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首页> 外文期刊>ChemSusChem >Dual-Phase Oxygen Transport Membranes for Stable Operation in Environments Containing Carbon Dioxide and Sulfur Dioxide
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Dual-Phase Oxygen Transport Membranes for Stable Operation in Environments Containing Carbon Dioxide and Sulfur Dioxide

机译:用于含二氧化碳和二氧化硫的环境中稳定运行的双相氧输送膜

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Dual-phase membranes are appealing candidates for oxygen transport membranes owing to their unique combination of ambipolar electron-ion transport and endurance. However, O-2 separation in industrial environments demands very high stability and effectiveness in the presence of CO2- and SO2-bearing process gases. Here, the composition of dual-phase membranes based on NiFe2O4-Ce0.8Tb0.2O2-delta (NFO-CTO) was optimized and the effective performance of catalytically-activated membranes was assessed in presence of CO2 and SO2. Further insight into the limiting mechanisms in the permeation was gained through electrical conductivity studies, permeation testing in several conditions and impedance spectroscopy analysis. The dual-phase membranes were prepared by one-pot sol-gel method and their permeability increases with increasing fluorite content. An O-2 flux of 0.25 (ml min(-1) cm(-2)) mm at 1000 degrees C was obtained for a thick self-standing membrane with 40:60 NFO/CTO composition. An in-depth study mimicking typical harsh conditions encountered in oxyfuel flue gases was performed on a 50:50 NFO/CTO membrane. CO2 content as well as SO2 presence in the sweep gas stream were evaluated in terms of O-2 permeation. O-2 fluxes of 0.13 and 0.09 mL min(-1) cm(-) 2 at 850 degrees C were obtained for a 0.59 mm thick membrane under CO2 and 250 ppm SO2 in CO2 sweep conditions, respectively. Extended periods at work under CO2- and SO2-containing atmospheres revealed good permeation stability over time. Additionally, XRD, backscattered electrons detector (BSD)-SEM, and energy-dispersive X-ray spectroscopy (EDS) analysis of the spent membrane confirmed material stability upon prolonged exposure to SO2.
机译:由于其独特的Ampolar电子离子运输和耐久性,双相膜是用于氧输送膜的候选者。然而,在工业环境中的O-2分离需要在CO2和SO2轴承气体存在下具有非常高的稳定性和有效性。这里,优化了基于NiFe2O4-Ce0.8TB0.2O2-Delta(NFO-CTO)的双相膜的组成,并在CO 2和SO 2存在下评估催化活化膜的有效性能。通过电导率研究,在几种条件下的电导率研究,渗透性测试和阻抗光谱分析中进一步了解渗透中的限制机制的进一步了解。通过单罐溶胶 - 凝胶法制体制备双相膜,随着萤石含量的增加,它们的渗透性增加。在40:60NFO / CTO组合物中获得1000℃下为1000℃的0.25(-1)cm(-2))mm的O-2通量。在50:50 NFO / CTO膜上进行氧气烟道气中遇到的典型苛刻条件的深入研究。根据O-2渗透,评估CO 2含量以及SO2在扫描气流中的存在。在CO 2和250ppm SO2下,在CO 2扫描条件下,在CO 2和250ppm SO2下的0.59mm厚的膜中获得0.13和0.09ml min(-1)cm( - )2的0.13和0.09mL min( - )2。在CO2-和含SO2的大气下工作的延长时期显示出良好的渗透稳定性随着时间的推移。另外,XRD,背散射电子检测器(BSD)-SEM和能量分散X射线光谱(EDS)分析在长时间暴露于SO 2时确认了材料稳定性。

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