Energy, exergy and cost analyses of nuclear-based hydrogen production via thermochemical water decomposition using a copper-chlorine (Cu-CI) cycle
In this thesis the Copper-Chlorine (Cu-CI) thermochemical cycle and its components as well as operational and environmental conditions are defined, and a comprehensive thermodynamic analysis of a Cu-CI thermochemical cycle, including the relevant chemical reactions, is performed. Also the performan...
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ndltd-LACETR-oai-collectionscanada.gc.ca-OOSHDU.10155-82013-04-17T04:05:44ZEnergy, exergy and cost analyses of nuclear-based hydrogen production via thermochemical water decomposition using a copper-chlorine (Cu-CI) cycleOrhan, Mehmet FatihHydrogenThermochemical water decompositionEnergyExergyNuclearCost analysisIn this thesis the Copper-Chlorine (Cu-CI) thermochemical cycle and its components as well as operational and environmental conditions are defined, and a comprehensive thermodynamic analysis of a Cu-CI thermochemical cycle, including the relevant chemical reactions, is performed. Also the performance of each component/process is evaluated through energy and exergy efficiencies. Various parametric studies on energetic and exergetic aspects with variable reaction and reference-environment temperatures are carried out. A detailed analysis of the general methodology of cost estimation for the proposed process, including all cost items with their percentages, the factors that affect accuracy, and a scaling method, is also presented.UOITDincer, IbrahimRosen, Marc A.2008-08-08T13:52:04Z2008-08-08T13:52:04Z2008-04-01Thesishttp://hdl.handle.net/10155/8en |
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en |
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Hydrogen Thermochemical water decomposition Energy Exergy Nuclear Cost analysis |
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Hydrogen Thermochemical water decomposition Energy Exergy Nuclear Cost analysis Orhan, Mehmet Fatih Energy, exergy and cost analyses of nuclear-based hydrogen production via thermochemical water decomposition using a copper-chlorine (Cu-CI) cycle |
description |
In this thesis the Copper-Chlorine (Cu-CI) thermochemical cycle and its components as well as operational and environmental conditions are defined, and a comprehensive thermodynamic analysis of a Cu-CI thermochemical cycle, including the relevant chemical reactions, is performed. Also the performance of each component/process is evaluated through energy and exergy efficiencies. Various parametric studies on energetic and exergetic aspects with variable reaction and reference-environment temperatures are carried out. A detailed analysis of the general methodology of cost estimation for the proposed process, including all cost items with their percentages, the factors that affect accuracy, and a scaling method, is also presented. === UOIT |
author2 |
Dincer, Ibrahim |
author_facet |
Dincer, Ibrahim Orhan, Mehmet Fatih |
author |
Orhan, Mehmet Fatih |
author_sort |
Orhan, Mehmet Fatih |
title |
Energy, exergy and cost analyses of nuclear-based hydrogen production via thermochemical water decomposition using a copper-chlorine (Cu-CI) cycle |
title_short |
Energy, exergy and cost analyses of nuclear-based hydrogen production via thermochemical water decomposition using a copper-chlorine (Cu-CI) cycle |
title_full |
Energy, exergy and cost analyses of nuclear-based hydrogen production via thermochemical water decomposition using a copper-chlorine (Cu-CI) cycle |
title_fullStr |
Energy, exergy and cost analyses of nuclear-based hydrogen production via thermochemical water decomposition using a copper-chlorine (Cu-CI) cycle |
title_full_unstemmed |
Energy, exergy and cost analyses of nuclear-based hydrogen production via thermochemical water decomposition using a copper-chlorine (Cu-CI) cycle |
title_sort |
energy, exergy and cost analyses of nuclear-based hydrogen production via thermochemical water decomposition using a copper-chlorine (cu-ci) cycle |
publishDate |
2008 |
url |
http://hdl.handle.net/10155/8 |
work_keys_str_mv |
AT orhanmehmetfatih energyexergyandcostanalysesofnuclearbasedhydrogenproductionviathermochemicalwaterdecompositionusingacopperchlorinecucicycle |
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1716580208888250368 |