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Rapid thermal processing and separation performance of columnar MFI membranes on porous stainless steel tubesf

机译:多孔不锈钢管上柱状MFI膜的快速热处理和分离性能f

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摘要

Continuous MFI-type zeolite membranes were fabricated on porous stainless steel tube supports by secondary (seeded) growth. The physical attachment of zeolite seed particles was initiated through sonication assistance on unmodified supports. Despite a sparse seed layer, a single hydrothermal growth step reliably led to e-/h0h-out-of-plane-oriented pure-silica MFI membranes. Rapid thermal processing was applied to as-synthesized membranes, extending the findings of a previous report on controlling the density of grain boundary defects. The RTP-treated membranes showed an improved separation factor of 29 for p-/o-xylene with a maximum p-xylene permeance of 6.6 x 10~(-8) mol m~(-2) s~(-1) Pa~(-1), while conventionally (slowly) calcined counterparts had a maximum separation factor and p-xylene permeance of 3-4 and 2.7-4.5 x 10~(-8) mol m~(-2) s~(-1) Pa~(-1), respectively. The membranes also showed insensitivity to temperature for n-//-butane separation performance (separation factor ca. 15 and n-butane permeance ca. 1.3 x 10~(-1) mol m~(-2) s~(-1) Pa~(-1)), while conventionally calcined ones exhibited a significant decrease in the separation factor with temperature. Pervaporation measurements from a dilute aqueous feed that exploited the hydrophobicity of RTP-treated membranes revealed their potential use in bioalcohol recovery processes from fermentation broths, specifically for ethanol (total flux and separation factor of 1.2 kg m~(-2) h~(-1) and 43, respectively) and n-butanol (total flux and separation factor of 0.11 kg m~(-2) h~(-1) and 21, respectively) extraction from the aqueous phase.
机译:通过二次(种子)生长在多孔不锈钢管支撑物上制备连续MFI型沸石膜。沸石种子颗粒的物理附着是通过在未改性的载体上进行超声辅助而引发的。尽管种子层稀疏,但单个水热生长步骤可靠地导致了e // h0h面外取向的纯硅MFI膜。快速热处理应用于合成后的膜,扩展了先前关于控制晶界缺陷密度的报告的发现。经RTP处理的膜对对二甲苯的分离系数提高到29,最大对二甲苯渗透率为6.6 x 10〜(-8)mol m〜(-2)s〜(-1)Pa〜 (-1),而常规(慢速)煅烧的对应物具有最大分离因子,对二甲苯渗透率为3-4和2.7-4.5 x 10〜(-8)mol m〜(-2)s〜(-1) Pa〜(-1)。膜对正丁烷分离性能也表现出对温度不敏感(分离系数约15和正丁烷渗透率约1.3 x 10〜(-1)mol m〜(-2)s〜(-1) Pa〜(-1)),而常规煅烧的则表现出分离因子随温度的显着降低。利用RTP处理过的膜的疏水性的稀水性进料中的全蒸发测量显示了其在从发酵液中回收生物醇的过程中的潜在用途,特别是用于乙醇(总通量和分离系数为1.2 kg m〜(-2)h〜(- 1)和43)和正丁醇(总通量和分离系数分别为0.11 kg m〜(-2)h〜(-1)和21)从水相中萃取。

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  • 来源
    《Energy & environmental science》 |2011年第9期|p.3479-3486|共8页
  • 作者单位

    Department of Chemical Engineering and Materials Science, University ofMinnesota-Twin Cities, 421 Washington Avenue SE, Minneapolis, MN,55455, USA;

    Department of Chemical & Biological Engineering, Korea University, Anam-dong, Seongbuk-gu, Seoul, 136-713, Republic of Korea;

    Department of Chemical Engineering and Materials Science, University ofMinnesota-Twin Cities, 421 Washington Avenue SE, Minneapolis, MN,55455, USA;

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