Encyclopedia

  • On the solution combustion synthesis of copper based nanocatalysts for steam methanol reforming: Effect of precursor, ultrasound irradiation and urea/nitrate ratio
  • Add time:09/27/2019         Source:sciencedirect.com

    Steam reforming of methanol over CuO/ZnO/Al2O3 nanocatalysts synthesized by ultrasound assisted urea-nitrates combustion method was investigated. Four kinds of nanocatalysts were fabricated and their characteristic properties were studied by XRD, FESEM, PSD, BET, EDX and FTIR analyses. Their physicochemical properties proved that using boehmite instead of aluminium nitrate as the aluminium precursor leads to smaller crystallites and particles, better dispersion and more surface area and subsequently higher activity in the steam methanol reforming process. Furthermore, application of sonication for mixing of the primary gel of combustion method resulted in better dispersion of active phases, smaller and more homogeneous particles, higher methanol conversion and hydrogen production. Although enhancement of fuel/nitrates ratio increased dramatically the surface area of synthesized nanocatalysts but it had no significant effect for improving methanol conversion or hydrogen production. In a word, CZA-A-CU-UN1 had better physicochemical properties and catalytic performance for the steam methanol reforming process.

    We also recommend Trading Suppliers and Manufacturers of Urea nitrate (cas 124-47-0). Pls Click Website Link as below: cas 124-47-0 suppliers


    Prev:Detection of the improvised explosives ammonium nitrate (AN) and Urea nitrate (cas 124-47-0) (UN) using non-aqueous solvents with electrospray ionization and MS/MS detection
    Next: Exergy-based estimation and comparison of urea and ammonium nitrate production efficiency and environmental impact)

About|Contact|Cas|Product Name|Molecular|Country|Encyclopedia

Message|New Cas|MSDS|Service|Advertisement|CAS DataBase|Article Data|Manufacturers | Chemical Catalog

©2008 LookChem.com,License: ICP

NO.:Zhejiang16009103

complaints:service@lookchem.com Desktop View