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Study of the separation properties of FAU membranes constituted by hierarchically assembled nanozeolites

机译:纳米组装分子筛组成的FAU膜的分离性能研究

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In this study, a modified procedure allowing for an easy synthesis of FAU membranes constituted by closely packed nanocrystals and the study of their permeation properties are reported. The FAU layers (Si/Al ratio of ca. 2.5) have a thickness of ca. 20 mu m and are constituted by closely packed, well inter-grown nanocrystals, whose dimension was ca. 20-30 nm. The permeation properties of these membranes were measured by feeding H-2 and CO2 pure gas. If compared to literature data, a relatively high H-2 permeance of ca. 1.4 mu mol m(-2) s(-1) Pa-1 (4177.4 GPU) was measured at 25 degrees C in dry conditions, which can be attributed to the wide pores of the FAU zeolite and, most likely, to the presence of a secondary mesopore network. The ideal H-2/CO2 selectivity was near the corresponding Knudsen coefficient over the entire temperature range investigated (25-75 degrees C). Furthermore, the potential of these nanozeolite-based membranes for the removal of water vapours from gas mixtures was evaluated by feeding a H2O/N-2 mixture, which was used as model system for mimicking a mixture of polar and non-polar components. The water permeation values at 200 degrees C were ca. 39.9 (M1) and 31.9 (M2) mu mol m(-2) s(-1) Pa-1 (119056.5 and 95185.5 GPU, respectively) at the steady state, with H2O/N-2 separation factors of ca. 8 and 7, respectively. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,报告了一种改进的程序,可以轻松合成由紧密堆积的纳米晶体构成的FAU膜,并对其渗透性能进行了研究。 FAU层(Si / Al之比约为2.5)的厚度约为。 20微米,由紧密堆积的,良好生长的纳米晶体构成,其尺寸约为。 20-30纳米。这些膜的渗透性能是通过加入H-2和CO2纯气体来测量的。如果与文献数据比较,则H 2的磁导率相对较高。在25°C的干燥条件下测得1.4μmol m(-2)s(-1)Pa-1(4177.4 GPU),这可能归因于FAU沸石的宽孔,最有可能归因于次要中孔网络。在研究的整个温度范围内(25-75摄氏度),理想的H-2 / CO2选择性接近相应的克努森系数。此外,通过送入H2O / N-2混合物(用作模拟极性和非极性组分混合物的模型系统),评估了这些基于纳米沸石的膜从气体混合物中去除水蒸气的潜力。 200℃下的水渗透值为约3。稳态下39.9(M1)和31.9(M2)摩尔mol m(-2)s(-1)Pa-1(分别为119056.5和95185.5 GPU),H2O / N-2分离系数约为1。分别为8和7。 (C)2015 Elsevier B.V.保留所有权利。

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