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Predicting Efflorescence and Subflorescences of Salts

机译:预测盐的开发和骨骼

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Crystallization of salts is a common cause of damage in porous building materials. Understanding of the crystallization mechanism of salts is important in order to prevent or avoid the problem. Subflorescence of salts (i.e., crystallization within the pores of the body) can induce scaling and cracking, while efflorescence (i.e., crystallization in a film of solution on the exterior surface of the body) does not generally affect the coherence and endurance of the building materials. In this paper, we deal with the crystallization behavior of two salts, sodium sulfate and sodium chloride, in two bricks with different capillary porosity. The results reveal quite different crystallization behavior depending on salt and substrate. The supersaturation of the solution is induced in our experiments by evaporation. Indeed, the main reason for the different behavior of these salts is their different ability to supersaturate. Thus, the sodium sulfate solution is prone to be much more supersaturated than the sodium chloride solution. Furthermore, the solution transport, which depends on salt properties, material porosity, pore-clogging and environmental conditions, affects the position of the drying front and, with it, the crystallization front, leading to the formation either of efflorescence or of subflorescence. Simulation of the experiments is used to understand the effect of the influencing factors on the crystallization pattern. Therefore, considering both factors, supersaturation ratio and solution transport, it is possible to predict the different crystallization behaviors observed in the experiments.
机译:盐的结晶是多孔建筑材料损伤的常见原因。理解盐的结晶机制是重要的,以防止或避免问题是重要的。盐的子晶(即,身体的孔内的结晶)可以诱导缩放和裂缝,而风化(即,在主体的外表面上的溶液上的膜中结晶)通常不会影响建筑物的相干性和耐久性材料。在本文中,我们处理两种盐孔隙率的两块盐,硫酸钠和氯化钠的结晶行为。结果揭示了根据盐和底物的相当不同的结晶行为。通过蒸发在我们的实验中诱导溶液的过饱和。实际上,这些盐的不同行为的主要原因是它们不同的过饱和能力。因此,硫酸钠溶液容易超过氯化钠溶液更加过饱和。此外,取决于盐性质,材料孔隙率,孔隙堵塞和环境条件的溶液转运影响干燥前沿的位置,并用其结晶前线,导致形成膨胀剂或亚荧光的形成。实验模拟用于了解影响因素对结晶模式的影响。因此,考虑到两种因素,超饱和度和溶液运输,可以预测实验中观察到的不同结晶行为。

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