Hydrogen storage by liquid organic hydrogen carriers: Catalyst, renewable carrier, and technology-A review

被引:95
作者
Chu, Chenyang [1 ]
Wu, Kai [1 ]
Luo, Bingbing [1 ]
Cao, Qi [1 ]
Zhang, Huiyan [1 ]
机构
[1] Southeast Univ, Sch Energy & Environm, Key Lab Energy Thermal Convers & Control, Minist Educ, Nanjing 210096, Peoples R China
关键词
Liquid organic hydrogen carriers; Biomass; Hydrogen; Catalytic pyrolysis; Hydrogen storage and release; PERHYDRO-N-ETHYLCARBAZOLE; MONOCYCLIC AROMATIC-HYDROCARBONS; REDUCED GRAPHENE OXIDE; FAST PYROLYSIS; MEMBRANE REACTOR; HIGH-CAPACITY; CHEMICAL HYDRIDES; MODIFIED HZSM-5; ZSM-5; ZEOLITES; H-2; RELEASE;
D O I
10.1016/j.crcon.2023.03.007
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Hydrogen has attracted widespread attention as a carbon-neutral energy source, but developing efficient and safe hydrogen storage technologies remains a huge challenge. Recently, liquid organic hydrogen carriers (LOHCs) technology has shown great potential for efficient and stable hydrogen storage and transport. This technology allows for safe and economical large-scale transoceanic transportation and long-cycle hydrogen storage. In particular, traditional organic hydrogen storage liquids are derived from nonrenewable fossil fuels through costly refining procedures, resulting in unavoidable environmental contamination. Biomass holds great promise for the preparation of LOHCs due to its unique carbon-balance properties and feasibility to manufacture aromatic and nitrogen-doped compounds. According to recent studies, almost 100% conversion and 92% yield of benzene could be obtained through advanced biomass conversion technologies, showing great potential in preparing biomass-based LOHCs. Overall, the present LOHCs systems and their unique applications are introduced in this review, and the technical paths are summarized. Furthermore, this paper provides an outlook on the future development of LOHCs technology, focusing on biomass-derived aromatic and N-doped compounds and their applications in hydrogen storage.
引用
收藏
页码:334 / 351
页数:18
相关论文
共 173 条
  • [1] Liquid organic hydrogen carriers for transportation and storing of renewable energy - Review and discussion
    Aaldto-Saksa, Paivi T.
    Cook, Chris
    Kiviaho, Jari
    Repo, Timo
    [J]. JOURNAL OF POWER SOURCES, 2018, 396 : 803 - 823
  • [2] On-board and Off-board performance of hydrogen storage options for light-duty vehicles
    Ahluwalia, R. K.
    Hua, T. Q.
    Peng, J. K.
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2012, 37 (03) : 2891 - 2910
  • [3] Kinetics on NiZn Bimetallic Catalysts for Hydrogen Evolution via Selective Dehydrogenation of Methylcyclohexane to Toluene
    Al-ShaikhAli, Anaam H.
    Jedid, Abdesslem
    Anjum, Dalaver H.
    Cavallo, Luigi
    Takanabe, Kazuhiro
    [J]. ACS CATALYSIS, 2017, 7 (03): : 1592 - 1600
  • [4] Hydrogen storage in liquid organic hydride: Selectivity of MCH dehydrogenation over monometallic and bimetallic Pt catalysts
    Alhumaidan, Faisal
    Tsakiris, Dimos
    Cresswell, David
    Garforth, Arthur
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2013, 38 (32) : 14010 - 14026
  • [5] Influence of the nanoparticle size on hydrogen release and side product formation in liquid organic hydrogen carrier systems with supported platinum catalysts
    Auer, Franziska
    Hupfer, Alexander
    Boesmann, Andreas
    Szesni, Normen
    Wasserscheidpeter, Peter
    [J]. CATALYSIS SCIENCE & TECHNOLOGY, 2020, 10 (19) : 6669 - 6678
  • [6] Boosting the activity of hydrogen release from liquid organic hydrogen carrier systems by sulfur-additives to Pt on alumina catalysts
    Auer, Franziska
    Blaumeiser, Dominik
    Bauer, Tanja
    Boesmann, Andreas
    Szesni, Normen
    Libuda, Joerg
    Wasserscheid, Peter
    [J]. CATALYSIS SCIENCE & TECHNOLOGY, 2019, 9 (13) : 3537 - 3547
  • [7] Liquid Hydrogen: A Review on Liquefaction, Storage, Transportation, and Safety
    Aziz, Muhammad
    [J]. ENERGIES, 2021, 14 (18)
  • [8] Ammonia as Effective Hydrogen Storage: A Review on Production, Storage and Utilization
    Aziz, Muhammad
    Wijayanta, Agung Tri
    Nandiyanto, Asep Bayu Dani
    [J]. ENERGIES, 2020, 13 (12)
  • [9] Catalytic reactions of methylcyclohexane (MCH) on partially reduced MoO3
    Belatel, H
    Al-Kandari, H
    Al-Khorafi, F
    Katrib, A
    Garin, F
    [J]. APPLIED CATALYSIS A-GENERAL, 2004, 275 (1-2) : 141 - 147
  • [10] Chemical hydrides: A solution to high capacity hydrogen storage and supply
    Biniwale, Rajesh B.
    Rayalu, S.
    Devotta, S.
    Ichikawa, M.
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2008, 33 (01) : 360 - 365