Zhang Ziheng, Martin Jonathan, Wu Jinfeng, Wang Haijiang, Promislow Keith, Balcom Bruce J
MRI Centre, Department of Physics, University of New Brunswick, Fredericton, New Brunswick, Canada E3B 5A3.
J Magn Reson. 2008 Aug;193(2):259-66. doi: 10.1016/j.jmr.2008.05.005. Epub 2008 May 16.
Water management is critical to optimize the operation of polymer electrolyte membrane fuel cells. At present, numerical models are employed to guide water management in such fuel cells. Accurate measurements of water content variation in polymer electrolyte membrane fuel cells are required to validate these models and to optimize fuel cell behavior. We report a direct water content measurement across the Nafion membrane in an operational polymer electrolyte membrane fuel cell, employing double half k-space spin echo single point imaging techniques. The MRI measurements with T2 mapping were undertaken with a parallel plate resonator to avoid the effects of RF screening. The parallel plate resonator employs the electrodes inherent to the fuel cell to create a resonant circuit at RF frequencies for MR excitation and detection, while still operating as a conventional fuel cell at DC. Three stages of fuel cell operation were investigated: activation, operation and dehydration. Each profile was acquired in 6 min, with 6 microm nominal resolution and a SNR of better than 15.
水管理对于优化聚合物电解质膜燃料电池的运行至关重要。目前,数值模型被用于指导此类燃料电池的水管理。需要准确测量聚合物电解质膜燃料电池中水含量的变化,以验证这些模型并优化燃料电池性能。我们报告了一种在运行的聚合物电解质膜燃料电池中,采用双半k空间自旋回波单点成像技术对Nafion膜进行直接水含量测量的方法。使用平行板谐振器进行T2映射的MRI测量,以避免射频屏蔽的影响。平行板谐振器利用燃料电池固有的电极在射频频率下创建一个谐振电路,用于磁共振激发和检测,同时在直流状态下仍作为传统燃料电池运行。研究了燃料电池运行的三个阶段:活化、运行和脱水。每个剖面在6分钟内采集,标称分辨率为6微米,信噪比优于15。