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Nanoparticles-assisted surface charge modification of the porous medium to treat colloidal particles migration induced by low salinity water flooding
Danial Arab,
Peyman Pourafshary
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Corresponding author for this work
Research output
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Contribution to journal
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Article
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peer-review
64
Citations (Scopus)
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Dive into the research topics of 'Nanoparticles-assisted surface charge modification of the porous medium to treat colloidal particles migration induced by low salinity water flooding'. Together they form a unique fingerprint.
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Chemical Compounds
Surface charge
100%
Nanoparticles
70%
Porous materials
68%
Water
46%
Aluminum oxide
25%
Turbidimeters
16%
Dynamic light scattering
14%
Ionic strength
13%
Experiments
12%
Zeta potential
12%
Oxides
10%
Adsorbents
10%
Effluents
9%
Surface properties
8%
Metals
7%
Engineering & Materials Science
Surface charge
100%
Nanoparticles
70%
Porous materials
68%
Water
37%
Aluminum oxide
25%
Turbidimeters
16%
Dynamic light scattering
14%
Ionic strength
13%
Experiments
12%
Zeta potential
12%
Adsorbents
10%
Effluents
9%
Surface properties
8%
Oxides
7%
Metals
5%
Physics & Astronomy
salinity
93%
nanoparticles
47%
water
39%
impairment
21%
permeability
15%
fines
12%
effluents
11%
adsorbents
11%
soaking
10%
blanks
10%
surface properties
8%
metal oxides
8%
tendencies
7%
light scattering
7%
damage
6%