New polymer-supported ion-complexing agents: design, preparation and metal ion affinities of immobilized ligands

J Hazard Mater. 2007 Jan 31;139(3):467-70. doi: 10.1016/j.jhazmat.2006.02.042. Epub 2006 Jun 9.

Abstract

Polymer-supported reagents are comprised of crosslinked polymer networks that have been modified with ligands capable of selective metal ion complexation. Applications of these polymers are in environmental remediation, ion chromatography, sensor technology, and hydrometallurgy. Bifunctional polymers with diphosphonate/sulfonate ligands have a high selectivity for actinide ions. The distribution coefficient for the uranyl ion from 1 M nitric acid is 70,000, compared to 900 for the monophosphonate/sulfonate polymer and 200 for the sulfonic acid ion-exchange resin. A bifunctional trihexyl/triethylammonium polymer has a high affinity and selectivity for pertechnetate and perchlorate anions from groundwater. In one example, its distribution coefficient for perchlorate ions in the presence of competing anions is 3,300,000, compared to 203,180 for a commercially available anion-exchange resin. Polystyrene modified with N-methyl-D-glucamine ligands is capable of selectively complexing arsenate from groundwater. It complexes 99% of the arsenate present in a solution of 100 mg/L arsenate with 560 mg/L sulfate ions. Its selectivity is retained even in the presence of 400 mg/L phosphate. There is no affinity for arsenate above pH 9, allowing for the polymer to be regenerated with moderate alkali solution. In studies aimed at developing a Hg(II)-selective resin, simple amine resins were found to have a high Hg(II) affinity and that affinity is dependent upon the solution pH and the counterion.

Publication types

  • Research Support, U.S. Gov't, Non-P.H.S.

MeSH terms

  • Arsenic / chemistry
  • Diphosphonates / chemistry
  • Ion Exchange Resins / chemistry*
  • Ligands*
  • Mercury / chemistry
  • Metals / chemistry*
  • Polymers / chemistry*

Substances

  • Diphosphonates
  • Ion Exchange Resins
  • Ligands
  • Metals
  • Polymers
  • Mercury
  • Arsenic