Low-temperature synthesis of porous praseodymium oxysulfate oxygen storage materials by using a CTA template

3Citations
Citations of this article
7Readers
Mendeley users who have this article in their library.

Abstract

Porous praseodymium oxysulfate, Pr2O2SO4, with a large oxygen storage capacity was prepared from precipitates, which were formed by adding (NH4)2SO4 to a mixed aqueous solution of Pr(NO3)3 and eationie surfactant, CTA (eetyltrimethyl ammonium ion). Heating the precipitate, Pr-SO4-CTA, yielded directly the single phase of Pr2O2SO4 at a low temperature of 300°C, compared to≥ 800°C required for the decomposition of Pr2(SO4)3 (Pr-SO4), and compared to ≥500°C required for the mesophase of Pr and dodecyl sulfate (Pr-DS) in our previous study.1) The effect of preparation route on microstructure and oxygen release/storage property of Pr 2O2SO4 was studied by using XRD, TG, SEM, N2 adsorption and catalytic reaction. In contrast to the macro-pores (≥30nm in size, 8m2g-1) of Pr-SO4 and mesopores (7le;10nm, 28m2g-1) of Pr-DS, Pr-SO 4-CTA showed a wide pore size distribution in the range 2-40 nm and a larger surface area of 37 m2 g-1. The porous structure is very effective in increasing the rate of oxygen release as well as storage. The anaerobic CO oxidation of 1 mass% Pd-loaded Pr2O2SO 4 was evaluated in CO/O2 cycled feed stream reactions. It was found that the catalyst prepared from Pr-SO4-CTA achieved the highest catalytic activity due to the high porosity and specific surface area.

Cite

CITATION STYLE

APA

Zhang, D. J., Eto, M., Ikeue, K., & Machida, M. (2007). Low-temperature synthesis of porous praseodymium oxysulfate oxygen storage materials by using a CTA template. Journal of the Ceramic Society of Japan, 115(1346), 597–601. https://doi.org/10.2109/jcersj2.115.597

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free