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Oxygen semipermeable solid oxide membrane composites prepared by electrochemical vapor deposition

机译:电化学气相沉积法制备的氧气半透性固体氧化物膜复合材料

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摘要

Ceramic membrane composites consisting of a coarse porous -alumina or two-layer porous alumina membrane support and an oxygen semipermeable gas tight thin (0.2–5 μm) yttria stabilized zirconia (YSZ) film are prepared by the electrochemical vapor deposition (EVD) method. The minimum gas-tight thickness of the YSZ films depends strongly on the average pore size of the support on which the films are deposited by the EVD process. The oxygen permeation fluxes through such gas tight YSZ membrane composites, measured in situ on the EVD apparatus, are in the range of 3 × 10−9 to 6 × 10−8 mol/cm2-sec with an oxygen partial pressures of P′O2 (high) ≈ 3 × 10−2 atm and P″O2 (low) ≈ 10−5 atm, much larger than the literature data for thicker YSZ pellets. During the oxygen permeation experiments the rate-limiting step is found to be the bulk electrochemical transport in the grown YSZ films with a thickness smaller than 10 μm.
机译:通过电化学气相沉积(EVD)方法制备由粗多孔氧化铝或两层多孔氧化铝膜载体和氧半透气密性氧化钇稳定的氧化锆(YSZ)薄膜组成的陶瓷膜复合材料。 YSZ薄膜的最小气密厚度在很大程度上取决于通过EVD工艺在其上沉积薄膜的载体的平均孔径。在EVD装置上现场测量的通过这种气密性YSZ膜复合材料的氧气渗透通量在3×10-9至6×10-8 mol / cm2-sec的范围内,氧气分压为P'O2 (高)≈3×10-2 atm,P” O2(低)≈10-5 atm,比较厚的YSZ颗粒的文献数据大得多。在氧气渗透实验过程中,限速步骤是在厚度小于10μm的生长YSZ薄膜中进行整体电化学传输。

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