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Evaluation of Mixed-Conducting Lanthanum-Strontium-Cobaltite Ceramic Membrane for Oxygen Separation

机译:混合导电镧锶钴陶瓷膜分离氧的评价

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摘要

In this study, La_(0.4)Sr_(0.6)CoO_(3-δ) (LSC) oxide was synthesized via an EDTA-citrate com-plexing process and its application as a mixed-conducting ceramic membrane for oxygen separation was systematically investigated. The phase structure of the powder and microstructure of the membrane were characterized by XRD and SEM, respectively. The optimum condition for membrane sintering was developed based on SEM and four-probe DC electrical conductivity characterizations. The oxygen permeation fluxes at various temperatures and oxygen partial pressure gradients were measured by gas chromatography method. Fundamental equations of oxygen permeation and transport resistance through mixed conducting membrane were developed. The oxygen bulk diffusion coefficient (D_v) and surface exchange coefficient (K_(ex)) for LSC membrane were derived by model regression. The importance of surface exchange kinetics at each side of the membrane on oxygen permeation flux under different oxygen partial pressure gradients and temperatures were quantitatively distinguished from the oxygen bulk diffusion. The maximum oxygen flux achieved based on 1.6-mm-thick La_(0.4)Sr_(0.6)CoO_(3-δ) membrane was ~4.0 x I0~(-7) mol cm~(-2) s~(-1)at 950°C. However, calculation results show theoretical oxygen fluxes as high as 2.98 x 10~(-5) mol cm~ s~(-1) through a 5-μm-thick LSC membrane with ideal surface modification when operating at 950°C for air separation.
机译:本研究通过柠檬酸乙二胺四乙酸络合法合成了La_(0.4)Sr_(0.6)CoO_(3-δ)(LSC)氧化物,并系统地研究了其作为氧分离用混合导电陶瓷膜的应用。粉末的相结构和膜的微观结构分别用XRD和SEM表征。基于SEM和四探针直流电导率表征,开发了膜烧结的最佳条件。通过气相色谱法测定各种温度下的氧透过通量和氧分压梯度。建立了通过混合导电膜的氧气渗透和传输阻力的基本方程。通过模型回归,得出了LSC膜的氧体积扩散系数(D_v)和表面交换系数(K_(ex))。在膜的每一侧,在不同的氧气分压梯度和温度下,表面交换动力学对氧气渗透通量的重要性与氧气的体积扩散有定量的区别。基于1.6毫米厚的La_(0.4)Sr_(0.6)CoO_(3-δ)膜获得的最大氧通量为〜4.0 x I0〜(-7)mol cm〜(-2)s〜(-1)在950°C下。然而,计算结果表明,当在950°C下进行空气分离操作时,通过厚度为5μm的LSC膜的理论氧通量高达2.98 x 10〜(-5)mol cms s〜(-1)。 。

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