cris.boxmetadata.label.title
Potential of Salvinia auriculata biomass as biosorbent of the Cr(III): directed chemical treatment, modeling and sorption mechanism study
cris.boxmetadata.label.dateissued
18 browse.startsWith.months.june 2017
cris.boxmetadata.label.accesslevel
metadata only access
cris.boxmetadata.label.resourcetype
journal article
cris.boxmetadata.label.authors
Módenes A.N.
de Oliveira A.P.
Trigueros D.E.G.
Kroumov A.D.
Borba C.E.
Hinterholz C.L.
Bergamasco R.
West Paraná State University
cris.boxmetadata.label.publisher
Taylor and Francis Ltd.
cris.boxmetadata.label.abstract
In this work, the mechanism of the Cr(III) sorption by Salvinia auriculata biosorbent was studied in two stages. To understand the influence of the sorption parameters on the Cr(III) uptake, preliminary tests were performed. First, S. auriculata biomass was separately treated with base and acid solutions. Second, acid and base treatment of samples was performed based on the knowledge data base of our group. It was achieved a higher Cr(III) sorption capacity above 15 mg g-1 as associated to an increase of the micro-pores specific area and biosorbent volume. The obtained kinetic data of raw and treated biosorbents were well described by the intra-particle diffusion model. In this model, Cr(III) adsorption onto treated biomass is progressively improved with appearing of different mass transfer zones from out layer up to micro-porous layers. The equilibrium data of raw biomass were best described by the Langmuir isotherm, whereas the equilibrium data of the treated biomass were best fit by a combination of both Langmuir and Dubinin–Radushkevich isotherms. At low concentrations the adsorption most likely occurred on the outer monolayer, as proposed by the Langmuir model, followed by the adsorption on the micro-porous layers, as validated by the Dubinin–Radushkevich isotherm.
cris.boxmetadata.label.citationstartpage
1474
cris.boxmetadata.label.citationendpage
1488
cris.boxmetadata.label.volume
38
cris.boxmetadata.label.issue
12
cris.boxmetadata.label.language
English
cris.boxmetadata.label.ocdeknowledgeArea
Ciencias del medio ambiente Química
cris.boxmetadata.label.doi
cris.boxmetadata.label.scopusidentifier
2-s2.0-84991237269
cris.boxmetadata.label.pubmedidentifier
cris.boxmetadata.label.source
Environmental Technology (United Kingdom)
cris.boxmetadata.label.containerissn
09593330
cris.boxmetadata.label.sourcefunding
Fundacion Araucaria
cris.boxmetadata.label.sponsor
The authors thank CAPES, CNPQ and Araucaria Foundation for the financial support of this study.
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