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Solid-state synthesis of pure ye'elimite

机译:纯ye'elimite的固态合成

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Ye'elimite is formed during the production of sulfoaluminate cement. In this article, the orthorhombic ye'elimite formation, the optimal synthesis conditions and the microstructural evolution during synthesis, by solid-state reaction from pure oxide raw materials, is investigated. The phase assemblage was substantially affected by temperature and duration of sintering. Making reference to Rietveld quantitative analysis results, optimal solid-state synthesis conditions of ye'elimite was 1300 degrees C for 3 h. During ye'elimite synthesis, significant gas releases were observed at different stages of firing using TGA coupled with mass-spectrometer. The gases are the product of carbonate decomposition, gypsum dehydration and sulfate decomposition from the unreacted anhydrite and the formed ye'elimite. Based on the present work, it emerges that a key strategy for forming ye'elimite with a high purity is to compensate sulfate decomposition by the addition of a slight excess of CaSO4 before repeating the firing cycle at optimal conditions. Finally, the porosity was investigated using Archimedes principle measurements compared to BSE-image analysis. It shows the difficulty to achieve dense sintered ye'elimite because of the high decomposition gas releases during the firing process.
机译:叶绿石是在硫铝酸盐水泥生产过程中形成的。本文以纯氧化物为原料,通过固相反应,研究了斜方晶系伊利石的形成、最佳合成条件以及合成过程中的微观结构演变。烧结温度和烧结时间对相组成有很大影响。参考Rietveld定量分析结果,叶利米特的最佳固态合成条件为1300摄氏度,持续3小时。在叶利米特合成过程中,使用TGA和质谱仪观察到在燃烧的不同阶段有显著的气体释放。这些气体是碳酸盐分解、石膏脱水和硫酸盐分解的产物,来自未反应的硬石膏和形成的伊利石。根据目前的工作,形成高纯度叶绿石的关键策略是在最佳条件下重复燃烧循环之前,通过添加少量过量的CaSO4来补偿硫酸盐分解。最后,使用阿基米德原理测量结果与BSE图像分析结果进行对比,研究孔隙度。这表明,由于烧结过程中释放的分解气体很高,很难获得致密烧结的叶氏体。

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