应用化学 ›› 2025, Vol. 42 ›› Issue (7): 982-992.DOI: 10.19894/j.issn.1000-0518.250215

• 研究论文 • 上一篇    下一篇

质子交换膜燃料电池高效主动喷雾增湿器的设计

李阳1, 赵兴旺1, 丁芳2(), 王显3(), 葛君杰3(), 方川1   

  1. 1.北京亿华通科技股份有限公司,北京 100084
    2.成都师范学院创新创业学院,成都 611130
    3.中国科学技术大学化学与材料科学学院,精准智能化学全国重点实验室,合肥 230026
  • 收稿日期:2025-05-23 接受日期:2025-06-17 出版日期:2025-07-01 发布日期:2025-07-23
  • 通讯作者: 丁芳,王显,葛君杰
  • 基金资助:
    国家重点研发计划(2023YFB4005901);北京市高层次创新创业人才支持计划科技新星计划(20240484717);河北省高层次人才团队建设专项(235A4401D);中央引导地方科技发展资金项目(246Z4402G);河北省科技研发平台专项(24465201D);成都师范学院高层次人才引进项目(111-111191301)

Design of the Efficient Active Spray Humidifier for Proton Exchange Membrane Fuel Cells

Yang LI1, Xing-Wang ZHAO1, Fang DING2(), Xian WANG3(), Jun-Jie GE3(), Chuan FANG1   

  1. 1.Beijing SinoHytec Co. ,Ltd. ,Beijing 100084,China
    2.School of Innovation and Entrepreneurship,Chengdu Normal University,Chengdu 611130,China
    3.State Key Laboratory of Precision and Intelligent Chemistry,School of Chemistry and Materials Science,University of Science and Technology of China,Hefei 230026,China
  • Received:2025-05-23 Accepted:2025-06-17 Published:2025-07-01 Online:2025-07-23
  • Contact: Fang DING,Xian WANG,Jun-Jie GE
  • About author:gejunjie@ustc.edu.cn
    wangxian@ustc.edu.cn
    2843690766@qq.com
  • Supported by:
    the National Key Research and Development Program of China(2023YFB4005901);the Beijing High-level Innovation and Entrepreneurship Talent Support Program for Science and Technology New Stars(20240484717);the Special Project for the Construction of High-level Talent Teams in Hebei Province(235A4401D);the Central Guidance for Local Science and Technology Development Funds Project(246Z4402G);the Special Project for Science and Technology R&D Platforms in Hebei Province(24465201D);the Project for the Introduction of High-level Talents at Chengdu Normal University(111-111191301)

摘要:

质子交换膜燃料电池(PEMFC)的气体湿度对其性能和寿命有很大的影响,为了控制其气体湿度,通过结构优化: 首先,设计了2代均流雾化腔: 第1代实现液滴逆向分散,第2代引入三层均流板与四分流道,经计算流体动力学(CFD)优化后四分流道流量误差由4.24%降至1.16%,压降从8.7 kPa降至5 kPa; 其次,引入二级换热架构,一级换热器利用出堆水温预热液滴,二级换热器通过调节入堆水温控制湿空气温度,可以避免液态水残留,二级换热器出口露点与理论值吻合,误差≤±1 ℃,覆盖燃料电池典型工况。 结合二代雾化腔和二级换热架构,实测露点可达54.34 ℃、实测湿度可达63.76 RH%,可以满足电堆较高湿度的需求。 这种融合逆流喷雾、均流结构与二级换热技术,能够突破传统膜管增湿器被动加湿、响应慢的局限,可以为燃料电池系统动态湿度管理提供解决方案。

关键词: 质子交换膜燃料电池, 喷雾增湿器, 雾化腔设计, 二级换热, 湿度调控

Abstract:

The gas humidity of proton exchange membrane fuel cells (PEMFC) has a significant impact on their performance and service life. To control the gas humidity, structural optimization was carried out as follows: first, two generations of uniform-flow atomization chambers were designed. The first generation achieved reverse dispersion of liquid droplets, and the second generation introduced a three-layer uniform-flow plate and four-zonechannels. After computational fluid dynamics(CFD) optimization, the flow error of the four-flow channels was reduced from 4.24% to 1.16%, and the pressure drop was reduced from 8.7 to 5 kPa. Secondly, a two-stage heat exchange architecture was introduced. The primary heat exchanger uses the outlet stack water temperature to preheat the liquid droplets, and the secondary heat exchanger controls the temperature of the humidified air by adjusting the inlet stack water temperature, which can avoid residual liquid water. The dew point at the outlet of the second-stage heat exchanger matches the theoretical value with an error ≤±1 ℃, covering typical working conditions of fuel cells. Combining the second-generation atomization chamber with the two-stage heat exchange architecture, the measured dew point can reach 54.34 ℃ and the measured humidity can reach 63.76 RH%, meeting the high humidity requirements of the stack. This integration of countercurrent spraying, uniform-flow structure, and two-stage heat exchange technology breaks through the limitations of passive humidification and slow response of traditional membrane tube humidifiers, providing a solution for dynamic humidity management in fuel cell systems.

Key words: Proton exchange membrane fuel cell, Spray humidifier, Atomization chamber design, Secondary heat exchange, Humidity regulation

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