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Enhanced thermal stability of CeO2-ZrO2-Nd2O3 composite by adding surfactant and its supported Rh-only three-way catalyst.

Authors :
Wang, Su-Ning
Sun, Meng-Meng
Huang, Mu-Lan
Cheng, Tian-Qiong
Wang, Jian-Li
Yuan, Shan-Dong
Chen, Yao-Qiang
Source :
Molecular Catalysis. May2017, Vol. 432, p162-169. 8p.
Publication Year :
2017

Abstract

[Display omitted] The nano-architectured CeO 2 -ZrO 2 -Nd 2 O 3 composite oxide support materials were successfully synthesized by a co-precipitation combined with a simple mechanical mixing with a serious amount of trialkyl amine (N235, N (C n H 2 n +1), n = 8–10), and the obtained Rh-based catalysts exhibit excellent catalytic activity and thermal stability. • High performance CeO 2 -ZrO 2 -Nd 2 O 3 is successfully prepared by a simple method. • N235 plays a key role in the formation of loose morphology. • The loose morphology improves the thermal stability of the material. • The prepared Rh-only three-way catalyst shows an excellent catalytic performance. Ceria-zirconia-neodymia composites are synthesized by a co-precipitation combined with mechanical mixing of trialkyl amine (N235, N (C n H 2 n +1), n = 8–10) process and the effect of the novel surfactant N235 on the properties of ceria-zirconia-neodymia composites and their supported Rh-only three-way catalysts are investigated. The physicochemical properties of the samples before and after aging treatment are characterized by N 2 adsorption-desorption, X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), H 2 -temperature programmed reduction (H 2 -TPR), oxygen storage capacity (OSC), scanning electron microscopy (SEM), transmission electron microscopy (TEM), particle size distribution analysis and CO chemisorption. The results indicate that the introduction of surfactant N235 is beneficial to form loose and porous morphology, which contributes to the high surface area, large OSC, superior redox property and high Rh dispersion, and thus the improved catalytic activity for Rh-only three-way catalyst is obtained. The more dosage of N235, the superior catalytic performance for Rh catalyst is. The modified support material (the molar ratio of N235 and total metals is 0.21:1) displays relatively better textural, structural, redox and OSC properties, and the corresponding fresh (Rh/CZN3f) and aged (Rh/CZN3a) catalysts deliver superior catalytic activity. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
24688231
Volume :
432
Database :
Academic Search Index
Journal :
Molecular Catalysis
Publication Type :
Academic Journal
Accession number :
162171015
Full Text :
https://doi.org/10.1016/j.mcat.2017.01.015