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Original Articles

Electrochemical Interaction of a Heterotrophic Bacteria Alcaligenes faecalis with a Graphite Cathode

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Pages 244-249 | Received 03 Sep 2010, Accepted 15 May 2011, Published online: 02 Jan 2012

REFERENCES

  • Barsoukov , E and Macdonald , J R . 2005 . “ Impedance spectroscopy-theory, experiment, and applications ” . Hoboken , NJ : Wiley Interscience .
  • Bond , D R , Holmes , D E , Tender , L M and Lovley , D R . 2002 . Electrode-reducing microorganisms that harvest energy from marine sediments . Science , 295 : 483 – 485 .
  • Bond , D R and Lovley , D R . 2003 . Electricity production by Geobacter sulfurreducens attached to electrodes . Appl Environ Microbiol , 69 ( 3 ) : 1548 – 1555 .
  • Chaudhuri , S K , Lack , J G and Coates , J D . 2001 . Biogenic magnetite formation through anaerobic biooxidation of Fe(∏) . Appl Environ Microbiol , 67 : 2844 – 2848 .
  • Chaudhuri , S K and Lovley , D R . 2003 . Electricity generation by direct oxidation of glucose in mediatorless microbial fuel cells . Nat Biotechnol , 21 : 1229 – 1232 .
  • Fricke , K , Harnisch , F and Schröder , U . 2008 . On the use of cyclic voltammetry for the study of anodic electron transfer in microbial fuel cells . Energy Environ Sci , 1 : 144 – 147 .
  • Gamble , T N , Betlach , M R and Tiedje , J M . 1977 . Numerically Dominant Denitrifying Bacteria from World Soils . Appl Environ Microbiol , 33 : 926 – 939 .
  • Gorby , Y A , Yanina , S , McLean , J S , Rosso , K M , Moyles , D , Dohnalkova , A , Beveridge , T J , Chang , I S , Kim , B H , Kim , K S , Culley , D E , Reed , S B , Romine , M F , Saffarini , D A , Hill , E A , Shi , L , Elias , D A , Kennedy , D W , Pinchuk , G , Watanabe , K , Ishii , S , Logan , B , Nealson , K H and Fredrickson , J K . 2006 . Electrically conductive bacterial nanowires produced by Shewanella oneidensis strain MR-1 and other microorganisms . Proc Natl Acad Sci , 103 : 11358 – 11363 .
  • Gregory , K B , Bond , D R and Lovely , D R . 2004 . Graphite electrodes as electron donors for anaerobic respiration . Environ Microbiol , 6 : 596 – 604 .
  • Holmes , D E , Chaudhuri , S K , Nevin , K P , Mehta , T , Methe , B A , Liu , A , Ward , J E , Woodard , T L , Webster , J and Lovley , D R . 2006 . Microarray and genetic analysis of electron transfer to electrodes in Geobacter sulfurreducens . Environ Microbiol , 8 ( 10 ) : 1805 – 1815 .
  • Islam , S and Suidan , MT . 1998 . Electrolytic denitrification: Long term performance and effect of current intensity . Water Res , 32 ( 2 ) : 528 – 536 .
  • Jiang , Y , Wen , J , Bai , J , Jia , X and Hu , Z . 2007 . Biodegradation of phenol at high initial concentration by Alcaligenes faecalis . J Hazard Mater , 147 : 672 – 676 .
  • Joo , H S , Hirai , M and Shoda , M . 2005 . Characteristics of ammonium removal by heterotrophic nitrification-aerobic denitrification by Alcaligenes faecalis No.4 . J Biosci Bioeng , 100 ( 2 ) : 184 – 191 .
  • Kim , B H , Kim , H J , Hyun , M S and Park , D H . 1999 . Direct electrode reaction of Fe(III)-reducing bacterium, Shewanella putrefaciens . J Microb Biotechnol , 9 : 127 – 131 .
  • Kim , H J , Park , H S , Hyun , M S , Chang , I S , Kim , M and Kim , B H . 2002 . A mediator-less microbial fuel cell using a metal reducing bacterium, Shewanella putrefaciens . Enzyme Microb Technol , 30 : 145 – 152 .
  • Kiyohara , H , Nagao , K , Kouno , K and Yano , K . 1981 . Phenanthrene-degrading phenotype of Alcaligenes faecalis AFK2 . Appl Environ Microbiol , 43 ( 2 ) : 458 – 461 .
  • Li , Y , Lu , A , Ding , H , Jin , S , Yan , Y , Wang , C , Zeng , C and Wang , X . 2009 . Cr(VI) reduction at rutile-catalyzed cathode in microbial fuel cells . Electrochem Commun , 11 : 1496 – 1499 .
  • Lu , A , Li , Y , Jin , S , Ding , H , Zeng , C , Wang , X and Wang , C . 2010 . Microbial fuel cell equipped with a photocatalytic rutile-coated cathode . Energy Fuels , 24 : 1184 – 1190 .
  • Meitl , L A , Eggleston , C M , Colberg , P JS , Khare , N , Reardon , C L and Shi , L . 2009 . Electrochemical interaction of Shewanella oneidensis MR-1 and its outer membrane cytochromes OmcA and MtrC with hematite electrodes . Geochim Cosmochim Acta , 73 : 5292 – 5307 .
  • Niel , E WJ , Braber , K J , Robertson , L A and Kuenen , J G . 1992 . Heterotrophic nitrification and aerobic denitrification in Alcaligenes faecafis strain TUD . Antonie van Leeuwenhoek , 62 : 231 – 237 .
  • Papen , H , Berg , R V , Hinkel , I , Thoene , B and Rennenberg , H . 1989 . Heterotrophic Nitrification by Alcaligenes faecalis: NO2 −, NO3 −,N2O, and NO production in exponentially growing cultures . Appl Environ Microbiol , 55 ( 8 ) : 2068 – 2072 .
  • Phillips , S E and Taylor , M L . 1976 . Oxidation of arsenite to arsenate by Alcaligenes faecalis . Appl Environ Microbiol , 32 ( 3 ) : 392 – 399 .
  • Potekhina , JS , Sherisheva , NG , Povetkina , L P , Pospelov , A P , Rakitina , T A , Warnecke , F and Gottschalk , G . 1999 . Role of microorganisms in corrosion inhibition of metals in aquatic habitats . Appl Microbiol Biot , 52 ( 5 ) : 639 – 646 .
  • Reguera , G , Nevin , K P , Nicoll , J S , Covalla , S F , Woodard , T L and Lovley , D R . 2006 . Biofilm and nanowire production leads to increased current in Geobacter sulfurreducens fuel cells . Appl Environ Microbiol , 72 : 7345 – 7348 .
  • Rehfuss , M and Urban , J . 2005 . Alcaligenes faecalis subsp. phenolicus subsp. nov. a phenol-degrading, denitrifying bacterium isolated from a graywater bioprocessor . Syst Appl Microbiol , 28 : 421 – 429 .
  • Shelobolina , E S , VanPraagh , C G and Lovely , D R . 2003 . Use of ferric and ferrous iron containing minerals for respiration by Desulfitobacterium frappieri . Geomicrobiol J , 20 ( 2 ) : 143 – 156 .
  • Srikanth , S , Marsili , E , Flickinger , M C and Bond , D R . 2008 . Electrochemical characterization of Geobacter sulfurreducens cells immobilized on graphite paper electrodes . Biotechnol Bioeng , 99 ( 5 ) : 1065 – 1073 .
  • Weber , K A , Picardal , F W and Roden , E E . 2001 . Microbially catalyzed nitrate-dependent oxidation of biogenic solid-phase Fe(π) compounds . Environ Sci Technol , 35 ( 8 ) : 1644 – 1650 .

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