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1. 中海石油气电集团有限责任公司
2. 浙江大学制冷与低温研究所
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花亦怀, 李秋英, 程昊, 等. 正仲氢催化转化机理研究综述[J/OL]. 制冷学报, 2025.
Review on Catalytic Conversion Mechanism of Ortho-Para Hydrogen. [J/OL]. Journal of refrigeration, 2025.
氢液化流程中正仲氢转化过程对于液氢的长时间储存与远距离运输具有极其重要的意义
本文概述了正仲氢的性质差异
综述了正仲氢催化转化过程的物理机制和反应动力学模型的研究进展
对常用催化剂进行了总结和性能对比。最后综述了正仲氢转化的三种主流方案
并比较了各种方案的优缺点。物理机制和反应动力学分别从微观和宏观角度对正仲氢转化进行了探究
但由于催化剂表面的实验数据相对匮乏
学者们对此尚未形成统一的论述和解释
迫切需要进行定量验证。在正仲氢转化的催化剂选择上
虽然镍基催化剂的催化效率更高
但综合考虑催化剂的制备、活化、失活以及氢液化器的工作特点
铁的氢氧化物以及氧化物催化剂是主流的催化剂选择方案。另外
三种主流的正仲氢转化方案中采用连续转化过程的氢液化流程比能耗最低
是未来氢液化流程的发展方向
国内对此研究尚处于起步阶段
存在较大的发展空间。本文可为正仲氢催化转化试验台的设计和搭建等提供理论指导。
The ortho-para hydrogen conversion in the hydrogen liquefaction process is of great significance for the long-term storage and long-distance transportation of liquid hydrogen. This paper outlines the differences in properties between orthohydrogen and parahydrogen
reviews the research progress on the physical mechanisms and reaction kinetic models of the ortho-para hydrogen catalytic conversion process
and summarizes the performance of common catalysts. Lastly
three mainstream schemes for ortho-para hydrogen conversion are compared. The researches on internal physical mechanisms and reaction kinetic models explore the conversion process from microscopic and macroscopic perspectives
respectively. Due to the lack of experimental data
scholars have not yet formed a unified explanation on the surface characteristics of catalysts
which needs to be quantitatively validated. Furthermore
although nickel-based catalysts have higher catalytic efficiency
iron hydroxides and oxide catalysts would be the mainstream catalyst choices for ortho-para hydrogen conversion
taking into account the preparation
activation
deactivation of catalysts and the characteristics of the liquefier. Among the three mainstream ortho-para hydrogen conversion schemes
the hydrogen liquefaction process with continuous conversion has the lowest energy consumption and is the future direction. The relevant domestic researches are still in beginning stages and have great potential for development. This paper can provide theoretical guidance for the design and construction of ortho-para hydrogen catalytic conversion test benches.
正仲氢催化转化机理研究反应动力学催化剂
ortho-para hydrogencatalytic conversionmechanism studyreaction kineticscatalyst
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