Thermodynamic analysis of hydrogen storage: Biphenyl as affordable liquid organic hydrogen carrier (LOHC)

被引:23
|
作者
Konnova, Maria E. [1 ]
Vostrikov, Sergey V. [1 ]
Pimerzin, Aleksey A. [1 ]
Verevkin, Sergey P. [1 ,2 ]
机构
[1] Samara State Tech Univ, Chem Technol Dept, Samara 443100, Russia
[2] Univ Rostock, Dept Phys Chem, D-18059 Rostock, Germany
来源
JOURNAL OF CHEMICAL THERMODYNAMICS | 2021年 / 159卷
关键词
Chemical equilibrium; Vapour pressure; Enthalpy of vaporization; Enthalpy of formation; Structure-property relationships; Quantum-chemical calculations; VAPOR-PRESSURES; HEAT-CAPACITIES; ENTHALPIES; VAPORIZATION; CYCLOHEXYLBENZENE; THERMOCHEMISTRY; CYCLOHEXYLCYCLOHEXANE; BICYCLOHEXYL; TEMPERATURES; TRANSITIONS;
D O I
10.1016/j.jct.2021.106455
中图分类号
O414.1 [热力学];
学科分类号
摘要
One of the promising directions for accumulating hydrogen is its binding into a liquid organic hydrogen carrier (LOHC). In this concept, a LOHC is loaded with hydrogen (hydrogenation) during production and then discharged again (dehydrogenation) when the hydrogen is needed. Biphenyl is an interesting option as potential LOHC due to its reasonable storage capacity. This paper deals with the experimental chemical equilibrium study and a detailed analysis of the biphenyl hydrogenation reactions. We evaluated the consistent set of vapour pressures and standard molar thermodynamic properties of biphenyl derivatives with help of complementary vapour pressure measurements, and empirical and quantum-chemical calculations. The chemical equilibrium constants of hydrogenation-dehydrogenation and thermodynamic characteristics for the biphenyl system were determined. (c) 2021 Elsevier Ltd.
引用
收藏
页数:14
相关论文
共 50 条
  • [1] Hydrogen storage with a naphthenic liquid organic hydrogen carrier (LOHC) obtained from coal tar
    Sultanova, M. U.
    Samoilov, V. O.
    Borisov, R. S.
    Ramazanov, D. N.
    Maximov, A. L.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2024, 68 : 1251 - 1260
  • [2] Hydrogen storage and release from a new promising Liquid Organic Hydrogen Storage Carrier (LOHC): 2-methylindole
    Li, Linlin
    Yang, Ming
    Dong, Yuan
    Mei, Pan
    Cheng, Hansong
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2016, 41 (36) : 16129 - 16134
  • [3] Hydrogen Storage: Thermodynamic Analysis of Alkyl-Quinolines and Alkyl-Pyridines as Potential Liquid Organic Hydrogen Carriers (LOHC)
    Verevkin, Sergey P.
    Safronov, Sergey P.
    Samarov, Artemiy A.
    Vostrikov, Sergey V.
    APPLIED SCIENCES-BASEL, 2021, 11 (24):
  • [4] Literature review: state-of-the-art hydrogen storage technologies and Liquid Organic Hydrogen Carrier (LOHC) development
    D'Ambra, Florian
    Gebel, Gerard
    SCIENCE AND TECHNOLOGY FOR ENERGY TRANSITION, 2023, 78 : 1 - 60
  • [5] Application and Analysis of Liquid Organic Hydrogen Carrier (LOHC) Technology in Practical Projects
    Li, Hanqi
    Zhang, Xi
    Zhang, Chenjun
    Ding, Zhenfeng
    Jin, Xu
    ENERGIES, 2024, 17 (08)
  • [6] Optimization of Liquid Organic Hydrogen Carrier (LOHC) dehydrogenation system
    Rao, Nihal
    Lele, Ashish K.
    Patwardhan, Ashwin W.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2022, 47 (66) : 28530 - 28547
  • [7] Exploring the potential of liquid organic hydrogen carrier (LOHC) system for efficient hydrogen storage and Transport: A Techno-Economic and energy analysis perspective
    Tsogt, Nomuunaa
    Gbadago, Dela Quarme
    Hwang, Sungwon
    ENERGY CONVERSION AND MANAGEMENT, 2024, 299
  • [8] Recent Trends on the Dehydrogenation Catalysis of Liquid Organic Hydrogen Carrier (LOHC): A Review
    Sekine, Yasushi
    Higo, Takuma
    TOPICS IN CATALYSIS, 2021, 64 (7-8) : 470 - 480
  • [9] Liquid Organic Hydrogen Carrier (LOHC) - Assessment based on chemical and economic properties
    Niermann, Matthias
    Beckendorff, Alexander
    Kaltschmitt, Martin
    Bonhoff, Klaus
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2019, 44 (13) : 6631 - 6654
  • [10] Burner-heated dehydrogenation of a liquid organic hydrogen carrier (LOHC) system
    Bollmann, Jonas
    Mitlaender, Kerstin
    Beck, Dominik
    Schuehle, Patrick
    Bauer, Florian
    Zigan, Lars
    Wasserscheid, Peter
    Will, Stefan
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2023, 48 (77) : 30039 - 30056