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Structural evolution during the dehydration of gypsum materials

机译:石膏材料脱水过程中的结构演变

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摘要

The dehydration of pure and waste gypsums has been examined using in situ synchrotron angle-dispersive X-ray diffraction. Pure gypsum was studied under a number of defined environments; various industrial waste gypsums were also studied under a common standard environment. It is found that the dehydration of gypsum to anhydrite proceeds via the hemihydrate and y-anhydrite phases and the interplay and behaviour of these phases has been determined by full structural 'Rietveld' refinement. In the study of the pure gypsum system, the hemihydrate structure is shown to be preserved as water is lost. A 'zero-water hemihydrate' is observed before refinement in the higher symmetry y-anhydrite cell is possible. The waste gypsum materials studied showed significant differences in the temperatures at which key transformation events occurred; these observations raise implications concerning the re-use of by-product gypsum materials. Finally, high temperature data are re-examined in the search for a variation of the anhydrite structure.
机译:已使用原位同步加速器角度色散X射线衍射检查了纯石膏和废石膏的脱水情况。在许多特定的环境下研究了纯石膏。在共同的标准环境下,还研究了各种工业废石膏。发现石膏通过半水合物和γ-硬石膏相进行脱水成硬石膏,并且这些相的相互作用和行为已经通过完全结构的“ Rietveld”精制来确定。在纯石膏系统的研究中,半水结构显示出随着水的流失而得以保留。在更高对称性的Y型无水硬石膏中可以精制之前观察到“零水半水合物”。研究的废石膏材料显示出发生关键转变事件的温度存在显着差异。这些观察结果对副产品石膏材料的再利用产生了影响。最后,为了检查硬石膏结构的变化,重新检查了高温数据。

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