An experimental study was carried out with an equimolar input in a batch reactor where the above reaction was thought to take place and the data in the table was obtained a) Plot graphically the change in conversion rate over time and interpret the result b) If the concentration of the substance U resulting from the reaction could be measured, find the product concentration measurement values and plot them graphically. c) Experimental data were found to be k = 2,238 dm3 / mol min by using the Differential Method. Check the accuracy of this result by drawing the appropriate graphics and evaluate the results
An experimental study was carried out with an equimolar input in a batch reactor where the above reaction was thought to take place and the data in the table was obtained a) Plot graphically the change in conversion rate over time and interpret the result b) If the concentration of the substance U resulting from the reaction could be measured, find the product concentration measurement values and plot them graphically. c) Experimental data were found to be k = 2,238 dm3 / mol min by using the Differential Method. Check the accuracy of this result by drawing the appropriate graphics and evaluate the results
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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An experimental study was carried out with an equimolar input in a batch reactor where the above reaction was thought to take place and the data in the table was obtained
a) Plot graphically the change in conversion rate over time and interpret the result
b) If the concentration of the substance U resulting from the reaction could be measured, find the product concentration measurement values and plot them graphically.
c) Experimental data were found to be k = 2,238 dm3 / mol min by using the Differential Method. Check the accuracy of this result by drawing the appropriate graphics and evaluate the results
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Differential and Integral methods of analysis of Kinetic Data
VIEWThe order of reaction
VIEWThe Differential Rate Equation(DRE) for the given reaction
VIEWThe Integrated Rate Equation(IRE) for the given reaction
VIEWPlot of the kinetic data by using the integrated rate equation
VIEWc) Comaprison of the rate constants
VIEWa) Plot of Conversion vs .time
VIEWb) Plot of concentration of U vs. time
VIEWStep by step
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