCATHODE
제목
Microbial fuel cell: A green eco-friendly agent for tannery wastewater treatment and simultaneous bioelectricity/power generation
저자
Saran, Christina; Purchase, Diane; Saratale, Ganesh Dattatraya; Saratale, Rijuta Ganesh; Romanholo Ferreira, Luiz Fernando; Bilal, Muhammad; Iqbal, Hafiz M. N.; Hussain, Chaudhery Mustansar; Mulla, Sikandar I.; Bharagava, Ram Naresh
DOI
10.1016/j.chemosphere.2022.137072
발행일
2023-01
유형
Article
저널명
Chemosphere
권
312
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1 ~ 15