THE COMPOSITION OF SOLID SOLUTIONS CRYSTALLISING FROM AQUEOUS SOLUTIONS: THE INFLUENCE OF SUPERSATURATION AND GROWTH MECHANISMS

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dc.contributor.author Pina C.M.
dc.contributor.author Enders M.
dc.contributor.author Putnis A.
dc.date.accessioned 2021-01-23T04:01:49Z
dc.date.available 2021-01-23T04:01:49Z
dc.date.issued 2000
dc.identifier https://elibrary.ru/item.asp?id=255785
dc.identifier.citation Chemical Geology, 2000, 168, 3, 195-210
dc.identifier.issn 0009-2541
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/23592
dc.description.abstract In this paper we present a new approach to the problem of the crystallisation in solid solution-aqueous solution (SS-AS) systems, in which two main controlling factors have been considered: (i) the supersaturation state of the multicomponent solution in contact with the growing crystal and (ii) the growth mechanisms, operating at a molecular scale on the various faces of the crystal. Supersaturation has been evaluated as a function of the solid solution (the β function) and the transitional supersaturation between spiral growth and two dimensional nucleation mechanisms has been considered as a linear function of the solid composition (the β* line). By superimposing β functions and β* line on a supersaturation-solid composition diagram, we can define compositional regions growing according to different growth mechanisms. In order to test our model, a number of in situ Atomic Force Microscope (AFM) experiments have been conducted in the Ba2+-Sr2+-SO42--H2O system, using barite (001) as the substrate. The general growth behaviour observed is consistent with the predictions given for a number of initial aqueous solution compositions. Microprobe analysis shows that the new (001) layers grown under conditions where the maximum supersaturation corresponded to intermediate compositions of the (Ba,Sr)SO4 solid are very Sr-rich. A qualitative explanation for such a compositional shift is given on the basis of nucleation rate calculations in the Ba2+-Sr2+-SO42--H2O system. Finally we discuss the effect of the substrate on the formation and distribution of two-dimensional (Ba,Sr)SO4 nuclei on a barite (001) surface.
dc.subject SUPERSATURATION
dc.subject GROWTH MECHANISMS
dc.subject SOLID SOLUTION
dc.subject BARITE
dc.subject ATOMIC FORCE MICROSOCOPY
dc.title THE COMPOSITION OF SOLID SOLUTIONS CRYSTALLISING FROM AQUEOUS SOLUTIONS: THE INFLUENCE OF SUPERSATURATION AND GROWTH MECHANISMS
dc.type Статья


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