Colloids and Interfaces in Oil Recovery
Material type:
ArticlePublication details: MDPI - Multidisciplinary Digital Publishing Institute 2019Description: 1 electronic resource (234 p.)Content type: - text
- computer
- online resource
- 9783039211067
- 9783039211074
- Bacillus firmus
- Bacillus halodurans
- CO2 foam
- EOR
- Microbial Enhanced Oil Recovery
- Pickering emulsions
- SAG
- SAGD
- alcohols
- asphaltene
- biotransformation
- colloid and interfacial science
- contact angles
- cyclodextrins
- dynamic interfacial tension
- electric double layer
- emulsions
- enhanced oil recovery
- fluid–fluid interactions
- heavy oil
- heavy oil and bitumen
- heavy oil recovery
- in-situ rheology
- inclusion complexes
- interfaces
- interfacial complexation
- low salinity waterflooding
- metal ion interactions
- microfluidics
- monolayer
- multicomponent ion exchange
- nanoparticle fluids
- naphthenic acid
- non-Newtonian flow in porous medium
- oil film displacement
- oil recovery
- oil sands
- optical video microscopy
- petroleum
- petroleum colloids
- polymer flooding
- polymer-enhanced foam
- polymers
- porous media
- recovery factor
- spore forming bacteria
- surface and interfacial tension
- surface charge
- surfactants
- thermal recovery
- waterflooding
- wettability
- wettability alteration
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It is well-known that colloid and interface science and petroleum production are inextricably linked. Whether in the reservoir, with its porous structure, or during recovery, crude oil is intimately associated with rock surfaces and with water, often in the form of emulsions. This situation leads to highly complex systems, comprising multiple colloids and interfaces, which require to be optimized if oil is to be recovered efficiently, both in terms of economic cost and with due concern for the environment. This book contains a compilation of contemporary research topics which illustrate various aspects of the importance of colloids and interfaces in crude oil recovery through modifying conditions between the rock, crude oil, and water in the reservoir, in order to achieve improved oil recovery. The specific topics covered relate both to conventional oils, in which waterflooding is the most common secondary and tertiary means of recovery, and to non-conventional heavy oil and natural bitumen, which require thermal recovery methods, owing to their high viscosity.
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eng
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