Water management and cooling during electrolysis
A method of electrolysing water, using a water electrolyser having cathode and anode compartments respectively on either side of a hydrophilic polymer cation-exchange membrane, the method comprising: (i) adding water to the anode compartment only, such that the cathode compartment is predominantly free of water in liquid form; (ii) electrolysing the water to form hydrogen gas in the cathode compartment and oxygen gas in the anode compartment; and (iii) re-circulating the hydrogen gas through the cathode compartment.
1. A method of electrolysing water, using a water electrolyser having cathode and anode compartments respectively on either side of a hydrophilic polymer cation-exchange membrane, the method comprising:
(i) adding water to the anode compartment only, such that the cathode compartment is predominantly free of water in liquid form;
(ii) electrolysing the water to form hydrogen gas in the cathode compartment and oxygen gas in the anode compartment; and
(iii) re-circulating the hydrogen gas through the cathode compartment.
2. The method according to claim 1 , wherein in between steps (ii) and (iii), the hydrogen is passed though drying apparatus and/or gas cooling apparatus.
3. A method of electrolysing water, using a water electrolyser, having cathode and anode compartments respectively on either side of a hydrophilic polymer cation-exchange membrane, the method comprising:
(i) adding water to the cathode compartment, such that the anode compartment is predominantly free of water in liquid form;
(ii) electrolysing the water to form hydrogen gas at the cathode and oxygen gas at the anode; and
(iii) re-circulating the oxygen gas through the anode compartment.
4. The method according to claim 3 , wherein in between steps (ii) and (iii) the oxygen is passed through drying apparatus and/or gas cooling apparatus.
5. A method of electrolysing water, using a water electrolyser having anode and cathode compartments respectively on either side of a hydrophilic polymer anion-exchange membrane, the method comprising:
(i) adding water to only one of the anode and cathode compartments, such that the other compartment is predominantly free of water in liquid form;
(ii) electrolysing the water to form hydrogen gas in the cathode compartment, and oxygen gas in the anode compartment; and
(iii) recirculating the gas that is produced in the other electrode compartment through said compartment.
6. The method according to claim 5 , wherein water is added to the cathode compartment only.
7. The method according to claim 5 , wherein the water is added to the anode compartment only.
8. The method according to claim 5 , wherein in between steps (ii) and (iii), the gas that is produced in the other compartment is passed through drying apparatus and/or gas cooling apparatus.