2006Russian Journal of Inorganic ChemistryRequires access

Layered hydrous manganese dioxide saturated with alkaline-earth cations: Synthesis and sorption properties

Г. В. Новиков, Л. Н. Куликова, O. Yu. Bogdanova, G. I. Sychkova

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Abstract

Layered compounds based on hydrous manganese dioxides (hereafter, Mn-phases) saturated with alkaline-earth cations were synthesized at 3–6°C. These phases are analogues of manganese minerals from oceanic iron-manganese sediments (vernadite, birnessite, buserite-I, an asbolan-like phase, and a hybrid phase). All the Mn-phases, as a rule, had poorly ordered structures. The sorption properties of these phases were studied with respect to alkali-metal cations (Na + , K + ), an s -metal cation (Ba 2+ ), a p -metal cation (Pb 2+ ), and d -metal cations (Mn 2+ , Co 2+ , Ni 2+ , Cu 2+ , Zn 2+ and Cd 2+ ). The exchange capacities of the Mn-phases were 0.45–1.06 mg-equiv/g for the alkali cations and 0.94–5.78 mg-equiv/g for the other cations. The phase composition of the Mn-phase did not affect the alkali cation sorption but affected the divalent cation sorption. The divalent cation exchange capacity increased from well-ordered birnessite to poorly ordered vernadite.

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Layered compounds based on hydrous manganese dioxides (hereafter, Mn-phases) saturated with alkaline-earth cations were synthesized at 3–6°C. These phases are analogues of manganese minerals from oceanic iron-manganese sediments (vernadite, birnessite, buserite-I, an asbolan-like phase, and a hybrid phase). All the Mn-phases, as a rule, had poorly ordered structures. The sorption properties of these phases were studied with respect to alkali-metal cations (Na + , K + ), an s -metal cation (Ba 2+ ), a p -metal cation (Pb 2+ ), and d -metal cations (Mn 2+ , Co 2+ , Ni 2+ , Cu 2+ , Zn 2+ and Cd 2+ ). The exchange capacities of the Mn-phases were 0.45–1.06 mg-equiv/g for the alkali cations and 0.94–5.78 mg-equiv/g for the other cations. The phase composition of the Mn-phase did not affect the alkali cation sorption but affected the divalent cation sorption. The divalent cation exchange capacity increased from well-ordered birnessite to poorly ordered vernadite.

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Available abstract

Layered compounds based on hydrous manganese dioxides (hereafter, Mn-phases) saturated with alkaline-earth cations were synthesized at 3–6°C. These phases are analogues of manganese minerals from oceanic iron-manganese sediments (vernadite, birnessite, buserite-I, an asbolan-like phase, and a hybrid phase). All the Mn-phases, as a rule, had poorly ordered structures. The sorption properties of these phases were studied with respect to alkali-metal cations (Na + , K + ), an s -metal cation (Ba 2+ ), a p -metal cation (Pb 2+ ), and d -metal cations (Mn 2+ , Co 2+ , Ni 2+ , Cu 2+ , Zn 2+ and Cd 2+ ). The exchange capacities of the Mn-phases were 0.45–1.06 mg-equiv/g for the alkali cations and 0.94–5.78 mg-equiv/g for the other cations. The phase composition of the Mn-phase did not affect the alkali cation sorption but affected the divalent cation sorption. The divalent cation exchange capacity increased from well-ordered birnessite to poorly ordered vernadite.

Key concepts: Birnessite, Manganese, Sorption, Alkali metal, Divalent, Chemistry, Inorganic chemistry, Alkaline earth metal

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