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Reactor design optimization for direct synthesis of hydrogen peroxide
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Reactor design optimization for direct synthesis of hydrogen peroxide

Tomoya Inoue, Yoshikuni Kikutani, Satoshi Hamakawa, Kazuma Mawatari, Fujio MizukamiTakehiko Kitamori
Chemical Engineering Journal, 卷.160(3), 頁碼.909-914
2010

摘要

Direct synthesis of hydrogen peroxide from Gas-liquid distribution Glass-fabricated microreactor Hydrogen and oxygen Chemistry (all) Environmental Chemistry Chemical Engineering (all) Industrial and Manufacturing Engineering
A glass-fabricated microreactor was applied to the direct synthesis of hydrogen peroxide from hydrogen and oxygen. The direct synthesis reaction is a three-phase reaction, with gas (hydrogen and oxygen), liquid (reaction solution) and solid (catalyst) being involved. We designed an advanced microreactor in which an ideal gas-liquid distribution could be accomplished throughout the catalyst packed bed. We also set up a reaction system that enables the reaction operation at more than 2MPa over 1 week. With these efforts, more than 3 wt% of hydrogen peroxide was successfully produced using the microreactor technology. © 2010 Elsevier B.V. All rights reserved.

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