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Biochar from agricultural by-products for the removal of lead and cadmium from drinking water
ArticleAbstract: This study reports the adsorption capacity of lead Pb2+ and cadmium Cd2+ of biochar obtained from: pPalabras claves:Adsorption, Biochar, Cadmium, Corn cob, Drinking water, lead, Peanut shell, “chonta” pulpAutores:Cristhian Tituana, Diana Guaya, Edgar Puglla Pineda, García-Ruiz M.J., Osorio F.Fuentes:scopusEvaluation of phosphate removal capacity of Mg/Al layered double hydroxides from aqueous solutions
Conference ObjectAbstract: In the present study, the adsorptive properties of phosphate on Mg/Al layered double hydroxides (LDHPalabras claves:Adsorption, Layered double hydroxides, Phosphate uptake, Water treatmentAutores:A. Allen-Perkins Avendaño, Chabaco Armijos Riofrio, Corina Novillo, Cortina J.L., Diana Guaya, Iuliana CotaFuentes:scopusEffect of Mn<sup>2+</sup>/Zn<sup>2+</sup>/Fe<sup>3+</sup> Oxy(Hydroxide) Nanoparticles Doping onto Mg-Al-LDH on the Phosphate Removal Capacity from Simulated Wastewater
ArticleAbstract: A parent Mg-Al-LDH was upgraded in its adsorption properties due to the incorporation of tri-metal sPalabras claves:composite, Equilibrium, Kinetic, Mg-Al-LDH, Mn /Zn /Fe 2+ 2+ 3+, phosphate, ThermodynamicsAutores:Cortina J.L., Diana Guaya, Hernán Cobos, Valderrama C.Fuentes:scopusModification of a natural zeolite with Fe(III) for simultaneous phosphate and ammonium removal from aqueous solutions
ArticleAbstract: BACKGROUND: The incorporation of Fe(III) was performed in a natural clinoptilolite (Z-N) for simultaPalabras claves:ammonium, Clinoptilolite, Iron, Kinetic, phosphate, sorptionAutores:A. Farran, C. Valderrama, Cortina J.L., D. Guaya Caraguay, Diana Guaya, Farran A., J. Cortina, Valderrama C.Fuentes:googlerraaescopusPhosphate removal from aqueous solution using a hybrid impregnated polymeric sorbent containing hydrated ferric oxide (HFO)
ArticleAbstract: BACKGROUND: This study evaluated a polymeric ion exchanger impregnated with nanoparticles of hydratePalabras claves:HAIX, Hydrated ferric hydroxide (HFO), Hydrogen and di-hydrogen phosphate, Lewatit FO36, P(V) removal, Polymeric weak base ion exchangerAutores:Cortina J.L., Diana Guaya, Farran A., Valderrama C., You X.Fuentes:googlescopusPhosphate removal from aqueous solutions using a hybrid fibrous exchanger containing hydrated ferric oxide nanoparticles
ArticleAbstract: This study presents the evaluation of a fibrous ion exchanger impregnated with nanoparticles of hydrPalabras claves:FIBAN-As, Fibrous ion exchanger, HFO, Hybrid exchanger, Phosphate recoveryAutores:Cortina J.L., D. Guaya Caraguay, Diana Guaya, Farran A., Soldatov V., Valderrama C., You X.Fuentes:googlerraaescopusLTA and FAU-X Iron-Enriched Zeolites: Use for Phosphate Removal from Aqueous Medium
ArticleAbstract: Hydrothermally synthesized Linde type A (LTA) and faujasite X (FAU-X) zeolites are low-cost and enviPalabras claves:Adsorption, complexation, equilibrium kinetics, faujasite X, iron (oxy)hydroxides, Linde type A, phosphateAutores:Carmen Milena López, Cortina J.L., Diana Guaya, Hernán Cobos, Jhulissa Camacho, Valderrama C.Fuentes:scopusSimultaneous nutrients (N,P) removal by using a hybrid inorganic sorbent impregnated with hydrated manganese oxide
ArticleAbstract: A natural clinoptilolite zeolite (Z-N) and its hybrid form (Z-Mn) prepared by impregnation with hydrPalabras claves:Clinoptilolite, Hybrid sorbent, Hydrated manganese oxide, Phosphate and ammonium recovery, sorptionAutores:Cortina J.L., Diana Guaya, Farran A., Valderrama C.Fuentes:googlescopus