Characterization of precursors to methanol synthesis catalysts Cu/ZnO system


Autoria(s): Millar, Graeme J.; Holm, Ivan H.; Uwins, Philippa J.R.; Drennan, John
Data(s)

1998

Resumo

The composition of a series of hydroxycarbonate precursors to copper/zinc oxide methanol synthesis catalysts prepared under conditions reported as optimum for catalytic activity has been studied. Techniques employed included thermogravimetry (TG), temperature-programmed decomposition (TPD), X-ray diffraction (XRD), high-resolution transmission electron microscopy (HRTEM), and Raman and FTIR spectroscopies. Evidence was obtained for various structural phases including hydrozincite, copper hydrozincite, aurichalcite, zincian malachite and malachite (the concentrations of which depended upon the exact Cu/Zn ratio used). Significantly, previously reported phases such as gerhardite and rosasite were not identified when catalysts were synthesized at optimum solution pH and temperature values, and after appropriate aging periods. Calcination of the hydroxycarbonate precursors resulted in the formation of catalysts containing an intimate mixture of copper and zinc oxides. Temperature-programmed reduction (TPR) revealed that a number of discrete copper oxide species were present in the catalyst, the precise concentrations of which were determined to be related to the structure of the catalyst precursor. Copper hydrozincite decomposed to give zinc oxide particles decorated by highly dispersed, small copper oxide species. Aurichalcite appeared to result ultimately in the most intimately mixed catalyst structure whereas zincian malachite decomposed to produce larger copper oxide and zinc oxide grains. The reason for the stabilization of small copper oxide and zinc oxide clusters by aurichalcite was investigated by using carefully selected calcination temperatures. It was concluded that the unique formation of an 'anion-modified' oxide resulting from the initial decomposition stage of aurichalcite was responsible for the 'binding' of copper species to zinc moieties.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/62041/

Publicador

Royal Society of Chemistry

Relação

http://eprints.qut.edu.au/62041/1/J._Chem._Soc.%2C_Faraday_Trans.%2C_1998%2C94%2C_593-600.pdf

DOI:10.1039/A703954I

Millar, Graeme J., Holm, Ivan H., Uwins, Philippa J.R., & Drennan, John (1998) Characterization of precursors to methanol synthesis catalysts Cu/ZnO system. Journal of the Chemical Society, Faraday Transactions, 94(4), pp. 593-600.

Direitos

Copyright 1998 Royal Society of Chemistry

Restrictions on further re-use and further distribution

Fonte

School of Chemistry, Physics & Mechanical Engineering; Institute for Future Environments; Science & Engineering Faculty

Palavras-Chave #030601 Catalysis and Mechanisms of Reactions #copper #catalyst #methanol #zinc oxide #characterization
Tipo

Journal Article