Εμφάνιση απλής εγγραφής

dc.creatorMeléndez-Ceballos A., Brouzgou A., Crapart C., Albin V., Lair V., Cassir M.en
dc.date.accessioned2023-01-31T08:58:41Z
dc.date.available2023-01-31T08:58:41Z
dc.date.issued2017
dc.identifier10.1149/2.0241708jes
dc.identifier.issn00134651
dc.identifier.urihttp://hdl.handle.net/11615/76496
dc.description.abstractCarbon capture and valorization is a new route increasingly discussed to reduce greenhouse gas emissions. One of the paths foreseen for CO2 valorization is its transformation into fuels by electrochemical reduction of carbon dioxide. In this approach, molten carbonates are of particular interest since they can be used to capture CO2 molecule because of its high solubility; hence, valorization by electrolysis is possible in molten carbonate media. To better understand CO2 reduction, chronopotentiometric and chronoamperometric techniques were used at gold and graphite electrodes immersed in four alkali carbonate eutectics, Li-Na, Li-K, Li-Na-K and Na-K. The results complemented a previous work based on cyclic voltammetry and confirmed the existence of a main CO2 reduction phenomena around −1.2 V vs Ag/Ag+ that involves two one-electron steps or a two-electron unique step. Transition time analysis showed that the reduction mechanism is either simultaneous reduction of CO2 adsorbed and diffusion species or rapid equilibrium between adsorbed and diffusing species. Furthermore, we identified another electrochemical system involving adsorbed CO2 and CO at higher potentials. In summary, we have succeeded in proving and précising some previous results, as well as identifying reduction mechanisms. © The Author(s) 2017. Published by ECS. All rights reserved.en
dc.language.isoenen
dc.sourceJournal of the Electrochemical Societyen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85036474404&doi=10.1149%2f2.0241708jes&partnerID=40&md5=3cc8eb507f14c935dad2bc566bea97a0
dc.subjectBinary alloysen
dc.subjectCarbon dioxideen
dc.subjectCarbonatesen
dc.subjectCyclic voltammetryen
dc.subjectElectrolytic reductionen
dc.subjectGas emissionsen
dc.subjectGraphite electrodesen
dc.subjectGreenhouse gasesen
dc.subjectLithiumen
dc.subjectLithium alloysen
dc.subjectSodiumen
dc.subjectSodium alloysen
dc.subjectTernary alloysen
dc.subjectAlkali carbonateen
dc.subjectChronoamperometric techniquesen
dc.subjectDiffusing speciesen
dc.subjectElectrochemical reductionsen
dc.subjectElectrochemical systemsen
dc.subjectRapid equilibriumen
dc.subjectReduction mechanismsen
dc.subjectSimultaneous reductionen
dc.subjectReductionen
dc.subjectElectrochemical Society Inc.en
dc.titleChronopotentiometric approach of CO2 reduction in molten carbonatesen
dc.typejournalArticleen


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