Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
580888 | Journal of Hazardous Materials | 2010 | 8 Pages |
Abstract
Microbial fuel cell (MFC; open-air cathode) was evaluated as bio-electrochemical treatment system for distillery wastewater during bioelectricity generation. MFC was operated at three substrate loading conditions in fed-batch mode under acidophilic (pH 6) condition using anaerobic consortia as anodic-biocatalyst. Current visualized marked improvement with increase in substrate load without any process inhibition (2.12-2.48Â mA). Apart from electricity generation, MFC documented efficient treatment of distillery wastewater and illustrated its function as an integrated wastewater treatment system by simultaneously removing multiple pollutants. Fuel cell operation yielded enhanced substrate degradation (COD, 72.84%) compared to the fermentation process (â¼29.5% improvement). Interestingly due to treatment in MFC, considerable reduction in color (31.67%) of distillery wastewater was also observed as against color intensification normally observed due to re-polymerization in corresponding anaerobic process. Good reduction in total dissolved solids (TDS, 23.96%) was also noticed due to fuel cell operation, which is generally not amenable in biological treatment. The simultaneous removal of multiple pollutants observed in distillery wastewater might be attributed to the biologically catalyzed electrochemical reactions occurring in the anodic chamber of MFC mediated by anaerobic substrate metabolism.
Keywords
ETPchemical oxygen demand (mg/l)RDAPAnaerobic mixed consortiaOCVVPPCSOMFCPEMVFATDSMethanogenic archaeae−emfVSselectronElectrochemical oxidationIndirect oxidationSpyelectrolytic dissociationDAOColorMicrobial fuel cellProton exchange membraneCyclic voltammetryAnodic potentialProtonCodEffluent treatment plant
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Chemical Health and Safety
Authors
G. Mohanakrishna, S. Venkata Mohan, P.N. Sarma,