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PUBMED FOR HANDHELDS

Journal Abstract Search


177 related items for PubMed ID: 12620814

  • 21. Biogeochemical changes induced in uranium mining waste pile samples by uranyl nitrate treatments under anaerobic conditions.
    Geissler A, Merroun M, Geipel G, Reuther H, Selenska-Pobell S.
    Geobiology; 2009 Jun; 7(3):282-94. PubMed ID: 19476503
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  • 22. Cr(VI) reduction by sulfidogenic and nonsulfidogenic microbial consortia.
    Arias YM, Tebo BM.
    Appl Environ Microbiol; 2003 Mar; 69(3):1847-53. PubMed ID: 12620881
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  • 23. Significant association between sulfate-reducing bacteria and uranium-reducing microbial communities as revealed by a combined massively parallel sequencing-indicator species approach.
    Cardenas E, Wu WM, Leigh MB, Carley J, Carroll S, Gentry T, Luo J, Watson D, Gu B, Ginder-Vogel M, Kitanidis PK, Jardine PM, Zhou J, Criddle CS, Marsh TL, Tiedje JM.
    Appl Environ Microbiol; 2010 Oct; 76(20):6778-86. PubMed ID: 20729318
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  • 24. Microbial reduction of U(VI) under alkaline conditions: implications for radioactive waste geodisposal.
    Williamson AJ, Morris K, Law GT, Rizoulis A, Charnock JM, Lloyd JR.
    Environ Sci Technol; 2014 Nov 18; 48(22):13549-56. PubMed ID: 25231875
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  • 25. Evidence for aceticlastic methanogenesis in the presence of sulfate in a gas condensate-contaminated aquifer.
    Struchtemeyer CG, Elshahed MS, Duncan KE, McInerney MJ.
    Appl Environ Microbiol; 2005 Sep 18; 71(9):5348-53. PubMed ID: 16151124
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  • 26. Influences of pond geochemistry, temperature, and freeze-thaw on terminal anaerobic processes occurring in sediments of six ponds of the McMurdo Ice Shelf, near Bratina Island, Antarctica.
    Mountfort DO, Kaspar HF, Asher RA, Sutherland D.
    Appl Environ Microbiol; 2003 Jan 18; 69(1):583-92. PubMed ID: 12514045
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  • 27. Microbial reductive transformation of phyllosilicate Fe(III) and U(VI) in fluvial subsurface sediments.
    Lee JH, Fredrickson JK, Kukkadapu RK, Boyanov MI, Kemner KM, Lin X, Kennedy DW, Bjornstad BN, Konopka AE, Moore DA, Resch CT, Phillips JL.
    Environ Sci Technol; 2012 Apr 03; 46(7):3721-30. PubMed ID: 22414073
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  • 30. Novel thermophilic sulfate-reducing bacteria from a geothermally active underground mine in Japan.
    Kaksonen AH, Plumb JJ, Robertson WJ, Spring S, Schumann P, Franzmann PD, Puhakka JA.
    Appl Environ Microbiol; 2006 May 03; 72(5):3759-62. PubMed ID: 16672530
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  • 33. Influence of bicarbonate, sulfate, and electron donors on biological reduction of uranium and microbial community composition.
    Luo W, Wu WM, Yan T, Criddle CS, Jardine PM, Zhou J, Gu B.
    Appl Microbiol Biotechnol; 2007 Dec 03; 77(3):713-21. PubMed ID: 17874092
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  • 36. Suspension array analysis of 16S rRNA from Fe- and SO(4)2- reducing bacteria in uranium-contaminated sediments undergoing bioremediation.
    Chandler DP, Jarrell AE, Roden ER, Golova J, Chernov B, Schipma MJ, Peacock AD, Long PE.
    Appl Environ Microbiol; 2006 Jul 03; 72(7):4672-87. PubMed ID: 16820459
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  • 38. Multiple influences of nitrate on uranium solubility during bioremediation of uranium-contaminated subsurface sediments.
    Finneran KT, Housewright ME, Lovley DR.
    Environ Microbiol; 2002 Sep 03; 4(9):510-6. PubMed ID: 12220407
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  • 39. Relationships between microbial community structure and hydrochemistry in a landfill leachate-polluted aquifer.
    Röling WF, van Breukelen BM, Braster M, Lin B, van Verseveld HW.
    Appl Environ Microbiol; 2001 Oct 03; 67(10):4619-29. PubMed ID: 11571165
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