Keyphrases
Sorbent
100%
Seawater
100%
Nanocrystalline Ceramics
100%
Uranium
100%
Sorbent Materials
60%
Surface Chemistry
40%
High Affinity
40%
High Surface Area
40%
Nanoporous Sorbents
40%
Trace Minerals
40%
Composite Thin Film
40%
Resin
20%
Performance Improvement
20%
Nanostructures
20%
Brine
20%
Environmentally Benign
20%
Phosphonates
20%
Superior Performance
20%
High Ionic Strength Solutions
20%
Macrostructure
20%
Phosphonic Acid
20%
Micro-macro
20%
Fuel Supply
20%
Porous Polymers
20%
Nuclear Energy
20%
Hydroxypyridinone
20%
Mineral Concentration
20%
Affinity Surface
20%
Functionalized Silica
20%
Processing Capacity
20%
Polymer Binder
20%
Affinity Sorbent
20%
Commercial Resin
20%
Mineral Recovery
20%
Mineral Fouling
20%
Diphonix
20%
Cyclic Use
20%
Carbonate Solutions
20%
Engineering
Thin-Film Composite
100%
High Surface Area
100%
Fouling
50%
Fuel Supply
50%
Nuclear Energy
50%
High Ionic Strength
50%
Processing Capacity
50%
Nanomaterial
50%
Polymer Binder
50%
Mineral Recovery
50%
Silicon Dioxide
50%
Porosity
50%
Material Science
Uranium
100%
Sorbent
100%
Seawater
100%
Composite Material
25%
Surface (Surface Science)
25%
Thin Films
25%
Silicon Dioxide
12%
Macrostructure
12%
Nanostructure
12%
Chemical Engineering
Film
100%
Nanostructure
50%
Ethylenediaminetetraacetic Acid
50%
Fouling
50%