模拟直接甲醇燃料电池(DMFC)的工作条件,通过压力驱动产生的电位变化,对Nafion*系列质子交换膜进行了电渗系数的测量,在0.5 mol/L H2SO4中的测量结果与原子示踪法和毛细管电泳法的结果基本吻合.H2SO4浓度越高,膜的溶胀率越低;当H2SO4浓度高于0.5 mol/L时,膜的含水率随平衡浓度升高的变化不大;膜的厚度影响分子扩散,当厚度下降到50μm(NafionΘ112膜)时,质子交换膜由于出现更多贯穿膜厚度方向的扩散通道而体现为非均场扩散的特性.
作 者:潘科 齐亮 刘洋 谢晓峰 PAN Ke QI Liang LIU Yang XIE Xiao-feng
作者单位:清华大学核能与新能源技术研究院,北京,100084
刊 名:电池 ISTIC PKU
英文刊名:BATTERY BIMONTHLY
年,卷(期):2008 38(2)
分类号:TM911.4
关键词:质子交换膜 电渗系数 压力驱动 电位变化
机标分类号:TM9 S18
机标关键词:质子交换膜电渗系数直接甲醇燃料电池浓度升高膜厚度通过压力扩散通道工作条件分子扩散电位变化测量结果示踪法溶胀率毛细管含水率电泳法原子吻合特性模拟
基金项目:国家高技术研究发展计划(863计划),国家自然科学基金
DOI:
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