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Molybdenum oxide microorganisms

Molybdenum hexafluoride. 3,1412 Molybdenum-iron-sulfur complexes, 4,241 Molybdenum oxide amino acid formation prebiotic systems, 6, 872 Molybdenum storage protein microorganisms, 6, 681 Molybdenum telluride, 3, 1431 Molybdenum tetraalkoxides physical properties, 2, 347 Molybdenum tribromide, 3,1330 Molybdenum trichloride, 3,1330 Molybdenum trifluoride, 3, 1330 Molybdenum trihalides, 3, 1330 bond lengths, 3, 1330 magnetic moments, 3,1330 preparation, 3,1330 properties, 3, 1330 structure, 3,1330 Molybdenum triiodide, 3,1330 Molybdenum trioxide complexes, 3, 1379 Molybdenum triselenide, 3, 143)... [Pg.170]

Nitrite Reductase. Bacterial denitrification in anaerobic microorganisms involves a four-step process, with the overall reduction of nitrate (N03 ) to dinitrogen (N2). Each reaction in the reduction process is catalyzed by one or more different metalloenzymes, which have various transition metals found in diverse ligand environments nitrate reductase (NOR, molybdenum), nitrite reductase (NiR, iron or copper), nitric oxide reductase (NOR, heme and nonheme iron), and nitrous oxide reductase (N2OR, copper) (9). [Pg.803]


See other pages where Molybdenum oxide microorganisms is mentioned: [Pg.7203]    [Pg.165]    [Pg.203]    [Pg.320]    [Pg.355]    [Pg.450]    [Pg.5003]    [Pg.2]    [Pg.331]    [Pg.228]    [Pg.89]    [Pg.128]    [Pg.1]    [Pg.5002]    [Pg.7203]    [Pg.466]    [Pg.444]    [Pg.444]    [Pg.444]    [Pg.117]   
See also in sourсe #XX -- [ Pg.6 , Pg.681 ]




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