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Insights into the Pore-Scale Mechanism for the Low-Salinity Effect: Implications for Enhanced Oil Recovery
Z. L. Liu, T. Rios-carvajal, M. P. Andersson, M. Ceccato, S. L. S. Stipp,
T. Hassenkam
Department of Chemistry
Department of Chemistry
15
Citations (Scopus)
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Dive into the research topics of 'Insights into the Pore-Scale Mechanism for the Low-Salinity Effect: Implications for Enhanced Oil Recovery'. Together they form a unique fingerprint.
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Engineering & Materials Science
Enhanced recovery
100%
Adhesion
63%
Oils
55%
Organic compounds
48%
Atomic force microscopy
43%
Molecules
33%
Water
27%
Density functional theory
25%
Graphene oxide
24%
Remediation
21%
Positive ions
21%
Silicon wafers
20%
Groundwater
20%
Graphene
20%
Sandstone
20%
Seawater
19%
Anchors
17%
Minerals
17%
Sand
15%
Soils
13%
Recovery
11%
Testing
8%
Chemical Compounds
Force
58%
Electric Double Layer
44%
Pore
33%
Atomic Force Microscopy
27%
Formation Water
24%
Surface
21%
Groundwater
18%
Remediation
17%
Soil
14%
Mineral
13%
Graphene Oxide
13%
Graphene
12%
Molecule
11%
Density Functional Theory
10%
Cation
10%