Scale up of fully eco-friendly zinc-O2(ads) batteries from the lab scale to the prototype level
Marcell Árpád Kordován1, Tibor Nagy1, Gergő Róth1,2
1Department of Applied Chemistry, Faculty of Science and Technology, University of Debrecen Egyetem tér 1 H-4032 Debrecen Hungary keki.sandor@science.unideb.hu +36 52 518662.
Abstract:
Due to their benefits of high specific energy, safety, environmental friendliness and low cost, zinc-air batteries (ZABs) are considered as promising candidates for the next generation of energy storage devices. In this article, we report on the scale-up of our previously developed laboratory cell operating with charcoal cathode and swollen cotton membrane immersed in alkaline electrolyte solution to obtain a multi-cell prototype battery with increased energy density, open-circuit voltage and working discharge current. Furthermore, we designed our battery using adsorbed oxygen (O2(ads)), allowing the application of a closed system. As a proof of concept, a six-cell battery prototype is developed and built with a capacity of 150 mA h and 148 mW h per cell and an output voltage of 7.5 V. A single cell is tested using galvanostatic, galvanodynamic and electrochemical impedance spectroscopy (EIS) analyses. The invaluable use of distribution of relaxation times (DRT) for rechargeable zinc-air or zinc-O2(ads) cells is also presented and demonstrated. The EIS Nyquist-plots are evaluated and discussed by means of equivalent circuit models (ECMs) and the DRT method. Further scale-up could aid the development of our zinc-O2(ads) battery as a low-cost, safe and sustainable technology for deployed energy storage systems (ESS).
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