Publication:
Mathematical modeling and numerical simulation of sulfamethoxazole adsorption onto sugarcane bagasse in a fixed-bed column

dc.contributor.authorJuela Quintuña, Diego Marcelo
dc.contributor.authorVera Cabezas, Luisa Mayra
dc.contributor.authorCruzat Contreras, Christian Américo
dc.contributor.authorÁlvarez Palomeque, Lourdes Ximena
dc.contributor.authorVanegas Peña, María Eulalia
dc.date.accessioned2021-10-27T18:03:47Z
dc.date.available2021-10-27T18:03:47Z
dc.date.issued2021
dc.description.abstractHaving rigorous mathematical models is essential for the design and scaling of adsorption columns. In this study, the dynamic behavior of the sulfamethoxazole adsorption on sugarcane bagasse was studied and compared using analytical models and a theoretical mechanistic model. Initially, fixed-bed column tests were carried out at different flow rates and bed heights. Then, the experimental data were fitted with the most widely used analytical kinetic models, and their fit and fixed-bed parameters were compared with the mechanistic model. Of all analytical models analyzed, the Log-Gompertz model was the one that had the best agreed with experimental data. Although some analytical models fitted the experimental data accurately, their usefulness was questionable. Their parameters did not show a clear relationship with the change in operating conditions, and in certain cases had different behavior from that observed in experimentation. Conversely, the mechanistic model not only predicted the break through curves with great accuracy in the initial and transition stage (R2 > 0.92; SSE < 0.06), but it also estimated relevant parameters. Additionally, the effects of the global mass transfer coefficient (Ki) and the axial dispersion coefficient (Dz) on breakthrough curves were studied using the mechanistic model. Increasing Ki increased the slope of the breakthrough curves with a faster adsorption rate. Similarly, high values of Dz produced lower adsorption capacities of the adsorbent; and it was established that the axial dispersion is relevant in SMX adsorption on SB. The theoretical model presented can be used for the design, scaling, and optimization of adsorption columns.
dc.identifier.doi10.1016/j.chemosphere.2021.130687
dc.identifier.issn0045-6535
dc.identifier.urihttps://www.sciencedirect.com/science/article/abs/pii/S0045653521011589?via%3Dihub
dc.language.isoes_ES
dc.sourceChemosphere
dc.subjectAnalytical models
dc.subjectFixed-bed column
dc.subjectDynamic simulation
dc.subjectWastewate treatment biosorptio
dc.subjectBreakthrough curve
dc.titleMathematical modeling and numerical simulation of sulfamethoxazole adsorption onto sugarcane bagasse in a fixed-bed column
dc.title.alternative
dc.typeARTÍCULO
dc.ucuenca.afiliacionJuela, D., Universidad de Cuenca, Facultad de Ciencias Químicas, Cuenca, Ecuador
dc.ucuenca.afiliacionVera, L., Universidad de Cuenca, Facultad de Ciencias Químicas, Cuenca, Ecuador
dc.ucuenca.afiliacionCruzat, C., Universidad de Cuenca, Facultad de Ciencias Químicas, Cuenca, Ecuador
dc.ucuenca.afiliacionAlvarez, L., Universidad de Cuenca, Facultad de Ciencias Químicas, Cuenca, Ecuador
dc.ucuenca.afiliacionVanegas, M., Universidad de Cuenca, Facultad de Ciencias Químicas, Cuenca, Ecuador
dc.ucuenca.areaconocimientofrascatiamplio2. Ingeniería y Tecnología
dc.ucuenca.areaconocimientofrascatidetallado2.4.2 Ingeniería de Procesos Químicos
dc.ucuenca.areaconocimientofrascatiespecifico2.4 Ingeniería Química
dc.ucuenca.areaconocimientounescoamplio07 - Ingeniería, Industria y Construcción
dc.ucuenca.areaconocimientounescodetallado0711 - Ingeniería y Procesos Químicos
dc.ucuenca.areaconocimientounescoespecifico071 - Ingeniería y Profesiones Afines
dc.ucuenca.correspondenciaVanegas Peña, Maria Eulalia, eulalia.vanegas@ucuenca.edu.ec
dc.ucuenca.cuartilQ1
dc.ucuenca.factorimpacto1.63
dc.ucuenca.idautor0302396718
dc.ucuenca.idautorXDA362792
dc.ucuenca.idautor0107985681
dc.ucuenca.idautor0103184362
dc.ucuenca.idautor0103168118
dc.ucuenca.indicebibliograficoSCOPUS
dc.ucuenca.numerocitaciones0
dc.ucuenca.urifuentehttps://www.sciencedirect.com/journal/chemosphere/vol/280/suppl/C
dc.ucuenca.versionVersión publicada
dc.ucuenca.volumenVolumen 280
dspace.entity.typePublication
relation.isAuthorOfPublication25d03a40-48b0-498f-9363-6e01a50b0f92
relation.isAuthorOfPublication783ec948-df22-43c4-b121-cee05e23fb97
relation.isAuthorOfPublication3153949e-f891-4ff9-b4ba-2693845b8eb5
relation.isAuthorOfPublication.latestForDiscovery3153949e-f891-4ff9-b4ba-2693845b8eb5

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