optimization of preparation factors for cerium oxide synthesis as a support for co prox catalyst

Authors

najmeh hoshyar

abdullah irankhah

abstract

nanocrystalline ceria has been considered as support for carbon monoxide preferentially oxidation. in this study ceria was prepared by precipitation method and the effects of preparation conditions, such as ph of solution (8-10), aging time (1-12 hr), drying temperature (80-120 °c), calcination time (2-6 hr) and temperature (400-600 °c) were investigated on ceria synthesized powders properties. nanocrystalline ceria were characterized by thermal gravimetric analysis (tga), x-ray diffraction (xrd) and asap analysis. calcination temperature and ph of solution have the highest effect on powder specific area. finally, optimum conditions for the synthesis of cerium oxide in this study are ph = 10, aging time = 6 hr, drying temperature = 120 °c, calcination time = 6 hr, and temperature = 500 °c. crystalline size of ceria is lower than 20 nm and in the shape of sphere-like and maximum surface area is 74.45 m2/g. 7%cuo/ceo2 catalyst was prepared by wetness impregnation method and was tested in catatest for oxidation of co in presence of hydrogen (preferentially oxidation, prox). the co conversion and co2 selectivity was achieved 57.3 – 98% and 83-40% by temperature increasing from 80-180 °c, respectively.

Upgrade to premium to download articles

Sign up to access the full text

Already have an account?login

similar resources

Optimization of Preparation Factors for Cerium Oxide Synthesis as a Support for CO PrOx Catalyst

Nanocrystalline ceria has been considered as support for carbon monoxide preferentially oxidation. In this study ceria was prepared by precipitation method and the effects of preparation conditions, such as pH of solution (8-10), aging time (1-12 hr), drying temperature (80-120 °C), calcination time (2-6 hr) and temperature (400-600 °C) were investigated on ceria synthesized powders properties....

full text

Optimization of condition for Cerium Oxide Nanoparticles dispersion as radioprotective agent in deionized water

Introduction: Cerium oxide nanoparticles (CONPs) are used as radiation protection agent in the in-vivo and in-vitro studies. The distribution stability of nano-suspension is one of the important factors during the studies. The aim of this study is optimization of condition for CONPs dispersion with sodium dodecyl sulfate (SDS-anionic surfactant) and tween 20 (nonionic surfactan...

full text

Genesis of a highly active cerium oxide-supported gold catalyst for CO oxidation.

X-Ray absorption spectra show that a CeO(2)-supported CO oxidation catalyst prepared from Au(III)(CH(3))(2)(C(5)H(7)O(2)) initially incorporated Au(III) complexes that were catalytically active at 353 K; during operation in a flow reactor, the gold aggregated into clusters and the catalytic activity increased.

full text

preparation and characterization of new co-fe and fe-mn nano catalysts using resol phenolic resin and response surface methodology study for fischer-tropsch synthesis

کاتالیزورهای co-fe-resol/sio2و fe-mn-resol/sio2 با استفاده از روش ساده و ارزان قیمت همرسوبی تهیه شدند. از رزین پلیمری resol در فرآیند تهیه کاتالیزور استفاده شد.

Application of graphene oxide as a hydrothermal catalyst support for synthesis of TiO2 whiskers.

How graphene oxide (GO) with its step edges and wrinkles (∼1-2 nm) acts as a catalyst in hydrothermal nucleation and growth is demonstrated. TiO2 whiskers were prepared by using GO as a support, while TiO2 nanograss was prepared without using GO.

full text

My Resources

Save resource for easier access later


Journal title:
iranian journal of hydrogen & fuel cell

Publisher: iranian research organization for science and technology

ISSN 2383-160X

volume 1

issue 3 2014

Hosted on Doprax cloud platform doprax.com

copyright © 2015-2023