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Qualitative and quantitative analysis of intercalated and exfoliated silicate layers in asymmetric polyethersulfone/cloisite15A® mixed matrix membrane for CO2/CH4 separation

机译:定性和定量分析不对称聚醚砜/cloisite15A®混合基质膜中插入和剥离的硅酸盐层,以分离CO2 / CH4

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摘要

In this study, flat sheet asymmetric MMMs were prepared from polyethersulfone (PES) containing 1 (PES/C15A1) and 5wt% (PES/C15A5) loading of Cloisite15A® via phase inversion to investigate the effect of dispersion of silicate layers on the properties and performance of the MMMs for CO2/CH4 separation. The MMMs were characterized by means of WAXD, TEM, tensile test and pure gas permeation measurement. Partial intercalated and exfoliated silicate layers for MMM with 1wt% loading contributed to the enhancement of the membrane morphological and mechanical properties. The increase tortuosity in PES/C15A1 reduced the CH4 permeance with a significant enhancement for the CO2/CH4 selectivity from 22.57 to 46.89. In addition, high degree of intercalation and exfoliation of silicate layers was also corroborated by particle size measurement (PSM), particle density measurement (PDM) and free-path spacing measurement (FPSM) with the increase in aspect ratio, dispersed single silicate layers, density and formation of several tactoid classes for PES/C15A1. The properties and performance of the MMMs, determined by qualitative and quantitative measurements for PES/C15A1 was higher compared to PES/C15A5; therefore, the extent of the silicate layers dispersion has a significant role in the fabrication of asymmetric MMMs.
机译:在这项研究中,采用相变法由Cloisite15A®负载1(PES / C15A1)和5wt%(PES / C15A5)的聚醚砜(PES)制备了平板不对​​称MMM,以研究硅酸盐层的分散对性能和性能的影响。 MMM用于CO2 / CH4分离的性能通过WAXD,TEM,拉伸试验和纯气体渗透测量来表征MMM。用于MMM的部分插入和剥离的硅酸盐层(负载量为1wt%)有助于提高膜的形态和机械性能。 PES / C15A1中曲折度的增加降低了CH4的渗透率,并使CO2 / CH4选择性从22.57显着提高到46.89。此外,随着长径比的增加,粒径测量(PSM),颗粒密度测量(PDM)和自由路径间距测量(FPSM)也证实了硅酸盐层的高度嵌入和剥落,分散的单个硅酸盐层,密度和PES / C15A1几种触觉类的形成。通过定性和定量测量确定的PES / C15A1的MMM的性能和性能高于PES / C15A5。因此,硅酸盐层的分散程度在非对称MMM的制造中起着重要作用。

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