Selective Sorption of Heavy Metals by Renewable Polysaccharides

Author:

Levy-Ontman Oshrat1ORCID,Yanay Chanan1,Alfi Yaron2,Paz-Tal Ofra2,Wolfson Adi1ORCID

Affiliation:

1. Department of Chemical and Green Engineering, Shamoon College of Engineering, Beer-Sheva 8434231, Israel

2. Nuclear Research Center, Negev, Beer-Sheva 8419001, Israel

Abstract

Renewable and biodegradable polysaccharides have attracted interest for their wide applicability, among them their use as sorbents for heavy metal ions. Their high sorption capacity is due mainly to the acidic groups that populate the polysaccharide backbone, for example, carboxylic groups in alginate and sulfate ester groups in the iota and lambda carrageenans. In this study, these three polysaccharides were employed, alone or in different mixtures, to recover different heavy metal ions from aqueous solutions. All three polysaccharides were capable of adsorbing Eu3+, Sm3+, Er3+, or UO22+ and their mixtures, findings that were also confirmed using XPS, TGA, and FTIR analyses. In addition, the highest sorption yields of all the metal ions were obtained using alginate, alone or in mixtures. While the alginate with carboxylic and hydroxyl groups adsorbed different ions with the same selectivity, carrageenans with sulfate ester and hydroxyl groups exhibited higher adsorption selectivity for lanthanides than for uranyl, indicating that the activity of the sulfate ester groups toward trivalent and smaller ions was higher.

Funder

Shamoon College of Engineering

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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