Recently, the construction project of 20000 tons of electrolytic water hydrogen production in Pingchuan District, Baiyin City, signed by Qingqiji, has made significant progress. The owner unit, based on the professionalism of the project, equipment adaptation requirements, and the technical advantages of Qingqiji in the industry, determined through comprehensive selection, on-site inspection, and actual performance verification that Qingqiji electrolytic cells have higher safety and optimal energy efficiency, and can provide better economy, sustainability, and stability for hydrogen metallurgy projects. Qingqiji was chosen as the only cooperative supplier. At present, the project has successfully completed the owner's inspection and scheme review, and officially entered the production and supply stage. Qingqiji will make every effort to promote equipment production, delivery, and landing services, steadily ensuring the orderly progress of project construction.

The project has been officially recognized
The construction project of 20000 tons per year electrolytic water hydrogen production in Pingchuan District, Baiyin City is a green electricity to green hydrogen project supported by pure hydrogen metallurgical high-efficiency reduction technology applied by Gansu Ruikang Zhongyuan Technology Development Co., Ltd. This project was recommended by the Department of Industry and Information Technology of Gansu Province and has been successfully selected for the "Clean Hydrogen" Future Industrial Innovation Task List for 2025 "by the Ministry of Industry and Information Technology. After completion, the project will become the world's first green electricity green hydrogen green iron industrialization demonstration line.
Provide full chain equipment
Qingqiji provides a complete set of flexible hydrogen production system for the project, including 20 sets of 1000 standard cubic meter/hour alkaline electrolysis cells, 2 sets of 2000 standard cubic meter/hour alkaline electrolysis cells, 22 IGBT power supplies, and 6 sets of 4000 standard cubic meter/hour hydrogen separation and purification equipment, achieving full chain coverage of the hydrogen production system. After the project is fully operational, the total hydrogen production capacity will reach 24000 cubic meters per hour, which can fully meet the continuous supply demand for hydrogen gas in pure hydrogen metallurgical processes.

In addition, since 2026, Qingqiji has received continuous good news and has successively obtained repurchase orders for the BHI project in South Korea, orders for the Huaneng Qingneng Institute electrolytic cell project, and additional orders for the Zhongtian Hechuang integrated wind solar hydrogen production project. As of May 2026, Qingqiji has signed a total of 162.55 MW of electrolytic cell orders, leading the industry in the alkaline electrolytic cell market and continuously promoting the engineering application of green hydrogen in industrial scenarios such as steel and chemical industry. Keywords: green hydrogen, hydrogen production project
At present, Qingqiji has independently developed and produced the entire chain of catalyst bipolar plate electrolytic cell system integration, with a self-sufficiency rate of over 68% in core materials, making it the only enterprise in the industry to achieve full chain coverage. Its electrolytic cell has passed on-site certification by the China Hydrogen Alliance, internationally renowned third-party organization Bureau Veritas, T Ü V S Ü D, and on-site acceptance by central enterprise owners. Its comprehensive performance indicators have reached the international top level, and its energy efficiency ranks first in the industry. From repeated purchases from overseas customers, to additional orders for large-scale coal chemical projects, and to the integrated supply of the largest hydrogen metallurgy demonstration project in China, Qingqiji has continuously gained deep trust and market validation from customers at home and abroad with its excellent technical strength and mass production delivery capabilities.Editor/Gong Ziwei
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