Adsorption study of acid orange 8 dye using silica nanoparticles obtained from sugarcane ash

dc.contributor.authorROVANI, SUZIMARA
dc.contributor.authorSANTOS, JONNATAN J.
dc.contributor.authorCORIO, PAOLA
dc.contributor.authorFUNGARO, DENISE A.
dc.coverageInternacionalpt_BR
dc.creator.eventoPAN AMERICAN CONGRESS OF NANOTECHNOLOGY, 1stpt_BR
dc.date.accessioned2018-09-27T13:10:09Z
dc.date.available2018-09-27T13:10:09Z
dc.date.eventoNovember 27-30, 2017pt_BR
dc.description.abstractDeveloping of new adsorbents becomes a very important need, especially because of the increase of contaminants present in rivers, oceans and any other water body capable of became potable. Biosorbents has a special feature, because they can solve two problems at the same time, once they are prepared from a natural source, giving a utility for wasted materials, and bioremediate a water body, adsorbing contaminants on their surface. In this context, the properties of a biosorbent prepared from sugarcane ash by surfactant mediated synthesis has been studied to the adsorption of acid orange 8 dye, a model molecule, aiming future applications for removal of emerging contaminants of water. According to the results of adsorption kinetic (Fig. 1A), the acid orange 8 dye removal was higher than 89% and 95% in 4 h of contact time for an initial concentration of 200 and 150 mg L-1, respectively. FTIR-ATR analyses (Fig. 1B) indicated the presence of bands: at 799 and 446 cm-1 are due to symmetric stretching of siloxane groups, at 1058 cm-1 is due the Si–O–Si asymmetric stretching, at 2925 cm-1 and 2850 cm-1 are due to the bending of –CH3 and –CH2, respectively, for silica-CTAB sample and additionally, at 1031, 689 and 641 cm-1 are due sulfur groups (S=O), out-of-plane deformation of ring and aromatics groups, respectively, of acid orange 8 dye. In TGA analysis (Fig. 1C), the peak between 150 to 235 °C for silica-CTAB sample has been attributed to the unbound CTAB less stabilized bonding sites on the silica surface due to hydrophobic– hydrophobic interactions of interdigitated CTAB and the peak around 256 °C indicates a stronger bonding of the surfactant to the silica surface due to the electrostatic binding of the ammonium cation head group to the electronegative silica surface [1]. For the silica-CTAB + dye sample, the substitution of the interdigitated CTAB of a second layer by dye was observed by the disappearance of the DTG peak between 150 to 235 °C. The displacement the DTG peak of 256 for 300 °C and appearance of the DTG peak around 435 °C are related to the dye adsorption. These aspects demonstrate the potential of silica nanoparticles obtained from sugarcane ash as new biosorbent for removal of organic compounds, such as, dye from aqueous solution and can be used to alleviate environmental problems.pt_BR
dc.event.siglaPANNANOpt_BR
dc.identifier.citationROVANI, SUZIMARA; SANTOS, JONNATAN J.; CORIO, PAOLA; FUNGARO, DENISE A. Adsorption study of acid orange 8 dye using silica nanoparticles obtained from sugarcane ash. In: PAN AMERICAN CONGRESS OF NANOTECHNOLOGY, 1st, November 27-30, 2017, Guarujá, SP. <b>Abstract...</b> Disponível em: http://repositorio.ipen.br/handle/123456789/29219.
dc.identifier.orcidhttps://orcid.org/0000-0003-1618-0264
dc.identifier.urihttp://repositorio.ipen.br/handle/123456789/29219
dc.local.eventoGuarujá, SPpt_BR
dc.rightsopenAccesspt_BR
dc.titleAdsorption study of acid orange 8 dye using silica nanoparticles obtained from sugarcane ashpt_BR
dc.typeResumo de eventos científicospt_BR
dspace.entity.typePublication
ipen.autorSUZIMARA ROVANI
ipen.autorDENISE ALVES FUNGARO
ipen.autorJONNATAN JULIVAL DOS SANTOS
ipen.codigoautor14256
ipen.codigoautor587
ipen.codigoautor14395
ipen.contributor.ipenauthorSUZIMARA ROVANI
ipen.contributor.ipenauthorDENISE ALVES FUNGARO
ipen.contributor.ipenauthorJONNATAN JULIVAL DOS SANTOS
ipen.date.recebimento18-09pt_BR
ipen.event.datapadronizada2017pt_BR
ipen.identifier.ipendoc25008pt_BR
ipen.notas.internasAbstractpt_BR
ipen.type.genreResumo
relation.isAuthorOfPublication2eb5afc8-335f-4d88-bc5f-7b4a4a4b079f
relation.isAuthorOfPublication8991b6fc-8b88-4efb-a386-34308e9c7d73
relation.isAuthorOfPublicationc7b4987e-3364-4802-b86a-be5795156c8d
relation.isAuthorOfPublication.latestForDiscovery2eb5afc8-335f-4d88-bc5f-7b4a4a4b079f
sigepi.autor.atividadeROVANI, SUZIMARA:14256:510:Spt_BR
sigepi.autor.atividadeSANTOS, JONNATAN J.:14395:740:Npt_BR
sigepi.autor.atividadeFUNGARO, DENISE A.:587:510:Npt_BR
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