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New approach for scaling control in forward osmosis (FO) by using an antiscalant-blended draw solution
Gimun Gwak,
Seungkwan Hong
School of Civil, Environmental and Architectural Engineering
Research output
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Contribution to journal
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Article
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peer-review
33
Citations (Scopus)
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Dive into the research topics of 'New approach for scaling control in forward osmosis (FO) by using an antiscalant-blended draw solution'. Together they form a unique fingerprint.
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Chemical Compounds
Osmosis
85%
Gypsum
53%
Sodium Atom
26%
Aspartic Acid
23%
Sodium Salt
20%
Solute
17%
Mineral
17%
Anion
12%
Mixture
9%
Application
6%
Engineering & Materials Science
Osmosis
96%
Sodium
28%
Gypsum
22%
Sodium chloride
19%
Membranes
15%
Fluxes
14%
Negative ions
12%
Fouling
10%
Minerals
9%
Salts
8%
Industrial applications
8%
Acids
8%
Water
4%
Experiments
3%
Physics & Astronomy
osmosis
79%
scaling
44%
gypsum
25%
sodium
24%
aspartic acid
15%
membranes
13%
fouling
12%
minerals
9%
anions
8%
solutes
8%
salts
8%
conduction
6%
water
5%
Medicine & Life Sciences
Osmosis
100%
sodium polymetaphosphate
33%
Calcium Sulfate
25%
Membranes
10%
Anions
9%
Aspartic Acid
9%
Minerals
8%
Water
6%