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Mixed conducting cubic perovskite for ceramic ion transport membrane.

机译:用于陶瓷离子传输膜的混合导电立方钙钛矿。

摘要

A ceramic membrane element for an oxygen separator is formed from a ceramic material represented by the structure: A1-xA'xB1-yB'yO3-z where A is a lanthanide element; A' is a suitable lanthanide element dopant; B is selected from the group consisting of titanium, vanadium, chromium, manganese, iron, cobalt, nickel, zinc and mixtures thereof; B' is copper; x is between 0.4 and 0.8; y is between 0.1 and 0.9; and z is 0 (and determined by stoichiometry). When B includes cobalt in an amount greater than 0.1, the included iron content is less than 0.05. The membrane element selectively transports oxygen ions therethrough at a relatively low temperature, with a flux detected at about 600 DEG C. This enables the oxygen separator to be operated at lower temperatures than convention separators that frequently have operating temperatures in excess of 900 DEG C. Mechanical stability may be enhanced by the addition of a second phase to the ceramic. IMAGE
机译:用于氧分离器的陶瓷膜元件由以下结构表示的陶瓷材料形成:A1-xA′xB1-yB′yO3-z其中A是镧系元素; A'是合适的镧系元素掺杂剂; B选自钛,钒,铬,锰,铁,钴,镍,锌及其混合物。 B'是铜; x在0.4至0.8之间; y在0.1到0.9之间;并且z> 0(并由化学计量确定)。当B的钴含量大于0.1时,铁含量小于0.05。所述膜元件在相对较低的温度下选择性地通过其输送氧离子,并且在约600℃下检测到通量。这使得所述氧分离器能够在比通常具有超过900℃的操作温度的常规分离器更低的温度下操作。通过向陶瓷中添加第二相可以增强机械稳定性。 <图像>

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