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Sodium borohydride hydrogen generator using Co-P/Ni foam catalysts for 200 W proton exchange membrane fuel cell system

机译:使用Co-P / Ni泡沫催化剂的硼氢化钠氢发生器用于200 W质子交换膜燃料电池系统

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摘要

The response characteristics of electroless-deposited Co-P/Ni foam catalysts for sodium borohydride hydrolysis were investigated. The effect of nickel foam geometry on the properties of the catalysts was evaluated. As the PPI (pores per inch) of the nickel foam increased, the hydrogen generation rate per gram of the deposited catalyst increased due to an increase in surface area. The response characteristics of various catalysts were compared under real operating conditions. When a thin nickel foam with high PPI was used, the response characteristics of the catalyst improved due to an increase in the amount of the deposited catalyst and surface area. Finally, a 200 W PEMFC (proton exchange membrane fuel cell) system using electroless-deposited Co-P/Ni foam (110 PPI) catalyst was investigated. The response time to reach a hydrogen generation rate sufficient for a 200 W PEMFC was 71 s, and the energy density of a 200 W fuel cell system for producing 600 Wh was 252.1 Wh/kg. A fuel cell system using Co-P/Ni foam catalysts can be widely used as a power source for mobile applications due to fast response characteristics and high energy density. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了化学沉积Co-P / Ni泡沫催化剂对硼氢化钠水解的响应特性。评估了泡沫镍几何形状对催化剂性能的影响。随着镍泡沫的PPI(每英寸的孔数)增加,由于表面积增加,每克沉积的催化剂的氢气产生速率增加。在实际操作条件下比较了各种催化剂的响应特性。当使用具有高PPI的稀泡沫镍时,由于沉积的催化剂量和表面积的增加,催化剂的响应特性得到改善。最后,研究了使用化学沉积的Co-P / Ni泡沫(110 PPI)催化剂的200 W PEMFC(质子交换膜燃料电池)系统。达到足以使200 W PEMFC产生氢气的速率的响应时间为71 s,用于生产600 Wh的200 W燃料电池系统的能量密度为252.1 Wh / kg。使用Co-P / Ni泡沫催化剂的燃料电池系统具有快速响应特性和高能量密度,因此可广泛用作移动应用的动力源。 (C)2015 Elsevier Ltd.保留所有权利。

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