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Effect of chemical environment on the dynamics of water confined in calcium silicate minerals: natural and synthetic tobermorite

机译:化学环境对局限在硅酸钙矿物中的水动力学的影响:天然和合成硅铁矿

摘要

Confined water in the slit mesopores of the mineral tobermorite provides an excellent model system for analyzing the dynamic properties of water confined in cement-like materials. In this work, we use broadband dielectric spectroscopy (BDS) to analyze the dynamic of water entrapped in this crystalline material. Two samples, one natural and one synthetic, were analyzed, and despite their similar structure, the motion of confined water in their zeolitic cavity displays considerably different behavior. The water dynamics splits into two different behaviors depending on the chemical nature of the otherwise identical structural environment: water molecules located in areas where the primary building units are SiO4 relax slowly compared to water molecules located in cavities built with both AlO4 and SiO4. Compared to water confined in regular porous systems, water restricted in tobermorite is slower, indicating that the mesopore structure induces high disorder in the water structure. A comparison with water confined in the C–S–H gel is also discussed in this work. The strong dynamical changes in water due to the presence of aluminum might have important implications in the chemical transport of ions within hydrated calcium silicates, a process that governs the leaching and chemical degradation of cement.
机译:硅铁矿矿物的狭缝中孔中的承压水为分析承压在水泥样材料中的水的动态特性提供了极好的模型系统。在这项工作中,我们使用宽带介电谱(BDS)分析了这种结晶材料中截留的水的动态。分析了两种样品,一种是天然样品,另一种是合成样品,尽管它们的结构相似,但承压水在其沸石腔中的运动表现出明显不同的行为。根据在其他方面相同的结构环境的化学性质,水动力学分为两种不同的行为:位于主要建筑单元为SiO4的区域中的水分子与位于同时由AlO4和SiO4构成的腔中的水分子相比,松弛缓慢。与限定在常规多孔系统中的水相比,限制在苏铁矿中的水较慢,这表明中孔结构在水结构中引起高度混乱。在这项工作中还讨论了与封闭在C–H–H凝胶中的水的比较。由于铝的存在,水的强烈动力学变化可能对水合硅酸钙中离子的化学迁移具有重要意义,而水化硅酸钙是控制水泥浸出和化学降解的过程。

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