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Analysis of Pressure Variations in a Low-Pressure Nickel-Hydrogen Battery– Part 2: Cells with Metal Hydride Storage

机译:低压镍 - 氢电池压力变化分析 - 第2部分:金属氢化物储存的细胞

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摘要

A sub-atmospheric pressure nickel hydrogen (Ni-H2) battery with metal hydride for hydrogen storage is developed for implantable neuroprosthetic devices. Pressure variations during charge and discharge of the cell are analyzed at different states of charge and are found to follow the desorption curve of the pressure composition isotherm (PCI) of the metal hydride. The measured pressure agreed well with the calculated theoretical pressure based on the PCI and is used to predict the state of charge of the battery. Hydrogen equilibration with the metal hydride during charge/discharge cycling is fast when the pressure is in the range from 8 to 13 psia and slower in the range from 6 to 8 psia. The time constant for the slower hydrogen equilibration, 1.37h, is similar to the time constant for oxygen recombination and therefore pressure changes due to different mechanisms are difficult to estimate. The self-discharge rate of the cell with metal hydride is two times lower in comparison to the cell with gaseous hydrogen storage alone and is a result of the lower pressure in the cell when the metal hydride is used.
机译:为可植入的神经原理装置开发了具有金属氢化物的亚大气压镍氢(Ni-H2)电池。在不同的电荷状态下分析电池充电和放电期间的压力变化,并发现遵循金属氢化物的压力组合物等温线(PCI)的解吸曲线。测量压力与基于PCI的计算的理论压力很好地同意,并且用于预测电池的充电状态。当压力在8至13psia的范围内时,氢气平衡与金属氢化物在电荷/放电循环期间快速,从6至8psia的范围内较慢。较慢的氢气平衡,1.37H的时间常数类似于氧气重组的时间常数,因此由于不同机制而导致的压力变化难以估计。与单独具有气态储氢的电池相比,具有金属氢化物的细胞的自放电率与细胞相比,电池是较低的电池,并且在使用金属氢化物时细胞中的较低压力的结果。

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