4.7 Article

Evaluation of magnetic material IIP@GO-Fe3O4 based on Kesambi wood (Schleichera oleosa) as a potential adsorbent for the removal of Cr(VI) from aqueous solutions

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REACTIVE & FUNCTIONAL POLYMERS
卷 166, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.reactfunctpolym.2021.105000

关键词

Adsorption; Hexavalent chromium; Imprinting polymer; Wastewater; Graphene-oxide magnetic (GO-Fe3O4)

资金

  1. Directorate General of Research and Development Strengthening - Ministry of Research, Technology and Higher Education

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The magnetic composite material IIP@GO-Fe3O4 based on GO from kesambi wood was successfully synthesized and demonstrated excellent adsorption performance for Cr(VI). The kinetic modeling revealed a pseudo-second-order mechanism, while the adsorption isotherm followed the Dubinin-Radushkevich model. The study also showed that the adsorption process was favorable at a temperature of 323 K, with higher selectivity and reusability compared to NIP@GO-Fe3O4.
Magnetic composite material modified ion imprinting polymer (IIP@GO-Fe3O4) based on GO from kesambi wood (Schleichera oleosa) was successfully synthesized by using a precipitation method. The physico-chemical characterization uses XRD, FTIR, BET-BJH and SEM-EDX. IIP@GO-Fe3O4 was applied to adsorb Cr(VI) from the water sample by utilizing the batch system. Various adsorption parameters for Cr(VI) such as adsorbent mass, pH, contact time and temperature were optimized in this investigation. The Cr(VI) maximum adsorption occurred when the adsorbent mass usage 0.04 g, pH 2, 40 min of contacts and at the temperature of 323 K. In this study ten kinetic and eight isothermal adsorption models were used to investigate the adsorption mechanism of Cr(VI) onto IIP@GO-Fe3O4. The kinetic modelling shows that the adsorption of Cr(VI) onto IIP@GO-Fe3O4 corresponds to the pseudo-second-order (PSO) model, while the adsorption isotherm corresponds to the DubininRadushkevich (DKR) model with an adsorption capacity of 8.502 mg/g. The thermodynamic study has shown that the adsorption process can take place at a temperature of 323 K. The result showed that a higher adsorption selectivity on IIP@GO-Fe3O4 compares to NIP@GO-Fe3O4. The adsorbent materials gave better reusability because their adsorptive capacity remained at the same level (although it was used at least ten times).

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