引用本文:
胡道中, 陈实, 王子冬, 赵淑红. MH电极中氢扩散系数的测定及其应用[J]. 物理化学学报,
2006, 22(09): 1151-1154.
doi:
10.3866/PKU.WHXB20060923
Citation: HU Dao-Zhong, CHEN Shi, WANG Zi-Dong, ZHAO Shu-Hong. The Measurement and Application of Hydrogen Diffusion Coefficient in MH Electrode[J]. Acta Physico-Chimica Sinica, 2006, 22(09): 1151-1154. doi: 10.3866/PKU.WHXB20060923

Citation: HU Dao-Zhong, CHEN Shi, WANG Zi-Dong, ZHAO Shu-Hong. The Measurement and Application of Hydrogen Diffusion Coefficient in MH Electrode[J]. Acta Physico-Chimica Sinica, 2006, 22(09): 1151-1154. doi: 10.3866/PKU.WHXB20060923

MH电极中氢扩散系数的测定及其应用
摘要:
利用恒流放电法测定了金属氢化物(MH)电极中氢原子扩散系数的平均值. 通过恒电位法测定了MH电极中氢原子的扩散系数与其荷电态(SOC)的关系. 根据MH电极模型可知, 增大氢原子扩散系数或减小储氢合金粒径均能提高MH电极的快速充电性能, 并能计算出MH电极在不同的初始荷电态、不同充电倍率下, 表面氢原子浓度达到最大值所需的时间.
English
The Measurement and Application of Hydrogen Diffusion Coefficient in MH Electrode
Abstract:
The average value of hydrogen diffusion coefficient in metal hydride (MH) electrode was measured by constant current discharge method. The relationship between hydrogen diffusion coefficient and state of charge (SOC) was determined by potentiostatic method. According to the MH electrode model, the fast charging performance of MH electrode can be improved by increasing hydrogen diffusion coefficient or decreasing the particle size of hydrogen storage alloy. The time when the surface hydrogen atom concentration on the MH electrode reaches maximum value under different initial states of charge and charge rates also can be calculated.

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