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Synthesis, structural characterization and Cu(II) adsorption behavior of manganite (γ-MnOOH) nanorods
LUCIA FABIOLA CANO SALAZAR
ANTONIA MARTINEZ LUEVANOS
JESUS ALEJANDRO CLAUDIO RIZO
FRANCISCO RAUL CARRILLO PEDROZA
SAGRARIO MARTINEZ MONTEMAYOR
JOSE RENE RANGEL MENDEZ
Acceso Abierto
Atribución-NoComercial-SinDerivadas
https://doi.org/10.1039/C9RA09652C
Aqueous-solution
Copper ions
Removal
Equilibrium
Waste
Hydroxide
Kinetics
Cadmium
Oxides
Zinc
"New alternatives for the removal of transition metal ions that present an environmental risk are required. The chemical adsorption of these ions on surfaces with chemisorbent properties represents a promising area of research. In this work, manganite (γ-MnOOH) nanorods were synthesized, with a surface area of 20.22 m2 g−1, pore size of 32.18 nm and pore volume of 0.1627 cm3 g−1. After chemical and structural characterization of the manganite sample, it was evaluated as an adsorbent of Cu(II) from aqueous solution. The equilibrium adsorption data were well fitted by the Langmuir isotherm, and the results indicated that the maximum adsorption capacity of Cu(II) was 11.926 mg g−1. Cu(II) ion adsorption on the manganite surface is a spontaneous and exothermic process (ΔG°< 0 and ΔH°< 0). The negative value of ΔS° suggests the stability of the adsorption process without structural change at the manganite–aqueous solution interface. A scheme for chemisorption of Cu(II) ions on the hydroxylated surface of manganite is proposed."
Royal Society of Chemistry
2020
Artículo
Cano-Salazar, Lucía & Martínez, Antonia & Claudio-Rizo, Jesús & Carrillo-Pedroza, Francisco & Montemayor, S. & Rangel-Mendez, Jose. (2020). Synthesis, structural characterization and Cu( ii ) adsorption behavior of manganite (γ-MnOOH) nanorods. RSC Advances. 10. 179-186. 10.1039/C9RA09652C.
QUÍMICA
Versión publicada
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