Application, comparative study, and multi-objective optimization of a hydrogen liquefaction system utilizing either ORC or an absorption power cycle

Author:

Cao Yan,Dhahad Hayder A.ORCID,Togun Hussein,Aly Ayman A.,Felemban Bassem F.,El-Shafay A.S.,Rashidi Shima,Farhang Babak

Publisher

Elsevier BV

Subject

Energy Engineering and Power Technology,Condensed Matter Physics,Fuel Technology,Renewable Energy, Sustainability and the Environment

Reference69 articles.

1. Analysis and optimization proposal of a typical building in Tehran using TRNSYS software;Gholamian,2018

2. Self-supported nickel-doped molybdenum carbide nanoflower clusters on carbon fiber paper for an efficient hydrogen evolution reaction;Hu;Nanoscale,2021

3. Assessing the chemical composition of heavy components in bio-oils from the pyrolysis of cellulose, hemicellulose and lignin at slow and fast heating rates;Xiong;Fuel Process Technol,2020

4. Evaluating the vulnerability of integrated electricity-heat-gas systems based on the high-dimensional random matrix theory;Zhu;CSEE J Power Energy Syst,2020

5. Assessment of the sustainability of Gymnocypris eckloni habitat under river damming in the source region of the Yellow River;Quan;Sci Total Environ,2021

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