Perchlorate removal using ion exchange resins comprising interpenetrating polymer networks
The invention includes ion exchange resins, methods of making ion exchange resins and their use in the removal of perchlorate from water. In one embodiment, the invention comprises a method for removing perchlorate from a water source by contacting the water with an ion exchange resin, wherein the ion exchange resin comprises particles of a crosslinked copolymer comprising: an interpenetrating polymer network (IPN) of at least two polymer components each having a styrenic content greater than 50 molar percent, and a quaternary ammonium functionality.
1. A method for removing perchlorate from a water source by contacting the water with an ion exchange resin, wherein the ion exchange resin comprises particles of a crosslinked copolymer comprising: an interpenetrating polymer network (IPN) of at least two polymer components each having a styrenic content greater than 50 molar percent, and a quaternary ammonium functionality.
2. The method of claim 1 wherein the crosslinked copolymer has a styrenic content of greater than 75 molar percent.
3. The method of claim 1 wherein the quaternary ammonium functionality comprises a nitrogen atom bonded to a benzyl carbon of the copolymer and three alkyl groups, wherein each alkyl group may be substituted or unsubstituted.
4. The method of claim 1 wherein the quaternary ammonium functionality comprises a nitrogen atom bonded to a benzyl carbon of the copolymer and three alkyl groups, wherein each alkyl group independently comprises from 2 to 6 carbon atoms.
5. The method of claim 1 wherein the quaternary ammonium functionality comprises a nitrogen atom bonded to a benzyl carbon of the copolymer and three alkyl groups, wherein the alkyl groups are collectively selected from: triethyl, tripropyl, tributyl, tripentyl, trihexyl, and dimethylisopropyl.
6. The method of claim 1 wherein the quaternary ammonium functionality comprises a nitrogen atom bonded to a benzyl carbon of the copolymer and three n-butyl groups.
7. The method of claim 1 wherein the crosslinked copolymer comprises a gel-type copolymer.
8. The method of claim 1 wherein the copolymer includes a repeating unit represented the following formula:
wherein the benzyl carbon is located at the meta, ortho or para position of the aromatic ring; and R 1 , R 2 and R 3 are each independently selected from alkyl groups comprising from 2 to 6 carbon atoms.