Simple scalable approach to advanced membrane module design and hydrogen separation performance using twelve replaceable palladium-coated Al2O3 hollow fibre membranes

被引:9
作者
Lim, Soomin [1 ]
Magnone, Edoardo [1 ]
Shin, Min Chang [1 ]
Kang, Jeong Won [2 ]
Lee, Kwan-Young [2 ]
Jeong, Chang-Hun [3 ]
Park, Jung Hoon [1 ]
机构
[1] Dongguk Univ, Dept Biochem & Chem Engn, Seoul 04620, South Korea
[2] Korea Univ, Dept Chem & Biol Engn, Seoul 02841, South Korea
[3] Hygenenergy Co Ltd, Misa Daero, Hanam, Gyeonggi Do, South Korea
基金
新加坡国家研究基金会;
关键词
Membrane module design; Hydrogen separation properties; Palladium coatings; Electroless plating process; Al2O3 hollow fibre supports; ELECTROLESS PLATING TECHNIQUE; COMPOSITE MEMBRANES; CONCENTRATION POLARIZATION; PD MEMBRANE; PERMEATION; FABRICATION; REACTOR; OXIDE;
D O I
10.1016/j.jiec.2022.07.028
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A phase-inversion approach was used to manufacture Al2O3 hollow fibre supports, which were then sin-tered at 1723 K. The electroless plating technique is developed to prepare palladium-coatedAl(2)O(3) hollow fibre membranes for hydrogen separation. Three different scaling-up configurations were produced and tested: single membrane, membrane unit obtained by assembling three membranes, and advanced membrane module obtained by assembling twelve replaceable membranes. The hydrogen flux was investigated under vacuum and without vacuum using a feed gas of pure H-2 (100%) and a binary feed gas mixture of H-2 (80%) and CO2 (20%) at different feed gas pressures (100-800 kPa), feed gas rate (0.2-6. 0 L min(-1)), and temperature (673-723 K). The hydrogen flux increases from 0.2162 mol m(-2) s(-1) (feed gas pressure = 600 kPa, feed gas rate = 0.2 L min(-1)) to 0.4487 mol m(-2) s(-1) (feed gas pressure = 800 kP a, feed gas rate = 6.0 L min(-1)) under the binary gas mixture at 723 K by switching from a single to the advanced membrane module, while the hydrogen purity remains above 97.5% throughout the experiment. Some aspects about the scalability of palladium-coated Al2O3 hollow fibre membranes for hydrogen separation are discussed. (C) 2022 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:391 / 401
页数:11
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