Multi-objective optimization in chemical engineering developments and applications
(eBook)

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Published
Chichester [England] : Wiley, 2013.
Physical Desc
xvi, 512 pages : ill.
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eBook
Language
English

Notes

Bibliography
Includes bibliographical references and index.
Description
"For reasons both financial and environmental, there is a perpetual need to optimize the design and operating conditions of industrial process systems in order to improve their performance, energy efficiency, profitability, safety and reliability. However, with most chemical engineering application problems having many variables with complex inter-relationships, meeting these optimization objectives can be challenging. This is where Multi-Objective Optimization (MOO) is useful to find the optimal trade-offs among two or more conflicting objectives.This book provides an overview of the recent developments and applications of MOO for modeling, design and operation of chemical, petrochemical, pharmaceutical, energy and related processes. It then covers important theoretical and computational developments as well as specific applications such as metabolic reaction networks, chromatographic systems, CO2 emissions targeting for petroleum refining units, ecodesign of chemical processes, ethanol purification and cumene process design.Multi-Objective Optimization in Chemical Engineering: Developments and Applications is an invaluable resource for researchers and graduate students in chemical engineering as well as industrial practitioners and engineers involved in process design, modeling and optimization"--,Provided by publisher.
Reproduction
Electronic reproduction. Ann Arbor, MI : ProQuest, 2015. Available via World Wide Web. Access may be limited to ProQuest affiliated libraries.

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Citations

APA Citation, 7th Edition (style guide)

Rangaiah, G. P., & Bonilla-Petriciolet, A. (2013). Multi-objective optimization in chemical engineering: developments and applications . Wiley.

Chicago / Turabian - Author Date Citation, 17th Edition (style guide)

Rangaiah, Gade Pandu and Adrian. Bonilla-Petriciolet. 2013. Multi-objective Optimization in Chemical Engineering: Developments and Applications. Wiley.

Chicago / Turabian - Humanities (Notes and Bibliography) Citation, 17th Edition (style guide)

Rangaiah, Gade Pandu and Adrian. Bonilla-Petriciolet. Multi-objective Optimization in Chemical Engineering: Developments and Applications Wiley, 2013.

MLA Citation, 9th Edition (style guide)

Rangaiah, Gade Pandu., and Adrian Bonilla-Petriciolet. Multi-objective Optimization in Chemical Engineering: Developments and Applications Wiley, 2013.

Note! Citations contain only title, author, edition, publisher, and year published. Citations should be used as a guideline and should be double checked for accuracy. Citation formats are based on standards as of August 2021.

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3aaf213d-7a46-9769-5492-89daf0b3a3ef-eng
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Grouped Work ID3aaf213d-7a46-9769-5492-89daf0b3a3ef-eng
Full titlemulti objective optimization in chemical engineering developments and applications
Authorgade rangaiah adrián bonilla petriciolet
Grouping Categorybook
Last Update2022-06-07 21:23:19PM
Last Indexed2024-05-04 03:25:22AM

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Last UsedJan 24, 2024

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First DetectedAug 09, 2021 12:25:07 PM
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24500|a Multi-objective optimization in chemical engineering|h [eBook] :|b developments and applications /|c edited by Gade Rangaiah, Adrián Bonilla-Petriciolet.
260 |a Chichester [England] :|b Wiley,|c 2013.
300 |a xvi, 512 p. :|b ill.
504 |a Includes bibliographical references and index.
5050 |a pt. 1. Overview -- pt. 2. Multi-objective optimization developments -- pt. 3. Chemical engineering applications.
520 |a "For reasons both financial and environmental, there is a perpetual need to optimize the design and operating conditions of industrial process systems in order to improve their performance, energy efficiency, profitability, safety and reliability. However, with most chemical engineering application problems having many variables with complex inter-relationships, meeting these optimization objectives can be challenging. This is where Multi-Objective Optimization (MOO) is useful to find the optimal trade-offs among two or more conflicting objectives.This book provides an overview of the recent developments and applications of MOO for modeling, design and operation of chemical, petrochemical, pharmaceutical, energy and related processes. It then covers important theoretical and computational developments as well as specific applications such as metabolic reaction networks, chromatographic systems, CO2 emissions targeting for petroleum refining units, ecodesign of chemical processes, ethanol purification and cumene process design.Multi-Objective Optimization in Chemical Engineering: Developments and Applications is an invaluable resource for researchers and graduate students in chemical engineering as well as industrial practitioners and engineers involved in process design, modeling and optimization"--|c Provided by publisher.
533 |a Electronic reproduction. Ann Arbor, MI : ProQuest, 2015. Available via World Wide Web. Access may be limited to ProQuest affiliated libraries.
650 0|a Chemical processes.
650 0|a Mathematical optimization.
650 0|a Chemical engineering.
655 4|a Electronic books.
7001 |a Rangaiah, Gade Pandu.
7001 |a Bonilla-Petriciolet, Adrian.
7102 |a ProQuest (Firm)
85640|u http://ebookcentral.proquest.com/lib/yavapai-ebooks/detail.action?docID=1158627|x Yavapai College|y Yavapai College users click here to access
85640|u http://ebookcentral.proquest.com/lib/prescottcollege-ebooks/detail.action?docID=1158627|x Prescott College|y Prescott College users click here to access
85640|u http://ebookcentral.proquest.com/lib/yln-ebooks/detail.action?docID=1158627|x Yavapai Library Network|y All other users click here to access
945 |a E-Book