论文标题

LN元素(LN = LA,PR,ND,SM)对含Ca的双相膜的结构和氧渗透性的影响

Influence of Ln elements (Ln = La, Pr, Nd, Sm) on the structure and oxygen permeability of Ca-containing dual-phase membranes

论文作者

Wang, Shu, Shi, Lei, Boubeche, Mebrouka, Wang, Xiaopeng, Zeng, Lingyong, Wang, Haoqi, Xie, Zhiang, Tan, Wen, Luo, Huixia

论文摘要

基于Oxy-Fuel概念,开发出良好的性能和低成本氧气可渗透膜以捕获CO2捕获是非常可取的,但具有挑战性。尽管在探索新的CO2稳定双相膜方面做出了巨大努力,但其存在仍然远离满足工业需求。在这里,我们报告了一系列具有成分60wt的膜的新型含氧氧化物传输膜,CE0.9LN0.1O2-40W.%ln0.6ca0.4feo3(clno-lncfo; clno-lncfo; ln = la; ln = la,ln = la,pr,nd,sm nd,nd,sm)通过Pechini One pechini One One pot sodects合成。 Our results indicate all investigated compounds are composed of perovskite and fluorite phases, while the perovskite phases in the CNO-NCFO and CSO-SCFO membranes after sintering generates Ca-rich and Ca-less two kinds of grains with different morphologies, where the Ca-less small perovskite grains block the transport of oxygen ions and eventually result in poor oxygen permeability.在我们研究的CLNO-LNCFO膜中,CPO-PCFO表现出最高的氧渗透性和出色的CO2稳定性,这主要与晶体对称性的改善,不可忽略的荧光岩相位相关的电子电导率以及perovskite电子电导率的增强。我们的结果建立了含CA的氧化物作为结合CO2捕获和氧分离的膜工程设备的候选材料平台。

Developing good performance and low-cost oxygen permeable membranes for CO2 capture based on the oxy-fuel concept is greatly desirable but challenging. Despite tremendous efforts in exploring new CO2-stable dual-phase membranes, its presence is however still far from meeting the industrial requirements. Here we report a series of new Ca-containing CO2-resistant oxygen transporting membranes with composition 60wt.%Ce0.9Ln0.1O2-40wt.%Ln0.6Ca0.4FeO3(CLnO-LnCFO; Ln = La, Pr, Nd, Sm) synthesized via a Pechini one-pot method. Our results indicate all investigated compounds are composed of perovskite and fluorite phases, while the perovskite phases in the CNO-NCFO and CSO-SCFO membranes after sintering generates Ca-rich and Ca-less two kinds of grains with different morphologies, where the Ca-less small perovskite grains block the transport of oxygen ions and eventually result in poor oxygen permeability. Among our investigated CLnO-LnCFO membranes, CPO-PCFO exhibits the highest oxygen permeability and excellent CO2 stability, which were mainly associated with the improvement in crystal symmetry, non-negligible electronic conductivity of fluorite phase and the enhancement in electronic conductivity of perovskite. Our results establish Ca-containing oxides as candidate material platforms for membrane engineering devices that combine CO2 capture and oxygen separation.

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