Department of Chemical Engineering, Faculty of Engineering, Chulalongkorn University, Bangkok, Thailand.
Metallurgy and Materials Science Research Institute, Chulalongkorn University, Bangkok, Thailand.
Sci Data. 2020 Jun 22;7(1):196. doi: 10.1038/s41597-020-0539-y.
Nowadays, due to global warming stemming from excessive use of fossil fuel, there is considerable interest in promoting renewable energy sources. However, because of the intermittent nature of these energy sources, efficient energy storage systems are needed. In this regard, zinc-air flow batteries (ZAFBs) are seen as having the capability to fulfill this function. In flow batteries, the electrolyte is stored in external tanks and circulated through the cell. This study provides the requisite experimental data for parameter estimation as well as model validation of ZAFBs. Each data set includes: current (mA), voltage (V), capacity (mAh), specific capacity (mAh/g), energy (Wh), specific energy (mWh/g) and discharge time (h:min:s.ms). Discharge data involved forty experiments with discharge current in the range of 100-200 mA, and electrolyte flow rates in the range of 0-140 ml/min. Such data are crucial for the modelling and theoretical/experimental analysis of ZAFBs.
如今,由于化石燃料的过度使用导致全球变暖,人们对推广可再生能源产生了浓厚的兴趣。然而,由于这些能源的间歇性,需要高效的能源储存系统。在这方面,锌空气流电池(ZAFB)被认为具有满足这一功能的能力。在流电池中,电解质储存在外部罐中,并通过电池循环。本研究为锌空气流电池的参数估计和模型验证提供了必要的实验数据。每个数据集包括:电流(mA)、电压(V)、容量(mAh)、比容量(mAh/g)、能量(Wh)、比能量(mWh/g)和放电时间(h:min:s.ms)。放电数据涉及四十次实验,放电电流范围为 100-200 mA,电解质流速范围为 0-140 ml/min。这些数据对于锌空气流电池的建模和理论/实验分析至关重要。