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The Mechanism of the First Hydration-Dehydration Cycle of Pure α- and β-CaSO4?0.5H2O

机译:纯α-和β-CASO4的第一水合脱水循环的机制〜0.5H2O

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The objective of this research was to understand the dehydration mechanism of technical dihydrate and the variation of the physical properties of β-hemihydrate after the first hydration-dehydration process. In this study, the recycling mechanism of different hemihydrate types as raw material was investigated. The influence of the first hydration-dehydration process on the hydration rate, microstructure, and mechanical properties of recycled hemihydrate were characterized by differential calorimetric analysis (DCA), calcium ion-selective electrode (Ca2+-ISE), conductivity, particle size distribution (PSD), scanning electron microscopy (SEM), and X-ray diffraction (XRD). The results showed that the formed hemihydrate after the first hydration-dehydration process differs in its properties than the unrecycled hemihydrate in some characteristics such as the morphological structure, number of surface, and side defects due to the grinding process after the first hydration step. In addition to the grinding step, the calcination process was responsible for increasing the number of defects on the crystal surface, which leads to a change in setting time and the microstructure of the recycled hemihydrate. Therefore, after the 1st reaction cycle of β-HH, the compressive strength decreases due to a decrease in the hemihydrate crystal size, an increase in the surface area, and an increase in the amount of water required to perform the hydration reaction. The obtained hemihydrate after the first hydration-dehydration process was in β form due to the applied calcination process after the first cycle.
机译:本研究的目的是了解技术二水合物的脱水机理和第一水合脱水过程后β-半水合物物理性质的变化。在本研究中,研究了作为原料的不同半水合物类型的再循环机制。通过差分量热分析(DCA),钙离子选择性电极(CA2 +溶解),电导率,粒度分布(PSD,所述第一水化脱水过程对水合速率,微观结构和机械性能的影响。 ),扫描电子显微镜(SEM)和X射线衍射(XRD)。结果表明,在第一水合步骤之后,第一水合脱水过程在其性质之后的性质中的性质比未粘合的半水合物不同,所形成的半水合物在第一水合步骤之后的磨削过程中的形态学结构中的一些特征中的特征不同。除了研磨步骤之外,煅烧过程还负责增加晶体表面上的缺陷的数量,这导致凝固时间和再循环的半水合物的微观结构的变化。因此,在β-HH的第1次反应循环之后,由于半水晶晶粒尺寸的减小,表面积的增加,压缩强度降低,并且表面积增加,以及进行水化反应所需的水量的增加。在第一循环后的施加煅烧过程中,在第一水合脱水过程之后获得的半水合物以β形式为β形式。

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