Pascal and Francis Bibliographic Databases

Help

Search results

Your search

kw.\*:("Bactérie méthanotrophe")

Publication Year[py]

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Discipline (document) [di]

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Language

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Author Country

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Results 1 to 25 of 71

  • Page / 3
Export

Selection :

  • and

Régulation du cométabolisme des substrats hydrocarbonés chez les bactéries utilisant le méthaneSOKOLOV, I. G; ROMANOVSKAYA, V. A; KRISHTAB, T. P et al.Mikrobiologija (Moskva). 1984, Vol 53, Num 6, pp 907-913Article

Trichloroethylene oxidation by the membrane-associated methane monooxygenase in type I, type II and type X methanotrophsDISPIRITO, A. A; GULLEDGE, J; SHIEMKE, A. K et al.Biodegradation (Dordrecht). 1991, Vol 2, Num 3, pp 151-164, issn 0923-9820Article

Kinetics of CH4 oxidation in oxic soils exposed to ambient air or high CH4 mixing ratiosBENDER, M; CONRAD, R.FEMS microbiology ecology. 1992, Vol 101, Num 4, pp 261-269, issn 0168-6496Article

Preservation studies on some obligately methanotrophic bacteriaGREEN, P. N; WOODFORD, S. K.Letters in applied microbiology. 1992, Vol 14, Num 4, pp 158-162, issn 0266-8254Article

Characterization of methane flux and oxidation at a solid waste landfillABICHOU, Tarek; POWELSON, David; CHANTON, Jeffery et al.Journal of environmental engineering (New York, NY). 2006, Vol 132, Num 2, pp 220-228, issn 0733-9372, 9 p.Article

Characterization of a mixed methanotrophic culture capable of chloroethylene degradationFORRESTER, Sydney B; HAN, Jong-In; DYBAS, Michael J et al.Environmental engineering science. 2005, Vol 22, Num 2, pp 177-188, issn 1092-8758, 12 p.Article

Alternative approach to the elimination of greenhouse gases from old landfillsHUMER, M; LECHNER, P.Waste management & research. 1999, Vol 17, Num 6, pp 443-452Conference Paper

Soluble methane monooxygenase component B gene probe for identification of methanotrophs that rapidly degrade trichloroethyleneHSIEN-CHYANG TSIEN; HANSON, R. S.Applied and environmental microbiology (Print). 1992, Vol 58, Num 3, pp 953-960, issn 0099-2240Article

Degradation of trichloroethylene and trans-1,2-dichloroethylene by a methanotrophic consortium in a fixed-film, packed-bed bioreactorSTRANDBERG, G. W; DONALDSON, T. L; FARR, L. L et al.Environmental science & technology. 1989, Vol 23, Num 11, pp 1422-1425, issn 0013-936X, 4 p.Article

CH4/CO2 ratios indicate highly efficient methane oxidation by a pumice landfill cover-soilPRATT, Chris; WALCROFT, Adrian S; DESLIPPE, Julie et al.Waste management (Elmsford). 2013, Vol 33, Num 2, pp 412-419, issn 0956-053X, 8 p.Article

Physical and Biological Controls on the In Situ Kinetic Isotope Effect Associated with Oxidation of Atmospheric CH4 in Mineral Soils : Stable isotopesMAXFIELD, P. J; EVERSHED, R. P; HORNIBROOK, E. R. C et al.Environmental science & technology. 2008, Vol 42, Num 21, pp 7824-7830, issn 0013-936X, 7 p.Article

Soluble cytochromes c from Methylomonas A4DISPITITO, A. A.Methods in enzymology. 1990, Vol 188, pp 289-297, issn 0076-6879, 9 p.Article

Effects of methane on the microbial populations and oxidation rates in different landfill cover soil columnsRUO HE; AIDONG RUAN; SHEN, Dong-Sheng et al.Journal of environmental science and health. Part A, Toxic/hazardous substances & environmental engineering. 2007, Vol 42, Num 6, pp 785-793, 9 p.Article

Laboratory evaluation of a two-stage treatment system for TCE cometabolism by a methane-oxidizing mixed cultureSMITH, L. H; MCCARTY, P. L.Biotechnology and bioengineering. 1997, Vol 55, Num 4, pp 650-659, issn 0006-3592Article

Aerobic degradation of trichloroethylene by a new type II methane-utilizing bacterium, strain MUCHIYAMA, H; NAKAJIMA, T; YAGI, O et al.Agricultural and biological chemistry. 1989, Vol 53, Num 11, pp 2903-2907, issn 0002-1369Article

Solubility of methane in water and in a medium for the cultivation of methanotrophs bacteriaSERRA, Maria Celeste C; PESSOA, F. L. P; PALAVRA, A. M. F et al.Journal of chemical thermodynamics. 2006, Vol 38, Num 12, pp 1629-1633, issn 0021-9614, 5 p.Article

Cometabolic transformation of linear alkylbenzenesulphonates by methanotrophsHRSAK, D.Water research (Oxford). 1996, Vol 30, Num 12, pp 3092-3098, issn 0043-1354Article

Einfluss ausgewählter Nährsalzionen auf die Wachstumskinetik des methanotrophen Bakteriums GB25 = Influence de certains ions du milieu de culture sur les cinétiques de croissance de la bactérie méthanotrophe GB25 = Influence of some medium ions on the growth kinetics on the methanotrophic bacterium GB25WENDLANDT, K.-D; JECHOREK, M; BRÜHL, E et al.Acta biotechnologica. 1987, Vol 7, Num 6, pp 521-527, issn 0138-4988Article

Methanotrophy: From the environment to industry and backHAMER, Geoffrey.Chemical engineering journal (1996). 2010, Vol 160, Num 2, pp 391-397, issn 1385-8947, 7 p.Article

Methanotrophs and methanotrophic activity in engineered landfill biocoversAIT-BENICHOU, S; JUGNIA, Louis-B; GREER, Charles W et al.Waste management (Elmsford). 2009, Vol 29, Num 9, pp 2509-2517, issn 0956-053X, 9 p.Article

Influence of endogenous and exogenous electron donors and trichloroethylene oxidation toxicity on trichloroethylene oxidation by methanotrophic cultures from a groundwater aquiferHENRY, S. M; GRBIC-GALIC, D.Applied and environmental microbiology (Print). 1991, Vol 57, Num 1, pp 236-244, issn 0099-2240, 9 p.Article

Study of thin biocovers (TBC) for oxidizing uncaptured methane emissions in bioreactor landfillsPERDIKEA, Konstantina; MEHROTRA, Anil K; HETTIARATCHI, J. Patrick A et al.Waste management (Elmsford). 2008, Vol 28, Num 8, pp 1364-1374, issn 0956-053X, 11 p.Article

Biodegradation of trans-1,2-dichloroethylene by methane-utilizing bacteria in an aquifer simulatorMOORE, A. T; VIRA, A; FOGEL, S et al.Environmental science & technology. 1989, Vol 23, Num 4, pp 403-406, issn 0013-936XArticle

Assessing methane oxidation under landfill covers and its contribution to the above atmospheric CO2 levels: The added value of the isotope (δ13C and δ18O C02; δ13C and δD CH4) approachWIDORY, D; PROUST, E; BELLENFANT, G et al.Waste management (Elmsford). 2012, Vol 32, Num 9, pp 1685-1692, issn 0956-053X, 8 p.Article

Modelling the growth of methane-oxidizing bacteria in a fixed biofilmBILBO, C. M; ARVIN, E; HOLST, H et al.Water research (Oxford). 1992, Vol 26, Num 3, pp 301-309, issn 0043-1354Article

  • Page / 3