Strategies to recover and minimize boil-off losses during liquid hydrogen storage

R Morales-Ospino, A Celzard, V Fierro - Renewable and Sustainable …, 2023 - Elsevier
Liquid hydrogen (LH 2) offers the highest storage density compared to other forms of
storage, without requiring a chemical reaction. However, it requires the hydrogen be cooled …

Hydrogen storage in North America: Status, prospects, and challenges

B Ghorbani, S Zendehboudi, NMC Saady… - Journal of …, 2023 - Elsevier
Abstract Hydrogen (H 2) storage, transport, and end-user provision are major challenges on
pathways to worldwide large-scale H 2 use. This review examines direct versus indirect and …

Strategies to improve the performance of hydrogen storage systems by liquefaction methods: a comprehensive review

B Ghorbani, S Zendehboudi, NMC Saady, X Duan… - ACS …, 2023 - ACS Publications
The main challenges of liquid hydrogen (H2) storage as one of the most promising
techniques for large-scale transport and long-term storage include its high specific energy …

Design and analysis of an efficient hydrogen liquefaction process based on helium reverse Brayton cycle integrating with steam methane reforming and liquefied …

Y Bi, Y Ju - Energy, 2022 - Elsevier
In order to solve the high energy consumption of the hydrogen liquefaction process, the
conceptual design of an integrated hydrogen liquefaction system is proposed and performed …

Comparative study on thermodynamic performance of hydrogen liquefaction processes with various ortho-para hydrogen conversion methods

J Teng, K Wang, S Zhu, S Bao, X Zhi, X Zhang, L Qiu - Energy, 2023 - Elsevier
Catalytic conversion of ortho-para hydrogen is essential for hydrogen liquefaction. Among
the three ortho-para hydrogen conversion methods, ie, isothermal, adiabatic and continuous …

A novel hydrogen liquefaction process based on LNG cold energy and mixed refrigerant cycle

S Faramarzi, SMM Nainiyan, M Mafi… - International Journal of …, 2021 - Elsevier
A novel hydrogen liquefaction cycle with a capacity of 369 tons per day has been proposed.
Given the fact that the process integration and appropriate design can reduce the power …

[HTML][HTML] Green hydrogen production and liquefaction using offshore wind power, liquid air, and LNG cold energy

X Chen, J Yue, L Fu, M Zhang, M Tang, J Feng… - Journal of Cleaner …, 2023 - Elsevier
Coastal regions have abundant off-shore wind energy resources, and surrounding areas
have large-scale liquefied natural gas (LNG) receiving stations. From the engineering …

Multi-objective optimization of an innovative integrated system for production and storage of hydrogen with net-zero carbon emissions

B Ghorbani, S Zendehboudi, ZA Afrouzi - Energy Conversion and …, 2023 - Elsevier
Global energy consumption has been exponentially increasing, leading to the depletion of
conventional energy sources and a considerable increase in greenhouse gas emissions …

Exergy and energy analysis of a hybrid natural Gas/Hydrogen liquefaction cycle combined with methanol production plant

Y Amirhaeri, H Hadavi, A Kasaeian - Energy Conversion and Management, 2024 - Elsevier
This paper presents an innovative renewable multi-generation system designed to
simultaneously produce various fuels, including biomass-based methanol, liquid hydrogen …

Energy, exergy, and economic analysis of an innovative hydrogen liquefaction cycle integrated into an absorption refrigeration system and geothermal energy

S Faramarzi, S Gharanli, MR Mohammadi… - Energy, 2023 - Elsevier
Liquid hydrogen is a solution to store and transport electricity which is produced by
renewable energy sources like geothermal energy. In this paper, an organic Rankine cycle …