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Haitai New Energy: Safety Demonstration Meeting for the Kangbao–Caofeidian Hydrogen Long-Distance Pipeline Project Successfully Held

iconOct 16, 2025 13:27

Recently, the safety demonstration meeting for the Kangbao–Caofeidian Hydrogen Long-Distance Pipeline Project was successfully held, marking a critical step forward for this important hydrogen energy infrastructure connecting the Zhangjiakou Renewable Energy Demonstration Zone with Caofeidian Port. Led by Tangshan Haitai New Energy Technology Co., Ltd., the project invited authoritative experts such as Cheng Yufeng, Fellow of the Canadian Academy of Engineering, and Zhang Wenwei, National Master of Engineering Survey and Design, to participate in the review, laying a solid foundation for the construction of the hydrogen energy supply chain in the Beijing-Tianjin-Hebei region.

Project Core Indicators:

  • Technical Parameters: The expert panel focused on reviewing core parameters such as pipeline design pressure, pipe material selection, valve chamber layout, shutdown systems, and control methods, confirming that the technical route is mature and reliable. The project will adopt an intelligent management model of "centralized monitoring, integrated inspection, centralized maintenance, and unified emergency command" to ensure pipeline operation safety and efficiency.
  • Safety Standards: After thorough demonstration, the review experts unanimously agreed that the project's safety prevention and control system is sound and meets implementation conditions, clearing technical obstacles for subsequent construction work.

Technology Integration and Highlights:
The core highlight of the project lies inthe Engineering Application of Long-Distance Hydrogen Transmission Technology. Through rigorous demonstration of key technologies such as pipeline design pressure and pipe material selection, the economy and safety of high-pressure gaseous hydrogen transmission are ensured. The establishment of an intelligent operation and maintenance model enables real-time monitoring and efficient scheduling of pipeline operating status, providing a technical template for the future construction of cross-regional hydrogen transmission networks. This pipeline will become a vital artery connecting green hydrogen production sites with hydrogen energy consumer markets.

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