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L'action du potentiel redox du milieu sur la production d'hydrogène sulfuré par les bactéries sulfatoréductricesVAJNSHTEJN, M. B; GOGOTOVA, G. I.Mikrobiologija (Moskva). 1987, Vol 56, Num 1, pp 31-35Article

Réduction des sulfates dans les sédiments du réservoir d'eau RybinskSOKOLOVA, E. A.Mikrobiologija (Moskva). 1987, Vol 56, Num 1, pp 140-144Article

Sulfate-reduction in the anaerobic digestion of animal wasteUEKI, A; MATSUDA, K; OHTSUKI, C et al.Journal of General and Applied Microbiology. 1986, Vol 32, Num 2, pp 111-123, issn 0022-1260Article

Utilisation de dioxyde de carbone par les bactéries sulfatoréductricesFIRSOV, N. N; SURKOVA, I. G; TROTSENKO, YU. A et al.Mikrobiologija (Moskva). 1988, Vol 57, Num 2, pp 192-197Article

Redox studies of the tetraheme cytochrome c3 isolated from the propionate-oxidizing, sulfate-reducing bacterium Desulfobulbus elongatusSAMAIN, E; ALBAGNAC, G; LEGALL, J et al.FEBS letters. 1986, Vol 204, Num 2, pp 247-250, issn 0014-5793Article

Reclassification de Desulfovibrio thermophilus (Rozanova, Khudyakova, 1974)ROZANOVA, E. P; PIVOVAROVA, T. A.Mikrobiologija (Moskva). 1988, Vol 57, Num 1, pp 102-106Article

Desulfatomaculum kuznetsovii sp. nov. une nouvelle bactérie sporagère, thermophile, méthylotrophe, sulfatoréductriceNAZINA, T. N; IVANOVA, A. E; KANCHAVELI, L. P et al.Mikrobiologija (Moskva). 1988, Vol 57, Num 5, pp 823-827Article

Isolation of a sulfate-reducing bacterium growing with methanolNANNINGA, H. J; GOTTSCHAL, J. C.FEMS microbiology letters. 1986, Vol 38, Num 2, pp 125-130, issn 0378-1097Article

Un nouveau genre de bactéries sulfatoréductrices, description de l'espèce Desulfomicrobium apsheronum gen. nov., sp. novROZANOVA, E. P; NAZINA, T. N; GALUSHKO, A. S et al.Mikrobiologija (Moskva). 1988, Vol 57, Num 4, pp 634-641Article

An unusual strain of Desulfovibrio sp. from an Antarctic lakeREES, G. N; JANSSEN, P. H; HARFOOT, C. G et al.FEMS microbiology letters. 1986, Vol 37, Num 3, pp 363-366, issn 0378-1097Article

Biofilm dynamics and kinetics during high-rate sulfate reduction under anaerobic conditionsNIELSEN, P. H.Applied and environmental microbiology (Print). 1987, Vol 53, Num 1, pp 27-32, issn 0099-2240Article

Hydrogenase activity in aged, nonviable Desulfovibrio vulgaris cultures and its significance in anaerobic biocorrosionCHATELUS, C; CARRIER, P; SAIGNES, P et al.Applied and environmental microbiology (Print). 1987, Vol 53, Num 7, pp 1708-1710, issn 0099-2240Article

Corroding iron as a hydrogen source for sulphate reduction in growing cultures of sulphate-reducind bacteriaCORD-RUWISCH, R; WIDDEL, F.Applied microbiology and biotechnology. 1986, Vol 25, Num 2, pp 169-174, issn 0175-7598Article

Interspecies hydrogen transfer in co-cultures of methanol-utilizing acidogens and sulfate-reducing or methanogenic bacteriaHEIJTHUIJSEN, J. H. F. G; HANSEN, T. A.FEMS microbiology letters. 1986, Vol 38, Num 1, pp 57-64, issn 0378-1097Article

Microbial metabolism of homocyclic and heterocyclic aromatic compounds under anaerobic conditionsBERRY, D. F; FRANCIS, A. J; BOLLAG, J.-M et al.Microbiological reviews. 1987, Vol 51, Num 1, pp 43-59, issn 0146-0749Article

Sulphate-reducing bacteria and anaerobic corrosionHAMILTON, W. A.Annual review of microbiology. 1985, Vol 39, pp 195-217, issn 0066-4227Article

Dissimilatory arsenate and sulfate reduction in sediments of two hypersaline, arsenic-rich soda lakes : Mono and Searles Lakes, CaliforniaKULP, T. R; HOEFT, S. E; MILLER, L. G et al.Applied and environmental microbiology (Print). 2006, Vol 72, Num 10, pp 6514-6526, issn 0099-2240, 13 p.Article

Nickel utilization by microorganismsHAUSINGER, R. P.Microbiological reviews. 1987, Vol 51, Num 1, pp 22-42, issn 0146-0749Article

Properties of Desulfovibrio carbinolicus sp. nov. and other sulfate-reducing bacteria isolated from an anaerobic-purification plantNANNINGA, H. J; GOTTSCHAL, J. C.Applied and environmental microbiology (Print). 1987, Vol 53, Num 4, pp 802-809, issn 0099-2240Article

Sulfate-reduction in coproduced waters pumping in oil fieldsGALUSHKO, A. S; ROZANOVA, E. P; IVANOVA, A. E et al.Mikrobiologiâ (Moskva, 1932). 1993, Vol 62, Num 6, pp 1127-1134, issn 0026-3656Article

Metabolic diversity among the dissimilatory sulfate-reducing bacteria. Albert Jan Kluyer Memorial lecturePFENNIG, N.Antonie van Leeuwenhoek. 1989, Vol 56, Num 2, pp 127-138, issn 0003-6072Article

U(VI) Reduction in Sulfate-Reducing Subsurface Sediments Amended with Ethanol or AcetateCONVERSE, Brandon J; TAO WU; FINDLAY, Robert H et al.Applied and environmental microbiology (Print). 2013, Vol 79, Num 13, pp 4173-4177, issn 0099-2240, 5 p.Article

Periplasmic cytochrome c3 of Desulfovibrio vulgaris is directly involved in H2-Mediated metal but not sulfate reductionELIAS, Dwayne A; SUFLITA, Joseph M; MCINERNEY, Michael J et al.Applied and environmental microbiology (Print). 2004, Vol 70, Num 1, pp 413-420, issn 0099-2240, 8 p.Article

Sulfate Reduction at pH 4.0 for Treatment of Process and WastewatersBIJMANS, Martijn F. M; DE VRIES, Erik; YANG, Chun-Hui et al.Biotechnology progress. 2010, Vol 26, Num 4, pp 1029-1037, issn 8756-7938, 9 p.Article

5'-Methylbenzimidazolyl-cobamides are the corrinoids from some sulfate-reducing and sulfur-metabolizing bacteriaKRÄUTLER, B; KOHLER, H.-P. E; STUPPERICH, E et al.European journal of biochemistry (Print). 1988, Vol 176, Num 2, pp 461-469, issn 0014-2956Article

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