Refined sugar (sucrose) can be converted to glucose and fructose by the inversion process. C2H2O1 + H,0 CH„O6 + CH½06 Sucrose d-Glucose d-Fructose Immobilized glucose isomerase is used as a catalyst in producing fructose from glucose in a. fixed-bed reactor (water is the solvent). For the system shown in Fig. E2.26a, what percent conversion of glucose results on one pass through the reactor when the exit stream/recycle ra- tio in moles is equal to 8.33? The reaction is CH2O6 > d-glucose d-fructose

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
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Refined sugar (sucrose) can be converted to glucose and fructose by the inversion process.
Cı2HnO1 + H20
CH„O6 + C,H1206
Sucrose
d-Glucose d-Fructose
Immobilized glucose isomerase is used as a catalyst in producing fructose from glucose in a
fixed-bed reactor (water is the solvent). For the system shown in Fig. E2.26a, what percent
conversion of glucose results on one pass through the reactor when the exit stream/recycle ra-
tio in moles is equal to 8.33? The reaction is
C,H2O6
d-glucose
d-fructose
Recycle
Feed
Fixed- Bed
Product
40% Glucose 4% Fructose Reactor
in Water
Figure E2.26a
Transcribed Image Text:Refined sugar (sucrose) can be converted to glucose and fructose by the inversion process. Cı2HnO1 + H20 CH„O6 + C,H1206 Sucrose d-Glucose d-Fructose Immobilized glucose isomerase is used as a catalyst in producing fructose from glucose in a fixed-bed reactor (water is the solvent). For the system shown in Fig. E2.26a, what percent conversion of glucose results on one pass through the reactor when the exit stream/recycle ra- tio in moles is equal to 8.33? The reaction is C,H2O6 d-glucose d-fructose Recycle Feed Fixed- Bed Product 40% Glucose 4% Fructose Reactor in Water Figure E2.26a
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