dc.contributor.authorIghalo, Joshua Osebhagimede
dc.date.accessioned2026-07-13T19:29:44Z
dc.date.graduationmonthAugust
dc.date.issued2026
dc.description.abstractDry reforming of methane (DRM) and catalytic methane pyrolysis (CMP) are technologies for the valorization of methane to cleaner fuels. DRM is a reaction of methane and carbon dioxide to produce syngas, while CMP is the breakdown of the methane molecule into carbon and hydrogen. Due to the high reaction temperatures and presence of side reactions in DRM, the major challenges are coking, sintering, and selectivity. For CMP, coking and sintering challenges are also pervasive. In this thesis, we employed different innovative strategies based on well rationalized hypothesis to design catalysts to solve these challenges... [See PDF for full abstract]
dc.description.advisorPlacidus B. Amama
dc.description.degreeDoctor of Philosophy
dc.description.departmentDepartment of Chemical Engineering
dc.description.levelDoctoral
dc.description.sponsorshipAmerican Chemical Society - Petroleum Research Fund National Science Foundation United States Department of Energy Office of Science Graduate Student Research Program Center for Nanomaterials, Argonne National Laboratory Kansas State University Graduate School
dc.identifier.urihttps://hdl.handle.net/2097/47326
dc.language.isoen_US
dc.subjectDry reforming
dc.subjectMethane valorization
dc.subjectHydrogen production
dc.subjectMetal-support interactions
dc.subjectExsolution
dc.subjectGraphene
dc.titleDesign of nickel-based heterogeneous catalysts for methane conversion
dc.typeDissertation
local.embargo.terms2027-08-16

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