4.7 Article

β-cyclodextrin-containing polymer based on renewable cellulose resources for effective removal of ionic and non-ionic toxic organic pollutants from water

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 418, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.jhazmat.2021.126286

关键词

Cyclodextrin polymers; Adsorption; Toxic organic pollutants; Water treatment; Endocrine disrupting compound

资金

  1. Gdansk University of Technology [DS 034718]
  2. Gdansk University of Technology, Poland [033880]

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A novel bio-derived cyclodextrin-based trifunctional adsorbent was successfully synthesized for efficient removal of a variety of toxic pollutants from water. The adsorbent showed high adsorption capacity for both ionic and non-ionic pollutants, and maintained consistent performance even after multiple regeneration cycles. The adsorbent has promising potential for practical applications due to its bio-derived, cost-effective, and reusable properties.
A novel, bio-derived cyclodextrin-based trifunctional adsorbent has been successfully synthesized for efficient, rapid and simultaneous removal of a broad-spectrum of toxic ionic (anionic and cationic dyes) and non-ionic organic pollutants from water. The composition, morphology and the presence of functional groups in the obtained sorption material were characterized by elemental analysis, XRD, SEM, and FTIR spectroscopy. The adsorption results were represented by cationic dye (crystal violet, CV) and endocrine disrupting compound (bisphenol A, BPA) as an adsorbate. The sorption processes of the model pollutants were studied with both kinetic and equilibrium models. The results showed that the sorption was rapid (less than 1 min) and the time evolution could be fitted using a pseudo-second order model. According to Langmuir isotherm model, the maximum adsorption capacities were found at 113.64 and 43.10 mg g(-1) for BPA and CV, respectively. The adsorption ability of beta-CDPs was kept nearly on the same level after five regeneration cycles. Furthermore, almost complete removal of the pollutants was observed during the treatment of real effluents samples thus the bio-derived, cheap and reusable BAN-EPI-CDP has a promising potential for practical applications.

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