Hydroprocessing of Heavy Oils and Residua

Hydroprocessing of Heavy Oils and Residua
Title Hydroprocessing of Heavy Oils and Residua PDF eBook
Author Jorge Ancheyta
Publisher CRC Press
Pages 366
Release 2007-05-08
Genre Science
ISBN 1420007432

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Many oil refineries employ hydroprocessing for removing sulfur and other impurities from petroleum feedstocks. Capable of handling heavier feedstocks than other refining techniques, hydroprocessing enables refineries to produce higher quality products from unconventional- and formerly wasted- sources. Hydroprocessing of Heavy Oils and Residua

The Desulfurization of Heavy Oils and Residua

The Desulfurization of Heavy Oils and Residua
Title The Desulfurization of Heavy Oils and Residua PDF eBook
Author James G. Speight
Publisher CRC Press
Pages 484
Release 1999-11-05
Genre Science
ISBN 9780203909928

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"Second Edition expands and updates information on the technological aspects of refining heavy oils, residua, bitumen, and other high-sulfur feedstocks. Focuses on the range of next-generation refining processes."

Hydroprocessing Catalysts And Processes: The Challenges For Biofuels Production

Hydroprocessing Catalysts And Processes: The Challenges For Biofuels Production
Title Hydroprocessing Catalysts And Processes: The Challenges For Biofuels Production PDF eBook
Author Bo Zhang
Publisher World Scientific
Pages 316
Release 2018-04-09
Genre Science
ISBN 1786344858

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The demand for hydroprocessing catalysts has shown an increasing trend, because of their applications in refining of petroleum and biofuels, in order to comply with strict environmental regulations controlling emissions from transportation vehicles.Transport fuel is dominated by fossil fuels with carbon emission intensive production methods. If we are to move away from these sources, the alternative is to produce liquid fuels from agricultural stocks — crops, crop waste, forestry waste or algae. Converting these feedstocks into high quality fuels is a considerable challenge.By describing the current status in processing agricultural feedstock into high quality liquid transport fuels, the authors set out the means to develop better chemistry and catalysis for the necessary conversion processes. This book offers an intriguing insight into the mechanisms and protocols involved in new hydroprocessing catalysts and processes, and covers the methods for upgrading these liquids to modern transport vehicles suitable for operation in modern gasoline and diesel engines.It provides an introduction to the mechanism of hydroprocessing reactions, application of different metals in hydroprocessing, the effect of catalyst supports, applications in refining new feedstock, renewable fuels standards, the management of spent hydroprocessing catalysts, and hydrogen production.Hydroprocessing Catalysts and Processes will prove useful for both researchers in academe and industry concerned with future fuels development and treatment to produce current and future liquid transport fuels.

Deactivation of Heavy Oil Hydroprocessing Catalysts

Deactivation of Heavy Oil Hydroprocessing Catalysts
Title Deactivation of Heavy Oil Hydroprocessing Catalysts PDF eBook
Author Jorge Ancheyta
Publisher John Wiley & Sons
Pages 338
Release 2016-08-15
Genre Technology & Engineering
ISBN 1118769848

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Written by a scientist and researcher with more than 25 years of experience in the field, this serves as a complete guide to catalyst activity loss during the hydroprocessing of heavy oils. Explores the physical and chemical properties of heavy oils and hydroprocessing catalysts; the mechanisms of catalyst deactivation; catalyst characterization by a variety of techniques and reaction conditions; laboratory and commercial information for model validations; and more Demonstrates how to develop correlations and models for a variety of reaction scales with step-by-step descriptions and detailed experimental data Contains important implications for increasing operational efficiencies within the petroleum industry An essential reference for professionals and researchers working in the refining industry as well as students taking courses on chemical reaction engineering

Catalysts for Hydroprocessing of Heavy Oils and Petroleum Residues

Catalysts for Hydroprocessing of Heavy Oils and Petroleum Residues
Title Catalysts for Hydroprocessing of Heavy Oils and Petroleum Residues PDF eBook
Author Ching Thian Tye
Publisher
Pages 0
Release 2018
Genre Electronic books
ISBN

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With the increasing demand of petroleum-derived products due to the world population and development, upgrading of crude oil with heavier quality and petroleum residues is unavoidable. Hydroprocessing is a preferable process for heavy oil upgrading. The process is operated with the presence of a catalyst, and catalysis plays an important role in the process. An overview regarding the catalyst design such as the catalyst active metal, active phase, support properties, and catalyst structure for heavy oil hydroprocessing is provided. There also include some recent advancements related to catalytic hydroprocessing of heavy oils and residue processes. Further catalyst performance improvement will likely come from catalyst optimization and better catalyst deactivation resistance resulting from metal poisoning and coke formation.

Processing of Heavy Crude Oils

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

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Experimental Methods for Evaluation of Hydrotreating Catalysts

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

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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.