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The Role of Vapour Phase Transport and the Effect of Reaction Conditions on the Formation of Spinels

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dc.contributor.author Stewart, David John
dc.date.accessioned 2008-09-05T03:00:03Z
dc.date.accessioned 2022-10-19T19:55:47Z
dc.date.available 2008-09-05T03:00:03Z
dc.date.available 2022-10-19T19:55:47Z
dc.date.copyright 1967
dc.date.issued 1967
dc.identifier.uri https://ir.wgtn.ac.nz/handle/123456789/22143
dc.description.abstract Previous work on the formation of complex oxides (spinels) by solid-state reaction between two simple oxides is reviewed and discussed with reference to possible mechanisms and kinetic models and the effect of reaction conditions on the relative importance of the various reaction processes. The kinetics of reaction between un-compacted ZnO and Fe2O3 powders have been investigated and compared to those of compacted powders. A quantitative analysis method has been developed using Mossbauer spectra. Comparison of the kinetic results obtained by this method with those of an x-ray method have enabled the diffusion rate of the iron ions to be investigated. The importance of vapour phase transport in spinel formation has been established and the volatility of the ZnO has been examined by measuring its rate of evaporation and equilibrium oxygen pressures as a function of temperature. A detailed reaction model is advanced and related to the reaction conditions. en_NZ
dc.format pdf en_NZ
dc.language en_NZ
dc.language.iso en_NZ
dc.publisher Te Herenga Waka—Victoria University of Wellington en_NZ
dc.title The Role of Vapour Phase Transport and the Effect of Reaction Conditions on the Formation of Spinels en_NZ
dc.type Text en_NZ
vuwschema.type.vuw Awarded Doctoral Thesis en_NZ
thesis.degree.grantor Te Herenga Waka—Victoria University of Wellington en_NZ
thesis.degree.level Doctoral en_NZ
thesis.degree.name Doctor of Philosophy en_NZ


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