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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >High-performance SAPO-34 membranes for CO2 separations from simulated flue gas
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High-performance SAPO-34 membranes for CO2 separations from simulated flue gas

机译:高性能SAPO-34膜,用于模拟烟气的二氧化碳分离

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High-quality SAPO-34 membranes were fabricated by the secondary growth method on outside asymmetric tubular alumina supports. The effects of temperature, pressure and feed flow rate on the separation performance of SAPO-34 membranes were investigated for CO2 separations from simulated flue gas. Single CO2, N-2 and CH4 permeances were predicted by Maxwell-Stefan diffusion model, and the predictions were fit well with experimental data. The unexpected high CO2/N-2 selectivities were 170 and 110 with high CO2 permeances of similar to 1.38 x 10(-6) mol/(m(2)sPa)(=4120 GPU) through our SAPO-34 membrane for equimolar and 15/85 (vol/vol) CO2/N-2 mixtures at 243 K and 0.1 MPa pressure drop, respectively. The membrane also displayed aCO(2) permeance of 4.67 x 10(-7) mol/(m(2)s Pa) ( =1390 GPU) and a CO2/N-2 selectivity of 10.3 in a dry 15/85 (vol/vol) CO2/N-2 mixture at 423 K. The moister in feed gas (0.68 mol% water vapor) decreased CO2 permeance and CO2/N-2 selectivity by only 19.3% and 14.9% in a wet 15/85 (vol/vol) CO2/N-2 mixture at 423 K, respectively, compared to those in the dry mixture. The separation performance could be recovered to the original values after drying. The current SAPO-34 membranes were far beyond the upper bound of zeolite membranes in CO2/N-2 plots and showed potential applications in CO2 separations from power-plant flue gas.
机译:通过在外部不对称管状氧化铝载体上的二次生长方法制造高质量的SAPO-34膜。研究了温度,压力和进给流速对SAPO-34膜的分离性能的影响,用于从模拟烟道气中的CO 2分离。通过Maxwell-Stefan扩散模型预测了单一CO2,N-2和CH4渗透性,并且预测与实验数据很好。意外的高CO 2 / N-2选择性为170和110,通过我们的SAPO-34膜,高CO2渗透物,其高CO 2渗透率与1.38×10( - 6)mol /(= 4120GPu)进行等摩尔和15/85(Vol / V体积)CO2 / N-2分别在243 k和0.1MPa压降下混合物。膜也显示出4.67×10(-7)mol /(m(2)次PA)(= 1390gPu)的ACO(2)渗透率,以及10.3的CO 2 / N-2选择性为10.3,在干燥15/85中(Vol /体积/体积)CO 2 / N-2混合物在423k。进料气体(0.68mol%的水蒸气)的流动性在潮湿15/85中仅减少了19.3%和14.9%的二氧化碳渗透和CO 2 / N-2选择性(Vol /体积/体积)与干混合物中的那些,分别为423k的CO 2 / N-2混合物。干燥后,可以将分离性能恢复到原始值。目前的SAPO-34膜远远超出了CO 2 / N-2块中的沸石膜的上限,并在电厂烟道气中显示了CO2分离中的潜在应用。

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