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A milestone breakthrough has been achieved in global hydrogen storage and transportation technologies. The world’s first demonstration project for high-efficiency magnesium-based solid hydrogen storage materials on a scale of 1,000 tons, with a total investment of 248 million yuan and led by Dalian Fude Jinyu New Energy Co., Ltd., has officially begun construction in the Yuheng Industrial Zone of Yulin City, Shaanxi Province. Representatives from the Dalian Institute of Chemical Physics of the Chinese Academy of Sciences, the Yulin CAS Clean Energy Innovation Institute, and Sinopec Guangzhou Engineering Co., Ltd. attended the groundbreaking ceremony together. The launch of this project marks a crucial step toward scale-up and industrialization in China’s efforts to overcome the key challenges related to hydrogen storage and transportation, as well as to establish an independent and self-sufficient solid-state hydrogen storage industry chain.
The demonstration project for kiloton-scale high-efficiency magnesium-based solid hydrogen storage materials that is set to begin operations this time is located at the Yuheng Comprehensive Pilot and Demonstration Base within the Yuheng Industrial Zone in Yulin City. The total investment in the project is 248 million yuan, with the core goal being to build a large-scale production facility capable of producing 2,000 tons of magnesium hydride (MgH?) per year, along with the necessary supporting facilities. The project is based on the cutting-edge patent technologies accumulated by the Dalian Institute of Chemical Physics, Chinese Academy of Sciences, in the field of magnesium-based solid hydrogen storage. It is advanced through close collaboration among Fude Jinyu, Yulin Zhongke Clean Energy Innovation Institute, and the Dalian Institute of Chemical Physics. Previously, Fude Jinyu had successfully built and put into stable operation a 100-ton-scale pilot production line for magnesium hydride in Yulin, producing qualified products with a purity of 90%-99%. This experience has provided a solid and reliable technical foundation for the scale-up, engineering design, construction, and operation of the current 1,000-ton-scale project.
The construction of a thousand-ton-scale production line is by no means merely an expansion of production capacity; it carries profound strategic significance in driving the hydrogen energy industry from a pilot stage to large-scale commercial application. Overcoming storage and transportation challenges to lay the foundation for applications: The low efficiency, high costs, and strict safety requirements associated with hydrogen storage and transportation represent global challenges that hinder the large-scale development of hydrogen energy. Magnesium-based solid hydrogen storage materials enable safe and high-density hydrogen storage under normal temperature and pressure, significantly reducing the energy consumption and risks associated with hydrogen storage and long-distance transportation. They provide a key solution for the integration of hydrogen energy into various sectors such as transportation, industry, and power generation. Demonstrating scale effects to drive the industry forward, as the world’s first industrial production line capable of producing materials in the thousand-ton range, this project will serve as a \"model project\" for bringing magnesium-based solid hydrogen storage materials from the laboratory stage to large-scale commercial use. Its success will verify the economic viability, stability, and market competitiveness of this technology, providing a replicable and scalable \"Fude Jinyu Model\" for the hydrogen industry across the country and around the world. Strengthening resource autonomy to ensure the security of the industrial chain: China is a major producer of magnesium resources, accounting for over 90% of the world’s annual production. Developing solid-state hydrogen storage technology based on magnesium as the core material ensures that raw materials are under domestic control, eliminating the risk of being constrained by external factors. This is conducive to China’s establishment of a complete, secure, and advanced hydrogen energy industry chain that spans from resources and materials to equipment and applications.
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