Number of the records: 1  

Preparation of Bimetallic CoO-MoO3/gamma-Al2O3 Hydrodesulfurization Catalysts by Deposition of Co, Ni, and Mo onto alpha-AlOOH during Paste Processing.

  1. 1.
    0091286 - UCHP-M 20070185 RIV HU eng J - Journal Article
    Kaluža, Luděk - Zdražil, Miroslav
    Preparation of Bimetallic CoO-MoO3/gamma-Al2O3 Hydrodesulfurization Catalysts by Deposition of Co, Ni, and Mo onto alpha-AlOOH during Paste Processing.
    [Příprava bimetalických CoO-MoO3/gamma-Al2O3 hydrodesulfurizačních katalyzátorů depozicí Co, Ni, a Mo na alpha-ALOOH během zpracování pasty.]
    Reaction Kinetics and Catalysis Letters. Roč. 91, 2 (2007) , s. 249-255. ISSN 0133-1736
    R&D Projects: GA ČR(CZ) GP104/06/P034
    Institutional research plan: CEZ:AV0Z40720504
    Keywords : paste processing * slurry impregnation * hydrodesulfurization
    Subject RIV: CF - Physical ; Theoretical Chemistry
    Impact factor: 0.584, year: 2007

    CoO-MoO3/gamma-Al2O3 and NiO-MoO3/gamma-Al2O3 catalysts were prepared by the reaction of alpha- boehmite (alpha-AlOOH) with MoO3 in an aqueous paste, followed by the reaction of the MoO3/alpha-AlOOH catalyst with Co(OH)2.CoCO3 or 2NiCO3.3Ni(OH)2.4H2O in an aqueous paste, and by subsequent drying and/or calcination.The deposited MoO3 functioned as a thermal stabilizer inhibiting sintering of the Al2O3 phase during calcination. The deposited Co and Ni were efficient activity promoters in benzothiophene hydrodesulfurization.

    Katalyzátory CoO-MoO3/gamma-Al2O3 a NiO-MoO3/gamma-Al2O3 byly postupně připraveny reakcí alpha-boehmitu alpha-AlOOH) s MoO3 ve vodné pastě, reakcí katalyzátoru MoO3/alpha-AlOOH s Co(OH)2.CoCO3 nebo 2NiCO3.3Ni(OH)2.4H2O ve vodné pastě, sušením a nebo kalcinací. Nanensený MoO3 působil jako tepelný stabilizátor, který inhiboval sintraci složky Al2O3 během kalcinace. Nanesený Co a Ni byly efektivní promotory aktivity při hydrodesulfurizaci benzothiofenu.
    Permanent Link: http://hdl.handle.net/11104/0151914

     
     

Number of the records: 1  

  This site uses cookies to make them easier to browse. Learn more about how we use cookies.