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Partition of pyrite in aqueous biphase systems
K. Osseo-Asare
, X. Zeng
Materials Research Institute (MRI)
Materials Science and Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
21
Scopus citations
Overview
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Dive into the research topics of 'Partition of pyrite in aqueous biphase systems'. Together they form a unique fingerprint.
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Engineering
Rich Phase
100%
Molecular Weight
100%
Hydrophobic
50%
Hydrophilicity
50%
Polymer Concentration
50%
Ph Dependent
50%
Aqueous Phase
50%
Extraction Process
50%
Salt Concentration
50%
Oxidization
50%
Partitioning Behavior
50%
Keyphrases
Pyrite
100%
Biphase System
100%
Polyethylene Glycol
42%
Sodium Carbonate
28%
Salt Concentration
14%
Aqueous Phase
14%
PH Dependence
14%
Phase Diagram
14%
Polymer Concentration
14%
Sodium Sulfate
14%
Solid Surface
14%
Pyrite FeS2
14%
Metal Sulfide
14%
Partitioning Behavior
14%
Relative Concentration
14%
Extraction Methods
14%
Surface Oxidation
14%
Hydrophilic Site
14%
Hydrophobic Binding Sites
14%
Chemical Engineering
Polyethylene Glycol
100%
Sulfide Mineral
16%
Material Science
Polyethylene Glycol
100%