Surfactants for Enhanced Oil Recovery Applications - Muhammad Sagir, Muhammad Mushtaq, M. Suleman Tahir, Muhammad Bilal Tahir, Abdul Ravoof Shaik

Surfactants for Enhanced Oil Recovery Applications

Buch | Hardcover
XI, 129 Seiten
2020 | 1st ed. 2020
Springer International Publishing (Verlag)
978-3-030-18784-2 (ISBN)
117,69 inkl. MwSt
This book provides a concise treatise on the use of surfactants in enhanced oil recovery (EOR), including information on key types of surfactants and their respective applications in the wider petroleum industry. 
The authors discuss carbon dioxide EOR, alkaline-surfactant-polymer flooding strategies, and the use of surfactants as a means of reducing interfacial tension, while also paying special attention to the challenges involved in using surfactants for enhanced oil recovery, such as the difficult issue of surfactant adsorption on reservoir rock. All chapters highlight and are based on the authors' own laboratory-scale case studies.   
Given its content, the book offers a valuable asset for graduate students of petroleum and chemical engineering, as well as researchers in the field of chemical enhanced oil recovery. It will also be of interest to professionals involved in enhanced industrial oil recovery. 

Dr Muhammad Sagir is currently working at the Department of Chemical Engineering, University of Gujrat, Pakistan. He is involved in four different research projects as PI, Co-PI, or collaborator, and has participated in numerous prior research projects in various capacities. He has published more than 50 journal papers in peer-reviewed international journals and over 40 papers in international conference proceedings. Throughout his career, he has worked on or led teams on a wide variety of R&D projects, e.g. chemical EOR projects using surfactants or other chemicals. Dr Muhammad Mushtaq is a leading researcher at the ADRIC chemical EOR laboratory for carbonate reservoirs. He joined ADRIC after completing his PhD at the UTP, Malaysia. His chief area of interest is the formulation, design and evaluation of surfactants for EOR applications involving wettability alteration. He is also currently leading a research group on using polymers for EOR applications in SP and Foam-Polymer projects. Dr. Muhammad has several publications and a book chapter on surfactants and polymers in EOR applications to his credit. Prof M Suleman Tahir is currently working as a Professor of Chemical Engineering and Dean of the Faculty of Engineering and Technology, University of Gujrat, Pakistan. He received his PhD from the TU Graz, Austria, in 2011. He has published 40 papers in ISI-indexed international journals. He has an extensive background in chemical engineering research, especially in the field of energy. Currently, he is involved in several research and technology development projects as PI or Co-PI. Dr Muhammad Bilal Tahir is a researcher at the University of Gujrat, Pakistan and is currently working on nanotechnology for the oil and gas industry, as well as colloids & surfactants. His initial work was on photocatalysis-based processes for pollutant decontamination, adsorption of heavy metals in water and oil, and energy production. He has many publications in prominent ISI-indexed international journals.

Surfactants.- Surfactants in Petroleum Industry.- Surfactants as Foaming Agents.- Surfactants as Emulsification Agents for IFT Reduction.- CO2 Philic Surfactants and Switchable Amine-based Surfactants for Foam Applications.- Modeling of Surfactant Flooding in Porous Medium.- Challenges and Future Trends in Surfactant EOR.

Erscheinungsdatum
Zusatzinfo XI, 129 p. 53 illus., 38 illus. in color.
Verlagsort Cham
Sprache englisch
Maße 155 x 235 mm
Gewicht 373 g
Themenwelt Naturwissenschaften Chemie Technische Chemie
Technik Elektrotechnik / Energietechnik
Schlagworte Chemical enhanced oil recovery • Coreflooding • Emulsion • Enhanced Oil Recovery • Interfacial tension • Matrix Metalloproteinases • Surfactant flooding • Surfactant interactions with rock • surfactants
ISBN-10 3-030-18784-5 / 3030187845
ISBN-13 978-3-030-18784-2 / 9783030187842
Zustand Neuware
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