Potential of molten lead oxide for liquid chemical looping gasification (LCLG): A thermochemical analysis
Version 2 2024-06-13, 13:49Version 2 2024-06-13, 13:49
Version 1 2020-09-23, 14:01Version 1 2020-09-23, 14:01
journal contribution
posted on 2024-06-13, 13:49 authored by MM Sarafraz, M Jafarian, M Arjomandi, GJ NathanPotential of molten lead oxide for liquid chemical looping gasification (LCLG): A thermochemical analysis
History
Journal
International Journal of Hydrogen EnergyVolume
43Pagination
4195-4210Location
Amsterdam, The NetherlandsISSN
0360-3199eISSN
1879-3487Language
engPublication classification
C1.1 Refereed article in a scholarly journalIssue
9Publisher
ElsevierUsage metrics
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Science & TechnologyPhysical SciencesTechnologyChemistry, PhysicalElectrochemistryEnergy & FuelsChemistryLiquid chemical looping gasificationMolten leadNitrogen dilutionPower blockSyngas productionTHERMAL PERFORMANCEHYDROGEN-PRODUCTIONOXYGEN CARRIERSBLAST-FURNACECO2 CAPTUREMETAL-OXIDEIRON-OXIDEPB-OCOMBUSTIONOPTIMIZATION4004 Chemical engineering
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