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Chemical Nanofluids in Enhanced Oil Recovery

Fundamentals and Applications
Buch | Softcover
150 Seiten
2024
CRC Press (Verlag)
978-1-032-06527-4 (ISBN)
CHF 79,95 inkl. MwSt
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The text discusses key chemical nanofluid enhanced oil recovery techniques for extracting residual crude oil form the reservoirs. It will serve as an ideal guide for graduate students and academic researchers in the field of chemical and petroleum engineering.
Sustainable world economy requires a steady supply of crude oil without any production constraints. Thus, the ever-increasing energy demand of the entire world can be mostly met through the enhanced production from crude oil from existing reservoirs. With the fact that newer reservoirs with large quantities of crude oil could not be explored at a faster pace, it will be inevitable to produce the crude oil from matured reservoirs at an affordable cost. Among alternate technologies, the chemical enhanced oil recovery (EOR) technique has promising potential to recover residual oil from matured reservoirs being subjected to primary and secondary water flooding operations. Due to pertinent complex phenomena that often have a combinatorial role and influence, the implementation of chemical EOR schemes such as alkali/surfactant/polymer flooding and their combinations necessitates upon a fundamental understanding of the potential mechanisms and their influences upon one another and desired response variables. Addressing these issues, the book attempts to provide useful screening criteria, guidelines, and rules of thumb for the identification of process parametric sets (including reservoir characteristics) and response characteristics (such as IFT, adsorption etc.,) that favor alternate chemical EOR systems. Finally, the book highlights the relevance of nanofluid/nanoparticle for conventional and unconventional reservoirs and serves as a needful resource to understand the emerging oil recovery technology. Overall, the volume will be of greater relevance for practicing engineers and consultants that wish to accelerate on field applications of chemical and nano-fluid EOR systems. Further, to those budding engineers that wish to improvise upon their technical know-how, the book will serve as a much-needed repository.

Rahul Saha is an assistant professor in the school of petroleum technology, Pandit Deendayal Petroleum University, Gandhinagar, Gujarat, India. His research area is primarily focused on the recovery of crude oil from reservoirs by chemical enhanced oil recovery method and the application of nanotechnology. His teaching areas is focused on Chemical and Petroleum engineering and so far, he has published 7 research articles. Pankaj Tiwari is working as an assistant professor in the Department of Chemical Engineering at Indian Institute of Technology Guwahati. His research activities are in studying the various mechanisms for enhanced oil recovery and, developing kinetics and compositional models for pyrolysis and combustion processes. He has previously worked at General Electric, Plastic division at JFWTC Bangalore on developing the monomer for high-performance polymer (HPP). Ramgopal V.S. Uppaluri is currently working as a professor, department of chemical engineering, Indian Institute of Technology Guwahati. His research interests include membrane technology, petroleum engineering and refining, food engineering and processing, process optimization and wastewater treatment. He has published more than 90 research papers in journals of national and international repute. In upstream engineering, his research is primarily in the field of chemical and polymer enhanced oil recovery.

1. Introduction. 2. Alkali Flooding: Acid Number and Mechanism. 3. Alkali and Surfactant Flooding. 4. Surfactant Adsorption Characteristics on Reservoir Rock. 5. Nanofluid (Polymer/Surfactant-polymer) Flooding. 6. Problems and Challenges in Chemical EOR. 7. Application of Nanofluid for Unconventional Reservoirs.

Erscheinungsdatum
Zusatzinfo 13 Tables, black and white; 35 Line drawings, black and white; 35 Illustrations, black and white
Verlagsort London
Sprache englisch
Maße 156 x 234 mm
Gewicht 312 g
Themenwelt Naturwissenschaften Chemie Technische Chemie
Technik Elektrotechnik / Energietechnik
ISBN-10 1-032-06527-3 / 1032065273
ISBN-13 978-1-032-06527-4 / 9781032065274
Zustand Neuware
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