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Development of Mass Production Technology of Highly Permeable Nano-Porous Supports for Silica-Based Separation Membranes

机译:二氧化硅基分离膜高渗透性纳米多孔载体的批量生产技术的发展

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摘要

Silica-based membranes show both robust properties and high-permeability, offering us great potential for applying them to harsh conditions where conventional organic membranes cannot work. Despite the increasing number of paper and patents of silica-based membranes, their industrial applications have yet to be fully realized, possibly due to their lack of technologies on scaling-up and mass production. In particular, quality of membrane supports decisively impacts final quality of silica-based separation membranes. In this study, therefore, we have developed mass producing technologies of nano-porous supports (φ 12 mm, length 400 mm) with surface center pore size distribution of 1–10 nm, which are generally used as supports for preparing separation membranes with a pore size of less than 1 nm. The developed mass production apparatuses have enabled us to reproducibly produce nano-porous silica-based supports with high permeance (e.g., N2 permeance of more than 10−5 mol m−2 s−1·Pa−1) minimizing effects of membrane defects less than 0.1% of the total flux. The developed nano-porous supports have enabled us to reproducibly produce silica-based separation membranes with high permeace and selectivity (e.g., H2 permeance of about 5 × 10−6 mol m−2 s−1 Pa−1 and H2/SF6 permeance ratio of more than 2000).
机译:硅胶膜既显示出坚固的性能又具有高渗透性,这为我们提供了将其应用于常规有机膜无法工作的苛刻条件的巨大潜力。尽管纸和二氧化硅基膜的专利数量在增加,但它们的工业应用尚未完全实现,这可能是由于它们缺乏按比例放大和批量生产的技术。特别地,膜载体的质量决定性地影响基于二氧化硅的分离膜的最终质量。因此,在这项研究中,我们开发了批量生产技术,其表面中心孔径分布为1–10 nm的纳米多孔载体(φ12 mm,长度为400 mm),通常被用作制备具有以下特征的分离膜的载体孔径小于1 nm。发达的批量生产设备使我们能够可重复生产具有高渗透性(例如,N2渗透率大于10 -5 mol m -2 的纳米多孔二氧化硅基载体)。 s −1 ·Pa −1 )使膜缺陷的影响最小化,该缺陷小于总通量的0.1%。发达的纳米多孔载体使我们能够可重复生产具有高渗透性和选择性(例如H2渗透率约为5×10 -6 mol m −2 s -1 Pa -1 和H2 / SF6渗透率大于2000)。

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