Rodyti trumpą aprašą

dc.contributor.authorSkakauskas, Vladas
dc.contributor.authorKatauskis, Pranas
dc.contributor.authorČiegis, Raimondas
dc.date.accessioned2023-09-18T17:16:40Z
dc.date.available2023-09-18T17:16:40Z
dc.date.issued2018
dc.identifier.issn0259-9791
dc.identifier.urihttps://etalpykla.vilniustech.lt/handle/123456789/121184
dc.description.abstractA phenomenological model of CO oxidation with NO reaction proceeding over composite (supported) catalysts is proposed and solved numerically using the finite difference method. The model is based on the coupled system of PDEs subject to nonclassical conjugate conditions at the catalyst-support interface and includes: the bulk diffusion of reactants from a bounded vessel towards the catalyst surface and the bulk one of the reaction products from the surface into the same vessel, adsorption and desorption of particles of reactants, and surface diffusion of adsorbed molecules. The readsorption of the reaction product N2O is also taken into account. The influence of the rate constants of the adsorbed particle jumping via the catalyst-support interface and reaction rate constants on the surface reactivity is investigated. It is shown that the turnover rates of the CO and NO into products N2O, CO2, and N2 are nonmonotonic time functions and depending on values of the kinetic parameters may possess one or two maxima. The N2O readsorption in case of the existence of two maxima essentially increases the turnover rates and extends the duration of their high values. The mechanism and conditions for arising of the second maximum is discussed. It is also shown that the variation of the particle jumping rate constants influences differently the size of the jump discontinuity of concentrations of different adsorbates at the catalyst-support interface.eng
dc.formatPDF
dc.format.extentp. 2626-2642
dc.format.mediumtekstas / txt
dc.language.isoeng
dc.relation.isreferencedbyMathematical Reviews
dc.relation.isreferencedbyProQuest Central
dc.relation.isreferencedbyOCLC Article First
dc.relation.isreferencedbyZentralblatt MATH (zbMATH)
dc.relation.isreferencedbyScopus
dc.relation.isreferencedbyCurrent Contents / Physical, Chemical & Earth Sciences
dc.relation.isreferencedbyScience Citation Index Expanded (Web of Science)
dc.source.urihttps://doi.org/10.1007/s10910-018-0908-3
dc.subjectFM03 - Fizinių, technologinių ir ekonominių procesų matematiniai modeliai ir metodai / Mathematical models and methods of physical, technological and economic processes
dc.titleModelling of the NO + CO reaction over inhomogeneous surfaces
dc.typeStraipsnis Web of Science DB / Article in Web of Science DB
dcterms.references15
dc.type.pubtypeS1 - Straipsnis Web of Science DB / Web of Science DB article
dc.contributor.institutionVilniaus universitetas
dc.contributor.institutionVilniaus Gedimino technikos universitetas
dc.contributor.facultyFundamentinių mokslų fakultetas / Faculty of Fundamental Sciences
dc.subject.researchfieldN 001 - Matematika / Mathematics
dc.subject.ltspecializationsL104 - Nauji gamybos procesai, medžiagos ir technologijos / New production processes, materials and technologies
dc.subject.enAdsorption
dc.subject.enDesorption
dc.subject.enSurface diffusion
dc.subject.enSpillover
dcterms.sourcetitleJournal of mathematical chemistry
dc.description.issueiss. 9
dc.description.volumevol. 56
dc.publisher.nameSpringer
dc.publisher.cityNew York
dc.identifier.doi000443702300004
dc.identifier.doi2-s2.0-85046402878
dc.identifier.doi10.1007/s10910-018-0908-3
dc.identifier.elaba28435462


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