一种储氢系统的控制方法、装置、存储介质及电子设备

By acquiring production data from the electro-hydrogen to ammonia synthesis system, and dynamically controlling the coordinated charging and discharging of gaseous, solid, and liquid hydrogen storage devices, the problem of supply and demand mismatch in the hydrogen storage system was solved, achieving efficient system operation and improved economic efficiency.

CN122411684APending Publication Date: 2026-07-17JILIN ELECTRIC POWER CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
JILIN ELECTRIC POWER CO LTD
Filing Date
2026-06-22
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In existing technologies, gaseous, solid, and organic liquid hydrogen storage devices differ in response speed, cycle life, and hydrogen storage and release efficiency, resulting in a supply-demand mismatch between water electrolysis hydrogen production systems and ammonia synthesis systems. This makes it difficult to maximize the absorption capacity of renewable energy and the overall economic efficiency of the system while ensuring the stable operation of the ammonia synthesis unit.

Method used

By acquiring production and operation data from the electro-hydrogen to ammonia synthesis system, the hydrogen production and usage status is determined, and based on this, the hydrogen storage system is controlled to perform coordinated hydrogen charging and discharging, including dynamic allocation strategies for gaseous, solid, and liquid hydrogen storage devices, thereby achieving efficient and timely response of the hydrogen storage system to changes in hydrogen quantity.

Benefits of technology

Under the premise of ensuring the safe and stable operation of the system, the full utilization of the hydrogen storage system's cycle life and the dynamic intelligent allocation of hydrogen storage capacity have been achieved, thereby improving the overall economic efficiency of the system's operation and its ability to absorb renewable energy.

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Abstract

本申请公开了一种储氢系统的控制方法、装置、存储介质及电子设备,涉及能源电力技术领域,首先获取电制氢合成氨系统的生产运行数据;再基于生产运行数据,确定电制氢合成氨系统的制氢用氢状态;然后依据制氢用氢状态,控制电制氢合成氨系统中储氢系统进行氢气的协同充放,其中,储氢系统包括气态储氢装置、固态储氢装置和 / 或液态储氢装置。与目前现有技术相比,本申请通过在满足系统安全稳定运行的前提下,基于系统的制氢用氢状态动态控制储氢系统分配与运行策略,能够高效、及时地响应用氢量变化,实现储氢系统循环寿命的充分利用以及储氢容量的动态智能分配,进而提升系统整体运行经济性。
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