Against the backdrop of global energy transition and the promotion of the "dual carbon" goal, green hydrogen, as an important carrier of clean energy, is entering a period of rapid development. Recently, Junrui Green Hydrogen (Alxa League) Energy Co., Ltd. has officially completed the filing of its annual production of 14400 tons of green hydrogen project, and is about to start construction in Alxa High tech Zone, Inner Mongolia, marking a crucial step towards the large-scale development of green hydrogen in China.
The total investment of this project is about 974 million yuan, and it is planned to start construction in April 2026 and be completed and put into operation in March 2028. Relying on the abundant renewable energy resources in the Alxa region, the project will adopt alkaline electrolysis water hydrogen production technology. The core facilities include 40 1000Nm ³/h alkaline electrolysis tanks and 14 2000m ³ hydrogen storage tanks, constructing a green hydrogen production system that integrates preparation, storage, and transportation, aiming to meet the growing demand for clean hydrogen energy in the industrial and energy fields.

The investor Junrui Green Hydrogen (Alxa League) Energy Co., Ltd. is a wholly-owned subsidiary of Junrui Green Hydrogen Energy (Group) Co., Ltd. According to public information, the company is a state-owned wholly-owned enterprise established in February 2023, 100% controlled by Hengrui Chuangcheng (Guangdong) Investment Holdings Co., Ltd., with legal representative Ding Jiping and registered capital of 100 million yuan. Since its establishment, Junrui Green Hydrogen Energy Group has always focused on the "1+N" development strategy: "1" refers to the investment, construction, and operation of large-scale green hydrogen production projects in new energy; The term 'N' extends to various fields such as wind and photovoltaic development, zero carbon hydrogen production parks, hydrogen energy storage and transportation applications, carbon asset management, and ecological governance.
The Alxa project is only one of the components of Junrui Green Hydrogen Energy's national layout. As of 2025, the company has invested in more than 40 companies abroad, with projects mostly concentrated in areas with abundant wind and solar resources. For example, in October this year, its subsidiary in Qingshuihe County, Inner Mongolia was approved for two major projects in a row: one is the wind and solar power generation project with an annual output of 20000 tons of green hydrogen, equipped with 78 1000Nm ³/h electrolytic cells, with a total investment of 1.569 billion yuan; The second is the annual production of 110000 tons of liquid ammonia project, with a total investment of 1.5 billion yuan, both planned to be completed between October 2025 and November 2026. In addition, in August 2025, Junrui and its partners reached an agreement with Siziwang Banner in Inner Mongolia to jointly invest in the construction of the "Green Electricity to Green Hydrogen Synthesis 500000 Tons of Green Ammonia" project, with an expected total investment of over 10 billion yuan, targeting overseas markets such as South Korea and Japan. Junrui has also signed multiple green hydrogen and green methanol projects with investment scales ranging from billions to tens of billions of yuan in places such as Fukang in Xinjiang and Wuwei in Gansu. Keywords: Hydrogen New Energy Network, Hydrogen Energy Network, Hydrogen Energy Latest News

With the successive landing of a number of large-scale green hydrogen projects such as Alxa, Junrui Green Hydrogen Energy Group's industrial map is rapidly expanding, reflecting the active role of state-owned enterprises in the emerging energy field. The advancement of these projects not only helps to improve China's green hydrogen production capacity and technological level, but also provides important support for regional energy structure optimization and international low-carbon cooperation. In the future, as the green hydrogen industry chain continues to improve, it will play an increasingly crucial role in the global energy transition. Editor/Xu Shengpeng
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