IP Library Granted Patent US 10,294,124
Granted Patent B2
US 10,294,124 · App. 14/343,054 · Granted May 21, 2019

Method and apparatus for liquid disinfection by light emitted from light emitting diodes

Inventors: Benjamin Khan (Beit Yanai, IL); Michael Kertser (Bney Aish, IL); Zohar Vardiel (Or Yehuda, IL); Ytzhak Rozenberg (Ramat Gan, IL)
Assignee: Atlantium Technologies Ltd.
C02F1/325A61L2/10C02F2201/3222C02F2201/3227C02F2201/3228C02F2303/04F21Y2107/10
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Quick Facts
Patent No.
US 10,294,124
App. No.
14/343,054
Granted
May 21, 2019
Kind
B2
Abstract

An ultraviolet (UV) liquid treatment apparatus is disclosed. The apparatus may include a conduit having an inlet to receive liquid to be treated and an outlet to discharge treated fluid, the conduit defining a plurality of liquid flow paths between the inlet and the outlet. The apparatus may further include an UV light emitting diode (LED) module array to illuminate the liquid, wherein the UV LED module array comprises a plurality of UV LED modules arranged on a curved surface of an array holder, such the UV LED module array is configured to generate a customized spatial light flux distribution within the conduit that matches the liquid flow paths so as to obtain a desired UV dose distribution.

Claims (18)

1. An ultraviolet (UV) liquid treatment apparatus comprising:

a UV transparent conduit for carrying flowing liquid comprising an inlet to receive liquid to be treated and an outlet to discharge treated liquid, the apparatus is configured such that when the liquid flows in the conduit, the liquid acts as a waveguide, whereby at least part of the UV light is totally internally reflected; and

an array holder positioned inside the conduit and comprising first and second curved surfaces being located back to back one to each other, the array holder being in an X-Y plane substantially perpendicular to a longitudinal axis of the conduit,

wherein the first curved surface comprises a first UV light emitting diode (LED) module array that illuminates a first portion of the conduit having the inlet and having an LED module tilted with respect to the X-Y plane and the second curved surface comprises a second UV LED module array that illuminates a second portion of the conduit having the outlet and having an LED module tilted with respect to the X-Y plane,

wherein each of the first and second UV LED module arrays comprises a plurality of UV LED modules arranged on a respective one of the curved surfaces in pre-designed positions so as to increase the efficiency of the UV liquid treatment and generate a customized spatial light flux distribution such that the majority of UV light rays emitted from the LED modules strike a surface of the conduit in an angle above the critical angle for total internal reflection (TIR) and propagate in the conduit via TIR,

wherein the conduit comprises first and second UV transparent conduit portions joined together by the array holder.

2. The UV liquid treatment apparatus of claim 1 , wherein the curved surfaces are concave-like surfaces.

3. The UV liquid treatment apparatus of claim 1 , wherein the curved surfaces are conic-like surfaces.

4. The UV liquid treatment apparatus according claim 1 , wherein dimensions of the curved surfaces of the array holder are determined according to the customized spatial light flux distribution.

5. The UV liquid treatment apparatus of claim 1 , wherein a radius of curvature of the curved surfaces of the array holder is determined based on the customized spatial light flux distribution.

6. The UV liquid treatment apparatus of claim 1 , wherein a position of the UV LED modules on the array holder is determined based on the customized spatial light flux distribution.

7. The UV liquid treatment apparatus of claim 1 , further comprising:

a power source to power the UV LED module arrays; and

a switch activated by a liquid flow, the switch is activated when the liquid flows in the conduit, connecting the power source to the UV LED module arrays.

8. The UV liquid treatment apparatus of claim 1 , wherein the first conduit portion comprises the inlet and the second conduit portion comprises the outlet.

9. The UV liquid treatment apparatus of claim 1 , wherein each of the UV LED modules comprises a plurality UV light emitting diodes.

10. The UV liquid treatment apparatus of claim 1 , wherein UV LED module arrays emits at a wavelength range of between 200 to 320 nm.

11. The UV liquid treatment apparatus of claim 1 , wherein the array holder comprises a peripheral element and UV light emitting diode (LED) array carrier, wherein the array carrier comprises the first and second curved surfaces wherein rays emitted from the first UV LED module array positioned on the first curved surface strike the first transparent portion of the conduit and rays emitted from the second UV LED module array positioned on the second curved surface strike the second transparent portion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2016
From: KHAN, BENJAMIN; KERTSER, MICHAEL; VARDIEL, ZOHAR; ROZENBERG, YTZHAK
To: ATLANTIUM TECHNOLOGIES LTD.
Reel/Frame 037505/0991 →
Continuity (2)
Provisional Application 61755984 · Jan 24, 2013
Related Publication 20150314024A1 · Nov 5, 2015
Cited By (1)
US 12,623,928