Literature DB >> 31179684

Different Reaction Mechanisms of Ammonia Oxidation Reaction on Pt/Al2O3 and Pt/CeZrO2 with Various Pt States.

Mengmeng Sun1, Jingying Liu, Chang Song, Yoshito Ogata, Hanbing Rao1, Xiaoqing Zhao1, Haidi Xu, YaoQiang Chen.   

Abstract

NH3 emissions were limited strictly because of the threat for human health and sustainable development. Pt/Al2O3 and Pt/CeZrO2 were prepared by the impregnation method. Differences in surface chemical states, reduction ability, acid properties, morphological properties, reaction mechanisms, and ammonia oxidation activity were studied. It indicated that Pt species states were affected by different metal-support interactions. The homogeneously dispersed Pt species over Pt/Al2O3 exposed Pt(111) because of weak metal-support interactions; there even existed an obvious interface between Pt and Al2O3. While obscure even an overlapped interface was observed over Pt/CeZrO2, resulting in the formation of PtO because of the oxygen migration from CeZrO2 to Pt species (confirmed by CO-FTIR, the cycled H2-TPR and transmission electron microscopy results). It was noteworthy that different reaction mechanisms were induced by different states of Pt species; NH was the key intermediate species for ammonia oxidation reaction over Pt/Al2O3, but two kinds of intermediates, N2H4 and HNO, were observed for Pt/CeZrO2. It consequently resulted in the obvious distinction of the NH3-SCO catalytic performance; the light-off temperatures of NH3 over Pt/Al2O3 and Pt/CeZrO2 were 231 and 275 °C, respectively, while the maximum N2 selectivity (65%) was obtained over Pt/CeZrO2, it was obviously better than that over Pt/Al2O3.

Entities:  

Keywords:  ammonia oxidation reaction; interface; platinum; reaction mechanism; support material

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Year:  2019        PMID: 31179684     DOI: 10.1021/acsami.9b02128

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  1 in total

1.  Development of a thermally stable Pt catalyst by redispersion between CeO2 and Al2O3.

Authors:  Li Lan; Xin Huang; Weiqi Zhou; Hongmei Li; Junhuai Xiang; Shanhu Chen; Yaoqiang Chen
Journal:  RSC Adv       Date:  2021-02-10       Impact factor: 3.361

  1 in total

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