Ozone generator for water purification system
A water purification system that generates ozone and passes the ozone through stored purified water to reduce the growth and/or presence of bacteria, organisms, and/or other undesirable components in purified water.
1. A fluid purification method comprising:
filtering fluid through a particulate filter to remove particulates and first dissolved solids from the fluid;
filtering the fluid through a reverse osmosis filter to remove second dissolved solids from the fluid;
flowing the fluid into a reservoir after filtering the fluid through the particulate filter and the reverse osmosis filter, the fluid entering the reservoir above a baffle that transects the reservoir, the baffle including at least one ridge;
bubbling ozone gas into the fluid in the reservoir below the baffle;
trapping, below the baffle and within the at least one ridge, a portion of the ozone gas bubbled into the reservoir;
forming a bubble of ozone gas below the baffle;
increasing the volume of the bubble of ozone gas;
bleeding the bubble from below the baffle by allowing the bubble of ozone gas to bleed out between the at least one ridge and the baffle; and
flowing the fluid out of the reservoir below the baffle.
2. The fluid purification method of claim 1 , wherein bubbling ozone gas into the fluid comprises pumping the ozone gas through a conduit into a stone located in the reservoir below the baffle, the ozone gas being released into the liquid through the stone.
3. The fluid purification method of claim 1 , wherein bubbling ozone gas into the fluid comprises generating ozone gas which is released into the reservoir.
4. The fluid purification method of claim 3 , further comprising:
activating and deactivating a compressor coupled to refrigeration coils around a periphery of the reservoir based on a temperature of the fluid in the reservoir; and
activating the ozone generator based at least in part on how long a period of time elapses between compressor energizations, increasing how often the ozone generator is active during periods in which the compressor is inactive.
5. The fluid purification method of claim 1 , further comprising:
controlling a flow of the fluid out of the reservoir.
6. The fluid purification method of claim 1 , further comprising:
removing a brine comprising the second dissolved solids removed from the fluid by the reverse osmosis filter via a drain line.
7. The fluid purification method of claim 1 , wherein the fluid is water, the method further comprising connecting the particulate filter to a water supply.
8. The fluid purification method of claim 1 , further comprising a first ridge and a second ridge disposed on a respective first side and a respective second side of the baffle, wherein the ridges are configured to trap a bubble of a desired size below the baffle.
9. A fluid purification method comprising:
flowing a fluid into a reservoir, the fluid entering above a baffle that transects the reservoir, the baffle including at least one ridge;
bubbling ozone gas into the fluid in the reservoir below the baffle;
trapping the ozone gas below the baffle using the at least one ridge;
forming a bubble of ozone gas below the baffle;
increasing the volume of the bubble of ozone gas;
retaining the bubble of ozone gas below the baffle until the bubble reaches a predetermined size; allowing the bubble of ozone gas to bleed out around the at least one ridge; and
flowing the fluid out of the reservoir below the baffle.
10. The fluid purification method of claim 9 , further comprising allowing the bubble of ozone gas to bleed out between the at least one ridge and the baffle.
11. The fluid purification method of claim 10 , further comprising applying fluid pressure to force the bubble of zone gas to bleed out between the at least one ridge and the baffle.
12. The fluid purification method of claim 9 , further comprising passing the ozone gas through the baffle as bubbles.