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Entry and exit of water vapor in bulk ceramic proton conductors

机译:散装陶瓷质子导体中水蒸气的进出

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An experimental study of the processes occurring during protonation of bulk ceramic proton conductors, BaCe0.9Y0.1O2.95 (BCY10) and BaCe0.8Y0.2O2.9 (BCY20), is presented here. One of the faces of a disc-shaped diffusion membrane was connected to a mass spectrometer in a vacuum system permitting the identification of the species crossing the ceramic-vacuum interface. Exposing the sample to D2O led to a strong signal of D2O+ after a certain lag time. From these lag times, the tracer diffusivity of hydrogen could be determined as a function of temperature. The permeation of steam consisted of two components: a fast component, essentially given by the diffusivities of deuterons (protons), and a slow component, ascribed to chemical diffusion of deuterons (protons) coupled to oxygen vacancies with the possibility of participation of even more complex defects. Dilatometry measurements of different specimens of BCY10 and BCY20 also revealed quite clearly this two-phase pattern during protonation. Diffusion measurements on protonic ceramic membranes using (H2O)-O-18 permitted the determination of the tracer diffusivity of oxygen. All of the above measurements were interpreted in the light of the chemical diffusion model developed by Kreuer et al. (C) 2004 Elsevier B.V. All rights reserved.
机译:本文介绍了对块状陶瓷质子导体BaCe0.9Y0.1O2.95(BCY10)和BaCe0.8Y0.2O2.9(BCY20)的质子化过程进行的实验研究。圆盘形扩散膜的一个表面连接到真空系统中的质谱仪,从而可以识别穿过陶瓷-真空界面的物质。在一定的滞后时间后,将样品暴露于D2O会导致D2O +的强烈信号。从这些滞后时间,可以确定氢的示踪剂扩散率是温度的函数。蒸汽的渗透包括两个成分:快速成分(基本上由氘核(质子)的扩散性决定)和缓慢成分(归因于氘核(质子)的化学扩散与氧空位相结合,并可能参与更多)复杂的缺陷。 BCY10和BCY20不同标本的膨胀计测量也清楚地显示了质子化过程中的这种两相模式。使用(H2O)-O-18对质子陶瓷膜进行扩散测量可以确定氧的示踪扩散性。以上所有测量均根据Kreuer等人开发的化学扩散模型进行了解释。 (C)2004 Elsevier B.V.保留所有权利。

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