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Environmental Microbiology
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January 21, 2006
Methylation is the initial reaction in anaerobic naphthalene degradation by a sulfate-reducing enrichment culture
Michael Safinowski, Rainer U Meckenstock
FEMS Microbiology Letters
|
October 27, 2004
Enzymatic reactions in anaerobic 2-methylnaphthalene degradation by the sulphate-reducing enrichment culture N 47
Michael Safinowski, Rainer U Meckenstock
Current Microbiology
|
July 29, 2005
Anaerobic degradation of p-Xylene by a sulfate-reducing enrichment culture
Barbara Morasch, Rainer U Meckenstock
Current Opinion in Biotechnology
|
March 15, 2011
Anaerobic degradation of non-substituted aromatic hydrocarbons
Rainer U Meckenstock, Housna Mouttaki
FEMS Microbiology Ecology
|
November 10, 2011
Anaerobic naphthalene degradation by Gram-positive, iron-reducing bacteria
Rita Kleemann, Rainer U Meckenstock
Biochemical Society Transactions
|
November 27, 2012
Rates and potential mechanism of anaerobic nitrate-dependent microbial pyrite oxidation
Julian Bosch, Rainer U Meckenstock
FEMS Microbiology Ecology
|
February 4, 2009
Anaerobic degradation of the aromatic hydrocarbon biphenyl by a sulfate-reducing enrichment culture
Drazenka Selesi, Rainer U Meckenstock
The ISME Journal
|
November 29, 2007
The use of stable isotope probing to identify key iron-reducing microorganisms involved in anaerobic benzene degradation
Umakanth Kunapuli, Tillmann Lueders, Rainer U Meckenstock
New Biotechnology
|
April 6, 2013
Iron oxide nanoparticles in geomicrobiology: from biogeochemistry to bioremediation
Juliane Braunschweig, Julian Bosch, Rainer U Meckenstock
Environmental Microbiology
|
May 9, 2012
Identification of naphthalene carboxylase as a prototype for the anaerobic activation of non-substituted aromatic hydrocarbons
Housna Mouttaki, Jörg Johannes, Rainer U Meckenstock
Page
of 11
Search research articles
Search
Showing results (1-10 of 107) with videos related to
Sort By:
Page
of 11
Environmental Microbiology
|
January 21, 2006
Methylation is the initial reaction in anaerobic naphthalene degradation by a sulfate-reducing enrichment culture
Michael Safinowski, Rainer U Meckenstock
FEMS Microbiology Letters
|
October 27, 2004
Enzymatic reactions in anaerobic 2-methylnaphthalene degradation by the sulphate-reducing enrichment culture N 47
Michael Safinowski, Rainer U Meckenstock
Current Microbiology
|
July 29, 2005
Anaerobic degradation of p-Xylene by a sulfate-reducing enrichment culture
Barbara Morasch, Rainer U Meckenstock
Current Opinion in Biotechnology
|
March 15, 2011
Anaerobic degradation of non-substituted aromatic hydrocarbons
Rainer U Meckenstock, Housna Mouttaki
FEMS Microbiology Ecology
|
November 10, 2011
Anaerobic naphthalene degradation by Gram-positive, iron-reducing bacteria
Rita Kleemann, Rainer U Meckenstock
Biochemical Society Transactions
|
November 27, 2012
Rates and potential mechanism of anaerobic nitrate-dependent microbial pyrite oxidation
Julian Bosch, Rainer U Meckenstock
FEMS Microbiology Ecology
|
February 4, 2009
Anaerobic degradation of the aromatic hydrocarbon biphenyl by a sulfate-reducing enrichment culture
Drazenka Selesi, Rainer U Meckenstock
The ISME Journal
|
November 29, 2007
The use of stable isotope probing to identify key iron-reducing microorganisms involved in anaerobic benzene degradation
Umakanth Kunapuli, Tillmann Lueders, Rainer U Meckenstock
New Biotechnology
|
April 6, 2013
Iron oxide nanoparticles in geomicrobiology: from biogeochemistry to bioremediation
Juliane Braunschweig, Julian Bosch, Rainer U Meckenstock
Environmental Microbiology
|
May 9, 2012
Identification of naphthalene carboxylase as a prototype for the anaerobic activation of non-substituted aromatic hydrocarbons
Housna Mouttaki, Jörg Johannes, Rainer U Meckenstock
Page
of 11