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Steam Enhanced Calcination for CO2 Capture with CaO

dc.contributor.authorChampagne, Scott
dc.contributor.supervisorAnthony, Edward J.
dc.contributor.supervisorMacchi, Arturo
dc.date.accessioned2014-04-16T17:19:06Z
dc.date.available2014-04-16T17:19:06Z
dc.date.created2014
dc.date.issued2014
dc.degree.disciplineGénie / Engineering
dc.degree.levelmasters
dc.degree.nameMASc
dc.description.abstractCarbon capture and storage technologies are necessary to start lowering greenhouse gas emissions while continuing to utilize existing thermal power generation infrastructure. Calcium looping is a promising technology based on cyclic calcination/carbonation reactions which utilizes limestone as a sorbent. Steam is present in combustion flue gas and in the calciner used for sorbent regeneration. The effect of steam during calcination on sorbent performance has not been extensively studied in the literature. Here, experiments were conducted using a thermogravimetric analyzer (TGA) and subsequently a dual-fluidized bed pilot plant to determine the effect of steam injection during calcination on sorbent reactivity during carbonation. In a TGA, various levels of steam (0-40% vol.) were injected during sorbent regeneration throughout 15 calcination/carbonation cycles. All concentrations of steam were found to increase sorbent reactivity during carbonation. A level of 15% steam during calcination had the largest impact. Steam changes the morphology of the sorbent during calcination, likely by shifting the pore volume to larger pores, resulting in a structure which has an increased carrying capacity. This effect was then examined at the pilot scale to determine if the phase contacting patterns and solids heat-up rates in a fluidized bed were factors. Three levels of steam (0%, 15%, 65%) were injected during sorbent regeneration throughout 5 hours of steady state operation. Again, all levels of steam were found to increase sorbent reactivity and reduce the required sorbent make-up rate with the best performance seen at 65% steam.
dc.embargo.termsimmediate
dc.faculty.departmentGénie chimique et biologique / Chemical and Biological Engineering
dc.identifier.urihttp://hdl.handle.net/10393/30905
dc.identifier.urihttp://dx.doi.org/10.20381/ruor-3636
dc.language.isoen
dc.publisherUniversité d'Ottawa / University of Ottawa
dc.subjectCalcium Looping
dc.subjectCarbon Capture and Storage
dc.subjectFluidized Bed
dc.subjectOxy-fuel Combustion
dc.subjectGreenhouse Gas Control
dc.subjectSolid-Gas Reaction
dc.subjectFluidized Bed Combustion
dc.titleSteam Enhanced Calcination for CO2 Capture with CaO
dc.typeThesis
thesis.degree.disciplineGénie / Engineering
thesis.degree.levelMasters
thesis.degree.nameMASc
uottawa.departmentGénie chimique et biologique / Chemical and Biological Engineering

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