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PUBMED FOR HANDHELDS

Journal Abstract Search


146 related items for PubMed ID: 7988892

  • 41.
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  • 42. Target Organ Metabolism, Toxicity, and Mechanisms of Trichloroethylene and Perchloroethylene: Key Similarities, Differences, and Data Gaps.
    Cichocki JA, Guyton KZ, Guha N, Chiu WA, Rusyn I, Lash LH.
    J Pharmacol Exp Ther; 2016 Oct; 359(1):110-23. PubMed ID: 27511820
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  • 43. Molecular characterization of microbial populations at two sites with differing reductive dechlorination abilities.
    Rahm BG, Chauhan S, Holmes VF, Macbeth TW, Sorenson KS, Alvarez-Cohen L.
    Biodegradation; 2006 Dec; 17(6):523-34. PubMed ID: 16477354
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  • 47. Reductive Transformation of Fe(III) (oxyhydr)Oxides by Mesophilic Homoacetogens in the Genus Sporomusa.
    Igarashi K, Kato S.
    Front Microbiol; 2021 Dec; 12():600808. PubMed ID: 33633701
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  • 48. [Biodegradation of tri- and perchloroethylene in sewage waters and soils by a microbial consortium of compost and phototrophic bacteria].
    Ten Khak Mun, Kirienko OA.
    Izv Akad Nauk Ser Biol; 2011 Dec; (5):625-9. PubMed ID: 22117431
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  • 49. A three-layer diffusion-cell to examine bio-enhanced dissolution of chloroethene dense non-aqueous phase liquid.
    Philips J, Springael D, Smolders E.
    Chemosphere; 2011 May; 83(7):991-6. PubMed ID: 21376368
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  • 50. Identification of novel perchloroethene-respiring microorganisms in anoxic river sediment by RNA-based stable isotope probing.
    Kittelmann S, Friedrich MW.
    Environ Microbiol; 2008 Jan; 10(1):31-46. PubMed ID: 18211265
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  • 60. Anaerobic degradation of tetrachloroethylene using different co-substrates as electron donors.
    Yang Q, Shang HT, Wang XL, Li HD, Wang JL.
    Biomed Environ Sci; 2006 Feb; 19(1):73-6. PubMed ID: 16673822
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