Engineering
Isolation Method
100%
High Performance Liquid Chromatography
66%
Diode Array
66%
Illustrates
33%
Applicability
33%
Optimum Condition
33%
Influencing Parameter
33%
Adsorption Capacity
33%
Linear Range
33%
Detection Limit
33%
Fractional Factorial Design
33%
Box-Behnken Design
33%
Target Analyte
33%
Environmental Risk
33%
Hydrophobic Interaction
33%
Contaminated Water
33%
Material Science
Metal-Organic Framework
100%
Sorbent
100%
High Performance Liquid Chromatography
50%
Hydrogen Bonding
25%
Desorption
25%
Kinetic Order
25%
Factorial Design
25%
Chemical Engineering
High Performance Liquid Chromatography
100%
Metal-Organic Frameworks
50%
Desorption
50%
Water Matrix
50%
High Adsorption
50%
High Adsorption Capacity
50%
Keyphrases
Al-MOF
100%
Penicillin V
71%
Real Water Analysis
14%
Sample Preconcentration
14%
Low Solvent Consumption
14%
Chemistry
MIL-53(Al)
100%
Piperacillin
75%
Contaminated Water
12%
Food Science
Solid Phase Microextraction
100%
High Performance Liquid Chromatography
28%