Experimental study on a compact methanol steam reformer with Pd/Ag membrane

The performance of high purity hydrogen production from methanol for a compact steam reformer with a hydrogen purification membrane was investigated experimentally. A 77 wt.% Pd/23 wt.% Ag membrane with 25µm thickness and CuO/ZnO/ Al2 O3 catalyst were used. Heating was performed by a Bunsen type...

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Main Authors: Hasan, Mohd. Faizal, Kuwabara, Masato, Kizu, Ryo, Yokomori, Takeshi, Ueda, Toshihisa
Format: Article
Published: Japan Soc Mechanical Engineers 2012
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Online Access:http://eprints.utm.my/id/eprint/33533/
https://www.jstage.jst.go.jp/article/jtst/7/1/7_1_135/_article
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spelling my.utm.335332018-10-14T08:19:12Z http://eprints.utm.my/id/eprint/33533/ Experimental study on a compact methanol steam reformer with Pd/Ag membrane Hasan, Mohd. Faizal Kuwabara, Masato Kizu, Ryo Yokomori, Takeshi Ueda, Toshihisa TJ Mechanical engineering and machinery The performance of high purity hydrogen production from methanol for a compact steam reformer with a hydrogen purification membrane was investigated experimentally. A 77 wt.% Pd/23 wt.% Ag membrane with 25µm thickness and CuO/ZnO/ Al2 O3 catalyst were used. Heating was performed by a Bunsen type burner using City Gas 13A. The methanol reforming and purification of H2 were investigated at different reference catalyst zone temperatures (589-689K), pressures at the retentate side (0.2-0.5MPa), steam to methanol(S/C) ratios (0.8-1.6) and reactant flow rates (1.7×10-4 to 4.4×10-4 mol/s). The results show that at high reference temperature, high pressure and certain points of the reactant flow rate, the maximum hydrogen permeation rate is obtained when the S/C ratio is around 1. The modified Sieverts’ equation which considers the decrease in H2 concentration at the membrane surface, was proposed. The experimental result was lower than the permeation rate estimated by the modified Sieverts’ equation, which is probably caused by the adsorption of non-H2 species during permeation. It is further demonstrated that the modified Sieverts’ equation is able to estimate a more reasonable hydrogen permeation rate in comparison to the estimation by the ordinary Sieverts’ equation. In addition, it is shown that the compact methanol steam reformer with a Pd/Ag membrane is able to produce high purity hydrogen with very low CO concentration, which fulfills the Polymer Electrolyte Fuel Cell (PEFC) requirement (<10ppm). Japan Soc Mechanical Engineers 2012 Article PeerReviewed Hasan, Mohd. Faizal and Kuwabara, Masato and Kizu, Ryo and Yokomori, Takeshi and Ueda, Toshihisa (2012) Experimental study on a compact methanol steam reformer with Pd/Ag membrane. Journal of Thermal Science and Technology, 7 (1). pp. 135-150. ISSN 1880-5566 https://www.jstage.jst.go.jp/article/jtst/7/1/7_1_135/_article DOI:10.1299/jtst.7.135
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Hasan, Mohd. Faizal
Kuwabara, Masato
Kizu, Ryo
Yokomori, Takeshi
Ueda, Toshihisa
Experimental study on a compact methanol steam reformer with Pd/Ag membrane
description The performance of high purity hydrogen production from methanol for a compact steam reformer with a hydrogen purification membrane was investigated experimentally. A 77 wt.% Pd/23 wt.% Ag membrane with 25µm thickness and CuO/ZnO/ Al2 O3 catalyst were used. Heating was performed by a Bunsen type burner using City Gas 13A. The methanol reforming and purification of H2 were investigated at different reference catalyst zone temperatures (589-689K), pressures at the retentate side (0.2-0.5MPa), steam to methanol(S/C) ratios (0.8-1.6) and reactant flow rates (1.7×10-4 to 4.4×10-4 mol/s). The results show that at high reference temperature, high pressure and certain points of the reactant flow rate, the maximum hydrogen permeation rate is obtained when the S/C ratio is around 1. The modified Sieverts’ equation which considers the decrease in H2 concentration at the membrane surface, was proposed. The experimental result was lower than the permeation rate estimated by the modified Sieverts’ equation, which is probably caused by the adsorption of non-H2 species during permeation. It is further demonstrated that the modified Sieverts’ equation is able to estimate a more reasonable hydrogen permeation rate in comparison to the estimation by the ordinary Sieverts’ equation. In addition, it is shown that the compact methanol steam reformer with a Pd/Ag membrane is able to produce high purity hydrogen with very low CO concentration, which fulfills the Polymer Electrolyte Fuel Cell (PEFC) requirement (<10ppm).
format Article
author Hasan, Mohd. Faizal
Kuwabara, Masato
Kizu, Ryo
Yokomori, Takeshi
Ueda, Toshihisa
author_facet Hasan, Mohd. Faizal
Kuwabara, Masato
Kizu, Ryo
Yokomori, Takeshi
Ueda, Toshihisa
author_sort Hasan, Mohd. Faizal
title Experimental study on a compact methanol steam reformer with Pd/Ag membrane
title_short Experimental study on a compact methanol steam reformer with Pd/Ag membrane
title_full Experimental study on a compact methanol steam reformer with Pd/Ag membrane
title_fullStr Experimental study on a compact methanol steam reformer with Pd/Ag membrane
title_full_unstemmed Experimental study on a compact methanol steam reformer with Pd/Ag membrane
title_sort experimental study on a compact methanol steam reformer with pd/ag membrane
publisher Japan Soc Mechanical Engineers
publishDate 2012
url http://eprints.utm.my/id/eprint/33533/
https://www.jstage.jst.go.jp/article/jtst/7/1/7_1_135/_article
_version_ 1643649357606551552
score 13.214268