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dc.creatorOrtiz Domínguez, Carloses
dc.creatorValverde Millán, José Manueles
dc.creatorChacartegui, Ricardoes
dc.creatorPérez-Maqueda, Luis Allanes
dc.creatorGiménez Gavarrell, Pabloes
dc.date.accessioned2019-06-28T09:55:44Z
dc.date.available2019-06-28T09:55:44Z
dc.date.issued2019
dc.identifier.citationOrtiz Domínguez, C., Valverde Millán, J.M., Chacartegui, R., Pérez-Maqueda, L.A. y Giménez Gavarrell, P. (2019). The Calcium-Looping (CaCO3/CaO) Process for Thermochemical Energy Storage in Concentrating Solar Power Plants. Renewable and Sustainable Energy Reviews
dc.identifier.issn1364-0321es
dc.identifier.urihttps://hdl.handle.net/11441/87668
dc.descriptionArticulo aceptado por la revista. * No publicado aún [28-06-2019]es
dc.description.abstractEnergy storage based on thermochemical systems is gaining momentum as potential alternative to molten salts in Concentrating Solar Power (CSP) plants. This work is a detailed review about the promising integration of a CaCO3/CaO based system, the so-called Calcium-Looping (CaL) process, in CSP plants with tower technology. The CaL process relies on low cost, widely available and non-toxic natural materials (such as limestone or dolomite), which are necessary conditions for the commercial expansion of any energy storage technology at large scale. A comprehensive analysis of the advantages and challenges to be faced for the process to reach a commercial scale is carried out. The review includes a deep overview of reaction mechanisms and process integration schemes proposed in the recent literature. Enhancing the multicycle CaO conversion is a major challenge of the CaL process. Many lab-scale analyses carried out show that residual effective CaO conversion is highly dependent on the process conditions and CaO precursors used, reaching values as different as 0.07-0.82. The selection of the optimal operating conditions must be based on materials, process integration, technology and economics aspects. Global plant efficiencies over 45% (without considering solar-side losses) show the interest of the technology. Furthermore, the technological maturity and potential of the process is assessed. The direction towards which future works should be headed is discussed.es
dc.description.sponsorshipMinisterio de Economia y Competitividad CTQ2014-52763-C2, CTQ2017- 83602-C2 (-1-R and -2-R)es
dc.description.sponsorshipUnión Europea Horizon 2020 Grant agreement No 727348, project SOCRATCES.es
dc.formatapplication/pdfes
dc.language.isoenges
dc.publisherElsevieres
dc.relation.ispartofRenewable and Sustainable Energy Reviews
dc.rightsAttribution-NonCommercial-NoDerivatives 4.0 Internacional*
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/*
dc.subjectCalcium loopinges
dc.subjectConcentrating Solar Poweres
dc.subjectThermochemical Energy Storagees
dc.subjectDispatchabilityes
dc.subjectSolar toweres
dc.subjectParticle receiveres
dc.subjectSolar calcinationes
dc.subjectCaO deactivationes
dc.titleThe Calcium-Looping (CaCO3/CaO) Process for Thermochemical Energy Storage in Concentrating Solar Power Plantses
dc.typeinfo:eu-repo/semantics/articlees
dcterms.identifierhttps://ror.org/03yxnpp24
dc.type.versioninfo:eu-repo/semantics/submittedVersiones
dc.rights.accessRightsinfo:eu-repo/semantics/openAccesses
dc.contributor.affiliationUniversidad de Sevilla. Departamento de Electrónica y Electromagnetismoes
dc.contributor.affiliationUniversidad de Sevilla. Departamento de Ingeniería Energéticaes
dc.relation.projectIDCTQ2014-52763-C2es
dc.relation.projectIDCTQ2017- 83602-C2es
dc.relation.projectIDGrant agreement No 727348es
dc.contributor.groupUniversidad de Sevilla. FQM253: Electrohidrodinamica y Medios Granulares Cohesivoses
dc.contributor.groupUniversidad de Sevilla. TEP137: Maquinas y Motores Termicoses
dc.journaltitleRenewable and Sustainable Energy Reviewses

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