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Recyclable high-affinity arsenate sorbents based on porous Fe2O3/La2O2CO3 composites derived from Fe-La-C frameworks
Changyong Lu
,
Hans Chr. Bruun Hansen
Section for Environmental Chemistry and Physics
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Dive into the research topics of 'Recyclable high-affinity arsenate sorbents based on porous Fe2O3/La2O2CO3 composites derived from Fe-La-C frameworks'. Together they form a unique fingerprint.
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Material Science
Adsorption Kinetics
20%
Arsenate
100%
Arsenic
20%
Composite Material
100%
Magnetic Property
20%
Magnetism
20%
Metal-Organic Framework
40%
Potable Water
20%
Powder X-Ray Diffraction
20%
Raman Spectroscopy
20%
Silicate
20%
Sorbent
100%
Surface (Surface Science)
40%
X-Ray Diffraction
20%
X-Ray Photoelectron Spectroscopy
20%
Keyphrases
Adsorption Performance
25%
Arsenate Removal
25%
Arsenic(V) Removal
25%
Batch Adsorption
25%
La-MOF
25%
LA21
25%
La2O2CO3
100%
Mole Ratio
25%
Porous Fe2O3
100%
Sacrificial Template
25%
Sphere Surface
25%
Sulfate Acid
25%
X-ray Raman Spectroscopy
25%
Chemical Engineering
Adsorption Performance
100%
Batch Adsorption
100%