One thousand kilograms per hour of a mixture of 50%benzene (B) and 50% toluene (T) by mass is separated by distillation into two fractions. The mass flow rate of benzene in the top stream is 450 kg B/h and that of toluene in the bottom stream is 475 kg T/h. The operation is at a steady state. Write balance on benzene and toluene to calculate the unknown component flow rates in the output stream. Which of the following diagram best represents the system? 500 kg B/h 500 kg T/h m₁ (kg T/h) 50 kg/h T 450 kg B/h m₂ (kg B/h) 475 kg T/h 25 kg B/h I 500 kg B/h 500 kg T/h || m₁ (kg B/h) 475 kg T/h 450 kg B/h m₂ (kg T/h) 500 kg B/h 500 kg T/h 450 kg B/h m₁ (kg T/h) m₂ (kg B/h) 475 kg T/h III 1000 kg/h 50 kg B/kg 50 kg T/kg 450 kg B/h mi (kg T/h) m₂ (kg B/h) 475 kg T/h IV
One thousand kilograms per hour of a mixture of 50%benzene (B) and 50% toluene (T) by mass is separated by distillation into two fractions. The mass flow rate of benzene in the top stream is 450 kg B/h and that of toluene in the bottom stream is 475 kg T/h. The operation is at a steady state. Write balance on benzene and toluene to calculate the unknown component flow rates in the output stream. Which of the following diagram best represents the system? 500 kg B/h 500 kg T/h m₁ (kg T/h) 50 kg/h T 450 kg B/h m₂ (kg B/h) 475 kg T/h 25 kg B/h I 500 kg B/h 500 kg T/h || m₁ (kg B/h) 475 kg T/h 450 kg B/h m₂ (kg T/h) 500 kg B/h 500 kg T/h 450 kg B/h m₁ (kg T/h) m₂ (kg B/h) 475 kg T/h III 1000 kg/h 50 kg B/kg 50 kg T/kg 450 kg B/h mi (kg T/h) m₂ (kg B/h) 475 kg T/h IV
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
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
Section: Chapter Questions
Problem 1.1P
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