Ultraviolet light fluid treatment device
US-2024173453-A1 · May 30, 2024 · US
US2017166458A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2017166458-A1 |
| Application number | US-201515327115-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jul 9, 2015 |
| Priority date | Jul 18, 2014 |
| Publication date | Jun 15, 2017 |
| Grant date | — |
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The invention relates to a liquid purification assembly using ultraviolet light irradiation against reproduction of pathogenic microorganisms, comprising an irradiation chamber ( 200 ) having an internal volume and comprising an inlet ( 204 ) and an outlet ( 205 ), the irradiation chamber ( 200 ) being provided with ultraviolet light emitting means ( 208 ) configured to irradiate liquid in the irradiation chamber ( 200 ) with ultraviolet light. The irradiation chamber ( 200 ) comprises a mechanism configured to cause a change in the internal volume of the irradiation chamber ( 200 ), said change in internal volume drawing liquid into the irradiation chamber ( 200 ) when the volume of the irradiation chamber ( 200 ) increases, and forcing liquid out of the irradiation chamber ( 200 ) when the volume of the irradiation chamber ( 200 ) decreases. The invention also relates to a beverage dispenser and to a method for purifying a liquid.
Opening claim text (preview).
1 . A liquid purification assembly using ultraviolet light irradiation against reproduction of pathogenic microorganisms, comprising an irradiation chamber having an internal volume and comprising an inlet and an outlet, the irradiation chamber being provided with an ultraviolet light emitting means member configured to irradiate liquid in the irradiation chamber with ultraviolet light, the irradiation chamber comprises a mechanism configured to cause a change in the internal volume of the irradiation chamber, the change in internal volume drawing liquid into the irradiation chamber when the volume of the irradiation chamber increases, and forcing liquid out of the irradiation chamber when the volume of the irradiation chamber decreases. 2 . A liquid purification assembly according to claim 1 , comprising a first one-way valve configured to allow liquid to flow through the inlet into the irradiation chamber, and a second one-way valve configured to allow liquid to flow through the outlet out of the irradiation chamber. 3 . A liquid purification assembly according to claim 1 , comprising a cylinder closed by a wall at an end, and a mobile piston enclosed in the cylinder, the movement of the piston causing the change in inner volume of the irradiation chamber comprised between the piston and the wall closing an end of the cylinder. 4 . A liquid purification assembly according to claim 3 , wherein the inlet and the outlet are situated on the wall closing an end of the cylinder. 5 . A liquid purification assembly according to claim 3 , wherein the inlet is situated on the wall closing an end of the cylinder, and the outlet is situated on the piston, or the outlet is situated on the wall closing an end of the cylinder, and the inlet is situated on the piston. 6 . A liquid purification assembly according to claim 3 , wherein the inlet and the outlet are situated upon the piston. 7 . A liquid purification assembly according to claim 3 , wherein the ultraviolet light emitting member is on the piston. 8 . A liquid purification assembly according to claim 3 , wherein the ultraviolet light emitting member is on the wall closing an end of the cylinder. 9 . A liquid purification assembly according to claim 3 , wherein the cylinder has a transparent side wall, and the ultraviolet light emitting member is on the side wall. 10 . A liquid purification assembly according to claim 1 comprising a deformable membrane forming a wall of the irradiation chamber, the deformation of the membrane causing the change in inner volume of the irradiation chamber. 11 . A liquid purification assembly according to claim 1 , wherein the ultraviolet light emitting member comprises ultraviolet light-emitting diodes. 12 . A liquid purification assembly according to claim 1 comprising an electronic controller configured to control the volume of the irradiation chamber, and/or the lighting of the ultraviolet light emitting member. 13 . A liquid purification assembly according to claim 1 comprising at least a system for preventing contamination by air entering the assembly, selected from the group consisting of: a microfiltration of air before the inlet ( 204 , 304 , 404 , 504 ) of the chamber; a loop of sterile air; and a flash heating system to sterilize and dry the irradiation chamber. 14 . A beverage dispenser comprising a liquid purification assembly using ultraviolet light irradiation against reproduction of pathogenic microorganisms, comprising an irradiation chamber having an internal volume and comprising an inlet and an outlet, the irradiation chamber being provided with an ultraviolet light emitting member configured to irradiate liquid in the irradiation chamber with ultraviolet light, the irradiation chamber comprises a mechanism configured to cause a change in the internal volume of the irradiation chamber, the change in internal volume drawing liquid into the irradiation chamber when the volume of the irradiation chamber increases, and forcing liquid out of the irradiation chamber when the volume of the irradiation chamber decreases, configured to purify the beverage before delivery by ultraviolet light irradiation. 15 . A method for purifying a liquid comprising: providing a liquid purification assembly using ultraviolet light irradiation against reproduction of pathogenic microorganisms, comprising an irradiation chamber having an internal volume and comprising an inlet and an outlet, the irradiation chamber being provided with an ultraviolet light emitting member configured to irradiate liquid in the irradiation chamber with ultraviolet light, the irradiation chamber comprises a mechanism configured to cause a change in the internal volume of the irradiation chamber, the change in internal volume drawing liquid into the irradiation chamber when the volume of the irradiation chamber increases, and forcing liquid out of the irradiation chamber when the volume of the irradiation chamber decreases, in which the irradiation chamber is at a minimal volume;
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