Case Study As a collaborative team of chemical engineers, your task is to estimate the necessary energy for the system described below to quantify or minimize: Waste, Pollutions, and Hazardous components or to maximize the desired products. Begin by quantifying the quantities of each component within the system using material balance. Utilize the provided tables and charts to determine the enthalpies for each component. Conclude by calculating the heat transferred to or from the system. Additionally, propose a method to minimize both the required energy and emitted gases from the system by modifying the process. C3H8 200 C 3.5 kg/s Feed Energy PFR-001 180 C C3H6 2.1 kg/s Product H₂ 150 C 1 kg/s C3H8C3H6+ H₂ Conversion 85% V-1 C3H6 gas 480 K 99% 190 C C3H6 2% Liq. 300 K 120 C

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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Case Study
As a collaborative team of chemical engineers, your task is to estimate the necessary
energy for the system described below to quantify or minimize: Waste, Pollutions, and
Hazardous components or to maximize the desired products. Begin by quantifying the
quantities of each component within the system using material balance. Utilize the
provided tables and charts to determine the enthalpies for each component. Conclude by
calculating the heat transferred to or from the system. Additionally, propose a method to
minimize both the required energy and emitted gases from the system by modifying the
process.
C3H8
200 C
3.5 kg/s
Feed
Energy
PFR-001
180 C
C3H6 2.1 kg/s
Product
H₂
150 C
1 kg/s
C3H8C3H6+ H₂
Conversion 85%
V-1
C3H6
gas
480 K
99%
190 C
C3H6 2%
Liq.
300 K
120 C
Transcribed Image Text:Case Study As a collaborative team of chemical engineers, your task is to estimate the necessary energy for the system described below to quantify or minimize: Waste, Pollutions, and Hazardous components or to maximize the desired products. Begin by quantifying the quantities of each component within the system using material balance. Utilize the provided tables and charts to determine the enthalpies for each component. Conclude by calculating the heat transferred to or from the system. Additionally, propose a method to minimize both the required energy and emitted gases from the system by modifying the process. C3H8 200 C 3.5 kg/s Feed Energy PFR-001 180 C C3H6 2.1 kg/s Product H₂ 150 C 1 kg/s C3H8C3H6+ H₂ Conversion 85% V-1 C3H6 gas 480 K 99% 190 C C3H6 2% Liq. 300 K 120 C
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