Por favor, use este identificador para citar o enlazar este ítem: http://repositorio.ufc.br/handle/riufc/67731
Tipo: Artigo de Periódico
Título : Molecular dynamics modeling of ion adsorption to the basal surfaces of kaolinite
Autor : Vasconcelos, Igor Frota de
Bunker, Bruce Alan
Cygan, Randall Timothy
Palabras clave : Kaolinite;Adsorption;Molecular modeling
Fecha de publicación : 2007
Editorial : The Journal of Physical Chemistry C
Citación : VASCONCELOS, Igor Frota; BUNKER, Bruce A.; CYGAN, Randall T. Molecular dynamics modeling of ion adsorption to the basal surfaces of kaolinite. The Journal of Physical Chemistry C, [s. l.], v. 111, n. 18, p. 6753-6762, 2007.
Abstract: Molecular dynamics simulation is used to study the mechanisms involved in the adsorption of various ions to the basal surfaces of kaolinite. Analysis of simulation data indicates that cations and anions adsorb preferably on the siloxane and gibbsite surfaces of kaolinite, respectively. Strong inner-sphere adsorption of chlorine at aluminum vacancies on the gibbsite surface and the occurrence of chlorine-driven inner-sphere adsorption of cesium and sodium on the gibbsite surface for high ionic strengths are observed. Cesium ions form strong inner-sphere complexes at ditrigonal cavities on the siloxane surface. Outer-sphere cesium is highly mobile and only weak adsorption may occur. A small amount of sodium adsorbs on the siloxane surface as innersphere complexes at less clearly defined sites. Like cesium, sodium only forms very weak outer-sphere complexes on this surface. Inner-sphere complexes of cadmium and lead do not occur on either surface. Relatively strong outer-sphere cadmium and lead complexes are present on the siloxane surface at ditrigonal cavities.
URI : http://www.repositorio.ufc.br/handle/riufc/67731
ISSN : 1932-7455
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