Preparation of Synthetic Slays to Remove Phosphates and Ibuprofen in Water

dc.contributor.authorDevesa-Rey, Rosa
dc.contributor.authorVal, Jesús del
dc.contributor.authorFeijoo, Jorge
dc.contributor.authorGonzález-Coma, José P.
dc.contributor.authorCastiñeira, Gonzalo
dc.contributor.authorGonzález-Gil, Lorena
dc.date.accessioned2023-05-30T08:26:28Z
dc.date.available2023-05-30T08:26:28Z
dc.date.issued2021
dc.description.abstractThe main objective of this study consists in the synthesis of a layered double hydroxide (LDH) clay doped with magnesium and aluminum in order to test the removal of phosphates and ibuprofen in water. Two different LDH composites are assessed: oven-dried (LDHD) and calcined (LDHC). Single adsorptions of phosphate and ibuprofen showed up to 70% and 58% removal in water, when LDHC was used. A poorer performance was observed for LDHD, which presented adsorption efficiencies of 52% and 35%, respectively. The simultaneous removal of phosphate and ibuprofen in water showed that LDHC allows a greater reduction in the concentration of both compounds than LDHD. Phosphate adsorption showed a close agreement between the experimental and theoretical capacities predicted by the pseudo-second-order model, whereas ibuprofen fitted to a first-order model. In addition, phosphate adsorption showed a good fit to an intraparticle diffusion model and to Bangham model suggesting that diffusion into pores controls the adsorption process. No other mechanisms may be involved in ibuprofen adsorption, apart from intraparticle diffusion. Finally, phosphate desorption could recover up to 59% of the initial concentration, showing the feasibility of the recuperation of this compound in the LDH.
dc.identifier.citationhttps://doi.org/10.3390/w13172394
dc.identifier.urihttp://calderon.cud.uvigo.es/handle/123456789/19
dc.language.isoen
dc.publisherWater 2021, 13, 2394
dc.titlePreparation of Synthetic Slays to Remove Phosphates and Ibuprofen in Water
dc.typeArticle
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