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dc.contributor.authorAli, Saad
dc.date.accessioned2015-06-04T16:39:18Z
dc.date.available2015-06-04T16:39:18Z
dc.date.issued2015-06-04
dc.identifier.urihttp://hdl.handle.net/10222/56859
dc.description.abstractA CFD model of a rotating bed reactor for chemical looping combustion involving the catalyzed reaction of methane with oxygen using a CuO-based oxygen carrier was developed in this work. The effects of process parameters (e.g., reactor rotation frequency, bed thickness and gas flow regions) on reactor performance were validated against experimental work published by Hakonsen (2011) and explored for a broader range of operating conditions. Three rotation speeds of 1, 2 and 4 RPM and three different bed thickness values of 10, 12 and 14 mm along with six different geometrical designs were simulated and used to propose a dimensionless graphical method of justifying design modifications in future reactors. The optimum combustion:purge:oxidation:purge angle ratios were found to be 106.52°:66.94°:126.01°:60.53°. For this configuration, the RPM can be adjusted for a given bed thickness and combustion rate to yield a total dimensionless rotation period of t/tbed = 12.37.en_US
dc.language.isoenen_US
dc.subjectROTATING BED REACTOR FOR CHEMICAL LOOPING COMBUSTIONen_US
dc.titleCONCEPT DEVELOPMENT OF ROTATING BED REACTOR FOR CHEMICAL LOOPING COMBUSTION USING METHANE AS FUEL AND COPPER OXIDE AS AN OXYGEN CARRIERen_US
dc.date.defence2015-04-10
dc.contributor.departmentDepartment of Process Engineering and Applied Scienceen_US
dc.contributor.degreeMaster of Applied Scienceen_US
dc.contributor.external-examinern/aen_US
dc.contributor.graduate-coordinatorMark Gibsonen_US
dc.contributor.thesis-readerJan Haelssigen_US
dc.contributor.thesis-readerDominic Groulxen_US
dc.contributor.thesis-supervisorMichael Peggen_US
dc.contributor.thesis-supervisorAdam Donaldsonen_US
dc.contributor.ethics-approvalNot Applicableen_US
dc.contributor.manuscriptsNoen_US
dc.contributor.copyright-releaseNoen_US
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