Synthesis, physical and electrochemical properties of CoMn2O4: application to photocatalytic Ni2+ reduction

被引:0
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作者
M. M. Kaci
N. Nasrallah
M. Kebir
R. Guernanou
A. Soukeur
M. Trari
机构
[1] USTHB,Laboratory of Reaction Engineering, Faculty of Mechanical and Process Engineering
[2] CRAPC,Research Centre in Analytical Chemistry and Physics
[3] Research and Development Centre SONATRACH,Laboratory of Hydrometallurgy and Inorganic Molecular Chemistry, Faculty of Chemistry
[4] Univ Rennes,Laboratory of Storage and Valorization of Renewable Energies, Faculty of Chemistry
[5] CNRS,undefined
[6] ISCR-UMR 6226,undefined
[7] USTHB,undefined
[8] USTHB,undefined
来源
关键词
Spinel CoMn; O; Co-precipitation; Ni; reduction; Visible light; Pseudo-first-order model;
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摘要
Nickel is a hazardous metal with a harmful effect on the health and environment. In this work, the photocatalytic reduction of Ni2+ was examined onto the hetero-system CoMn2O4/TiO2 under visible light irradiation. The spinel CoMn2O4 is prepared by co-precipitation and characterized in detail to correlate its structural, textural, morphological, compositional, optical and photoelectrochemical features. The effects of pH, catalyst dose and Ni2+ concentration were optimized. The Ni2+ reduction increased with decreasing both the catalyst dose and pH. The highest performance was obtained at pH 7.4, a catalyst dose of 1 g/L and Ni2+ concentration of 10 mg L−1 with a removal abatement of 88% after 180 min irradiation. The data were suitably fitted by the pseudo-first-order kinetic reaction with an apparent constant of 0.027 min−1. Besides, the durability and the stability of the hetero-system CoMn2O4/TiO2 were evaluated by four consecutive catalytic cycles.
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页码:1693 / 1712
页数:19
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