Review on Hydrogen Production Reactor and System of Methanol Steam Reforming

被引:0
|
作者
Li, Jiming [1 ]
Yang, Yang [1 ]
Zhu, Xun [1 ]
Ye, Dingding [1 ]
Chen, Rong [1 ]
Liao, Qiang [1 ]
机构
[1] Key Laboratory of Low-grade Energy Utilization Technologies and Systems, Ministry of Education, Chongqing University, Shapingba District, Chongqing,400030, China
基金
中国国家自然科学基金;
关键词
Reforming reactions - Renewable energy - Waste paper;
D O I
10.13334/j.0258-8013.pcsee.240974
中图分类号
学科分类号
摘要
Hydrogen energy is one of the emerging energy sources in the 21st century due to its high calorific value and pollution-free characteristics. In recent years, with the proposal of liquid sunlight for the large-scale transformation and consumption of renewable energy, the energy supply system of methanol reforming for hydrogen production has received widespread attention. The process of methanol steam reforming for hydrogen production has become one of the most promising commercial hydrogen production methods due to its mild reaction temperature and high hydrogen concentration in the products. The methanol steam reforming reaction is an endothermic reaction, and different heating methods always lead to the diverse hydrogen production technologies. In this paper, the latest research progress of three main technologies is specifically reviewed in terms of heat source required by methanol steam reforming to produce hydrogen, including self-heating methanol steam reforming, photothermal conversion for methanol steam reforming, and waste heat utilization for methanol steam reforming to produce hydrogen. The reforming reactor structure, system design scheme, and hydrogen production performance in different technology routes are summarized and compared. Finally, the development trends and application potential of these three hydrogen production technologies are prospected. ©2024 Chin.Soc.for Elec.Eng.
引用
收藏
页码:7276 / 7292
相关论文
共 50 条
  • [21] Recent trends in the development of reactor systems for hydrogen production via methanol steam reforming
    Kang, Jeongmee
    Song, Youjung
    Kim, Taejun
    Kim, Sungtak
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2022, 47 (06) : 3587 - 3610
  • [22] Methanol steam reforming for hydrogen production in tube reactor heated by internal heat source
    管式反应器中内热源加热的甲醇水蒸气重整制氢特性
    Wang, Feng (wangfeng@cqu.edu.cn), 1600, Science Press (42): : 497 - 502
  • [23] Study on the impact of methanol steam reforming reactor channel structure on hydrogen production performance
    Liu, Shuai
    Du, Pengzhu
    Jia, Hekun
    Zhang, Qiushi
    Hao, Liutao
    RENEWABLE ENERGY, 2024, 228
  • [24] Hydrogen production by steam reforming of methanol in reactor with comby micro-channel network
    Bu, Yongdong
    Shen, Yinqi
    Du, Xiaoze
    Yang, Lijun
    Yang, Yongping
    Huagong Xuebao/CIESC Journal, 2013, 64 (06): : 2177 - 2185
  • [25] Research and Development of Palladium Alloy Membrane Reactor for Hydrogen Production by Steam Reforming of Methanol
    Han L.
    Yang Z.
    Zhang J.
    Li S.
    Xiyou Jinshu/Chinese Journal of Rare Metals, 2023, 47 (10): : 1412 - 1426
  • [26] Measure and Control System of an Onboard Micro-Channel Reactor for Hydrogen Production via Methanol Steam Reforming
    Jin, Biao
    Mei, Deqing
    Qian, Miao
    MECHANICAL, MATERIALS AND MANUFACTURING ENGINEERING, PTS 1-3, 2011, 66-68 : 1966 - 1971
  • [27] Hydrogen Production by Methanol Steam Reforming Using Microreactor
    Kawamura, Yoshihiro
    Ogura, Naotsugu
    Igarashi, Akira
    JOURNAL OF THE JAPAN PETROLEUM INSTITUTE, 2013, 56 (05) : 288 - 297
  • [28] Nanosized catalysts for the production of hydrogen by methanol steam reforming
    Valdes-Solis, T.
    Marban, G.
    Fuertes, A. B.
    CATALYSIS TODAY, 2006, 116 (03) : 354 - 360
  • [29] Simulation of methanol steam reforming process for the production of hydrogen
    Qureshi, Fazil
    Ahmad, Faizan
    Idrees, Mohammad
    Khan, Ali Asif
    Zaidi, Sadaf
    INDIAN CHEMICAL ENGINEER, 2021, 63 (01) : 99 - 116
  • [30] Thermochemical Module for Hydrogen Production by Steam Reforming of Methanol
    A. V. Makunin
    M. S. Granovskii
    E. B. Ivanov
    V. M. Fomin
    Chemical and Petroleum Engineering, 2003, 39 : 704 - 710