Por favor, use este identificador para citar o enlazar este ítem: http://repositorio.ufc.br/handle/riufc/72816
Tipo: Artigo de Periódico
Título : Copper, mercury and chromium adsorption on natural and crosslinked chitosan films: an XPS investigation of mechanism
Autor : Vieira, Rodrigo Silveira
Oliveira, Mona Lisa Moura de
Guibal, Eric
Rodríguez-Castellón, Enrique
Beppu, Marisa Masumi
Palabras clave : Biopolymers;Heavy metals;Adsorption mechanism;XPS;Biopolimeros;Metais pesados;Mecanismo de adsorção
Fecha de publicación : 2011
Editorial : Colloids and Surfaces A: Physicochemical and Engineering Aspects
Citación : VIEIRA, Rodrigo Silveira; OLIVEIRA, Mona Lisa Moura de; GUIBAL, Eric; RODRÍGUEZ-CASTELLÓN, Enrique; BEPPU, Marisa Masumi. Copper, mercury and chromium adsorption on natural and crosslinked chitosan films: an XPS investigation of mechanism. Colloids and Surfaces A: Physicochemical and Engineering Aspects, [s.l.], v. 374, p. 108-114, 2011.
Abstract: Although biopolymers are focusing the attention of researchers as potential adsorbents for heavy metal removal, little information is given about the properties of the resulting complexes. This information would also bring a better understanding of the mechanisms involved in metal binding to the poly-mer. XPS (X-ray photo-electron spectroscopy) is a powerful technique to investigate how metal ions bind onto these matrices. In this study, copper, chromium and mercury ions were adsorbed on natural and crosslinked (glutaraldehyde and epichlorohydrin) chitosan matrices, which present diverse functional groups and may induce different adsorption mechanisms. X-ray photoelectron spectroscopy (XPS) revealed that these metals bind to glutaraldehyde-crosslinked chitosan, differently from the other two kinds of matrices. Hence, amino group availability and the formation of new structures such as imino bonds are key factors. Copper(II) stabilization was found to be poor in glutaraldehyde-crosslinked chitosan. Conversely, Hg(II) ions present higher adsorption capacity in this kind of matrix. Chromium(VI) was reduced in all three matrices. In this case, chromium(VI) is probably not well stabilized by the functional groups of these polymers and may also undergo the action of their reducing groups.
URI : http://www.repositorio.ufc.br/handle/riufc/72816
ISSN : 0927-7757
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