# 1 2 4 5 3 Citric acid 6 7 8 Chemical process/ product manufacture Biodiesel 9 Methanol Aspirin Desalination Titania (paint pigment) Green ammonia PET plastic bottle-to- bottle recycling Paper Report structure: 1. Title Page 2. Executive Summary 3. Table of Contents 4. Nomenclature https://www.thechemicalengineer.com/search/?q=biod https://www.thechemicalengineer.com/search/?q=met https://www.sciencedirect.com/topics/agricultural-and- iesel hanol Title Page (presentation) Executive Summary (2.5%) biological-sciences/citric-acid https://en.wikipedia.org/wiki/Aspirin https://www.thechemicalengineer.com/search/?q=des https://www.chemengevolution.org/search?qupaint https://www.thechemicalengineer.com/search/?q=gree https://www.thechemicalengineer.com/search/?q=PET alination n+ammonia +recycle https://new.abb.com/pulp-paper 5. Background 6. Process Optioneering and Selection 7. Block Flow Diagram 8. Process Flow Diagram 9. Stream Table 10. Unit Operations 11. Life Cycle Assessment and Sustainability 12. Conclusion 13. References 14. Appendix Each section has a word limit: provide a word count at the end of each section and do not write more than the prescribed word limit. However, please note that the number of words specified is a maximum but fewer words are also fine, provided that the corresponding section is complete, clear and coherent. The word limit does not include any graphics or tables that you will need to add to illustrate the report. Section (mark) Guidance Project title; group number; names of group members; module code; name of project consultant; word count. Provide a concise summary and a specific statement of your findings for a general audience. Restate the Word Count/ Page limit 1-page 200
# 1 2 4 5 3 Citric acid 6 7 8 Chemical process/ product manufacture Biodiesel 9 Methanol Aspirin Desalination Titania (paint pigment) Green ammonia PET plastic bottle-to- bottle recycling Paper Report structure: 1. Title Page 2. Executive Summary 3. Table of Contents 4. Nomenclature https://www.thechemicalengineer.com/search/?q=biod https://www.thechemicalengineer.com/search/?q=met https://www.sciencedirect.com/topics/agricultural-and- iesel hanol Title Page (presentation) Executive Summary (2.5%) biological-sciences/citric-acid https://en.wikipedia.org/wiki/Aspirin https://www.thechemicalengineer.com/search/?q=des https://www.chemengevolution.org/search?qupaint https://www.thechemicalengineer.com/search/?q=gree https://www.thechemicalengineer.com/search/?q=PET alination n+ammonia +recycle https://new.abb.com/pulp-paper 5. Background 6. Process Optioneering and Selection 7. Block Flow Diagram 8. Process Flow Diagram 9. Stream Table 10. Unit Operations 11. Life Cycle Assessment and Sustainability 12. Conclusion 13. References 14. Appendix Each section has a word limit: provide a word count at the end of each section and do not write more than the prescribed word limit. However, please note that the number of words specified is a maximum but fewer words are also fine, provided that the corresponding section is complete, clear and coherent. The word limit does not include any graphics or tables that you will need to add to illustrate the report. Section (mark) Guidance Project title; group number; names of group members; module code; name of project consultant; word count. Provide a concise summary and a specific statement of your findings for a general audience. Restate the Word Count/ Page limit 1-page 200
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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