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锌基液流电池储能技术研究进展 被引量:1
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作者 许鹏程 袁治章 李先锋 《科学通报》 EI CAS CSCD 北大核心 2024年第21期3110-3121,共12页
可再生能源的大规模普及利用是实现碳达峰、碳中和目标的必由之路.储能技术是实现可再生能源大规模普及利用的重要支撑技术,其中电化学储能技术中的锌基液流电池因其具有安全性好,成本低、能量密度高等优势,在用户侧储能及分布式能源等... 可再生能源的大规模普及利用是实现碳达峰、碳中和目标的必由之路.储能技术是实现可再生能源大规模普及利用的重要支撑技术,其中电化学储能技术中的锌基液流电池因其具有安全性好,成本低、能量密度高等优势,在用户侧储能及分布式能源等领域具有很好的应用前景.锌基液流电池为负极发生金属锌沉积溶解反应的一类液流电池,根据正极氧化还原活性物质的不同,可以分为锌溴、碱性锌铁、中性锌铁、锌镍、锌碘等体系.本文从工程化应用的角度对锌基液流电池发展历程进行详细介绍,对近年来锌基液流电池的研究进展进行综述,总结了锌基液流电池的共性关键科学问题及改善策略,并对不同体系锌基液流电池中的个性问题进行了详细的分析,并指出了锌基液流电池未来发展方向. 展开更多
关键词 储能技术 锌基液流电池 发展历程 共性关键技术问题
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Evaluation of substrates for zinc negative electrode in acid PbO_2–Zn single flow batteries 被引量:3
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作者 Junli Pan YuehuaWen +3 位作者 Jie Cheng Junqing Pan Shouli Bai Yusheng Yang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2016年第4期529-534,共6页
An investigation was performed on the suitability of carbon materials, metallic lead and its alloys as substrates for zinc negative electrode in acid PbO2-Zn single flow batteries. The zinc deposition process was carr... An investigation was performed on the suitability of carbon materials, metallic lead and its alloys as substrates for zinc negative electrode in acid PbO2-Zn single flow batteries. The zinc deposition process was carried out in the mediumofl mol.L 1H2SO4 at room temperature. No maximum current appears on the potentiostatic current transients for the zinc deposition on lead and its alloys. With increasing overpotential, the progressive nucleation turns to be a 3D-instantaneous nucleation process for the resin-graphite composite. Hydrogen evolution on the graphite composite is effectively suppressed with the doping of a polymer resin. The hydrogen evolution reaction on the lead is relatively weak, while on the lead alloys, it becomes serious to a certain degree. Although the ex- change current density of zinc deposition and dissolution process on the graphite composite is relatively low, the zinc corrosion is weakened to a great extent. With the increase of deposition time, zinc deposits are more compact. The cyclings of zinc galvanostatic charge-discharge on the graphite composite provide more than 90% of coulombic and 80% of energy efficiencies, and exhibit superior cycling stability during the first 10 cycles. 展开更多
关键词 Acid single flow batteryZinc negative electrodeElectro-depositionSubstrate
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