Upgrading Petroleum Residues and Heavy Oils
Title | Upgrading Petroleum Residues and Heavy Oils PDF eBook |
Author | R. Murray Gray |
Publisher | CRC Press |
Pages | 388 |
Release | 1994-04-19 |
Genre | Science |
ISBN | 9780824792114 |
"This useful reference offers in-depth coverage of current techniques for converting heavy oils and residues into more valuable distillates.Examines the chemistry of heavy hydrocarbon feeds and their properties important to engineering design, including phase behavior, reaction kinetics, and thermodynamic and transport characteristics!"
Processing of Heavy Crude Oils
Title | Processing of Heavy Crude Oils PDF eBook |
Author | Ramasamy Marappa Gounder |
Publisher | |
Pages | 274 |
Release | 2019-12-18 |
Genre | |
ISBN | 1839684097 |
Upgrading Oilsands Bitumen and Heavy Oil
Title | Upgrading Oilsands Bitumen and Heavy Oil PDF eBook |
Author | Murray R. Gray |
Publisher | University of Alberta |
Pages | 513 |
Release | 2015-03-11 |
Genre | Science |
ISBN | 1772120359 |
State-of-the-art oilsands processing technologies, from laboratory to full commercial scale.
Subsurface Upgrading of Heavy Crude Oils and Bitumen
Title | Subsurface Upgrading of Heavy Crude Oils and Bitumen PDF eBook |
Author | Cesar Ovalles |
Publisher | CRC Press |
Pages | 304 |
Release | 2019-07-24 |
Genre | Science |
ISBN | 1351721097 |
Heavy crude oils and bitumen represent more than 50% of all hydrocarbons available on the planet. These feedstocks have a low amount of distillable material and high level of contaminants that make their production, transportation, and refining difficult and costly by conventional technologies. Subsurface Upgrading of Heavy Crude Oils and Bitumen is of interest to the petroleum industry mainly because of the advantages compared to aboveground counterparts. The author presents an in-depth account and a critical review of the progress of industry and academia in underground or In-Situ upgrading of heavy, extra-heavy oils and bitumen, as reported in the patent and open literature. This work is aimed to be a standalone monograph, so three chapters are dedicated to the composition of petroleum and fundamentals of crude oil production and refining. Key Features: Offers a multidisciplinary scope that will appeal to chemists, geologists, biologists, chemical engineers, and petroleum engineers Presents the advantages and disadvantages of the technologies considered Discusses economic and environmental considerations for all the routes evaluated and offers perspectives from experts in the field working with highlighted technologies
Fundamentals of Petroleum Refining
Title | Fundamentals of Petroleum Refining PDF eBook |
Author | Mohamed A. Fahim |
Publisher | Elsevier |
Pages | 513 |
Release | 2009-11-19 |
Genre | Technology & Engineering |
ISBN | 0080931561 |
Fundamentals of Petroleum Refining presents the fundamentals of thermodynamics and kinetics, and it explains the scientific background essential for understanding refinery operations. The text also provides a detailed introduction to refinery engineering topics, ranging from the basic principles and unit operations to overall refinery economics. The book covers important topics, such as clean fuels, gasification, biofuels, and environmental impact of refining, which are not commonly discussed in most refinery textbooks. Throughout the source, problem sets and examples are given to help the reader practice and apply the fundamental principles of refining. Chapters 1-10 can be used as core materials for teaching undergraduate courses. The first two chapters present an introduction to the petroleum refining industry and then focus on feedstocks and products. Thermophysical properties of crude oils and petroleum fractions, including processes of atmospheric and vacuum distillations, are discussed in Chapters 3 and 4. Conversion processes, product blending, and alkylation are covered in chapters 5-10. The remaining chapters discuss hydrogen production, clean fuel production, refining economics and safety, acid gas treatment and removal, and methods for environmental and effluent treatments. This source can serve both professionals and students (on undergraduate and graduate levels) of Chemical and Petroleum Engineering, Chemistry, and Chemical Technology. Beginners in the engineering field, specifically in the oil and gas industry, may also find this book invaluable. - Provides balanced coverage of fundamental and operational topics - Includes spreadsheets and process simulators for showing trends and simulation case studies - Relates processing to planning and management to give an integrated picture of refining
Practical Advances in Petroleum Processing
Title | Practical Advances in Petroleum Processing PDF eBook |
Author | Chang Samuel Hsu |
Publisher | Springer Science & Business Media |
Pages | 894 |
Release | 2007-01-10 |
Genre | Science |
ISBN | 0387257896 |
Includes topics not found together in books on petroleum processing: economics, automation, process modeling, online optimization, safety, environmental protection Combines overviews of petroleum composition, refinery processes, process automation, and environmental protection with comprehensive chapters on recent advances in hydroprocessing, FCC, lubricants, hydrogen management Gives diverse perspectives, both geographic and topical, because contributors include experts from eight different countries in North America, Europe and Asia, representing oil companies, universities, catalyst vendors, process licensors, consultants and engineering contractors
Experimental Methods for Evaluation of Hydrotreating Catalysts
Title | Experimental Methods for Evaluation of Hydrotreating Catalysts PDF eBook |
Author | Jorge Ancheyta |
Publisher | John Wiley & Sons |
Pages | 429 |
Release | 2020-06-08 |
Genre | Technology & Engineering |
ISBN | 1119517990 |
Presents detailed information and study cases on experiments on hydrotreating catalysts for the petroleum industry Catalytic hydrotreating (HDT) is a process used in the petroleum refining industry for upgrading hydrocarbon streams—removing impurities, eliminating metals, converting asphaltene molecules, and hydrocracking heavy fractions. The major applications of HDT in refinery operations include feed pretreatment for conversion processes, post-hydrotreating distillates, and upgrading heavy crude oils. Designing HDT processes and catalysts for successful commercial application requires experimental studies based on appropriate methodologies. Experimental Methods for Evaluation of Hydrotreating Catalysts provides detailed descriptions of experiments in different reaction scales for studying the hydrotreating of various petroleum distillates. Emphasizing step-by-step methodologies in each level of experimentation, this comprehensive volume presents numerous examples of evaluation methods, operating conditions, reactor and catalyst types, and process configurations. In-depth chapters describe experimental setup and procedure, analytical methods, calculations, testing and characterization of catalyst and liquid products, and interpretation of experiment data and results. The text describes experimental procedure at different levels of experimentation—glass reactor, batch reactor, continuous stirred tank reactor, and multiple scales of tubular reactors—using model compounds, middle distillates and heavy oil. This authoritative volume: Introduces experimental setups used for conducting research studies, such as type of operation, selection of reactor, and analysis of products Features examples focused on the evaluation of different reaction parameters and catalysts with a variety of petroleum feedstocks Provides experimental data collected from different reaction scales Includes experiments for determining mass transfer limitations and deviation from ideality of flow pattern Presents contributions from leading scientists and researchers in the field of petroleum refining Experimental Methods for Evaluation of Hydrotreating Catalysts is an indispensable reference for researchers and professionals working in the area of catalytic hydrotreating, as well as an ideal textbook for courses in fields such as chemical engineering, petrochemical engineering, and biotechnology.