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Jun'an Energy Storage has conducted in-depth communication and cooperation with China Energy Constru
Release time:2026.07.16 Number of views:92

The delegation visited the Jun'an Energy Storage Integration Base for on-site inspection. Dr. Sun Xihua served as the main speaker throughout the event, elaborating in detail to the visiting experts on the electrochemical principles of zinc-bromine flow batteries, their modular product architecture and core performance advantages. He also demonstrated the integrated solution of the electrochemical stack unit, electrolyte circulation system and intelligent control module on-site. During the visit, Dr. Sun Xihua used the battery containers in actual operation as an example to vividly illustrate the practical application of zinc-bromine flow batteries. 

At the symposium, Dr. Sun Xihe, on behalf of Jun'an Energy Storage, presented a special report on the industrialization application of zinc bromide flow battery energy storage systems. He systematically summarized the technical characteristics of zinc bromide flow batteries, including high safety, long lifespan, low cost, and full recycling. He also compared and analyzed the differences in application of mainstream energy storage technologies, comprehensively introduced the phased achievements of Jun'an Energy Storage in key material independent research and development, innovative design of system structure, capacity layout of manufacturing bases, and the promotion of demonstration projects. At the same time, he candidly shared the common challenges in current industry cost reduction and efficiency improvement and the company's four core research directions. 

Wan Mingzhong, the chief expert of China Energy Construction Corporation Limited, stated in his speech that under the dual-carbon strategy, digital energy and new energy storage are the core areas of industrial innovation. The intelligent microgrid project jointly established by universities and enterprises is a high-quality platform for collaborative research, education and industry. It is expected that the project will be developed into a replicable and promotable industry demonstration model. 

Yu Xinqiang, the former assistant general manager of the State Grid Corporation and the honorary director of the Construction Committee of the Electrical Machinery Engineering Society, highly recognized the technical value and industrialization potential of zinc-bromine flow batteries. He pointed out that flow batteries have irreplaceable advantages in long-term energy storage and distributed scenarios, and hoped that all parties would deepen collaboration and jointly promote the upgrading of the energy storage industry towards large-scale and intelligent directions. 

This industry exchange is not only a concentrated display of Jun'an Energy Storage's technical strength and industrialization achievements, but also an important opportunity for the company to connect with leading industry resources, deepen industrial collaboration and promote educational and industrial integration. Through face-to-face discussions with leading enterprises in the energy sector, authoritative experts, and university research representatives, Jun'an Energy Storage has further clarified the direction of technological iteration and market expansion paths, and has also laid a solid foundation for subsequent in-depth cooperation in areas such as project collaboration, technical research and development, standard formulation, school-enterprise cooperation, and joint talent cultivation. 

In the future, Jun'an Energy Storage will continue to deeply engage in the research and development of zinc-bromine flow battery technology and its industrialization implementation. By leveraging the platform of university-enterprise cooperation, it will strengthen its technological innovation capabilities and work together with industry partners to jointly promote the high-quality development of new energy storage technologies, thereby injecting more technological impetus into the country's green and low-carbon energy transformation. 

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