Particle Technology and Surface Phenomena in Minerals and Petroleum

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February 26, 2022 | History

Particle Technology and Surface Phenomena in Minerals and Petroleum

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Publish Date
Language
English
Pages
297

Book Details


Table of Contents

Asphaltene Aggregation and Characterization
The Role of Asphaltene Aggregation in Viscosity Variation of Reservoir Hydrocarbons and in Miscible Processes
Morphological Size of Asphaltene Micelles in Asphalt and Heavy Residue
Asphaltene Particle Size Distribution Studies by Fractals
Peptization Studies of Asphaltene in Asphalt Systems and Correlation by Solubility Parameter Spectra
Theoretical Aspects and Reservoir Characterization
Empirical Expression of Permeability in Terms of Other Petrophysical Properties
On Reliability of Description and Performance Data Estimates From Reservoir Simulators
Abrasion Empirical Equations for the Itabirite Mud System
Correcting Oil-Water Relative Permeability Data for Capillary End Effect in Displacement Experiments
Shallow Sands of North Slope, Alaska and Their Hydrocarbon Potentials
The Potential of Natural Gas in Alaskan Arctic
Colloidal Dispersions in Minerals/Petroleum
Coalescence Behavior of Water-in-Oil Emulsions
Effect of Flocculation on Gypsum Filtration Efficiency
Transition Velocity for the Annular Flow of Viscoplastic Suspensions
Flotation Separation of Apatite From Dolomite Using Dodecylamine and Sodium Chloride
Surface Phenomena and Petroleum Recovery
Surfactants in Enhanced Petroleum Recovery Processes: An Overview
Cosurfactant-Enhanced Alkaline/Polymer Floods for Improving Recovery in a Fractured Sandstone Reservoir
Foam Flow Behaviour in Porous Media in Relation to Enhanced Oil Recovery (EOR)
Detection of a New Effect as a Result of Polymer Behavior in Alkaline Media
Author Index.

Classifications

Dewey Decimal Class
547
Library of Congress
QD415-436, QD241-441

The Physical Object

Format
[electronic resource] /
Pagination
VIII, 297 p.
Number of pages
297

Edition Identifiers

Open Library
OL27079859M
ISBN 13
9781489906175

Work Identifiers

Work ID
OL19893575W

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