Synthesis of sustainable mesoporous sulfur-doped biobased carbon with superior performance sodium diclofenac removal

dc.contributor.authorREIS, GLAYDSON S. dos
dc.contributor.authorGRIMM, ALEJANDRO
dc.contributor.authorFUNGARO, DENISE A.
dc.contributor.authorHU, TAO
dc.contributor.authorBRUM, IRINEU A.S. de
dc.contributor.authorLIMA, EDER C.
dc.contributor.authorNAUSHAD, MU
dc.contributor.authorDOTTO, GUILHERME L.
dc.contributor.authorLASSI, ULLA
dc.coverageInternacional
dc.date.accessioned2024-06-13T14:33:42Z
dc.date.available2024-06-13T14:33:42Z
dc.date.issued2024
dc.description.abstractOver the last years, the strategy of employing inevitable organic waste and residue streams to produce valuable and greener materials for a wide range of applications has been proven an efficient and suitable approach. In this research, sulfur-doped porous biochar was produced through a single-step pyrolysis of birch waste tree in the presence of zinc chloride as chemical activator. The sulfur doping process led to a remarkable impact on the biochar structure. Moreover, it was shown that sulfur doping also had an important impact on sodium diclofenac (S-DCF) removal from aqueous solutions due to the introduction of S-functionalities on biochar surface. The adsorption experiments suggested that General and Liu models offered the best fit for the kinetic and equilibrium studies, respectively. The results showed that the kinetic was faster for the S-doped biochar while the maximum adsorption capacity values at 318 K were 564 mg g−1 (non-doped) and 693 mg g−1 (S-doped); highlighting the better affinity of S-doped biochar for the S-DCF molecule compared to non-doped biochar. The thermodynamic parameters (ΔH0, ΔS0, ΔG0) suggested that the S-DCF removal on both adsorbents was spontaneous, favourable, and endothermic.
dc.description.sponsorshipInterreg Aurora
dc.description.sponsorshipSwedish Research Council Formas
dc.description.sponsorshipKempes Foundation
dc.description.sponsorshipIDInterreg Aurora: 20361711
dc.description.sponsorshipIDSwedish Research Council Formas: 2021–00877
dc.description.sponsorshipIDKempes Foundation: JCSMK23-0145
dc.format.extent1-11
dc.identifier.citationREIS, GLAYDSON S. dos; GRIMM, ALEJANDRO; FUNGARO, DENISE A.; HU, TAO; BRUM, IRINEU A.S. de; LIMA, EDER C.; NAUSHAD, MU; DOTTO, GUILHERME L.; LASSI, ULLA. Synthesis of sustainable mesoporous sulfur-doped biobased carbon with superior performance sodium diclofenac removal: kinetic, equilibrium, thermodynamic and mechanism. <b>Environmental Research</b>, v. 251, n. Part 1, p. 1-11, 2024. DOI: <a href="https://dx.doi.org/10.1016/j.envres.2024.118595">10.1016/j.envres.2024.118595</a>. Disponível em: https://repositorio.ipen.br/handle/123456789/48086.
dc.identifier.doi10.1016/j.envres.2024.118595
dc.identifier.fasciculoPart 1
dc.identifier.issn0013-9351
dc.identifier.orcidhttps://orcid.org/0000-0003-1618-0264
dc.identifier.percentilfi93.3
dc.identifier.percentilfiCiteScore93.33
dc.identifier.urihttps://repositorio.ipen.br/handle/123456789/48086
dc.identifier.vol251
dc.relation.ispartofEnvironmental Research
dc.rightsopenAccess
dc.subjectchars
dc.subjectporous materials
dc.subjectcharcoal
dc.subjectsulfur
dc.subjectdoped materials
dc.subjectkinetics
dc.titleSynthesis of sustainable mesoporous sulfur-doped biobased carbon with superior performance sodium diclofenac removal
dc.typeArtigo de periódico
dspace.entity.typePublication
ipen.autorDENISE ALVES FUNGARO
ipen.codigoautor587
ipen.contributor.ipenauthorDENISE ALVES FUNGARO
ipen.identifier.fi7.7
ipen.identifier.fiCiteScore12.6
ipen.identifier.ipendoc30400
ipen.identifier.iwosWoS
ipen.range.fi6.000 ou mais
ipen.range.percentilfi75.00 - 100.00
ipen.subtitulokinetic, equilibrium, thermodynamic and mechanism
ipen.type.genreArtigo
relation.isAuthorOfPublication8991b6fc-8b88-4efb-a386-34308e9c7d73
relation.isAuthorOfPublication.latestForDiscovery8991b6fc-8b88-4efb-a386-34308e9c7d73
sigepi.autor.atividadeDENISE ALVES FUNGARO:587:510:N

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