Zhongtian Hechuang Green Hydrogen Project Enters Full Implementation Phase
2026-3-12
Recently, the overall kick-off meeting for the Green Carbon Reduction and Upgrading Transformation Project of Zhongtian Hechuang Energy Co., Ltd. was successfully held at the Control Technology Park. This marks the official entry into the full implementation phase of this core pilot project for hydrogen energy in the national energy sector, as well as China¡äs first demonstration project for the in-depth coupling of green hydrogen and coal chemical industry.
The core of the Zhongtian Hechuang Green Carbon Reduction and Upgrading Transformation Project lies in the introduction of green hydrogen. It will deeply integrate with the Zhongtian Hechuang Wushen Banner Wind-Solar Hydrogen Production Project, aiming to build a full-chain closed-loop model for high-end chemical product output based on "wind-solar power generation-green hydrogen production-coal chemical coupling". At the same time, the project will promote the whole-process commissioning of the core technology of green hydrogen hydrogenation coupling, construct new supporting core devices, carry out the adaptation and intelligent transformation of green hydrogen hydrogenation coupling for existing coal chemical production devices, and realize the in-depth integration and efficient synergy of green hydrogen and coal chemical production. It is expected that after completion, it will annually replace 29,000 tons of gray hydrogen with green hydrogen, achieving an annual carbon dioxide emission reduction of 1.2 million tons.
In 2025, China¡äs hydrogen production capacity reached 37 million tons (among which green hydrogen production capacity exceeded 250,000 tons/year), ranking first in the world in terms of stable scale; it is planned to build 860 wind-solar hydrogen production projects with a hydrogen production scale of 10 million tons/year. However, wind-solar hydrogen production has inherent volatility. How to integrate this "unstable" hydrogen into the coal chemical production process characterized by "stable habits" in a smooth, safe, efficient and sustainable manner is a common challenge facing the industry.