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A novel lanthanum strontium cobalt iron composite membrane synthesised through beneficial phase reaction for oxygen separation

机译:一种新的镧锶钴铁复合膜,通过有益相反应合成,用于氧气分离

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摘要

Composite ceramic membrane is one of the most attractive concepts which combines the advantages of different phases into a single membrane matrix. Recently, the reported significant increased oxygen surface kinetics on the Perovskite/Ruddlesden-Popper composite system because of the formation of novel and fast oxygen transport paths along the hetero-interface has been implanted into the oxygen permeation membrane system. In this work, a novel La0.6Sr0.4Co0.2Fe0.8O3-delta-(La0.5Sr0.5)(2)CoO4+delta (LSCF-LSC) composite hollow fiber membrane is synthesized with oxygen permeation flux of 4.52 mL min(-1) cm(-2) at 950 degrees C. It presents round 4 times and 2.3 times of that of the single LSCF membrane and LSC-coated LSCF membrane at 900 degrees C. For better comparison, (La0.576Sr0.424)(1.136)Co(0.3)Fe(0.7)0O(3-delta) (LSCF-new) is prepared based on the composition of LSCF-LSC composite. The enhanced oxygen permeability was further investigated through electrochemical impedance spectroscopy (EIS) measurements. We also confirm that LSCF-LSC shows significantly lower area specific resistance (ASRs) for LSCF-LSC vertical bar Ce0.8Sm0.2O1.9 (SDC)vertical bar LSCF-LSC symmetrical cell relative to other symmetrical cells. This novel LSCF-LSC composite membrane also presents high CO2 tolerance, with stable oxygen permeation fluxes round 2.6 mL min(-1) cm(-2) at 900 degrees C for 100 h.
机译:复合陶瓷膜是最具吸引力的概念之一,将不同阶段的优点结合成单个膜基质。最近,由于沿杂界界面的新颖和快速氧输送路径的形成,植入普遍型界面的形成,据报道的显着增加的氧气表面动力学已经植入氧渗透膜系统。在这项工作中,新颖的LA0.6SR0.4CO0.2FE0.8O3-DELTA-(LA0.5SR0.5)(2)COO4 + DERTA(LSCF-LSC)复合中空纤维膜合成,具有4.52mL min的氧渗透通量(-1)厘米(-2)在950℃。它呈现在900℃下单个LSCF膜和LSC涂覆的LSCF膜的4次和2.3倍。为了更好的比较,(LA0.576SR0.424 )(1.136)CO(0.3)Fe(0.7)0O(3-δ)(3-δ)基于LSCF-LSC复合材料的组成制备。通过电化学阻抗光谱(EIS)测量进一步研究了增强的透氧性。我们还确认LSCF-LSC对于LSCF-LSC垂直杆CE0.8SM0.2O1.9(SDC)垂直杆LSCF-LSC对称电池的LSCF-LSC-LSC垂直棒CE0.8SM0.2O1.9(SDC)垂直杆LSCF-LSC对称电池显着降低了较低的区域特异性电阻(ASR)。该新型LSCF-LSC复合膜还具有高CO2耐受性,稳定的氧渗透通量在900℃下圆形2.6mL min(-1)cm(-2)酮100小时。

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