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Temperature-dependent mechanisms of the atmospheric alteration of a mixed-alkali lime silicate glass

机译:混合碱石灰硅酸盐玻璃大气变化的温度依赖性机理

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The atmospheric alteration of a mixed-alkali lime silicate glass is described as a function of time and temperature. The glass hydration kinetics self-accelerates with time and is considerably enhanced with the temperature. At 80 degrees C, alkali and alkaline earth ions are retained in hydrate-type environments while at 40 degrees C, they are partially leached out forming surface carbonates, in the order Ca2+ > Na+ > > K+. The temperature dependency of hydrolysis processes, the important role of the hydration energy of cations and the diminished solvation properties of bound water are considered to discuss experimental observations and advance in the understanding of the specificities of glass atmospheric alteration.
机译:混合碱石灰硅酸盐玻璃的大气变化被描述为时间和温度的函数。玻璃水化动力学随时间自加速,并随温度显着提高。在80摄氏度时,碱金属离子和碱土金属离子保留在水合物型环境中,而在40摄氏度时,它们被部分浸出,形成表面碳酸盐,顺序为Ca2 +> Na + K +。水解过程的温度依赖性,阳离子的水合能量的重要作用以及结合水的溶剂化特性的降低被认为是讨论实验观察结果和增进对玻璃大气变化特异性的理解的方法。

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