Fluid Catalytic Cracking Handbook

Fluid Catalytic Cracking Handbook
Author: Reza Sadeghbeigi
Publisher: Butterworth-Heinemann
Total Pages: 394
Release: 2020-04-17
Genre: Technology & Engineering
ISBN: 0128126647

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Fluid Catalytic Cracking Handbook: An Expert Guide to the Practical Operation, Design, and Optimization of FCC Units, Fourth Edition, enables readers to maximize the profitability and reliability of fluid catalytic cracking operations by covering all stages of FCC, including their design, operation, troubleshooting and optimization. It includes valuable chapters on FCC Main Fractionator and Gas Plant and Process Engineering Tools that provide engineers with the relevant tools they need to fully optimize processes and operations. This book presents technologies and processes that will improve the profitability and reliability of FCC units, along with lessons from Mr. Sadeghbeigi’s 30 years of field experience. The book provides a valuable reference for experienced engineers, but is also an ideal reference for those who are developing their skills and knowledge base. Presents relevant, real world examples that enable petrochemical engineers to achieve real term savings Contains dedicated chapters on lessons learned from troubleshooting cases carried out by the author Includes sections on FCC Main Fractionator and Gas Plant Covers both SI and Imperial Units throughout

Fluid Catalytic Cracking Handbook

Fluid Catalytic Cracking Handbook
Author: Reza Sadeghbeigi
Publisher: Butterworth-Heinemann
Total Pages: 344
Release: 1995
Genre: Technology & Engineering
ISBN:

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This practical guide provides information on the design, operation, and troubleshooting of FCC facilities. ...provides practical information covering all areas of fluid catalytic cracking... (Oil & Gas Journal)

Fluid Catalytic Cracking Handbook

Fluid Catalytic Cracking Handbook
Author: Gaurav Vashishit
Publisher:
Total Pages: 0
Release: 2015-08
Genre:
ISBN: 9781681173733

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This is providing practical information and tools that engineers can use to maximize the profitability and reliability of their fluid catalytic cracking operations. The updated chapters and new content deliver expertise and know-how to an industry that faces significant cost cutting in capital expenditure and R&D, along with the retirement of technical specialists who are taking existing knowledge out of the industry with them. This FCC Handbook provides a valuable easy-to-understand resource for both experienced and inexperienced engineers and anyone else associated with the FCC process. Fluid catalytic cracking (FCC) is one of the most important conversion processes used in petroleum refineries. It is widely used to convert the high-boiling, high-molecular weight hydrocarbon fractions of petroleum crude oils to more valuable gasoline, olefinic gases, and other products.[1][2][3] Cracking of petroleum hydrocarbons was originally done by thermal cracking, which has been almost completely replaced by catalytic cracking because it produces more gasoline with a higher octane rating. It also produces byproduct gases that are more olefinic, and hence more valuable, than those produced by thermal cracking.

Fluid Catalytic Cracking

Fluid Catalytic Cracking
Author: J.S. Magee
Publisher: Elsevier
Total Pages: 625
Release: 1993-07-23
Genre: Technology & Engineering
ISBN: 0080887686

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The primary focus of this book as a whole is on performance - performance of the catalyst, of its surface, of the FCC unit, of the feedstocks employed, of the analytical methods used to characterize the catalysts, and of environmentally directed regulations that govern the production of transportation fuels from petroleum. The emphasis on catalyst performance, particularly commercial performance, essentially dictated that the chapter authors be experienced industrial catalytic chemists and engineers. However, each author approached the task with a clear-cut obligation to connect the roots of the science of FCC catalysis with the technology. Fluid Catalytic Cracking: Science and Technology has been written for workers in industrial catalysis and academia, including graduate students in chemistry or chemical engineering who are interested in acquiring an overall knowledge of one of the world's most important areas of catalysis. The book is concise, each topic is treated briefly; complete, all aspects of FCC catalysis are covered; and clear, anyone involved in this field will find topics of interest.

Fluid Catalytic Cracking Technology and Operations

Fluid Catalytic Cracking Technology and Operations
Author: Joseph W. Wilson
Publisher: Pennwell Books
Total Pages: 344
Release: 1997
Genre: Technology & Engineering
ISBN:

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Fluid catalytic cracking (FCC) is the dominant conversion process in petroleum refineries and the major contributor to "value added" in the refining process. Successful operation of the FCC unit is critical to the operation of the FCC unit is critical to the operating success of most refineries. This book provides a complete and in-depth view of FCC process, design and operating principles, and the current FCC technologies available to the refining industry.

Fluid Catalytic Cracking Handbook

Fluid Catalytic Cracking Handbook
Author: Reza Sadeghbeigi
Publisher: Gulf Professional Publishing
Total Pages: 385
Release: 2000-06-08
Genre: Mathematics
ISBN: 0884152898

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Full text engineering e-book.

Fluid Catalytic Cracking VII:

Fluid Catalytic Cracking VII:
Author:
Publisher: Elsevier
Total Pages: 357
Release: 2011-09-22
Genre: Technology & Engineering
ISBN: 0080548512

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Since 1987, the Petroleum Division of the American Chemical Society (ACS) has sponsored at 3 year intervals an international symposium on fluid cracking catalysts (FCC) technology. This volume collects the recent progress of this technology as reported in the papers presented during the 232th National Meeting of the ACS in San Francisco, September 10-14, 2006.Sixty-six years after the introduction of the fluid cracking catalyst process, it remains the main process of gasoline generation for the estimated 237 millions cars on US roads. Catalysts testing and evaluation still remains a subject of interest, debate and controversy. Lambda sweep testing, testing of SOx, NOx and combustion promoters have been discussed in details together with catalyst evaluation for atmospheric residues and metal contaminated oils cracking.Of particular interest has been the introduction of novel concept in process design aimed at improving cracked product selectivity such as two-stage risers for better gasoline and olefins production and downer technology for high severity processes . The importance of solid state nuclear magnetic resonance (NMR) in the study of crude oils, catalysts and reaction products are illustrated by several examples. Two contributions describe the use of predictive methods to understand FCC aging and deactivationand personal overviews of the development of SOx and combustion promoters technology are presented. * Presents findings from the tri-annual international symposium on fluid cracking catalysts (FCC) technology, sponsored by the Petroleum Division of the American Chemical Society (ACS) * Two contributions describe the use of predictive methods to understand FCC aging and deactivation* Personal overviews by the authors of the development of SOx and combustion promoters technology