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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Main Author: Orhan, Mehmet Fatih
Other Authors: Dincer, Ibrahim
Language:en
Published: 2008
Subjects:
Online Access:http://hdl.handle.net/10155/8
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spelling 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
collection NDLTD
language en
sources NDLTD
topic Hydrogen
Thermochemical water decomposition
Energy
Exergy
Nuclear
Cost analysis
spellingShingle 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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