The effect of flow-field structure in toluene hydrogenation electrolyzer for energy carrier synthesis system

被引:34
|
作者
Nagasawa, Kensaku [1 ]
Kato, Akihiro [2 ]
Nishiki, Yoshinori [2 ]
Matsumura, Yoshimasa [3 ]
Atobe, Mahito [3 ]
Mitsushima, Shigenori [1 ,4 ]
机构
[1] Yokohama Natl Univ, Green Hydrogen Res Ctr, Hodogaya Ku, 79-5 Tokiwadai, Yokohama, Kanagawa 2408501, Japan
[2] De Nora Permelec Ltd, 2023-15 Endo, Fujisawa, Kanagawa 2520816, Japan
[3] Yokohama Natl Univ, Dept Environm & Syst Sci, Hodogaya Ku, 79-7 Tokiwadai, Yokohama, Kanagawa 2408501, Japan
[4] Yokohama Natl Univ, Inst Adv Sci, Hodogaya Ku, 79-5 Tokiwadai, Yokohama, Kanagawa 2408501, Japan
关键词
toluene/methylcyclohexane organic hydride; hydrogenation electrolysis; flow-field structure; PEM FUEL-CELL; ELECTROCATALYTIC HYDROGENATION; EXCHANGE; STORAGE; PERFORMANCE; HYDRIDES; REACTOR;
D O I
10.1016/j.electacta.2017.06.081
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
In this study, we investigated the effect of the design of the cathode flow-field structure on the electrochemical performance of the electrolyzer for the toluene-methylcyclohexane electrocatalytic hydrogenation synthesis system. The patterns of the basic flow-fields; i.e. parallel, interdigit, serpentine and porous-carbon, were investigated based on linear sweep voltammetry (LSV), internal, and cathodic and anodic charge transfer resistances with impedance spectroscopy and current efficiency. The flow-field pattern affected the toluene mass transportation and H-2 gas generation as a side reaction. Based on the LSV curve, the porous-carbon did not affect the overvoltage for the decrease in the toluene concentration, and showed the lowest cell voltage in the all flow-fields. The cathodic charge transfer resistance by impedance analysis and the current efficiency of the porous-carbon showed the highest performance in the all flow-fields over a wide toluene concentration range. (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:459 / 465
页数:7
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