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Journal Abstract Search


147 related items for PubMed ID: 8920198

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  • 5. Degradation of 2,4,6-trichlorophenol by a specialized organism and by indigenous soil microflora: bioaugmentation and self-remediability for soil restoration.
    Andreoni V, Baggi G, Colombo M, Cavalca L, Zangrossi M, Bernasconi S.
    Lett Appl Microbiol; 1998 Aug; 27(2):86-92. PubMed ID: 9750329
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  • 6. Isolation and characterisation of azoxystrobin degrading bacteria from soil.
    Howell CC, Semple KT, Bending GD.
    Chemosphere; 2014 Jan; 95():370-8. PubMed ID: 24125711
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  • 8. Aerobic degradation of 2,4,6-trichlorophenol by a microbial consortium - selection and characterization of microbial consortium.
    Kharoune L, Kharoune M, Lebeault JM.
    Appl Microbiol Biotechnol; 2002 Jun; 59(1):112-7. PubMed ID: 12073141
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  • 9. Changes in TcpA gene frequency explain 2,4,6-trichlorophenol degradation in mesocosms.
    Sinkkonen A, Ollila S, Romantschuk M.
    J Environ Sci Health B; 2014 Jun; 49(10):756-9. PubMed ID: 25065827
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  • 19. Persistence of the fungicides thiabendazole, carbendazim and prochloraz-Mn in mushroom casing soil.
    Grogan HM, Jukes AA.
    Pest Manag Sci; 2003 Nov; 59(11):1225-31. PubMed ID: 14620049
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  • 20. Biodegradation kinetics of 2,4,6-trichlorophenol by an acclimated mixed microbial culture under aerobic conditions.
    Snyder CJ, Asghar M, Scharer JM, Legge RL.
    Biodegradation; 2006 Dec; 17(6):535-44. PubMed ID: 16489415
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