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Mixed-conducting ceramic-carbonate membranes exhibiting high CO2/O-2 permeation flux and stability at high temperatures

机译:在高温下表现出高CO 2 / O-2渗透通量和稳定性的混合导电陶瓷 - 碳酸膜

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This investigation demonstrates the feasibility to fabricate high quality ceramic-carbonate membranes based on mixed-conducting ceramics. Specifically, it is reported the simultaneous CO2/O-2 permeation and stability properties of membranes constituted by a combination of ceramic and carbonate phases, wherein the microstructure of the ceramic part is composed, in turn, of a mixture of fluorite and perovskite phases. These ceramics showed ionic and electronic conduction, and at the operation temperature, the carbonate phase of the membranes is in liquid state, which allows the transport of CO32-and O2- species via different mechanisms. To fabricate the membranes, the ceramic powders were uniaxially pressed in a disk shape. Then, an incipient sintering treatment was carried out in such a way that a highly porous ceramic was obtained. Afterwards, the piece is densified by the infiltration of molten carbonate. Characterization of the membranes was accomplished by SEM, XRD, and gas permeation techniques among others. Thermal and chemical stability under an atmosphere rich in CO2 was evaluated. CO2/O-2 permeation and long-term stability measurements were conducted between 850 and 940 degrees C. The best permeation-separation performance of membranes of about 1 mm thickness, showed a maximum permeance flux of about 4.46x10(-7) mol center dot m(-2)center dot s(-2)center dot Pa-1 for CO2 and 2.18x10(-7) mol center dot m(-2)center dot s(-1)center dot Pa-1 for O-2 at 940 degrees C. Membranes exhibited separation factor values of 150-991 and 49-511 for CO2/N-2 and O-2/N-2 respectively in the studied temperature range. Despite long-term stability test showed certain microstructural changes in the membranes, no significant detriment on the permeation properties was observed along 100 h of continuous operation.
机译:本研究表明,基于混合导电陶瓷制造优质陶瓷碳酸膜的可行性。具体地,据报道,通过陶瓷和碳酸酯相的组合构成的同时CO 2 / O-2渗透和稳定性,其中陶瓷部件的微观结构依次组成萤石和钙钛矿相的混合物。这些陶瓷显示离子和电子传导,并且在操作温度下,膜的碳酸酯相对于液态,其允许通过不同的机制转运CO32-和O2。为了制造膜,陶瓷粉末在圆盘形状中是单轴压制的。然后,以使得获得高孔陶瓷的方式进行初始烧结处理。然后,通过熔融碳酸盐浸润致密化该件。通过SEM,XRD和煤气渗透技术等地完成膜的表征。评价富含CO 2的气氛下的热和化学稳定性。 CO2 / O-2渗透和长期稳定性测量在850至940℃之间进行。膜的最佳渗透分离性能为约1mm厚度,显示出约4.46×10(-7)摩尔中心的最大渗透通量DOT M(-2)中心点S(-2)中心点PA-1用于CO2和2.18x10(-7)MOL中心点M(-2)中心点S(-1)中心点P-1用于O-在940℃下,膜分别在研究温度范围内分别显示出用于CO 2 / N-2和O-2 / N-2的分离因子值150-991和49-511。尽管长期稳定性试验表明膜中的某些微观结构变化,但沿着100小时的连续操作观察到渗透性能没有显着损害。

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