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PUBMED FOR HANDHELDS

Journal Abstract Search


99 related items for PubMed ID: 23955471

  • 21. Long-term aerobic cometabolism of a chlorinated solvent mixture by vinyl chloride-, methane- and propane-utilizing biomasses.
    Frascari D, Pinelli D, Nocentini M, Zannoni A, Fedi S, Baleani E, Zannoni D, Farneti A, Battistelli A.
    J Hazard Mater; 2006 Nov 02; 138(1):29-39. PubMed ID: 16879912
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  • 22. Dechlorination after thermal treatment of a TCE-contaminated aquifer: laboratory experiments.
    Friis AK, Edwards EA, Albrechtsen HJ, Udell KS, Duhamel M, Bjerg PL.
    Chemosphere; 2007 Mar 02; 67(4):816-25. PubMed ID: 17174379
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  • 24. Assessing chlorinated ethene degradation in a large scale contaminant plume by dual carbon-chlorine isotope analysis and quantitative PCR.
    Hunkeler D, Abe Y, Broholm MM, Jeannottat S, Westergaard C, Jacobsen CS, Aravena R, Bjerg PL.
    J Contam Hydrol; 2011 Jan 25; 119(1-4):69-79. PubMed ID: 21030108
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  • 26. Identification of chlorinated solvents degradation zones in clay till by high resolution chemical, microbial and compound specific isotope analysis.
    Damgaard I, Bjerg PL, Bælum J, Scheutz C, Hunkeler D, Jacobsen CS, Tuxen N, Broholm MM.
    J Contam Hydrol; 2013 Mar 25; 146():37-50. PubMed ID: 23357226
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  • 27. Upflow anaerobic sludge blanket reactor--a review.
    Bal AS, Dhagat NN.
    Indian J Environ Health; 2001 Apr 25; 43(2):1-82. PubMed ID: 12397675
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  • 29. Anaerobic dechlorination and redox activities after full-scale Electrical Resistance Heating (ERH) of a TCE-contaminated aquifer.
    Friis AK, Heron G, Albrechtsen HJ, Udell KS, Bjerg PL.
    J Contam Hydrol; 2006 Dec 15; 88(3-4):219-34. PubMed ID: 17007960
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  • 30. Polyhydroxyalkanoate as a slow-release carbon source for in situ bioremediation of contaminated aquifers: From laboratory investigation to pilot-scale testing in the field.
    Pierro L, Matturro B, Rossetti S, Sagliaschi M, Sucato S, Alesi E, Bartsch E, Arjmand F, Papini MP.
    N Biotechnol; 2017 Jul 25; 37(Pt A):60-68. PubMed ID: 27903429
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  • 31. Multiple lines of evidence to demonstrate vinyl chloride aerobic biodegradation in the vadose zone, and factors controlling rates.
    Patterson BM, Aravena R, Davis GB, Furness AJ, Bastow TP, Bouchard D.
    J Contam Hydrol; 2013 Oct 25; 153():69-77. PubMed ID: 23999077
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  • 32. Assessment of biostimulation and bioaugmentation for removing chlorinated volatile organic compounds from groundwater at a former manufacture plant.
    Zhang S, Hou Z, Du XM, Li DM, Lu XX.
    Biodegradation; 2016 Nov 25; 27(4-6):223-236. PubMed ID: 27351716
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  • 33. Aerobic biodegradation of the chloroethenes: pathways, enzymes, ecology, and evolution.
    Mattes TE, Alexander AK, Coleman NV.
    FEMS Microbiol Rev; 2010 Jul 25; 34(4):445-75. PubMed ID: 20146755
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  • 34. Combining nanoscale zero-valent iron with electrokinetic treatment for remediation of chlorinated ethenes and promoting biodegradation: A long-term field study.
    Czinnerová M, Vološčuková O, Marková K, Ševců A, Černík M, Nosek J.
    Water Res; 2020 May 15; 175():115692. PubMed ID: 32199189
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  • 38. Impact of Ammonium on Syntrophic Organohalide-Respiring and Fermenting Microbial Communities.
    Delgado AG, Fajardo-Williams D, Kegerreis KL, Parameswaran P, Krajmalnik-Brown R.
    mSphere; 2016 May 15; 1(2):. PubMed ID: 27303735
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  • 40. Spatial heterogeneity of dechlorinating bacteria and limiting factors for in situ trichloroethene dechlorination revealed by analyses of sediment cores from a polluted field site.
    Dowideit K, Scholz-Muramatsu H, Miethling-Graff R, Vigelahn L, Freygang M, Dohrmann AB, Tebbe CC.
    FEMS Microbiol Ecol; 2010 Mar 15; 71(3):444-59. PubMed ID: 20041951
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