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(Reference retrieved automatically from Web of Science through information on FAPESP grant and its corresponding number as mentioned in the publication by the authors.)

Equilibrium, Thermodynamic, Reuse, and Selectivity Studies for the Bioadsorption of Lanthanum onto Sericin/Alginate/Poly(vinyl alcohol) Particles

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Author(s):
da Costa, Talles Barcelos [1] ; da Silva, Meuris Gurgel Carlos [1] ; Vieira, Melissa Gurgel Adeodato [1]
Total Authors: 3
Affiliation:
[1] Univ Estadual Campinas, Sch Chem Engn, Albert Einstein Ave, BR-13083852 Campinas - Brazil
Total Affiliations: 1
Document type: Journal article
Source: POLYMERS; v. 13, n. 4 FEB 2021.
Web of Science Citations: 0
Abstract

In a scenario of high demand, low availability, and high economic value, the recovery of rare-earth metals from wastewater is economically and environmentally attractive. Bioadsorption is a promising method as it offers simple design and operation. The aim of this study was to investigate lanthanum bioadsorption using a polymeric bioadsorbent of sericin/alginate/poly(vinyl alcohol)-based biocomposite. Batch system assays were performed to evaluate the equilibrium, thermodynamics, regeneration, and selectivity of bioadsorption. The maximum capture amount of lanthanum at equilibrium was 0.644 mmol/g at 328 K. The experimental equilibrium data were better fitted by Langmuir and Dubinin-Radushkevich isotherms. Ion exchange mechanism between calcium and lanthanum (2:3 ratio) was confirmed by bioadsorption isotherms. Thermodynamic quantities showed that the process of lanthanum bioadsorption was spontaneous (-17.586, -19.244, and -20.902 kJ/mol), endothermic (+15.372 kJ/mol), and governed by entropic changes (+110.543 J/mol center dot K). The reusability of particles was achieved using 0.1 mol/L HNO3/Ca(NO3)(2) solution for up to five regeneration cycles. The bioadsorbent selectivity followed the order of lanthanum > cadmium > zinc > nickel. Additionally, characterization of the biocomposite prior to and post lanthanum bioadsorption showed low porosity (9.95 and 12.35%), low specific surface area (0.054 and 0.019 m(2)/g), amorphous character, and thermal stability at temperatures up to 473 K. This study shows that sericin/ alginate/poly(vinyl alcohol)-based biocomposites are effective in the removal and recovery of lanthanum from water. (AU)

FAPESP's process: 17/18236-1 - RECOVERY OF NOBLE METALLIC IONS AND RARE-EARTH IONS FROM AQUEOUS SOLUTIONS BY BIOADSORTION IN PARTICLES PRODUCED FROM SERICINE AND ALGINATE BLENDS
Grantee:Melissa Gurgel Adeodato Vieira
Support Opportunities: Regular Research Grants
FAPESP's process: 19/11353-8 - Brazilian Water Research Center (BWRC)
Grantee:Lauro Tatsuo Kubota
Support Opportunities: Research Grants - Research Centers in Engineering Program