1. Field of the Invention
The invention patent relates to a spray atomizing ozone water generation apparatus with ozone gas storage ability.
2. Description of the Prior Art
It has been widely known that ozone or ozonated water can disinfect and kill bacteria. Ozonated water is even more applicable as a kind of disinfectant for household and medical purposes. However, the ozonated water needs to achieve a quite high degree of concentration to get better effect in killing bacteria and disinfection. The authorities in some countries have proposed some specific provisions for the concentration if the ozonated water is used for disinfecting.
For instance, under organic compound circumstances, the concentration of ozonated water as disinfectant should be defined up to 18 ppm. However, the aforesaid degree is still not high enough to kill all kinds of bacteria. To completely kill all the bacteria, we need the degree of concentration as high as 20˜30 ppm. But current ozonated water generators are unable to produce ozonated water having such high degree of concentration. Theoretically, to get ozonated water with super high concentration, more ozone generators may be adopted to generate ozone gas simultaneously. But this is not practical and can not be accepted due to that it would take up too much space and consume too much energy, especially in the use of the household and medical ozonated water equipment.
The ozonated water concentration depends on the quantity of the ozone gas and the efficiency of the gas mixing with or dissolving in water. Suppose that the ozone gas is able to be prestored and subsequently get mixed with or dissolved in water by a high efficacy ozone gas and water mixing unit, then we can make super high concentration ozonated water with less ozone generators.
The purpose of this invention patent is to provide a high efficiency water atomization nebulizer and ozone gas storage for an ozonated water generation device.
The invention patent provides a spray atomizing ozone water generation apparatus with gas storage ability. It contains a gas-water mixing chamber to store the ozone gas, an atomizing water nebulizer at the top of the mixing chamber, an input water pipe connected to the atomizing water nebulizer, a tap water inlet valve built in the input pipe, an input ozone pipe at the top of the mixing chamber, an output ozonated water pipe at the bottom of the chamber, and an ozone water outlet valve built in the output pipe. It also contains a delay circuit to control the tap water inlet valve, the ozone water outlet valve and the ozone generator.
The device has no restriction on ozone gas sources. It can be applied to any kind of ozone generator. However we recommend electrolytic ozone generators.
This is the working principle of the present invention:
When the ozonated water generator starts working, the delay circuit controls the tap water inlet and ozone water outlet valves to keep closed for a while. During this period of time, the ozone generator continuously generates ozone gas that would further come into the mixing chamber and stored therein. After the delay time, the two valves are switched on under the control of the delay circuit. Then the input water sprayed from the atomizing water nebulizer is formed into water mist for mixing with the ozone gas, thus producing high concentration ozonated water which then comes out through the ozonated water pipe.
When turning off the ozonated water generator, the ozonated water stops output immediately. But as controlled by the delay circuit, the ozone generator keeps on generating ozone gas that would be stored into the mixing chamber. So when turning on the ozonated water generator next time, the input water comes through the atomizing water nebulizer to become water mist, and the water mist mixes with the ozone gas already stored in the chamber to produce ozonated water with high concentration which further comes out through the ozonated water pipe.
The amount of the ozone gas stored in the mixing chamber is adjustable since the delay time is adjustable. Under the control of the delay circuit, the tap water inlet valve, the ozone water outlet valve and the ozone generator are efficiently adjusted, namely the delay circuit makes the ozone generator continuously generate ozone gas that would be stored in the mixing chamber. The longer the delay time is, the more ozone gas is stored, and the ozonated water with higher concentration is produced. Storing ozone gas in mixing chamber can have the equivalent effects as supplying ozone gas simultaneously generated by several ozone generators. Thus, this invention not only produces super high-concentration ozonated water but also makes equipment compact.
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This application is a continuation-in-part of U.S. patent application Ser. No. 11/995,753, filed on Jan. 15, 2008.
Number | Date | Country | |
---|---|---|---|
Parent | 11995753 | Jan 2008 | US |
Child | 13370928 | US |