曹听月, 沈小军, 徐昭然. 碱性电解水制氢纯度影响因素敏感性研究[J]. 高电压技术, 2025, 51(5): 2186-2199. DOI: 10.13336/j.1003-6520.hve.20240998
引用本文: 曹听月, 沈小军, 徐昭然. 碱性电解水制氢纯度影响因素敏感性研究[J]. 高电压技术, 2025, 51(5): 2186-2199. DOI: 10.13336/j.1003-6520.hve.20240998
CAO Tingyue, SHEN Xiaojun, XU Zhaoran. Sensitivity Study of Factors Affecting Hydrogen Purity in Alkaline Water Electrolysis[J]. High Voltage Engineering, 2025, 51(5): 2186-2199. DOI: 10.13336/j.1003-6520.hve.20240998
Citation: CAO Tingyue, SHEN Xiaojun, XU Zhaoran. Sensitivity Study of Factors Affecting Hydrogen Purity in Alkaline Water Electrolysis[J]. High Voltage Engineering, 2025, 51(5): 2186-2199. DOI: 10.13336/j.1003-6520.hve.20240998

碱性电解水制氢纯度影响因素敏感性研究

Sensitivity Study of Factors Affecting Hydrogen Purity in Alkaline Water Electrolysis

  • 摘要: 随着氢能战略定位的明确,可再生能源碱性电解水制氢的重要性日益凸显。受限于复杂工艺机理及风、光等输入电源的波动特性,碱性电解水制氢系统易发生氢、氧互窜,影响制氢纯度,甚至存在安全风险。为此,以气体杂质交叉机制为基础,综合考虑碱性电解水系统运行条件和物理结构双重因素,搭建了氧气侧冷却器出口处的氧中氢体积分数仿真模型;通过稳、动态不同工况下的因素影响程度进行量化排序,筛选出影响制氢纯度的强关键参数。研究结果可为碱性电解水制氢系统运行边界的确立提供依据,指导后续运行策略的制定和优化,具有工程应用价值。

     

    Abstract: With the clarification of strategic positioning of hydrogen energy, the value of alkaline water electrolysis for hydrogen production driven by renewable energy sources has become increasingly prominent. Due to the complex process mechanisms and the fluctuating characteristics of input power sources such as wind and solar power, the alkaline water electrolysis system is prone to hydrogen and oxygen crossover, which affects the purity of hydrogen production and even poses safety risks. Therefore, based on the mechanism of gas impurity crossover, this paper considers both operational conditions and physical structures of alkaline water electrolysis systems, and constructs a simulation model for the volume fraction of hydrogen in oxygen at the outlet of the cooler on the oxygen side. Through local and global sensitivity analyses, the influence effects of factors under different steady and dynamic operating conditions are quantified, and, the strong key parameters affecting the hydrogen purity are sorted out. The research findings can provide a basis establishment of the operating boundary of the alkaline water electrolysis system, and guide the development and optimization of subsequent operational strategies, possessing engineering application value.

     

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