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首页> 外文期刊>Journal of Materials Science >Simultaneous monitoring of hydration kinetics, microstructural evolution, and surface interactions in hydrating gypsum plaster in the presence of additives
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Simultaneous monitoring of hydration kinetics, microstructural evolution, and surface interactions in hydrating gypsum plaster in the presence of additives

机译:在存在添加剂的情况下,同时监测水合石膏灰泥的水合动力学,微观结构演变和表面相互作用

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In this article, we use rapid two-dimensional nuclear magnetic resonance T 1–T 2 relaxation time correlations to monitor hydration kinetics, microstructural evolution, and surface interactions simultaneously in gypsum plaster pastes of industrial relevance. In particular, we explore the influence of ground gypsum mineral (GGM) as an accelerator and citric acid as a retarding agent in the hydration of the β form of plaster. Quantitative relative water fractions are determined and the modified hydration processes are observed as expected. These measurements also reveal the evolution of a secondary water population in the presence of the retarding agent when sedimentation of the hemihydrate occurs prior to crystallisation. In these samples, the ratio of relaxation times T 1/T 2 provides an indication of both the number and the strength of interactions between water molecules and solid gypsum particles. It is observed that the GGM decreases the T 1/T 2 ratio, whilst the citric acid increases the T 1/T 2 ratio, relative to the T 1/T 2 ratio in the unmodified plaster paste. We interpret this as an increase in the water–hemihydrate interaction in the presence of GGM, and a decrease in the presence of citric acid, consistent with the current understanding of the behaviour of these additives as an accelerator and retardant, respectively. The T 1 relaxation time measurements provide an indication of the pore structure evolution: larger pores are present in the accelerated product, and smaller pores in the retarded product, compared to the unmodified plaster. These conclusions are supported by helium porosimetry and scanning electron microscopy. The rapid T 1–T 2 measurement described here will be applicable to other reactions that evolve on a time scale of several minutes.
机译:在本文中,我们使用快速二维核磁共振T 1 –T 2 弛豫时间相关性来同时监控石膏灰泥的水化动力学,微观结构演变和表面相互作用具有工业意义的糊剂。特别是,我们探索了石膏粉矿(GGM)作为促进剂和柠檬酸作为缓凝剂在β膏药水合中的影响。确定了定量的相对水分数,并按预期观察到改进的水合过程。这些测量结果还揭示了当在结晶之前发生半水合物的沉淀时,在阻滞剂存在下二次水种群的演变。在这些样品中,弛豫时间的比率T 1 / T 2 提供了水分子与固体石膏颗粒之间相互作用的数量和强度的指标。观察到GGM降低了T 1 / T 2 比,而柠檬酸则提高了T 1 / T 2 比率,相对于未改性石膏膏中的T 1 / T 2 比率。我们将其解释为在存在GGM的情况下水与半水合物的相互作用增加,而在存在柠檬酸的情况下有所减少,这与目前对这些添加剂分别作为促进剂和阻滞剂的行为的理解相一致。 T 1 弛豫时间的测量结果表明了孔结构的演变:与未改性的灰泥相比,促进产品中存在较大的孔,而延迟产品中存在较小的孔。这些结论得到氦孔隙率法和扫描电子显微镜的支持。此处描述的快速T 1 –T 2 测量将适用于在几分钟的时间范围内发生的其他反应。

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