Cell for electrolyzing a liquid
Described herein are systems, apparatus, and methods for electrolyzing liquids to create beneficial compositions, such as life enhancing compositions.
1. An electrolyzing system comprising:
a first chamber including at least one cathode configured to electrolyze a first salinated water stream and create a high pH product;
a second chamber including at least one anode configured to electrolyze a second salinated water stream and create a low pH product, the second chamber including
an electrolytic volume, the at least one anode positioned within the electrolytic volume,
an input port fluidly connected to the electrolytic volume,
an overflow port positioned proximal a top end of the electrolytic volume,
a sub-chamber fluidly connected to the electrolytic volume by the overflow port, and
an output port configured to allow outflow from the sub-chamber of the second chamber; and
a membrane between the first chamber and the second chamber configured to allow ions through and prevent water from passing,
wherein the electrolytic volume of the second chamber is configured in size and shape such that the second salinated water stream resides within at most 5 inches of a surface of the anode for at least 1 second to electrolyze the second salinated water stream before passing through the overflow port into the sub-chamber of the second chamber.
2. The electrolyzing system of claim 1 , wherein the cathode, the anode, or the cathode and the anode are driven with 30V of power.
3. The electrolyzing system of claim 1 , wherein the at least one anode is cylindrical and a cylindrical chamber surrounds the at least one anode.
4. The electrolyzing system of claim 1 , wherein the first salinated water stream flows through first chamber at a rate of about 20 gal/hr.
5. The electrolyzing system of claim 1 , wherein the second salinated water stream flows through second chamber at a rate of about 20 gal/hr.
6. The electrolyzing system of claim 1 , wherein the first salinated water stream and the second salinated water stream are chilled to a temperature of about 5° C.
7. The electrolyzing system of claim 1 , wherein the second chamber further comprises a second sub-chamber, and a third sub-chamber.
8. The electrolyzing system of claim 7 , wherein the sub-chamber, the second sub-chamber, and the third sub-chamber have substantially similar volumes.
9. The electrolyzing system of claim 8 , wherein each of the sub-chamber, the second sub-chamber, and the third sub-chamber includes four anodes.
10. The electrolyzing system of claim 1 , wherein the first chamber includes 12 cathodes.
11. The electrolyzing system of claim 1 , wherein a distance between the anode and the cathode is between about ½ in and about 2 in.
12. The electrolyzing system of claim 1 , wherein the anode comprises:
a hollow interior region fluidly connected to the input port; and
at least one entry hole fluidly connected the hollow interior region to the first volume of the second chamber.
13. The electrolyzing system of claim 12 , wherein the at least one entry hole is configured to dictate the flow of the second salinated water stream within the electrolytic volume.
14. The electrolyzing system of claim 13 , wherein the at least one entry hole is configured to create a vortex within the electrolytic volume.