= Conversion of CO₂ to propylene is a highly endothermic process with AHrxn +270 kJ/mol. It is a common practice to install heating jacket around the flow reactor to maintain the desired reaction temperature. What will happen if the heating jacket were to be non-operational during the process?

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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c) Conversion of CO₂ to propylene is a highly endothermic process with AHrxn
+270 kJ/mol. It is a common practice to install heating jacket around the flow reactor
to maintain the desired reaction temperature. What will happen if the heating jacket
were to be non-operational during the process?
Transcribed Image Text:c) Conversion of CO₂ to propylene is a highly endothermic process with AHrxn +270 kJ/mol. It is a common practice to install heating jacket around the flow reactor to maintain the desired reaction temperature. What will happen if the heating jacket were to be non-operational during the process?
Question 1
Power-to-X project or commonly known as Projekte Kopernikus in Deutschland, is a process
involving the catalytic conversion of CO2 into valorised hydrocarbons. This is process that has
received great attention from researchers for its ability in combating global warming while at
the same time producing valuable commodities for chemical industry. For instance, CO₂ can
be converted into propylene in the presence of hydrogen gas over supported nickel catalyst
Pcat = 400 kg/m³). This gas-phase reaction is commonly done at 500 °C and 1 atm with an
expected 90 mol% propylene yield and 90 mol % CO₂ conversion. Rate constant of reaction at
500°C is 1.0 dm¹2/(mol³.s.gcat)
Transcribed Image Text:Question 1 Power-to-X project or commonly known as Projekte Kopernikus in Deutschland, is a process involving the catalytic conversion of CO2 into valorised hydrocarbons. This is process that has received great attention from researchers for its ability in combating global warming while at the same time producing valuable commodities for chemical industry. For instance, CO₂ can be converted into propylene in the presence of hydrogen gas over supported nickel catalyst Pcat = 400 kg/m³). This gas-phase reaction is commonly done at 500 °C and 1 atm with an expected 90 mol% propylene yield and 90 mol % CO₂ conversion. Rate constant of reaction at 500°C is 1.0 dm¹2/(mol³.s.gcat)
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