Time (min) (C6H5), CCl + CH3OH→ (C6H5), COCH3+HCI A + B → C + D The concentration-time data in Table E7-2.1 was obtained in a batch reactor. TABLE E7-2.1 RAW DATA 0 50 100 150 200 250 300 50 38 30.6 25.6 22.2 19.5 17.4 Concentration of A (mol/dm³) × 10³ (At t = 0, C₁ = 0.05 M)
Time (min) (C6H5), CCl + CH3OH→ (C6H5), COCH3+HCI A + B → C + D The concentration-time data in Table E7-2.1 was obtained in a batch reactor. TABLE E7-2.1 RAW DATA 0 50 100 150 200 250 300 50 38 30.6 25.6 22.2 19.5 17.4 Concentration of A (mol/dm³) × 10³ (At t = 0, C₁ = 0.05 M)
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
Question
The reaction of triphenyl methyl chloride (trityl chloride) (A) and methanol (B) discussed in Example 7-1 is now analyzed using the differential method.
The initial concentration of methanol was 0.5 mol/dm3.
Part (1) Determine the reaction order with respect to triphenyl methyl chloride.
Part (2) In a separate set of experiments, the reaction order wrt methanol was found to be first order. Determine the specific reaction-rate constant.
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