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Original Articles

Sulfate‐reducing bacteria

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Pages 155-187 | Published online: 09 Jan 2009

References

  • Abd‐el‐Malek , Y. and Rizk , S. G. 1963 . Bacterial sulfate reduction and the development of alkalinity. I. Experiments with synthetic media . J. Appl. Bacteriol. , 26 : 7
  • Abd‐el‐Malek , Y. and Rizk , S. G. 1963 . Bacterial sulfate reduction and the development of alkalinity. II. Laboratory experiments with soils . J. Appl. Bacteriol. , 26 : 14
  • Anderson , G. K. , Sanderson , J. A. , Saw , C. B. and Donnelly , T. 1988 . “ Fate of COD in an anaerobic system treating high sulfate bearing wastewater ” . In Biotechnology for Degradation of Toxic Chemicals in Hazardous Wastes , Edited by: Scholze , R. J. Jr. , Smith , E. D. , Bandy , J. T. , Wu , Y. C. and Basilico , J. V. 504 Park Ridge, NJ : Noyes Data Corporation. .
  • Ankley , G. T. , Phipps , G. L. , Leonard , E. N. , Benoit , D. A. , Mattson , V. R. , Kosian , P. A. , Cotter , A. M. , Dierkes , J. R. , Hansen , D. J. and Mahony , J. D. 1991 . Acid‐volatile sulfide as a factor mediating cadmium and nickel bioavailability in contaminated sediments . Environ. Toxicol. Chem. , 10 : 1299
  • Attal , A. , Brigodiot , M. , Camacho , P. and Manem , J. 1992 . Biological mechanisms of H2S formation in sewer pipes . Water Sci. Technol. , 26 : 907
  • Bak , F. and Pfenning , N. 1987 . Chemolithotrophic growth of Desulfovibrio sulfodismutans sp. nov. by dispropoitionation of inorganic sulfur compounds . Arch. Microbiol. , 147 : 184
  • Beech , I. B. , Graylarde , C. C. , Smith , J. J. and Gessey , G. G. 1991 . Extracellular polysaccharide from Desulfovibrio desulfuricans Pseudomonas fluorescens in the presence of stainless steel . Appl. Microbiol. Biotechnol. , 35 : 45
  • Bharathi , P. A. L. , Sathe , V. and Chandramohan , D. 1990 . Effect of lead, mercury, and cadmium on a sulfate‐reducing bacterium . Environ. Pollut. , 67 : 361
  • Bhattacharya , S. K. and Parkin , G. F. 1989 . Effect of ammonia on methane fermentation process . J. Water Pollut. Control Fed. , 61 : 55
  • Boon , A. G. and Lister , A. R. 1975 . Formation of sulfide in rising main sewers and its prevention by injection of oxygen . Prog. Water Technol. , 7 : 289
  • Brock , T. D. and Madigan , M. T. 1991 . Biology of Microorganisms , 6th Ed. , Englewood Cliffs, NJ : Prentice‐Hall .
  • Bryant , R. D. , Jansen , W. , Boivin , J. , Laishley , E. J. and Costerton , J. W. 1991 . Effect of hydrogenase and mixed SRB populations on the corrosion of steel . Appl. Environ. Microbiol. , 57 : 2804
  • Bussmann , I. and Reichardt , W. 1991 . Sulfate‐reducing bacteria in temporarily toxic sediments with bivalves . Mar. Ecol. Prog. , 78 : 97
  • Canfield , D. E. and Des Marais , D. J. 1991 . Aerobic sulfate reduction in microbial mats . Science , 251 : 1471
  • Carlson , A. R. , Phipps , G. L. , Mattson , V. R. , Kosian , P. A. and Cotter , A. M. 1991 . The role of acid‐volatile sulfide in determining cadmium bioavailability and toxicity in freshwater sediments . Environ. Toxicol. Chenu , 10 : 1309
  • Choi , E. and Rim , J. M. 1991 . Competition and inhibition of sulfate reducers and methane producers in anaerobic treatment . Water Sci. Technol. , 23 : 1259
  • Chwirka , J. D. and Satchel] , T. T. 1990 . Hydrogen sulfide treatment systems in sanitary sewers . Water Environ. Technol. , 7 : 48
  • Clancy , P. B. , Venkataraman , N. and Lynd , L. R. 1992 . Biochemical inhibition of sulfate reduction in batch and continuous anaerobic digesters . Water Sci. Technol. , 25 : 51
  • Cochrane , W. J. , Jones , P. S. , Sanders , P. E. , Holt , D. M. and Moslay , M. J. 1988 . Studies on the thermophilic sulfate‐reducing bacteria from a souring north sea oil field . Soc. Petrol. Eng. , 18368 : 301
  • Crombie , D. J. , Moody , G. J. and Thomas , J. D. R. 1980 . Corrosion of iron by sulfate‐reducing bacteria . Chem. Ind. , 21 : 500
  • Cypionka , H. , Widdel , F. and Pfeng , N. 1985 . Survival of sulfate‐reducing bacteria after oxygen stress, and growth on sulfate‐free oxygen‐sulfide gradients . FEMS Microbiol. Ecol. , 31 : 39
  • Davis , A. P. , Hao , O. J. and Chen , J. M. 1994 . Kinetics of heavy metal reactions with ferrous sulfide . Chemosphere , 28 : 1147
  • Dezham , P. , Rosenblum , F. and Jenkins , D. 1988 . Digester gas H2S control using iron salts . J. Water Pollut. Control Fed. , 60 : 514
  • Di Toro , D. M. , Mahony , J. D. , Hansen , D. J. , Scott , K. J. , Hicks , S. M. and Redmond , M. S. 1990 . Toxicity of cadmium in sediment: the role of acid volatile sulfide . Environ. Toxicol. Chem. , 9 : 1071
  • Di Toro , D. M. , Mahony , J. D. , Hansen , D. J. , Scott , K. J. , Carlson , A. R. and Ankley , G. T. 1992 . Acid volatile sulfide predicts the acute toxicity of cadmium and nickel in sediments . Environ. Sci. Technol. , 26 : 96
  • Dilling , W. and Cypionka , H. 1990 . Aerobic respiration in sulfate‐reducing bacteria . FEMS Microbiol. Lett. , 71 : 123
  • EPA . 1985 . Odor and Corrosion Control in Sanitary Sewerage Systems and Treatment Plant, Design Manual , Washington, D.C. : Office of Research and Development . EPA/625/1–85/018
  • EPA . 1991 . Hydrogen Sulfide Corrosion in Wastewater Collection and Treatment Systems , U.S. EPA Technical Report Washington, D.C. : Office of Water .
  • Ford , T. and Mitchell , R. 1990 . “ The ecology of microbial corrosion ” . In Advances in Microbial Ecology , Edited by: Marshall , K. C. Vol. 11 , 231 New York : Plenum Press .
  • Frund , C. and Cohen , Y. 1992 . Diurnal cycles of sulfate reduction under oxic conditions in cyanobacterial mats . Appl. Environ. Microbiol. , 58 : 70
  • Fukui , M. and Takii , S. 1987 . Distribution of lactate‐, propionate‐, and acetate‐ oxidizing sulfate‐reducing bacteria in various aquatic environments . Jpn. J. Limnol. , 48 : 249
  • Gibson , G. R. 1990 . A review: physiology and ecology of the sulfate‐reducing bacteria . J. Appl. Bacteriol. , 69 : 769
  • Gundry , M. J. , Henry , J. G. and Prasad , D. . Treatment electroplating wastewater using an anaerobic filter . Proc. 44th Purdue Waste Conf. . pp. 279 Chelsea, MI : Lewis Publishers .
  • Gupta , A. , Flora , J. R. V. , Gupta , M. , Sayles , G. D. and Suidan , M. T. 1994 . Methanogenesis and sulfate reduction in chemostats. I. Kinetic studies and experiments . Water Res. , 28 : 781
  • Gupta , A. , Flora , J. R. V. , Sayles , G. D. and Suidan , M. T. 1994 . Methanogenesis and sulfate reduction in chemostats. II. Model development and verification . Water Res. , 28 : 795
  • Haas , C. N. and Polprasert , C. 1993 . Biological sulfide prestripping for metal and COD removal . Water Environ. Res. , 65 : 645
  • Hamiton , W. A. 1985 . Sulfate‐reducing bacteria and anaerobic corrosion . Annu. Rev. Microbiol. , 39 : 195
  • Hao , O. J. and Chang , C. H. 1988 . Metal toxicity on pure culture and in AS systems . J. Environ. Eng. Am. Soc. Civ. Eng. , 114 : 38
  • Harada , H. , Uemura , S. and Momonoi , K. 1994 . Interaction between sulfate‐reducing bacteria and methane‐producing bacteria in USAB reactors fed with low strength wastes containing different levels of sulfate . Water Res. , 28 : 355
  • Heinrichs , P. M. , Poggi‐Varaldo , H. M. and Oliszkiewicz , J. A. 1990 . Effect of NH3 on anaerobic digestion of simple organic substrates . J. Environ. Eng. Am. Soc. Civ. Eng. , 116 : 698
  • Heuer , J. J. M. B. and Kaskens , H. J. 1993 . Prevention of concrete corrosion and odour annoyance with biofiltration . Water Sci. Technol. , 27 : 207
  • Hilton , B. L. and Oleszkiewicz , J. A. 1988 . Sulfide induced inhibition of anaerobic digestion . J. Environ. Eng. Am. Soc. Civ. Eng. , 114 : 1377
  • Holder , G. A. 1986 . Prediction of Sulfide build‐up in filled sanitary sewers . J. Environ. Eng. Am. Soc. Civ. Eng. , 112 : 199
  • Holder , G. A. , Vaughan , G. and Drew , W. 1984 . Kinetic studies of the microbiological conversion of sulphate to hydrogen sulphide and their relevance to sulphide generation within sewers . Water Sci. Technol. , 17 : 183
  • Huang , L. 1994 . Metal Toxicity on Sulfate Reducing Bacteria , College Park : Deptartment of Civil Engineering, University of Maryland . MS thesis
  • Islander , R. L. , Devinny , J. S. , Mansfeld , F. , Postyn , A. and Shih , H. 1991 . Microbial ecology of crown corrosion in sewers . J. Environ. Eng. Am. Soc. Civ. Eng. , 117 : 751
  • Jain , D. K. 1995 . Microbial colonization of the surface of stainless steel coupons in a deionized water system . Water Res. , 29 : 1969
  • Kao , J. F. , Hsieh , L. P. , Cheng , S. S. and Huang , C. P. 1982 . Effect of EDTA and Cd in AS systems . J. Water Pollut. Control Fed. , 54 : 1118
  • Karhadkar , P. P. , Audic , J. M. , Faup , G. M. and Khanna , P. 1987 . Sulfide and sulfate inhibition of methanogenesis . Water Res. , 21 : 1061
  • Koch , F. A. and Oldham , W. K. 1985 . Oxidation‐reduction potential — a tool for monitoring, control and optimization of biological nutrient removal systems . Water Sci. Technol. , 17 : 259
  • Koe , L. C. C. 1985 . Abient hydrogen sulphide levels at a wastewater treatment plant . Environ. Monit. Assess. , 5 : 101
  • Lawrence , A. W. and McCarty , P. L. 1965 . The role of sulfide in preventing heavy metal toxicity in anaerobic treatment . J. Water Pollut. Control Fed. , 37 : 392
  • Lee , S. H. , O'Connor , J. T. and Banerji , S. K. 1980 . Biologically mediated corrosion and its effects on water quality in distribution systems . J. Am. Water Works Assoc. , 11 : 636
  • Lens , P. N. , De Poorter , M. P. , Cronenberg , C. C. and Verstraete , W. H. 1995 . Sulfate reducing and methane producing bacteria in aerobic wastewater treatment systems . Water Res. , 29 : 871
  • Lin , C. Y. 1992 . Effect of heavy metals on volatile fatty acid degradation in anaerobic digester . Water Res. , 26 : 177
  • Lish , I. J. 1993 . Environmental Survey of the Sulfate Reducing Bacteria , College Park : University of Maryland . M.S. thesis
  • Lovley , D. R. and Klug , M. J. 1983 . Sulfate reducers can outcompete methanogens at freshwater sulfate concentrations . Appl. Environ. Microbiol. , 45 : 187
  • Maillacheruvu , K. Y. , Parkin , G. F. , Peng , C. Y. , Kuo , W. C. , Oonge , Z. L. and Lebduschka , V. 1993 . Sulfide toxicity in anaerobic systems fed sulfate and various organics . Water Environ. Res. , 65 : 100
  • Mara , D. D. and Williams , D. J. A. 1970 . The evaluation of media used to enumerate sulphate reducing bacteria . J. Appl. Bacteriol. , 33 : 543
  • Maree , J. P. , Gerber , A. and Hill , E. 1987 . An integrated process for biological treatment of sulfate‐containing industrial effluents . J. Water Pollut. Control Fed. , 59 : 1069
  • Maree , J. P. and Strydom , W. F. 1985 . Biological sulfate removal in an upflow packed bed reactor . Water Res. , 19 : 1101
  • Marschall , C. , Frenzel , P. and Cypionka , H. 1993 . Influence of oxygen on sulfate reduction and growth of sulfate‐reducing bacteria . Arch. Microbiol. , 159 : 168
  • Matsui , S. April 7 1993 . Role of Sulfur Bacteria in Aaerobic and Anaerobic Biological Waste Treatment, AEEP Distinguished Lecture , April 7 , College Park : University of Maryland .
  • McCartney , D. M. and Oleszkiewicz , J. A. 1991 . Sulfide inhibition of anaerobic degradation of lactate and acetate . Water Res. , 25 : 203
  • McCartney , D. M. and Oleszkiewicz , J. A. 1993 . Competition between methanogens and sulfate reducers: effect of COD, sulfate ratio and acclimation . Water Environ. Res. , 65 : 655
  • McNeil , M. B. , Jones , J. M. and Little , B. J. 1991 . Production of sulfide minerals by sulfate‐reducing bacteria during microbiologically influenced corrosion of copper . Corrosion , 47 : 674
  • Middleton , A. C. and Lawrence , A. W. 1977 . Kinetics of microbial sulfate reduction . J. Water Pollut. Control Fed. , 49 : 1659
  • Mori , T. , Koga , M. , Hikosaka , Y. , Nonaka , T. , Mishina , F. , Sakai , Y. and Koizumi , J. 1991 . Microbial corrosion of concrete sewer pipes, H2S production from sediments and determination of corrosion rate . Water Sci. Technol. , 23 : 1275
  • Mori , T. , Nonaka , T. , Tazaki , K. , Koga , M. , Hikosaka , Y. and Noda , S. 1992 . Interaction of nutrients, moisture and pH on microbial corrosion of concrete sewer pipes . Water Res. , 26 : 29
  • Morton , R. L. , Yanko , W. A. , Graham , D. W. and Arnold , R. G. 1991 . Relationships between metal concentration and crown corrosion in L.A. county sewers . J. Water Pollut. Control Fed. , 63 : 789
  • Mueller , R. F. and Steiner , A. 1992 . Inhibition of anaerobic digestion caused by heavy metals . Water Sci. Technol. , 26 : 835
  • Nielsen , P. H. 1987 . Biofilm dynamics and kinetics during high‐rate sulfate reduction under anaerobic conditions . Appl. Environ. Microbiol. , 53 : 27
  • Nielsen , P. H. 1991 . Sulfur sources for hydrogen sulfide production in biofilms from sewer systems . Water Sci. Technol. , 23 : 1265
  • Nielsen , P. H. and Hvitved‐Jacobsen , T. 1988 . Effect of sulfate and organic matter on the hydrogen sulfide formation in biofilms of filled sanitary sewers . J. Water Pollut. Control Fed. , 60 : 627
  • Okabe , S. and Characklis , W. G. 1992 . Effects of temperature and phosphorus concentration on microbial sulfate reduction by Desulfovibrio desulfuricans . Biotechnol. Bioeng. , 39 : 1031
  • Okabe , S. , Nielsen , P. H. and Characklis , W. G. 1992 . Factors affecting microbial sulfate reduction by Desulfovibrio desulfuricans in continuous culture: limiting nutrients and sulfide concentration . Biotechnol Bioeng. , 40 : 725
  • Okabe , S. , Nielsen , P. H. , Jones , W. L. and Characklis , W. G. 1995 . Sulfide product inhibition of Desulfovibrio desulfuricans in batch and continuous cultures . Water Res. , 29 : 571
  • Pankhania , I. P. 1988 . Hydrogen metabolism in sulfate‐reducing bacteria and its role in anaerobic corrosion . Biofouling , 1 : 27
  • Parkes , R. J. , Dowling , N. J. E. , White , D. C. , Herbert , R. A. and Gibson , G. R. 1993 . Characterization of sulphate‐reducing bacterial populations within marine and estuarine sediments with different rates of sulphate reduction . FEMS Microbiol. Ecoil. , 102 : 235
  • Parkin , G. F. , Lynch , N. A. , Kuo , W. C. , Van Keuren , E. L. and Bhattacharya , S. K. 1990 . Interaction between sulfate reducers and methanogens fed acetate and propionate . J. Water Pollut. Control Fed. , 62 : 780
  • Parkin , G. F. , Sneve , M. A. and Loos , H. 1991 . Anaerobic filter treatment of sulfate‐containing wastewaters . Water Sci. Technol. , 23 : 1283
  • Parkin , G. F. , Speece , R. E. , Yang , C. H. Y. and Kocher , W. M. 1983 . Response of methane fermentation systems to industrial toxicants . J. Water Pollut. Control Fed. , 55 : 44
  • Peng , C. , Suen , S. and Park , J. K. 1994 . Modeling of anaerobic corrosion influenced by sulfate‐reducing bacteria . Water Environ. Res. , 66 : 707
  • Peng , C. G. and Park , J. K. 1994 . Electrochemical mechanisms of corrosion influenced by sulfate‐reducing bacteria in aquatic systems . Water Res. , 28 : 1681
  • Pomeroy , R. D. and Bowlus , F. D. 1946 . Progress report on sulfide control research . Sewage Works J. , 18 : 597
  • Pomeroy , R. D. and Parkhurst , J. D. 1977 . The forecasting of sulfide buildup rates in sewers . Prog. Water Technol. , 9 : 621
  • Postgate , J. R. 1963 . Versatile medium for the enumeration of sulfate‐reducing bacteria . J. Appl. Microbiol. , 11 : 265
  • Postgate , J. R. 1984 . The Sulphate Reducing Bacteria , 2nd ed. , Cambridge, , England : Cambridge University Press .
  • Qatibi , A. I. , Bories , A. and Garcia , J. L. 1991 . Sulfate reduction and anaerobic glycerol degradation by a mixed microbial culture . Current Microbiol. , 22 : 47
  • Reis , M. A. M. , Almeida , J. S. , Lemos , P. C. and Carrondo , M. J. T. 1992 . Effect of hydrogen sulfide on growth of sulfate reducing bacteria . Biotechnol. Bioeng. , 40 : 593
  • Revis , N. W. , Elmore , J. , Edenborn , H. , Osborne , T. and Holdsworth , G. 1991 . “ Immobilization of mercury and other heavy metals in soil, sediment, sludge, and water by sulfate‐reducing bacteria ” . In Innovative Hazardous Waste Treatment Technology Series, Vol. 3, Biological Processes , Vol. 3 , 97 Lancaster, PA : Technomic Publishing Co. .
  • Rinzema , A. and Lettinga , G. 1988 . “ Anaerobic treatment of sulfate‐containing waste water ” . In Biotreatment System , Edited by: Wise , D. L. Vol. 3 , Boca Raton : CRC Press .
  • Schick , G. 1990 . Corrosion control in the presence of sulfate‐reducing bacteria . Corrosion , 7 : 26
  • Schmitt , F. and Seyfried , C. F. 1992 . Sulfate reduction in sewer sediments . Water Sci. Technol. , 25 : 83
  • Shimada , K. 1987 . Removal of heavy metals from mine wastewater using sulfate‐reducing bacteria . J. Water Waste Water Jpn. , 31 : 52
  • Smillie , R. H. , Hunter , K. and Loutit , M. 1981 . Reduction of chromium(VI) by bacteria produced by hydrogen sulfide in a marine environment . Water Res. , 15 : 1351
  • Sponseller , M. 1988 . Industrial pretreatment backfires in L. A. pipes . Eng. News Rec. , 220 : 14
  • Stringfellow , W. T. , Connell , N. R. , Felin , C. F. and Coleman , W. P. 1988 . Variables influencing sulfide concentration in a gravity flow collection system . J. Water Pollut. Control Fed. , 60 : 2111
  • Tanimoto , Y. , Tasaki , M. , Okamura , K. , Yamaguchi , M. and Minami , K. 1989 . Screening growth inhibitors of sulfate‐reducing bacteria and their effects on methane fermentation . J. Ferment. Bioeng. , 68 : 353
  • Thistlethwayte , D. K. B. 1972 . The Control of Sulphides in Sewerage Systems , Sydney, , Australia : Butterworth .
  • Uberoi , V. and Bhattacharya , S. K. 1995 . Interactions among sulfate reducers, acetogens, and methanogens in anaerobic propionate systems . Water Environ. Res. , 67 : 330
  • Visser , A. , Gao , Y. and Lettinga , G. 1992 . Anaerobic treatment of synthetic sulfate‐containing wastewater under thermophilic conditions . Water Sci. Technol. , 25 : 193
  • Visser , A. , Gao , Y. and Lettinga , G. 1993 . Effects of short‐term temperature increases on the mesophilic anaerobic breakdown of sulfate containing synthetic wastewater . Water Res. , 27 : 541
  • Von Wolzogen Kuhr , A. H. and Van der Vlugt , L. S. 1953 . Aerobic and anaerobic corrosion in water mains . J. Am. Water Works Assoc. , 45 : 33
  • Waara , K.‐O. 1992 . Effects of Cu, Cd, Pb and Zn on nitrate reduction in a synthetic water medium and lake water from northern Sweden . Water Res. , 26 : 355
  • Wake , L. V. , Christopher , R. K. , Rickard , P. A. D. , Andersen , J. E. and Ralph , B. J. 1977 . A thermodynamic assessment of possible substrates for sulphate‐reducing bacteria . Aust. J. Biol. Sci. , 30 : 155
  • Westermann , P. and Ahring , B. K. 1987 . Dynamics of methane production, sulfate reduction, and denitrification in a permanently waterlogged alder swamp . Appl. Environ. Microbiol. , 53 : 2554
  • Widdel , F. 1988 . “ Microbiology and ecology of sulfate‐ and sulfur‐reducing bacteria ” . In Biology of Anaerobic Microorganisms , Edited by: Zehnder , A. J. B. 469 New York : John Wiley & Sons .
  • Widdle , F. and Pfennig , N. 1977 . A new, anaerobic, sporing, acetate‐oxidizing sulfate‐reducing bacterium . Arch. Microbioi , 112 : 119
  • Witzgall , R. A. , Horner , I. S. and Schafer , P. L. 1990 . Case histories of sulfide corrosion: problem and treatments . Water Environ. Technol. , 7 : 42
  • Yavitt , J. B. and Lang , G. E. 1990 . Methane production in contrasting wetland sites: response to organic‐chemical components of peat and to sulfate reduction . Geomicrobiol. J. , 8 : 27
  • Yoda , M. , Kitagawa , M. and Miyaji , Y. 1987 . Long term competition between sulfate‐reducing and methane‐producing bacteria for acetate in anaerobic biofilm . Water Res. , 21 : 1547
  • Zobell , C. E. 1958 . Ecology of sulfate reducing bacteria . Prod. Mon. , 22 : 12
  • Zumdahl , S. S. 1989 . Chemistry , Lexington, MA : D.C. Heath and Company .

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