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Hydroprocessing for Clean Energy: Design, Operation, and Optimization, by Frank (Xin X.) Zhu, Richard Hoehn, Vasant Thakkar, Edwin Yuh
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Provides a holistic approach that looks at changing process conditions, possible process design changes, and process technology upgrades
- Includes process integration techniques for improving process designs and for applying optimization techniques for improving operations focusing on hydroprocessing units.
- Discusses in details all important aspects of hydroprocessing – including catalytic materials, reaction mechanism, as well as process design, operation and control, troubleshooting and optimization�
- Methods and tools are introduced that have a successful application track record at UOP and many industrial plants in recent years
- Includes relevant calculations/software/technologies hosted online for purchasers of the book
- Sales Rank: #1144602 in Books
- Published on: 2017-01-04
- Original language: English
- Dimensions: 9.30" h x 1.40" w x 6.30" l, 1.47 pounds
- Binding: Hardcover
- 576 pages
From the Back Cover
Provides a holistic approach that looks at changing process conditions, possible process design changes, and process technology upgrades
Hydroprocessing is a major work horse in oil refining in making clean diesel fuel for transportation. While many companies have looked at various improvements, relatively few have taken a holistic approach that looks at changing process conditions, possible process design changes, and upgrading process technology required to achieve it.
Hydroprocessing for Clean Energy: Design, Operation and Optimization explains recent advances in the field of hydroprocessing. It provides proven methods and tools used in industrial applications and discusses in detail all of the� important aspects of hydroprocssing including catalytic materials, reaction mechanism, process design, operation and control, troubleshooting and optimization. The book focuses on application of these methods on specific process units such as hydrotreating and hydrocracking units, which are the center of attentions in the petroleum industry in current time due to the market drive for clean diesel.
Hydroprocessing for Clean Energy: Design, Operation and Optimization features:
- Fundamentals of hydroprocessing
- Process Simulation and Optimization Techniques � � �
- Operational Assessments
- Process Design and Integration Methods
- Troubleshooting Case Studies
- Techno-Economic Evaluations
Managers, engineers and operators working in refining companies and engineering firms as well as university students who want to equip themselves with practical methods in Hydroprocessing will find this book a valuable resource in improving industrial energy efficiency, reducing capital investment and optimizing yields via better design, operation and optimization.
Frank Zhu, PhD, is Senior Fellow at Honeywell UOP, Des Plaines. He is a leading expert in industrial process design, modeling and energy optimization with more than 80 publications and 30 patents. He is the co-founder of the ECI International Conference: CO2 Summit, the recipient of AIChE Energy and Sustainability Award, and the author of “Energy and Process Optimization for the Process Industries” by Wiley/AICHE.
Richard Hoehn is a Senior Fellow at Honeywell UOP, Des Plaines where he has been employed for 42 years, 31 of which have been in the field of hydroprocessing.� He received a BS in chemical engineering from Purdue University.� He currently holds 36 US patents and has received the Ernest W. Thiele Award from the Chicago Section of the AIChE.
Dr. Vasant Thakkar, PhD, was a Senior Fellow at Honeywell UOP, Des Plaines, before retiring in 2015. Vasant worked in Refining R&D Group for over 36 years. Vasant received Honeywell Distinguished Technologist award in 2014. Vasant holds 38 US patents. He received Ph. D. in chemical Engineering from Colorado school of Mine. He held membership in AIChE and ASTM D2 committee.
Edwin Yuh is a Fellow at Honeywell UOP, Des Plaines where he has been employed for 37 years, 35 of which have been in the field of hydroprocessing.� He received a BS in chemical engineering from Columbia University and a MS in chemical engineering from Northwestern University.� Most of his UOP career is in technical service.
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