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The impact of operating conditions on component and electrode development for zinc-air flow batteries

机译:操作条件对锌空气电池组成电极开发的影响

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摘要

Rechargeable zinc-air flow batteries are investigated as possible technology for fast responding large-scale electrical energy storage due to the use of inexpensive, non-toxic and abundant materials, and compact system design. The operating ranges for several parameters such as flow rate (2-8 cm s(-1)), concentration of electrolyte (6 or 8 M KOH), charge/discharge current densities (up to 100 mA cm(-2) mean), and active or passive air supply as well as their influence on the performance and stability of the electrodes are investigated and compared. Bi-catalyzed bifunctional air electrodes are tested by means of half-cell measurements achieving minimum 200 charge/discharge cycles at 50 mA cm(-2) with the longest operation time being 800 h. At this current density, charge/discharge efficiencies are in the range of 50% for all tested air electrodes. End-of-life characterization by means of scanning electron microscopy reveals mechanical degradation of the electrode material. On the negative zinc electrode, zinc deposition morphology on different current collector materials (nickel, brass, and steel) is investigated using Rota-Hull cylinders showing nickel to be the most suitable material. The pulse interrupt current method is thereby successfully applied for compact zinc deposition in a broad current density range without any electrolyte additive. Subsequent scale-up of the rechargeable zinc-air flow battery and unit cell operation is finally performed for proof-of-concept.
机译:由于使用廉价,无毒和丰富的材料和紧凑的系统设计,可以将可充电锌气流电池进行调查,以便快速响应大规模电能存储。用于几种参数的操作范围,例如流速(2-8cm S(-1)),电解质浓度(6或8 m KOH),充电/放电电流密度(高达100 mA cm(-2)平均值)研究和主动或无源空气供应以及它们对电极的性能和稳定性的影响,并进行比较。通过半电池测量测试双催化的双功能空气电极,以50mA cm(-2)在50 mA cm(-2)中实现最小200个充电/放电循环,其工作时间最长为800小时。在该电流密度下,所有测试空气电极的充电/放电效率范围为50%。借助扫描电子显微镜的寿命结束表征揭示了电极材料的机械劣化。在负锌电极上,使用旋转船体圆柱体研究了不同集电器材料(镍,黄铜和钢)上的锌沉积形态,显示镍作为最合适的材料。由此成功地施加脉冲中断电流法在没有任何电解质添加剂的宽电流密度范围内成功施加紧凑型锌沉积。最终对概念验证进行可充电锌 - 空气流电池和单元电池操作的随后进行缩放。

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