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Thermodynamic and exergy evaluation of a novel integrated hydrogen liquefaction structure using liquid air cold energy recovery, solid oxide fuel cell and photovoltaic panels

Masoud Taghavi, Hesamoddin Salarian, Bahram Ghorbani

2021Journal of Cleaner Production68 citationsDOI

Topics & Concepts

LiquefactionExergyWaste managementSolid oxide fuel cellExergy efficiencyRefrigerationAir separationEnvironmental scienceHydrogen fuelHydrogen productionCompressed hydrogenThermochemical cycleHydrogenMaterials scienceNuclear engineeringHydrogen storageChemistryEngineeringMechanical engineeringAnodePhysical chemistryOxygenElectrodeOrganic chemistryHybrid Renewable Energy SystemsAdvancements in Solid Oxide Fuel CellsAdvanced battery technologies research
Thermodynamic and exergy evaluation of a novel integrated hydrogen liquefaction structure using liquid air cold energy recovery, solid oxide fuel cell and photovoltaic panels | Litcius