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Improving temperature uniformity and performance of CO preferential oxidation for hydrogen-rich reformate with a heat pipe
Journal article   Peer reviewed

Improving temperature uniformity and performance of CO preferential oxidation for hydrogen-rich reformate with a heat pipe

Shwin-Chung Wong, Hao-Chung Hsiao and Kai-Fan Lo
International Journal of Hydrogen Energy, Vol.39(12), pp.6492-6496
15/04/2014

Abstract

Carbon monoxide removal Heat pipe Packed-bed reactor Preferential oxidation
Preferential oxidation (PROX) is an effective, but highly temperature-sensitive, method of CO removal for hydrogen-rich reformates. In a packed-bed catalytic reactor, oxidation is strongest at the inlet side and the local catalyst pellets become over-heated with poor heat conduction. As a result, the enhanced parasitic H 2 oxidation consumes oxygen and suppresses CO conversion. This study applies a heat pipe to improve the temperature uniformity in a tubular one-stage packed-bed reactor by transporting heat downstream and thereby improve CO removal. In the experiments, the fuel mixture containing 2% of CO, 75% of H 2 , and 23% of CO 2 , further mixed with air at O 2 /CO = 0.75, 1.0 or 1.25, is supplied with stepwise increase of feeding rate under a fixed environmental temperature of 99 ± 1 °C. The proposed simple method is found to significantly improve temperature uniformity and CO removal for the present test conditions with O 2 /CO = 1.0 and 1.25. Copyright © 2014, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.

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