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首页> 外文期刊>Journal of King Saud University-Engineering Sciences >Tapioca binder for porous zinc anodes electrode in zinc–air batteries
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Tapioca binder for porous zinc anodes electrode in zinc–air batteries

机译:木薯粉粘合剂,用于锌-空气电池中的多孔锌阳极电极

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摘要

Tapioca was used as a binder for porous Zn anodes in an electrochemical zinc-air (Zn-air) battery system. The tapioca binder concentrations varied to find the optimum composition. The effect of the discharge rate at 100mA on the constant current, current–potential and current density–power density of the Zn-air battery was measured and analyzed. At concentrations of 60–80mgcm ?3 , the tapioca binder exhibited the optimum discharge capability, with a specific capacity of approximately 500mAhg ?1 and a power density of 17mWcm ?2 . A morphological analysis proved that at this concentration, the binder is able to provide excellent binding between the Zn powders. Moreover, the structure of Zn as the active material was not affected by the addition of tapioca as the binder, as shown by the X-ray diffraction analysis. Furthermore, the conversion of Zn into ZnO represents the full utilization of the active material, which is a good indication that tapioca can be used as the binder.
机译:木薯粉被用作电化学锌-空气(Zn-空气)电池系统中多孔锌阳极的粘合剂。木薯粘合剂的浓度变化以找到最佳的组成。测量并分析了100mA放电速率对Zn-空气电池的恒定电流,电流-电位和电流密度-功率密度的影响。在60-80mgcm?3的浓度下,木薯粘合剂表现出最佳的放电能力,比容量约为500mAhg?1,功率密度为17mWcm?2。形态分析证明,在该浓度下,粘合剂能够在Zn粉之间提供出色的粘合性。此外,如X射线衍射分析所示,作为活性物质的Zn的结构不受木薯粉作为粘合剂的添加的影响。此外,Zn转化为ZnO代表了活性物质的充分利用,这很好地表明了木薯粉可以用作粘合剂。

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