INIS
nanocomposites
100%
fruits
100%
wastes
100%
removal
100%
aqueous solutions
100%
tetracyclines
100%
adsorption
100%
activated carbon
100%
iron oxides
50%
values
50%
antibiotics
50%
applications
25%
volume
25%
oxygen
25%
interactions
25%
surface area
25%
iron
25%
nanoparticles
25%
superparamagnetism
25%
ph value
25%
matrices
25%
saturation
25%
porous materials
25%
sorption
25%
synthesis
25%
kinetics
25%
phosphoric acid
25%
size
25%
capacity
25%
xrd
25%
fabrication
25%
infrared spectra
25%
thermodynamics
25%
randomness
25%
carbon
25%
magnetization
25%
adsorbents
25%
isotherm
25%
vibrating sample magnetometers
25%
Chemistry
Waste Material
100%
Aqueous Solution
100%
Activated Carbon
100%
Tetracycline
100%
Nanocomposite
33%
TC
25%
Antimicrobial Agent
16%
X-Ray Diffraction
16%
Kinetic Order
16%
Saturation
16%
Iron
16%
Potential
8%
Spectra
8%
Analytical Method
8%
Application
8%
Sample
8%
Phosphoric Acid
8%
Volume
8%
Synthesis (Chemical)
8%
Reaction Temperature
8%
Fourier Transform Infrared Spectroscopy
8%
Surface Area
8%
Nanoparticle
8%
Crystallinity
8%
Dioxygen
8%
Phase Composition
8%
Chemical Element
8%
Monolayer
8%
Chemical Bond
8%
Amorphous Material
8%
Pore Size
8%
Porosity
8%
Carbon
8%
Magnetization
8%
Second Order
8%
Sorption
8%
Isotherm
8%
Adsorbent
8%
Thermodynamics
8%
Iron Oxide
8%
Chemical Engineering
Removal
100%
Activated Carbon
100%
Adsorption
100%
Nanocomposites
33%
Nanoparticle
25%
Iron Oxide
16%
Temperature
8%
Oxygen
8%
Phosphoric Acid
8%
Carbon
8%
Sorption
8%
Isotherm
8%
Adsorbent
8%
Thermodynamics
8%
Iron
8%
Pharmacology, Toxicology and Pharmaceutical Science
Tetracycline
100%
Activated Carbon
100%
Nanocomposite
33%
Adsorption
33%
Nitrogen Mustard
8%
Oxygen
8%
Phosphoric Acid
8%
Antibiotic Agent
8%
Antibiotics
8%
Element
8%
Iron
8%
Carbon
8%
Adsorbent
8%
Emu
8%
Material Science
Solution
100%
Nanocomposites
33%
Temperature
8%
Amorphous Material
8%
Pore Size
8%
Surface Area
8%
Iron Oxide
8%
Adsorbent
8%
Pore Volume
8%
Monolayers
8%