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中国钒液流电池市场现状及展望OA

Current situation and outlook of China's vanadium redox flow battery market

中文摘要英文摘要

在"双碳"目标与全球能源转型背景下,我国风电、光伏装机量快速增长,但可再生能源的间歇性问题需长时储能技术解决,钒液流电池因能量存储灵活、寿命长、环保等优势成为重要选择之一.统计了2011-2024年国内钒电池项目并分析了相关政策.截至2024年末,中国所有钒电池项目共计189项,总装机功率达6 074 MW,总储能容量为23 956 MWh.已投运项目呈"小而多"特征,建设中及规划中项目的规模明显增大;钒电池项目呈现出逐年增长的态势,2024年出现爆发性增长;同时,我国钒电池项目区域发展存在差异化,西北平均项目规模最大、华东项目数量最多.通过市场发展机遇、市场发展阻碍对钒电池产业进行了展望,并分场景进行了未来市场预测.

Against the backdrop of China's"dual carbon"goals and global energy transition,the in-stalled capacity of wind power and photovoltaic power in China has grown rapidly.However,the in-termittency of renewable energy requires long-duration energy storage technologies to address,and vanadium redox flow batteries(VRFBs)have emerged as one of the key options due to their advan-tages such as flexible energy storage,long lifespan,and environmental friendliness.The domestic va-nadium battery projects from 2011 to 2024 were statistically analyzed and the relevant policies were examined.By the end of 2024,there were a total of 189 vanadium battery projects in China,with a to-tal installed power of 6 074 MW and a total energy storage capacity of 23 956 MWh.Operational projects were characterized by"small scale and large quantity,"while the scale of projects under con-struction and in the planning stage had significantly increased.Vanadium battery projects have shown a year-on-year growth trend,with explosive growth in 2024.Meanwhile,there are regional dif-ferences in the development of vanadium battery projects in China:the northwest region has the larg-est average project scale,and the east China region has the largest number of projects.The vanadium battery industry was prospected through market development opportunities and obstacles,and fu-ture market forecasts were made for different scenarios.

连小金;陈雪慧;罗小兵

钢铁研究总院有限公司,北京 100080钢铁研究总院有限公司,北京 100080钢铁研究总院有限公司,北京 100080

信息技术与安全科学

钒液流电池装机功率储能容量市场现状政策

vanadium redox flow battery(VRFB)installed power capacityenergy storage capacitycurrent market situationpolicy

《电源技术》 2026 (3)

424-434,11

10.3969/j.issn.1002-087X.2026.03.006

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