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Determination of equilibrium humidities using temperature and humidity controlled X-ray diffraction (RH-XRD)

机译:使用温湿度控制X射线衍射仪(RH-XRD)测定平衡湿度

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摘要

Confined growth of crystals in porous building materials is generally considered to be a major cause of damage.We report on the use of X-ray diffraction under controlled conditions of temperature and relative humidity (RH-XRD) for the investigation of potentially deleterious phase transition reactions.An improved procedure based on rate measurements is used for the accurate and reproducible determination of equilibrium humidities of deliquescence and hydration reactions.The deliquescence humidities of NaCl (75.4+-0.5% RH) and Ca(NO_3)_2 centre dot 4H_2O (50.8+-0.7% RH) at 25 deg C determined with this improved RH-XRD technique are in excellent agreement with available literature data.Measurement of the hydration of anhydrous Ca(NO_3)_2 to form Ca(NO_3)_2 centre dot 2H_2O revealed an equilibrium humidity of 10.2+-0.3%,which is also in reasonable agreement with available data.In conclusion,dynamic X-ray diffraction measurements are an appropriate method for the accurate and precise determination of equilibrium humidities with a number of interesting future applications.
机译:通常认为多孔建筑材料中晶体的受限生长是造成破坏的主要原因。我们报道了在受控的温度和相对湿度(RH-XRD)条件下使用X射线衍射研究潜在有害的相变的方法使用基于速率测量的改进程序来准确,可重复地确定潮解和水化反应的平衡湿度.NaCl(75.4 + -0.5%RH)和Ca(NO_3)_2中心点4H_2O的潮解湿度(50.8使用改进的RH-XRD技术在25摄氏度下确定的+ -0.7%RH)与现有文献数据非常吻合。无水Ca(NO_3)_2形成Ca(NO_3)_2中心点2H_2O的水合测量表明平衡湿度为10.2 + -0.3%,也与现有数据合理地吻合。总之,动态X射线衍射测量是一种准确,准确地测定水质的合适方法。消除平衡湿度,并在未来有许多有趣的应用。

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