Can with bisphenol A capture system
View Patent ↗The present technology provides a bisphenol A capture system for food and beverage containers which include BPA-containing coatings. The capture system is made of one or more materials which bind any BPA eluting from the BPA-containing coating. The present capture system therefore reduces or prevents BPA from migrating from the can coating into the food or beverages stored in the can. The present technology further provides methods of manufacturing and using such coatings.
1. A metal can comprising:
an interior surface coated with a single electrospun coating comprising both a bisphenol A containing polymer and a bisphenol A binding material;
wherein the bisphenol A binding material binds substantially all of the bisphenol A leaching from the bisphenol A containing polymer; and wherein the ratio of the bisphenol A binding material to the bisphenol A containing polymer is from 20 weight percent to 70 weight percent.
2. The metal can of claim 1 , wherein the metal is selected from the group consisting of iron, aluminum, tin, steel, an alloy of any one thereof, and a combination of any two or more thereof.
3. The metal can of claim 1 , wherein the bisphenol A binding material naturally binds bisphenol A.
4. The metal can of claim 3 , wherein the bisphenol A binding material is selected from chitin, chitosan, dextrin, fibroin, keratin or mixtures of any two or more thereof.
5. The metal can of claim 1 , wherein the bisphenol A binding material has been adapted to binding bisphenol A by molecular imprinting using a bisphenol A compound or a bisphenol A analog.
6. The metal can of claim 5 , wherein the bisphenol A binding material is selected from the group consisting of cellulose, cellulose acetate, cellulose acetate butyrate, lignocellulose, polyamine, N-alkyl acrylamide, N-vinyl pyrrolidone and a mixture of any two or more thereof.
7. The metal can of claim 1 , wherein the coating comprises an epoxy resin or polycarbonate resin.
8. The metal can of claim 1 , wherein the ratio of the bisphenol A binding material to the bisphenol A containing polymer is from 30 weight percent to 70 weight percent.
9. The metal can of claim 1 , wherein the ratio of the bisphenol A binding material to the bisphenol A containing polymer is from 40 weight percent to 70 weight percent.
10. A method of manufacturing comprising:
forming a single electrospun coating comprising both a bisphenol A containing polymer and a bisphenol A binding material on a metal substrate; wherein the ratio of the bisphenol A binding material to the bisphenol A containing polymer is from 20 weight percent to 70 weight percent.
11. The method of claim 10 , wherein the metal substrate is a metal sheet.
12. The method of claim 11 , further comprising:
forming a can from the metal sheet such that the coating comprises an interior surface of the can;
wherein the can forming may occur before or after the formation of the electrospun coating.
13. The method of claim 10 , wherein the coating comprises an epoxy resin or polycarbonate resin.
14. The method of claim 10 , wherein the bisphenol A binding material is selected from chitin, chitosan, dextrin, fibroin, keratin or mixtures of any two or more thereof.
15. The method of claim 10 , wherein the bisphenol A binding material is selected from the group consisting of cellulose, cellulose acetate, cellulose acetate butyrate, lignocellulose, polyamine, N-alkyl acrylamide, N-vinyl pyrrolidone and a mixture of any two or more thereof.
16. The method of claim 10 , wherein the ratio of the bisphenol A binding material to the bisphenol A containing polymer is from 30 weight percent to 70 weight percent.
17. A method comprising:
filling a can in whole or in part with a food or a beverage,
wherein the can comprises an interior surface coated with a single electrospun coating comprising both a bisphenol A containing polymer and a bisphenol A binding material; wherein the ratio of the bisphenol A binding material to the bisphenol A containing polymer is from 20 weight percent to 70 weight percent.