Method for enriching water with oxygen by an electrolytic process, oxygen enriched water or beverage and uses thereof
The invention relates to a method for enriching water with oxygen by an electrolytic process, that comprises the following series of steps: the electrolysis of Cl − Br − ion-free water in an electrolysis cell in which the anode and the cathode are separated by a gas-tight membrane that is pervious to electric charges; b) recovering the oxygen-enriched water from the anode compartment of the electrolysis cell.
1. Method to enrich water with oxygen via electrolytic route comprising the following successive steps:
a) electrolysis of water that is mineralized but free of Cl— and Br— ions, in an electrolysis cell in which the anode and cathode are separated by a membrane pervious to electric charges but impervious to gases, and removal of hydrogen from cathode compartment;
b) collecting the oxygen-enriched water derived from the anode compartment of the electrolysis cell;
c) re-injecting the water derived from the cathode compartment of the electrolysis cell, free of hydrogen, into the oxygen-enriched water obtained at step (b); and
d) packaging the water obtained at step (c) and containing a quantity of dissolved oxygen greater than 50 mg/l.
2. The method according to claim 1 , wherein the method further comprises a prior step (a1) to treat the water by reverse osmosis so that the permeate is free of Cl— and Br— ions, then a prior step (a2) subsequent to step (a1) to remineralize the permeate obtained after step (a1) and wherein step a) is conducted on the remineralized permeate.
3. The method according to claim 2 , wherein remineralization step (a2) comprises the addition of food salts chosen from the group consisting of NaHCO 3 , Na 2 SO 4 , Na 3 PO 4 , Na 2 HPO 4 , NaH 2 PO 4 , KHCO 3 , K 3 PO 4 , K 2 HPO 4 , KH 2 PO 4 , K 2 SO 4 , MgSO 4 , CaSO 4 , Ca(H 2 PO 4 ) 2 , CaHPO 4 , and Ca 5 (PO 4 ) 3 OH.
4. The method according to claim 2 , wherein the method further comprises an additional step (e) to formulate the water through addition of ingredients compatible with O 2 chosen from the group consisting of mineral salts, organic compounds optionally in salt form, sugars, sweeteners, flavourings, acids, preserving agents, vitamins, juices, fibres, proteins, and plant extracts.
5. The method according to claim 2 , wherein the method further comprises an additional step (e) to formulate the water through re-injection of the retentate of reverse osmosis obtained at step (a1) into the oxygen-enriched water obtained at step (b) or (c) or (d).
6. The method according to claim 1 , wherein the cathode of the electrolysis cell is a cathode in stainless steel.
7. The method according to claim 1 , wherein the membrane is a cationic membrane.
8. The method according to claim 1 , wherein the method further comprises an additional step (a3) to degas the water prior to the electrolysis step (a) and optionally subsequent to step (a2).
9. The method according to claim 1 , wherein the water obtained at step (b), (c), and/or (d) comprises at least 100 mg/l of dissolved oxygen.