Q4) A horizontal tubular reactor of radius R is employed to carry out a first order chemical reaction in which a material A is converted to a product B and the specific reaction rate constant is K (1/s). It may be assumed that steady state conditions are established. If the feed rate is Q (m/s), the feed concentration of A is CA, and the diffusivity of A is assumed to be at constant D (m²/s). Find the differential equation renresent this unit

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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Q4) A horizontal tubular reactor of radius R is employed to carry out a first order
chemical reaction in which a material A is converted to a product B and the specific
reaction rate constant is K (1/s). It may be assumed that steady state conditions are
established. If the feed rate is Q (m/s), the feed concentration of A is CA, and the
diffusivity of A is assumed to be at constant D (m²/s). Find the differential equation
renresent this unit
Transcribed Image Text:Q4) A horizontal tubular reactor of radius R is employed to carry out a first order chemical reaction in which a material A is converted to a product B and the specific reaction rate constant is K (1/s). It may be assumed that steady state conditions are established. If the feed rate is Q (m/s), the feed concentration of A is CA, and the diffusivity of A is assumed to be at constant D (m²/s). Find the differential equation renresent this unit
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