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Hexavalent chromium reduction and energy recovery by using dual-chambered microbial fuel cell
Praveena Gangadharan,
Published in IWA Publishing
2015
PMID: 25714633
Volume: 71
   
Issue: 3
Pages: 353 - 358
Abstract
Microbial fuel cell (MFC) technology is utilized to treat hexavalent chromium (Cr(VI)) from wastewater and to generate electricity simultaneously. The Cr(VI) is bioelectrochemically reduced to non-toxic Cr(III) form in the presence of an organic electron donor in a dual-chambered MFC. The Cr(VI) as catholyte and artificial wastewater inoculated with anaerobic sludge as anolyte, Cr(VI) at 100 mg/L was completely removed within 48 h (initial pH value 2.0). The total amount of Cr recovered was 99.87% by the precipitation of Cr(III) on the surface of the cathode. In addition to that 78.4% of total organic carbon reduction was achieved at the anode chamber within 13 days of operation. Furthermore, the maximum power density of 767.01 mW/m2 (2.08 mA/m2) was achieved by MFCs at ambient conditions. The present work has successfully demonstrated the feasibility of using MFCs for simultaneous energy production from wastewater and reduction of toxic Cr(VI) to non-toxic Cr(III). © IWA Publishing 2015.
About the journal
JournalWater Science and Technology
PublisherIWA Publishing
ISSN02731223
Open AccessYes
Concepts (46)
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    Chemicals removal (water treatment)
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    Chromium
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    Chromium compounds
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    ELECTRIC POWER GENERATION
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    Electrodes
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    Fuel cells
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    Metal recovery
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    Molecular biology
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    Organic carbon
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    Wastewater treatment
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    Ambient conditions
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    ARTIFICIAL WASTEWATER
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    Electricity generation
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    Energy productions
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    Generate electricity
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    Hexavalent chromium
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    MAXIMUM POWER DENSITY
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    Total organic carbon
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    Microbial fuel cells
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    CHROMIUM HEXAVALENT ION
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    Sewage
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    Anoxic conditions
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    Electron
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    Energy resource
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    Feasibility study
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    Fuel cell
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    Inoculation
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    Pollutant removal
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    Sludge
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    Wastewater
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    Article
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    Density
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    DUAL CHAMBERED MICROBIAL FUEL CELL
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    Electricity
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    Energy recovery
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    Energy yield
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    Microbial fuel cell
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    pH
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    Precipitation
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    Waste water
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    Anaerobic growth
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    Bioenergy
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    Chemistry
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    Electrode
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    Anaerobiosis
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    Bioelectric energy sources