Enhanced catalytic oxidation ability of ternary layered double hydroxides for organic pollutants degradation

Co 2+ and Cu 2+ substituted MgAl layered double hydroxides with an M 2+ /M 3+ atomic ratio of 2.0 were synthesized by a co-precipitation method and fully characterized using various techniques including powder X-ray diffraction, ICP-AES analysis, FT-IR, DR UV-Vis spectroscopy, N 2 adsorption-desorpt...

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Veröffentlicht in:Dalton transactions : an international journal of inorganic chemistry 2016-05, Vol.45 (19), p.8224-8235
Hauptverfasser: Fahel, Jean, Kim, Sanghoon, Durand, Pierrick, André, Erwan, Carteret, Cédric
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Sprache:eng
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Zusammenfassung:Co 2+ and Cu 2+ substituted MgAl layered double hydroxides with an M 2+ /M 3+ atomic ratio of 2.0 were synthesized by a co-precipitation method and fully characterized using various techniques including powder X-ray diffraction, ICP-AES analysis, FT-IR, DR UV-Vis spectroscopy, N 2 adsorption-desorption and transmission electron microscopy. The materials revealed a good crystallinity with no phase impurity and successful substitution of cobalt and copper ions in the framework of binary LDH with the target ratio of metals in the sheet. The adsorption characteristics (kinetic and isotherm) and the catalytic oxidation of organic pollutants, methylene blue (cationic dye) and orange II (anionic) were carried out to investigate a potential use of LDH materials as catalysts. In particular, Co 3 Cu 1 Al 2 LDH exhibited an excellent catalytic activity towards catalytic dye degradation, especially for orange II with good stability and reusability over several times. Furthermore, this LDH material showed good catalytic performance for several chlorophenol compounds, suggesting its practical application in wastewater treatment. Therefore, layered double hydroxides substituted with Co 2+ and Cu 2+ could be promising candidates in various applications, such as the abatement of organic pollutants. Layered double hydroxides substituted with Co 2+ and Cu 2+ are promising candidates in catalytic degradation of organic pollutants.
ISSN:1477-9226
1477-9234
DOI:10.1039/c6dt00441e