The application of nano-crystalline PbO2 as an anode for the simultaneous bio-electrochemical denitrification and organic matter removal in an up-flow undivided reactor

A nano-crystalline PbO2 coated carbon composite has been applied as an anode for an up-flow undivided bio-electrochemical reactor (UBER). This electrode provides an enhanced destruction of organic matter in synthetic wastewater in comparison to other anodic materials such as stainless steel, graphit...

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Main Authors: Mook, W.T., Aroua, M.K., Chakrabarti, M.H., Low, C.T.J., Aravind, P.V., Brandon, N.P.
Format: Article
Published: Elsevier 2013
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Online Access:http://eprints.um.edu.my/7388/
http://www.sciencedirect.com/science/article/pii/S001346861300220X
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spelling my.um.eprints.73882019-03-18T04:35:32Z http://eprints.um.edu.my/7388/ The application of nano-crystalline PbO2 as an anode for the simultaneous bio-electrochemical denitrification and organic matter removal in an up-flow undivided reactor Mook, W.T. Aroua, M.K. Chakrabarti, M.H. Low, C.T.J. Aravind, P.V. Brandon, N.P. TA Engineering (General). Civil engineering (General) TP Chemical technology A nano-crystalline PbO2 coated carbon composite has been applied as an anode for an up-flow undivided bio-electrochemical reactor (UBER). This electrode provides an enhanced destruction of organic matter in synthetic wastewater in comparison to other anodic materials such as stainless steel, graphite and carbon felts or titanium. The cathode is a granular activated carbon coated with a film of autohydrogenotrophic bacteria. Denitrification occurs simultaneously at the cathode while organic matter is oxidized at the anode. Optimum conditions for the simultaneous removal of organic matter and nitrate from response surface methodology (RSM) studies are an inter-electrode spacing of 3.2 cm, electric current of 18 mA and HRT of 45 h that gave organic matter removal efficiencies of 83 along with 99 removal of nitrate. Further studies on the mechanisms of denitrification and organic matter removal are envisaged. Elsevier 2013 Article PeerReviewed Mook, W.T. and Aroua, M.K. and Chakrabarti, M.H. and Low, C.T.J. and Aravind, P.V. and Brandon, N.P. (2013) The application of nano-crystalline PbO2 as an anode for the simultaneous bio-electrochemical denitrification and organic matter removal in an up-flow undivided reactor. Electrochimica Acta, 94. pp. 327-335. ISSN 0013-4686 http://www.sciencedirect.com/science/article/pii/S001346861300220X 10.1016/j.electacta.2013.02.001
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic TA Engineering (General). Civil engineering (General)
TP Chemical technology
spellingShingle TA Engineering (General). Civil engineering (General)
TP Chemical technology
Mook, W.T.
Aroua, M.K.
Chakrabarti, M.H.
Low, C.T.J.
Aravind, P.V.
Brandon, N.P.
The application of nano-crystalline PbO2 as an anode for the simultaneous bio-electrochemical denitrification and organic matter removal in an up-flow undivided reactor
description A nano-crystalline PbO2 coated carbon composite has been applied as an anode for an up-flow undivided bio-electrochemical reactor (UBER). This electrode provides an enhanced destruction of organic matter in synthetic wastewater in comparison to other anodic materials such as stainless steel, graphite and carbon felts or titanium. The cathode is a granular activated carbon coated with a film of autohydrogenotrophic bacteria. Denitrification occurs simultaneously at the cathode while organic matter is oxidized at the anode. Optimum conditions for the simultaneous removal of organic matter and nitrate from response surface methodology (RSM) studies are an inter-electrode spacing of 3.2 cm, electric current of 18 mA and HRT of 45 h that gave organic matter removal efficiencies of 83 along with 99 removal of nitrate. Further studies on the mechanisms of denitrification and organic matter removal are envisaged.
format Article
author Mook, W.T.
Aroua, M.K.
Chakrabarti, M.H.
Low, C.T.J.
Aravind, P.V.
Brandon, N.P.
author_facet Mook, W.T.
Aroua, M.K.
Chakrabarti, M.H.
Low, C.T.J.
Aravind, P.V.
Brandon, N.P.
author_sort Mook, W.T.
title The application of nano-crystalline PbO2 as an anode for the simultaneous bio-electrochemical denitrification and organic matter removal in an up-flow undivided reactor
title_short The application of nano-crystalline PbO2 as an anode for the simultaneous bio-electrochemical denitrification and organic matter removal in an up-flow undivided reactor
title_full The application of nano-crystalline PbO2 as an anode for the simultaneous bio-electrochemical denitrification and organic matter removal in an up-flow undivided reactor
title_fullStr The application of nano-crystalline PbO2 as an anode for the simultaneous bio-electrochemical denitrification and organic matter removal in an up-flow undivided reactor
title_full_unstemmed The application of nano-crystalline PbO2 as an anode for the simultaneous bio-electrochemical denitrification and organic matter removal in an up-flow undivided reactor
title_sort application of nano-crystalline pbo2 as an anode for the simultaneous bio-electrochemical denitrification and organic matter removal in an up-flow undivided reactor
publisher Elsevier
publishDate 2013
url http://eprints.um.edu.my/7388/
http://www.sciencedirect.com/science/article/pii/S001346861300220X
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score 13.160551