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Nanoparticle-enhanced immiscible fluid displacement in porous rocks
Tannaz Pak
, N. L Archilha
, I. F Mantovani
, A. C Moreira
, C. P Fernandes
, Ian B. Butler
SCEDT Engineering
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peer-review
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Keyphrases
Nanoparticles
100%
Porous Rocks
100%
Nanoparticle Enhancement
100%
Immiscible Fluid Displacement
100%
Organic Fluids
60%
Water-wet
60%
Emulsion
40%
Organic Phase
40%
Oil-in-water Emulsion
40%
Remobilization
40%
Interfacial Tension
40%
Nanoparticle Concentration
40%
Pore Scale
40%
Phase Recovery
40%
3D Image
20%
X-ray Computed Microtomography
20%
Carbonate Rocks
20%
Capillary Dominated Flow
20%
High Aspect Ratio
20%
Liquid Leakage
20%
Nanoparticle Suspension
20%
Wet System
20%
Roof Shape
20%
Fluid Phase
20%
Flow Dynamics
20%
Multiscale Pore Structure
20%
Scale Distribution
20%
Immiscible Displacement
20%
Fluid Displacement
20%
Aqueous Fluid
20%
Oil Reservoir
20%
Core Flooding Experiment
20%
Dolomite
20%
Nanoparticle Size
20%
Pickering Emulsion
20%
Aquifer
20%
Concentration Properties
20%
Nanoparticles Types
20%
Groundwater Remediation
20%
Surface Properties
20%
Rock Wettability
20%
Size-dependent Properties
20%
Non-aqueous Phase Liquid
20%
In Situ Formation
20%
Aqueous Solution
20%
Hydrocarbon Reservoir
20%
Flow Regime
20%
Porous Media
20%
Nanoparticles Effect
20%
Mineral Oil
20%
Fluid-filled
20%
Multiphase Fluid
20%
Fluid Transport
20%
Wettability Alteration
20%
Oil-wet
20%
Oil Injection
20%
Transport in Porous Media
20%
Aqueous Suspension
20%
Particle-based
20%
Suspension Injection
20%
Geological Formation
20%
Hydrophilic SiO2 Nanoparticles
20%
Mixed-wet
20%
Snapping
20%
Surface Characteristics
20%
Bulk Properties
20%
Enhanced Oil Recovery
20%
Water Enhancement
20%
Earth and Planetary Sciences
Pore Scale
100%
Immiscible Fluid
100%
Porosity
100%
Remobilization
66%
Wettability
66%
Carbonate Rock
33%
Tomography
33%
Salinity
33%
Dolomite
33%
Hydrocarbon Reservoir
33%
Mineral Oil
33%
Nonaqueous Phase Liquid
33%
Oil Recovery
33%
Groundwater Remediation
33%
Carbon Dioxide
33%
Transportation
33%
X Ray
33%