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Integration of concentrated solar power with solid oxide electrolysis for green hydrogen production: a comprehensive review

dc.contributor.authorAlrwili, Abdullah Ayed
dc.contributor.authorIbrahim, Khalifa Aliyu
dc.contributor.authorQin, Qing
dc.contributor.authorKing, Peter
dc.contributor.authorAldubayyan, Ahmed Ali
dc.contributor.authorDelaney, Thomas
dc.contributor.authorAlshammari, Yousef Lafi A.
dc.contributor.authorLuo, Zhenhua
dc.date.accessioned2026-01-22T09:51:40Z
dc.date.available2026-01-22T09:51:40Z
dc.date.freetoread2026-01-22
dc.date.issued2026-01-02
dc.date.pubOnline2026-01-02
dc.description.abstractThe integration of Concentrated Solar Power (CSP) and Solid Oxide Electrolysis (SOE) holds great promise for efficient and sustainable green hydrogen production. However, there is a lack of comprehensive studies reviewing the combined potential of these two technologies, which could offer enhanced efficiencies and reduced costs for large-scale hydrogen production. This review addresses that gap by analyzing the technical and economic feasibility of integrating CSP with SOE systems. This review provides a comprehensive analysis of the integration between CSP and SOE systems for green hydrogen production. The study examines critical technical challenges, including high operating temperatures, material compatibility, and heat transfer efficiency, while evaluating the economic feasibility of these integrated systems. Different CSP configurations are analysed based on their ability to provide heat alone or both heat and electricity, with thermal energy storage identified as a key factor in enhancing system performance by mitigating intermittency issues. Methodologies used in integration studies, such as simulation models and experimental setups, are critically reviewed, highlighting gaps in practical designs and real-world applications of CSP-SOE systems. However, despite these promising advances, only one laboratory-scale prototype has been demonstrated to date, underscoring the urgent need for pilot-scale CSP–SOE field testing under real direct normal irradiation (DNI) and thermal energy storage (TES) conditions. By addressing these technical and economic obstacles, this review offers insights into optimising CSP-SOE systems for sustainable, large-scale hydrogen production and provides actionable recommendations for future development.
dc.description.journalNameFrontiers in Energy Research
dc.description.sponsorshipThe authors extend their appreciation to the Deanship of Scientific Research at Northern Border University, Arar, KSA for funding this research work through the project number “NBU-SAFIR-2024”.
dc.identifier.citationAlrwili AA, Ibrahim KA, Qin Q, et al., (2026) Integration of concentrated solar power with solid oxide electrolysis for green hydrogen production: a comprehensive review. Frontiers in Energy Research, Volume 13, January 2026, Article number 1698593en_UK
dc.identifier.eissn2296-598X
dc.identifier.elementsID867592
dc.identifier.issn2296-598X
dc.identifier.paperNo1698593
dc.identifier.urihttps://doi.org/10.3389/fenrg.2025.1698593
dc.identifier.urihttps://dspace.lib.cranfield.ac.uk/handle/1826/24825
dc.identifier.volumeNo13
dc.language.isoen
dc.publisherFrontiersen_UK
dc.publisher.urihttps://www.frontiersin.org/journals/energy-research/articles/10.3389/fenrg.2025.1698593/full
dc.rightsAttribution 4.0 Internationalen
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.subject4004 Chemical Engineeringen_UK
dc.subject40 Engineeringen_UK
dc.subject7 Affordable and Clean Energyen_UK
dc.subject4012 Fluid mechanics and thermal engineeringen_UK
dc.subjectgreen hydrogen systemsen_UK
dc.subjectsolid oxide electrolysis (SOE)en_UK
dc.subjectconcentrated solar power (CSP)en_UK
dc.subjectsolid oxide electrolysis cells (SOEC)en_UK
dc.subjectCSP-SOE integrated system designen_UK
dc.titleIntegration of concentrated solar power with solid oxide electrolysis for green hydrogen production: a comprehensive reviewen_UK
dc.typeArticle
dcterms.dateAccepted2025-11-17

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