MLchartDataset catalogue

Patent · US10603394B2 · B2 · US

UV sterilization of container, room, space or defined environment

(11) Publication number
US10603394B2
(21) Application number
15/602,489
(22) Filing date
2017-05-23
(30) Priority date
2010-06-01
(43) Publication date
2020-03-31
(45) Date of grant
2020-03-31
(51) IPC
A23L 3/28; A61L 2/00; A61L 2/10; A61L 2/24; A61L 9/00; A61L 9/20; H01J 37/244
(52) CPC
  • A61L Methods or apparatus for sterilising materials or objects in general; disinfection, sterilisation or deodorisation of air; chemical aspects of bandages, dressings, absorbent pads or surgical articles; materials for bandages, dressings, absorbent pads or surgical articles: 2/10, 2/00, 2/24, 2103/23, 2103/75, 2202/11, 2202/14, 2202/16, 2202/23, 2202/25, 2209/212, 9/00, 9/20
  • A23B Preservation of foods, foodstuffs or non-alcoholic beverages; chemical ripening of fruit or vegetables: 2/53
  • A23L Foods, foodstuffs or non-alcoholic beverages, not otherwise provided for; preparation or treatment thereof: 3/28
  • H01J Electric discharge tubes or discharge lamps: 2237/0245, 2237/22, 37/244
  • Y02A Technologies for adaptation to climate change: 90/10
(73) Assignee
Bluemorph LLC
(72) Inventors
Alexander Farren; Noah Bareket; Thomas Edgar Beard
(54) Title
UV sterilization of container, room, space or defined environment
(57) Abstract

Provided herein are portable ultraviolet (UV) devices, systems, and methods of use and manufacturing same. Methods of use include methods for UV disinfection and sterilization, more specifically, methods for UV disinfection and sterilization of a container, a room, a space or a defined environment. The portable UV devices, systems and methods are particularly useful for the UV disinfection and sterilization of a container, a room, a space or defined environment used in the food, beverage and dairy industry and in the process of fermentation for an alcoholic beverage. Provided are also portable UV devices, systems, and methods for inhibiting the growth of one or more species of microorganisms present in a container, a room, a space or a defined environment, preferably for inhibiting the growth of one or more species of microorganisms present on an interior surface of a container, a room, a space or a defined environment.

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Claims (20)

  1. A system comprising: an ultraviolet (UV) device; and (ii) a container, a room, a space or a defined environment; wherein the UV device is operatively and permanently attached to an interior position within the container, the room, the space or the defined environment, wherein the UV device comprises: (a) at least one germicidal UV light source; (b) a housing permanently surrounding or enclosing the at least one germicidal UV light source, wherein the housing allows passing through of UV light; and (c) a circuit board, wherein the circuit board comprises a functionality selected from the group consisting of: (A) controlling an on/off status of the germicidal UV light source based on measuring whether a pre-determined UV intensity has been attained; (B) controlling a speaker emitting an audible signal at the beginning or completion of a sterilization cycle; (C) controlling a plurality of LED lights indicting a status of a sterilization cycle; (D) relaying UV light intensity via a sensor to the container, the room, the space or the defined environment; (E) generating a report on time of a sterilization cycle; (F) generating a report on duration of a sterilization cycle; (G) generating a report on UV light intensity attained during a sterilization cycle; (H) emailing, phoning or texting a report on time of a sterilization cycle; (I) emailing, phoning or texting a report on duration of a sterilization cycle; (J) emailing, phoning or texting a report on UV light intensity attained during a sterilization cycle; (K) emailing, phoning or testing an alert to an individual that a sterilization cycle is in progress, interrupted or complete; and (L) emailing, phoning or texting an alert that the at least one germicidal UV light source requires replacement; wherein the container, the room, the space or the defined environment comprises; (a) an interior surface to be sterilized by the at least one germicidal UV light source; and (b) a ceiling, a wall, a floor, or an object to which the UV device can be attached; wherein the interior position is at the ceiling, at the wall, at the floor, or at the object in the container, the room, the space, or the defined environment; wherein the interior surface comprises plastic, aluminum, glass, stainless steel, porcelain or a polymer; wherein the UV device is programmed to obtain a predetermined UV light intensity; wherein programming of the UV device comprises an algorithm taking into account one or more of a parameter selected from the group consisting of size of the container, the room, the space or the defined environment, shape of the container, the room, the space or the defined environment, intensity of the at least one germicidal UV light source, and distance of the at least one germicidal UV light source from the interior surface of the container, the room, the space or the defined environment to be sterilized; and wherein the algorithm is utilized to obtain the predetermined UV light intensity.
  2. The system according to claim 1, wherein the functionality is controlling an on/off status of the germicidal UV light source based on measuring whether a pre-determined UV intensity has been attained.
  3. The system according to claim 1, wherein the functionality is selected from the group consisting of: (E) generating a report on time of a sterilization cycle; (F) generating a report on duration of a sterilization cycle, (G) generating a report on UV light intensity attained during a sterilization cycle; (H) emailing, phoning or texting a report on time of a sterilization cycle; (I) emailing, phoning or texting a report on duration of a sterilization cycle; (J) emailing, phoning or texting a report on UV light intensity attained during a sterilization cycle; (K) emailing, phoning or texting an alert to an individual that a sterilization cycle is in progress interrupted or complete; and (L) emailing, phoning or texting an alert that the at least one germicidal UV light source requires replacement.
  4. The system according to claim 1, wherein the UV device is attached to the ceiling, the wall, the floor, or to the object within the container, the room, the space or the defined environment.
  5. The system according to claim 1, wherein the at least one germicidal UV light source comprises a plurality of UV lamps.
  6. The system according to claim 5, wherein members of the plurality of UV lamps are arranged in a cluster.
  7. The system according to claim 6, wherein the cluster is selected from the group consisting of a cluster comprising at least two UV lamps, a cluster comprising at least three UV lamps, a cluster comprising at least four UV lamps, a cluster comprising at least five UV lamps, a cluster comprising at least six UV lamps, a cluster comprising at least seven UV lamps, and a cluster comprising at least eight UV lamps.
  8. The system according to claim 5, wherein members of the plurality of UV lamps are arranged adjustably so that they can be positioned at varying angles with respect to each other.
  9. The system according to claim 5, wherein the plurality of UV lamps comprises a first UV lamp and a second UV lamp.
  10. The system according to claim 9, wherein the first UV lamp and the second UV lamp are spaced apart.
  11. The system according to claim 1, wherein the at least one germicidal UV light source comprises a UV lamp selected from the group consisting of a hot cathode lamp, a slimline lamp, a high output lamp, and a cold cathode lamp.
  12. The system according to claim 1, wherein the at least one germicidal UV light source comprises a UV lamp selected from the group consisting of a low pressure UV lamp, a medium pressure UV lamp and a high pressure UV lamp.
  13. The system according to claim 1, wherein the at least one germicidal UV light source is a mercury UV lamp.
  14. The system according to claim 1, wherein the at least one germicidal UV Light source is a light emitting diode.
  15. The system according to claim 1, further comprising: (iii) a detector at an interior location within the container, the room, the space or the defined environment, wherein the detector is configured to measure a UV intensity level.
  16. The system according to claim 1, wherein the housing is selected from the group consisting of a housing comprising a mesh cage, a housing comprising a protective sleeve, a housing comprising a fan cooling system, and a housing comprising a reflector.
  17. The system according to claim 1, wherein the UV device further comprises an optical component selected from the group consisting of a reflector, a shutter, a lens, a splitter, and a mirror.
  18. The system according to claim 1, further comprising: (iii) a touchscreen interface configured to provide an input for a functionality selected from the group consisting of: (A) activating the at least one germicidal UV light source; (B) deactivating the at least one germicidal UV light source; (C) providing time input for completing a UV sterilization of the container, the room, the space or the defined environment; (D) providing time elapsed for UV sterilization of the container, the room, the space or the defined environment; (E) setting a desired UV intensity level; (F) adjusting a UV intensity level; and (G) logging in a code for a user.
  19. The system according to claim 1, wherein one or more species of microorganisms is present on the interior surface within the container, the room, the space or the defined environment and wherein activation of the at least one germicidal UV light source results in inhibiting the growth of the one or more species of microorganisms.
  20. The system according to claim 1, wherein the container, the room, the space or the defined environment is selected from the group consisting of a container for storing or transporting a dairy product, a container for storing or transporting a liquid dairy, a container for storing or transporting a liquid dairy composition, a container for storing or transporting a dry dairy composition, a vat, a silo, a tub, a basket, a case, a box, a barrel, a storage bin, a container for a biological fluid, a beverage container, an aquarium, a commercial kitchen, a medical facility, an acute care area, an operating room, a medical equipment storage cabinet, a clean room, a bathroom, a waiting room, a food production area, a food processing area, a nursery home, a trailer, a rail car, a grocery store display case, a deli counter, a fish display case, a poultry display case, a floral display case, a refrigerated display case, a non-refrigerated display case, and a conveyor belt.

Description

The present invention relates generally to compositions, systems and methods for ultraviolet (UV) disinfection, and more specifically, to compositions, systems and methods for UV disinfection of a container, and more particularly to compositions, systems and methods for UV disinfection of a container used in the food and dairy industry or in the process of fermentation for an alcoholic beverage. More specifically, the present invention relates to portable UV devices and uses thereof in methods of sterilization and sanitization of interior surfaces of containers. The present invention also relates to compositions, systems and methods for UV disinfection of a room, a space or a defined environment. The present invention also relates to methods of manufacturing portable UV devices.

It has been well established that ultraviolet (UV) light has germicidal properties. Specifically, the mechanism by which UV light kills microorganisms is by damaging the genetic material, the deoxyribonucleic acid (DNA), of the microorganisms. Wavelengths between 200-300 nm have been shown to initiate a photoreaction between adjacent pyrimidines. Pyrimidine bases, such as cytosine and thymine, have conjugated double bonds and as such absorb UV light. The photoreaction between adjacent thymine or cytosine bases proceeds at an exceedingly rapid rate (on the order of picoseconds). There are two possible products. The most common is the formation of a cyclobutane ring between the two pyrimidines (Fu et al., 1997, Applied and Environ Microbiol 63(4):1551-1556). The other photoproduct is a (6-4) pyrimidone.

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Record as JSON
{
  "publication_number": "US10603394B2",
  "country": "US",
  "kind": "B2",
  "title": "UV sterilization of container, room, space or defined environment",
  "abstract": "Provided herein are portable ultraviolet (UV) devices, systems, and methods of use and manufacturing same. Methods of use include methods for UV disinfection and sterilization, more specifically, methods for UV disinfection and sterilization of a container, a room, a space or a defined environment. The portable UV devices, systems and methods are particularly useful for the UV disinfection and sterilization of a container, a room, a space or defined environment used in the food, beverage and dairy industry and in the process of fermentation for an alcoholic beverage. Provided are also portable UV devices, systems, and methods for inhibiting the growth of one or more species of microorganisms present in a container, a room, a space or a defined environment, preferably for inhibiting the growth of one or more species of microorganisms present on an interior surface of a container, a room, a space or a defined environment.",
  "claims": [
    "1. A system comprising: an ultraviolet (UV) device; and (ii) a container, a room, a space or a defined environment; wherein the UV device is operatively and permanently attached to an interior position within the container, the room, the space or the defined environment, wherein the UV device comprises: (a) at least one germicidal UV light source; (b) a housing permanently surrounding or enclosing the at least one germicidal UV light source, wherein the housing allows passing through of UV light; and (c) a circuit board, wherein the circuit board comprises a functionality selected from the group consisting of: (A) controlling an on/off status of the germicidal UV light source based on measuring whether a pre-determined UV intensity has been attained; (B) controlling a speaker emitting an audible signal at the beginning or completion of a sterilization cycle; (C) controlling a plurality of LED lights indicting a status of a sterilization cycle; (D) relaying UV light intensity via a sensor to the container, the room, the space or the defined environment; (E) generating a report on time of a sterilization cycle; (F) generating a report on duration of a sterilization cycle; (G) generating a report on UV light intensity attained during a sterilization cycle; (H) emailing, phoning or texting a report on time of a sterilization cycle; (I) emailing, phoning or texting a report on duration of a sterilization cycle; (J) emailing, phoning or texting a report on UV light intensity attained during a sterilization cycle; (K) emailing, phoning or testing an alert to an individual that a sterilization cycle is in progress, interrupted or complete; and (L) emailing, phoning or texting an alert that the at least one germicidal UV light source requires replacement; wherein the container, the room, the space or the defined environment comprises; (a) an interior surface to be sterilized by the at least one germicidal UV light source; and (b) a ceiling, a wall, a floor, or an object to which the UV device can be attached; wherein the interior position is at the ceiling, at the wall, at the floor, or at the object in the container, the room, the space, or the defined environment; wherein the interior surface comprises plastic, aluminum, glass, stainless steel, porcelain or a polymer; wherein the UV device is programmed to obtain a predetermined UV light intensity; wherein programming of the UV device comprises an algorithm taking into account one or more of a parameter selected from the group consisting of size of the container, the room, the space or the defined environment, shape of the container, the room, the space or the defined environment, intensity of the at least one germicidal UV light source, and distance of the at least one germicidal UV light source from the interior surface of the container, the room, the space or the defined environment to be sterilized; and wherein the algorithm is utilized to obtain the predetermined UV light intensity.",
    "2. The system according to claim 1, wherein the functionality is controlling an on/off status of the germicidal UV light source based on measuring whether a pre-determined UV intensity has been attained.",
    "3. The system according to claim 1, wherein the functionality is selected from the group consisting of: (E) generating a report on time of a sterilization cycle; (F) generating a report on duration of a sterilization cycle, (G) generating a report on UV light intensity attained during a sterilization cycle; (H) emailing, phoning or texting a report on time of a sterilization cycle; (I) emailing, phoning or texting a report on duration of a sterilization cycle; (J) emailing, phoning or texting a report on UV light intensity attained during a sterilization cycle; (K) emailing, phoning or texting an alert to an individual that a sterilization cycle is in progress interrupted or complete; and (L) emailing, phoning or texting an alert that the at least one germicidal UV light source requires replacement.",
    "4. The system according to claim 1, wherein the UV device is attached to the ceiling, the wall, the floor, or to the object within the container, the room, the space or the defined environment.",
    "5. The system according to claim 1, wherein the at least one germicidal UV light source comprises a plurality of UV lamps.",
    "6. The system according to claim 5, wherein members of the plurality of UV lamps are arranged in a cluster.",
    "7. The system according to claim 6, wherein the cluster is selected from the group consisting of a cluster comprising at least two UV lamps, a cluster comprising at least three UV lamps, a cluster comprising at least four UV lamps, a cluster comprising at least five UV lamps, a cluster comprising at least six UV lamps, a cluster comprising at least seven UV lamps, and a cluster comprising at least eight UV lamps.",
    "8. The system according to claim 5, wherein members of the plurality of UV lamps are arranged adjustably so that they can be positioned at varying angles with respect to each other.",
    "9. The system according to claim 5, wherein the plurality of UV lamps comprises a first UV lamp and a second UV lamp.",
    "10. The system according to claim 9, wherein the first UV lamp and the second UV lamp are spaced apart.",
    "11. The system according to claim 1, wherein the at least one germicidal UV light source comprises a UV lamp selected from the group consisting of a hot cathode lamp, a slimline lamp, a high output lamp, and a cold cathode lamp.",
    "12. The system according to claim 1, wherein the at least one germicidal UV light source comprises a UV lamp selected from the group consisting of a low pressure UV lamp, a medium pressure UV lamp and a high pressure UV lamp.",
    "13. The system according to claim 1, wherein the at least one germicidal UV light source is a mercury UV lamp.",
    "14. The system according to claim 1, wherein the at least one germicidal UV Light source is a light emitting diode.",
    "15. The system according to claim 1, further comprising: (iii) a detector at an interior location within the container, the room, the space or the defined environment, wherein the detector is configured to measure a UV intensity level.",
    "16. The system according to claim 1, wherein the housing is selected from the group consisting of a housing comprising a mesh cage, a housing comprising a protective sleeve, a housing comprising a fan cooling system, and a housing comprising a reflector.",
    "17. The system according to claim 1, wherein the UV device further comprises an optical component selected from the group consisting of a reflector, a shutter, a lens, a splitter, and a mirror.",
    "18. The system according to claim 1, further comprising: (iii) a touchscreen interface configured to provide an input for a functionality selected from the group consisting of: (A) activating the at least one germicidal UV light source; (B) deactivating the at least one germicidal UV light source; (C) providing time input for completing a UV sterilization of the container, the room, the space or the defined environment; (D) providing time elapsed for UV sterilization of the container, the room, the space or the defined environment; (E) setting a desired UV intensity level; (F) adjusting a UV intensity level; and (G) logging in a code for a user.",
    "19. The system according to claim 1, wherein one or more species of microorganisms is present on the interior surface within the container, the room, the space or the defined environment and wherein activation of the at least one germicidal UV light source results in inhibiting the growth of the one or more species of microorganisms.",
    "20. The system according to claim 1, wherein the container, the room, the space or the defined environment is selected from the group consisting of a container for storing or transporting a dairy product, a container for storing or transporting a liquid dairy, a container for storing or transporting a liquid dairy composition, a container for storing or transporting a dry dairy composition, a vat, a silo, a tub, a basket, a case, a box, a barrel, a storage bin, a container for a biological fluid, a beverage container, an aquarium, a commercial kitchen, a medical facility, an acute care area, an operating room, a medical equipment storage cabinet, a clean room, a bathroom, a waiting room, a food production area, a food processing area, a nursery home, a trailer, a rail car, a grocery store display case, a deli counter, a fish display case, a poultry display case, a floral display case, a refrigerated display case, a non-refrigerated display case, and a conveyor belt."
  ],
  "description_excerpt": "The present invention relates generally to compositions, systems and methods for ultraviolet (UV) disinfection, and more specifically, to compositions, systems and methods for UV disinfection of a container, and more particularly to compositions, systems and methods for UV disinfection of a container used in the food and dairy industry or in the process of fermentation for an alcoholic beverage. More specifically, the present invention relates to portable UV devices and uses thereof in methods of sterilization and sanitization of interior surfaces of containers. The present invention also relates to compositions, systems and methods for UV disinfection of a room, a space or a defined environment. The present invention also relates to methods of manufacturing portable UV devices.\n\nIt has been well established that ultraviolet (UV) light has germicidal properties. Specifically, the mechanism by which UV light kills microorganisms is by damaging the genetic material, the deoxyribonucleic acid (DNA), of the microorganisms. Wavelengths between 200-300 nm have been shown to initiate a photoreaction between adjacent pyrimidines. Pyrimidine bases, such as cytosine and thymine, have conjugated double bonds and as such absorb UV light. The photoreaction between adjacent thymine or cytosine bases proceeds at an exceedingly rapid rate (on the order of picoseconds). There are two possible products. The most common is the formation of a cyclobutane ring between the two pyrimidines (Fu et al., 1997, Applied and Environ Microbiol 63(4):1551-1556). The other photoproduct is a (6-4) pyrimidone.",
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  "assignees": [
    "Bluemorph LLC"
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  "inventors": [
    "Alexander Farren",
    "Noah Bareket",
    "Thomas Edgar Beard"
  ],
  "filing_date": "2017-05-23",
  "publication_date": "2020-03-31",
  "grant_date": "2020-03-31",
  "priority_date": "2010-06-01",
  "application_number": "US-201715602489-A",
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