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Low‐cost Zinc‐Iron Flow Batteries for Long‐Term and Large‐Scale Energy Storage

Haili Huang, Ying Zhu, Fujun Chu, Shaochong Wang, Yuanhui Cheng

2023Chemistry - An Asian Journal10 citationsDOIOpen Access PDF

Abstract

Aqueous flow batteries are considered very suitable for large-scale energy storage due to their high safety, long cycle life, and independent design of power and capacity. Especially, zinc-iron flow batteries have significant advantages such as low price, non-toxicity, and stability compared with other aqueous flow batteries. Significant technological progress has been made in zinc-iron flow batteries in recent years. Numerous energy storage power stations have been built worldwide using zinc-iron flow battery technology. This review first introduces the developing history. Then, we summarize the critical problems and the recent development of zinc-iron flow batteries from electrode materials and structures, membranes manufacture, electrolyte modification, and stack and system application. Finally, we forecast the development direction of the zinc-iron flow battery technology for large-scale energy storage.

Topics & Concepts

Energy storageFlow batteryZincBattery (electricity)Flow (mathematics)Process engineeringScale (ratio)Environmental scienceEngineeringMaterials sciencePower (physics)MetallurgyGeometryPhysicsMathematicsQuantum mechanicsAdvanced battery technologies researchAdvanced Battery Technologies ResearchElectrocatalysts for Energy Conversion
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