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一种中性多硫化物/铁氰化物氧化还原液流电池。

A neutral polysulfide/ferricyanide redox flow battery.

作者信息

Long Yong, Xu Zhizhao, Wang Guixiang, Xu He, Yang Minghui, Ding Mei, Yuan Du, Yan Chuanwei, Sun Qijun, Liu Min, Jia Chuankun

机构信息

College of Materials Science and Engineering, Changsha University of Science & Technology, Changsha 410114, China.

National Engineering Laboratory of Highway Maintenance Technology, Changsha University of Science & Technology, Changsha 410114, China.

出版信息

iScience. 2021 Sep 23;24(10):103157. doi: 10.1016/j.isci.2021.103157. eCollection 2021 Oct 22.

Abstract

Energy storage systems are crucial in the deployment of renewable energies. As one of the most promising solutions, redox flow batteries (RFBs) are still hindered for practical applications by low energy density, high cost, and environmental concerns. To breakthrough the fundamental solubility limit that restricts boosting energy density of the cell, we here demonstrate a new RFB system employing polysulfide and high concentrated ferricyanide (up to 1.6 M) species as reactants. The RFB cell exhibits high cell performances with capacity retention of 96.9% after 1,500 cycles and low reactant cost of $32.47/kWh. Moreover, neutral aqueous electrolytes are environmentally benign and cost-effective. A cell stack is assembled and exhibits low capacity fade rate of 0.021% per cycle over 642 charging-discharging steps (spans 60 days). This neutral polysulfide/ferricyanide RFB technology with high safety, long-duration, low cost, and feasibility of scale-up is an innovative design for storing massive energy.

摘要

储能系统在可再生能源的部署中至关重要。作为最具前景的解决方案之一,氧化还原液流电池(RFBs)仍因能量密度低、成本高和环境问题而在实际应用中受到阻碍。为突破限制电池能量密度提升的基本溶解度极限,我们在此展示一种新型RFB系统,该系统采用多硫化物和高浓度铁氰化物(高达1.6 M)作为反应物。该RFB电池表现出高电池性能,在1500次循环后容量保持率为96.9%,反应物成本低至32.47美元/千瓦时。此外,中性水性电解质对环境无害且具有成本效益。组装了一个电池堆,在642次充放电步骤(跨度60天)中,其容量衰减率低至每循环0.021%。这种具有高安全性、长持续时间、低成本和可扩展性的中性多硫化物/铁氰化物RFB技术是一种用于存储大量能量的创新设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b9c/8497995/e8dca90dc929/fx1.jpg

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