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PARTICLE ATTRITION IN FLUIDIZED BEDS CONTAINING OPPOSING JETS John G Yates S S Cobbinah D J Cheesman and S P Jordan
THE REDUCTION OF ATTRITION IN FLUIDIZED BEDS BY THE ADDITION
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AFBC agglomerates AIChE air flow air holdup air velocity bed height bed mass bed material bed pressure drop bubble column bubbling bed calculated Chem Circulating Fluidized Bed coal coalescence compartments computed concentration constant correlation Davidson density effect elutriation Equation experimental data falling film fiber flow rate fluid fluidizing velocity frequency granular graphite heat transfer coefficient incineration incipiently fluidized increase initial Lehigh University load mass flow rate Matsumoto measured metal capture minimum fluidization minimum transport velocity molecular sieves molybdenum disulfide nozzle Nusselt orifice diameter oscillation packed bed parameters particle attrition particle diameter particle jets particulate phase pickup velocity pipe powder predict pressure fluctuations probe reaction reactor recycle region riser saltation velocity Saxena shown in Figure simulation slumped sorbent standpipe superficial gas velocity surface tests thermocouples TiCl4 tion tube values velocity of sound velocity turndown void fraction voidage volume fraction wake wall Zenz zeolite