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Investigation of water adsorption on metal oxide surfaces under conditions representative of PuO2 storage containers

机译:研究以PuO2储存容器为代表的条件下金属氧化物表面的水吸附

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摘要

We have developed a QCM (Quartz Crystal Microbalance) based method for direct gravimetric determination of water adsorption on PuO2 surrogate surfaces, especially CeO2, under conditions representative of those in a typical PuO2 storage can. In this application, the method of transduction of the QCM relies upon the linear relationship between the resonant frequency of piezoelectrically active quartz crystals and the mass adsorbed on the crystal surface. The effect of high temperature on the resonant frequency of coated QCM crystals has been compensated for by modeling the temperature dependence of the frequency response of the surrogate coated-QCM crystal in the absence of water.
机译:我们已经开发出一种基于QCM(石英晶体微天平)的方法,用于在典型的PuO2储存罐中具有代表性的条件下直接重量分析法测定PuO2替代表面(尤其是CeO2)上的水吸附。在本申请中,QCM的转导方法依赖于压电活性石英晶体的共振频率与吸附在晶体表面的质量之间的线性关系。高温对涂层QCM晶体共振频率的影响已通过对不含水的替代涂层QCM晶体的频率响应的温度依赖性进行建模来补偿。

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