The present invention relates to a device for the disinfection of a drink in a container.
There are some devices known for disinfecting water in open containers, which include an ozone generator through which a flow of air is passed, which, after having ozone added, is blown through a tube submerged in the water which is in the container.
This implies, firstly, the need for a powerful ozone generator, since the ozone escapes after being bubbled through the liquid, and secondly, the ozone in the air could become an irritant to the mucous membranes, which is a double inconvenience. However, the advantages of the disinfection of the liquid using ozone are attractive, even more so in situations where there is widespread worry about infectious agents, for which reason the invention provides a better use of this medium for the disinfection of a drink.
The invention's device for disinfecting a drink in a container consists of:
The duct ideally is of sufficient length to be submerged in the drink, so that the flow of air and ozone is blown into it, and the following advantages are achieved:
The device of the invention (1) for (see
An advantageous embodiment of the invention has the support (8) including a means of adjustment it to the mouth (30) of the container (3) (such as threads or fittings) to achieve a good closure and improve use of the ozone, as it accumulates internally.
The support (8) may further include a mouthpiece (9) for drinking from when it is fitted to the mouth (30) of the container.
There is also a power supply for the ozone generator (4) and for the impeller (5) of the air flow (6), integrated in the support (8), so that the support (8) itself is the device and integrates all its elements. Said power source preferably includes a rechargeable battery (11) (preferably provided with the corresponding charging port (12)), a power supply circuit (13) that is connected to the ozone generator (4) and to the impeller (5) of the air flow (6), and an adapter (14) (voltage and/or current) to the characteristics of the ozone generator (4) and the impeller (5) of the air flow (6), arranged in said power supply circuit (13). Thus, the device can operate without being connected to the mains power, with all the advantages that this entails. Preferably the rechargeable battery (11) should include a charge level indicator, not shown.
Furthermore, the power supply circuit may include one or more elements selected from:
The air inlet for flow generation (6) will preferably be done through the charging port (12), to take advantage of the same hole.
Once the nature of the invention has been sufficiently described, as well as the way it is implemented in practice, it should be noted that the provisions previously indicated and represented in the attached drawings may undergo detailed modifications as long as they do not alter the fundamental principle.
Number | Date | Country | Kind |
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U202130558 | Mar 2021 | ES | national |
Filing Document | Filing Date | Country | Kind |
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PCT/ES2022/070144 | 3/15/2023 | WO |