Anion exchange membranes, methods of preparation and uses
View Patent ↗The present invention provides anion exchange membranes, processes for producing same and uses thereof. The anion exchange membranes according to embodiments of the present invention achieve a desirable combination of low resistance, high permselectivity and low degree of dimensional swelling. Anion exchange membranes according to embodiments of the present invention are also cost effective.
1. A coating for a spacer in an electrodialysis unit, the coating comprising:
i) a first aromatic polymer comprising cationic groups bound to an aromatic backbone of the first aromatic polymer through alkylene groups; and
ii) a second aromatic polymer comprising aromatic amino groups, wherein an amine is directly attached to the aromatic ring;
wherein the first aromatic polymer and the second aromatic polymer are crosslinked through an alkylene bridge between an aromatic ring of the aromatic backbone of the first aromatic polymer and the amine of the second aromatic polymer.
2. The coating of claim 1 , wherein the first aromatic polymer comprising cationic groups is based on a polymer selected from the group consisting of alkylated polyphenylene oxide, alkylated polyphenylsulfone, polysulfone based on bisphenol A, alkylated polyethersulfone, alkylated polyaromatic ether ketone and aromatic alkylated polystyrene.
3. The coating of claim 1 , wherein the alkylene group of the first aromatic polymer comprising cationic groups, the alkylene bridge, or both, are a short-chain alkylene containing 1 to 6 methylene groups.
4. The coating of claim 1 , wherein the cationic groups are selected from the group consisting of quaternary ammonium, phosphonium and sulfonium group.
5. The coating of claim 1 , wherein the ion exchange capacity of the cationic groups ranges from 0.2 to 5 meq/gr.
6. The coating of claim 1 , wherein the second aromatic polymer comprising aromatic amino groups is based on an aromatic condensation polymer.
7. The coating of claim 6 , wherein the aromatic condensation polymer is selected from the group consisting of polyphenylsulfone, polysulfone, polyethersulfone, polyetherketone, polyetheretherketone and polyphenylsulfide.
8. The coating of claim 1 , wherein the amine content on the second aromatic polymer comprising aromatic amino groups ranges from 0.2 to 4 meq/gr.
9. The coating of claim 1 , further comprising an aromatic polymer selected from an aromatic non-derivatized polymer and an aromatic polymer derivatized with hydrophobic moieties.
10. The coating of claim 9 , wherein the additional aromatic polymer constitutes up to 50% of the total polymer content of the coating.
11. The coating of claim 1 , wherein the first aromatic polymer comprising cationic groups, the second aromatic polymer comprising aromatic amino groups, or both, further comprises a functional group selected from the group consisting of nitro and halide groups on at least part of the aromatic rings of said first and/or second aromatic polymers.
12. The coating of claim 1 , wherein the coating maintains its lateral dimensions in both dry and wet conditions to within 10%.
13. The coating of claim 1 , comprising at least one layer.
14. The coating of claim 1 , further comprising a surface coating made of non-charged crosslinked hydrophilic polymers or of an amphoteric film.
15. The coating of claim 14 , wherein the surface coating is separated from the underlying spacer coating by a thin hydrophilic neutral layer.