Matches in SemOpenAlex for { <https://semopenalex.org/work/W1966825879> ?p ?o ?g. }
- W1966825879 endingPage "807" @default.
- W1966825879 startingPage "800" @default.
- W1966825879 abstract "Recently, interest in chemical-looping combustion (CLC) has grown because it is a technique that could allow cost-effective carbon capture and storage. Recently, the chemical-looping process was also proposed for the production of hydrogen. Chemical-looping hydrogen (CLH) generation, which is a derivation of CLC, is a water-splitting process that involves the reduction–oxidation of a metal oxide. CLC and CLH can reduce the irreversibility and the extent of heat rejection, thereby improving the cycle efficiency. The current paper presents a thermodynamic analysis of CLH to illustrate its potential for improved efficiency. A methodology for selecting oxygen carriers based on their thermodynamic properties is developed, and several candidate materials are reviewed. From a thermodynamic perspective, metals such as Ni and Fe are more suitable for CLH, whereas metals such as Ca and Cd can provide higher efficiency for CLC. Finally, comments on the practical implementations of CLH in power plants are presented." @default.
- W1966825879 created "2016-06-24" @default.
- W1966825879 creator A5000991486 @default.
- W1966825879 creator A5041230243 @default.
- W1966825879 date "2013-12-01" @default.
- W1966825879 modified "2023-10-16" @default.
- W1966825879 title "Thermodynamic analysis of chemical-looping hydrogen generation" @default.
- W1966825879 cites W1972896929 @default.
- W1966825879 cites W1974389828 @default.
- W1966825879 cites W1975270205 @default.
- W1966825879 cites W1975279969 @default.
- W1966825879 cites W1976059953 @default.
- W1966825879 cites W1999090613 @default.
- W1966825879 cites W1999548422 @default.
- W1966825879 cites W2003417940 @default.
- W1966825879 cites W2004906379 @default.
- W1966825879 cites W2005086195 @default.
- W1966825879 cites W2006441199 @default.
- W1966825879 cites W2013029768 @default.
- W1966825879 cites W2021176494 @default.
- W1966825879 cites W2021948781 @default.
- W1966825879 cites W2023687866 @default.
- W1966825879 cites W2038699858 @default.
- W1966825879 cites W2043647392 @default.
- W1966825879 cites W2070668856 @default.
- W1966825879 cites W2071954243 @default.
- W1966825879 cites W2089673288 @default.
- W1966825879 cites W2092240107 @default.
- W1966825879 cites W2093953037 @default.
- W1966825879 cites W2134188128 @default.
- W1966825879 cites W2292542025 @default.
- W1966825879 doi "https://doi.org/10.1016/j.apenergy.2013.02.058" @default.
- W1966825879 hasPublicationYear "2013" @default.
- W1966825879 type Work @default.
- W1966825879 sameAs 1966825879 @default.
- W1966825879 citedByCount "41" @default.
- W1966825879 countsByYear W19668258792013 @default.
- W1966825879 countsByYear W19668258792014 @default.
- W1966825879 countsByYear W19668258792015 @default.
- W1966825879 countsByYear W19668258792016 @default.
- W1966825879 countsByYear W19668258792017 @default.
- W1966825879 countsByYear W19668258792018 @default.
- W1966825879 countsByYear W19668258792019 @default.
- W1966825879 countsByYear W19668258792020 @default.
- W1966825879 countsByYear W19668258792021 @default.
- W1966825879 countsByYear W19668258792022 @default.
- W1966825879 countsByYear W19668258792023 @default.
- W1966825879 crossrefType "journal-article" @default.
- W1966825879 hasAuthorship W1966825879A5000991486 @default.
- W1966825879 hasAuthorship W1966825879A5041230243 @default.
- W1966825879 hasConcept C105923489 @default.
- W1966825879 hasConcept C111919701 @default.
- W1966825879 hasConcept C121332964 @default.
- W1966825879 hasConcept C127413603 @default.
- W1966825879 hasConcept C132651083 @default.
- W1966825879 hasConcept C147789679 @default.
- W1966825879 hasConcept C158089330 @default.
- W1966825879 hasConcept C178790620 @default.
- W1966825879 hasConcept C185592680 @default.
- W1966825879 hasConcept C18903297 @default.
- W1966825879 hasConcept C191897082 @default.
- W1966825879 hasConcept C192562407 @default.
- W1966825879 hasConcept C202189072 @default.
- W1966825879 hasConcept C21880701 @default.
- W1966825879 hasConcept C2778379663 @default.
- W1966825879 hasConcept C2779851234 @default.
- W1966825879 hasConcept C41008148 @default.
- W1966825879 hasConcept C512968161 @default.
- W1966825879 hasConcept C86803240 @default.
- W1966825879 hasConcept C97355855 @default.
- W1966825879 hasConcept C98045186 @default.
- W1966825879 hasConceptScore W1966825879C105923489 @default.
- W1966825879 hasConceptScore W1966825879C111919701 @default.
- W1966825879 hasConceptScore W1966825879C121332964 @default.
- W1966825879 hasConceptScore W1966825879C127413603 @default.
- W1966825879 hasConceptScore W1966825879C132651083 @default.
- W1966825879 hasConceptScore W1966825879C147789679 @default.
- W1966825879 hasConceptScore W1966825879C158089330 @default.
- W1966825879 hasConceptScore W1966825879C178790620 @default.
- W1966825879 hasConceptScore W1966825879C185592680 @default.
- W1966825879 hasConceptScore W1966825879C18903297 @default.
- W1966825879 hasConceptScore W1966825879C191897082 @default.
- W1966825879 hasConceptScore W1966825879C192562407 @default.
- W1966825879 hasConceptScore W1966825879C202189072 @default.
- W1966825879 hasConceptScore W1966825879C21880701 @default.
- W1966825879 hasConceptScore W1966825879C2778379663 @default.
- W1966825879 hasConceptScore W1966825879C2779851234 @default.
- W1966825879 hasConceptScore W1966825879C41008148 @default.
- W1966825879 hasConceptScore W1966825879C512968161 @default.
- W1966825879 hasConceptScore W1966825879C86803240 @default.
- W1966825879 hasConceptScore W1966825879C97355855 @default.
- W1966825879 hasConceptScore W1966825879C98045186 @default.
- W1966825879 hasLocation W19668258791 @default.
- W1966825879 hasOpenAccess W1966825879 @default.
- W1966825879 hasPrimaryLocation W19668258791 @default.
- W1966825879 hasRelatedWork W1977619380 @default.
- W1966825879 hasRelatedWork W2082162055 @default.
- W1966825879 hasRelatedWork W2770251192 @default.