Nova Patents
EP0346566A2

Oxygen enriching apparatus.

Abstract

An apparatus for producing oxygen enriched air from the atmospheric air, including an oxygen enriching system employing a fan (18) for inducing a flow of atmospheric air through an oxygen enriching unit and a pump (10) for deriving the oxygen enriched air from the oxygen en­riching unit, a sound-proof box for encasing the fan and pump (10), an air intake passage (30) subjected to bending not less than five times and an air exhaust passage (35) also subjected to bending not less than five times. The oxygen enriching unit is provided with a unit for adjusting an oxygen concentration to a constant level regardless of any change in the atmospheric temperature.

EP0346566A2, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Projected expiry passed 3 December 2005, 20.8 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

25 claims: 22 independent, 3 dependent

  1. 1
    An apparatus for providing oxygen enriched air, said apparatus including a plurality of membrane elements, each, provided with a selectively permeable membrane having an oxygen permeation rate higher than nitrogen when atmospheric air is supplied and a means for removing said oxygen-enriched air from the plurality of membrane elements, wherein said plurality of membrane elements are di­vided into a predetermined number of groups having respective effective membrane areas for permeation, said predetermined number of groups of membrane elements being provided with re­spective conduit means for establishing the corresponding num­ber of fluid connections to said means for removing said oxygen-enriched air, and wherein a means is provided for chang­ing said number of said fluid connections between said prede­termined number of groups of membrane elements and said means for removing said oxygen-enriched air within said predetermined number.
  2. 2
    An apparatus for providing oxygen-enriched air, ac­cording to Claim 1, wherein said means for changing said number of said fluid connections comprises valve means arranged in at least one of said respective conduit means, said valve means being opened and closed in response to a change in temperature of said atmospheric air.
  3. 3
    An apparatus for providing oxygen-enriched air, ac­cording to Claim 1, wherein said plurality of membrane elements are divided into a first and a second group of membrane elements, the effective membrane area of said first group of membrane elements being between 60 through 80 per cent of the total effective membrane area of said first and second groups.
  4. 4
    An apparatus for providing oxygen-enriched air, ac­cording to Claim 1, wherein said plurality of membrane elements are divided into a first, a second, and a third group of mem­brane elements, the effective area of said first group of mem­brane elements being between 40 through 60 per cent of the to­tal effective membrane area of said first through third groups, the effective area of said second group of membrane elements being between 25 through 40 per cent of the total effective membrane area, and the effective membrane area of said third group of membrane elements being 10 through 25 per cent of the total effective membrane area.
  5. 5
    An apparatus for providing oxygen-enriched air, ac­cording to Claim 1 or 2, 3, 4 wherein said means for removing said oxygen-enriched air comprises a pressure reducing means for drawing off said oxygen-enriched air from said plurality of membrane elements.
  6. 6
    An apparatus for providing oxygen-enriched air, ac­cording to Claim 5, wherein said pressure reducing means com­prises a vacuum pump driven by an electric motor.
  7. 7
    An apparatus for providing oxygen-enriched air, ac­cording to Claim 6, further comprising controlling means for preventing said electric motor from being started before a va­cuum pressure level prevailing on a suction side of said vaccum pump drops below a predetermined vacuum pressure level.
  8. 8
    An apparatus for providing oxygen-enriched air, ac­cording to Claim 7, wherein said controlling means comprises a combination of a timer and an electric switching means con­nected to said electric motor, said timer means operating so as to prevent said electric switching means from being switched on for a predetermined period of time after stopping of said elec­tric drive motor.
  9. 9
    An apparatus for providing oxygen-enriched air, ac­cording to Claim 7, wherein said controlling means comprises an electric relay circuit including a combination of a first relay having normally-open contacts disposed between said electric drive motor and an electric power source and a second relay having a normally-closed contact which is opened so as to pre­vent electrical energization of said first relay for a prede­termined period of time after stopping of said electric drive motor.
  10. 10
    An apparatus for providing oxygen-enriched air, ac­cording to Claim 1, wherein said apparatus further including cooling means for cooling and condensing said oxygen-enriched air, water separating means for separating condensate produced when said oxygen-enriched air is cooled by said cooling means, water draining means connected to said water separating means, for draining said condensate, said water draining means having a fluid pressure reducing section which is formed by a multiple number of narrow fluid paths, said water draining means being provided at a position between said water separating means and said fluid pressure reducing section with a means for pre­venting clogging of said fluid pressure reducing section with foreign matter contained in said drained condensate.
  11. 11
    An apparatus for providing oxygen-enriched air, ac­cording to Claim 10, wherein said water draining means is pro­vided at an outermost end with a cylindrical covering for pre­venting scattering of said drained condensate.
  12. 12
    An apparatus for providing oxygen-enriched air, ac­cording to Claim 10, wherein said clogging preventing means comprises a water conduit means having one inlet end directly connected to a lower portion of said water separating means and the other outlet end upwardly connected to an entrance of said fluid pressure reducing section of said water draining means.
  13. 13
    An apparatus for providing oxygen enriched air, ac­cording to Claim 12, wherein said water conduit means is formed with an expansion chamber between said one inlet and other out­let ends thereof.
  14. 14
    An apparatus for providing oxygen-enriched air, ac­cording to Claim 12, wherein said water conduit means is provi­ded with a restrictor for forming a water nozzle at a position between said one inlet and other outlet end of said water con­duit means.
  15. 15
    An apparatus for providing oxygen-enriched air, ac­cording to Claim 12, wherein said one inlet end of said water conduit means is upwardly connected to said lower portion of said water separating means, and positioned at a level higher than said other outlet end of said water conduit means con­nected to said entrance of said fluid pressure reducing section of said water draining means.
  16. 16
    An apparatus for providing oxygen-enriched air, ac­cording to Claim 10, wherein said clogging preventing means comprises at least one filter element.
  17. 17
    An apparatus for providing oxygen-enriched air, ac­cording to Claim 16, wherein said filter element has an opening ranging from 1 through 1000 micrometers.
  18. 18
    An apparatus for providing oxygen-enriched air, ac­cording to Claim 11, wherein said cylindrical covering is closed at at least one end thereof, and a cylindrical surface thereof is formed with air drain ports at an upper portion of said cylindrical surface and water draining ports at a lower portion of said cylindrical surface.
  19. 19
    An apparatus for providing oxygen-enriched air, ac­cording to Claim 11, wherein said cylindrical covering is fixed to a portion of said cooling means covered with a moisture holding element.
  20. 20
    An apparatus for providing oxygen-enriched air, ac­cording to Claim 10, wherein said fluid pressure reducing sec­tion of said water draining means is a cylindrical section packed with a fibrous aggregate.
  21. 21
    An apparatus for providing oxygen-enriched air to a medical patient, the apparatus comprising:a plurality of membrane elements, each element being provided with a selectively permeable membrane having an upstream sur­face and a downstream surface, the membrane having an oxygen permeation rate higher than nitrogen, atmospheric air being supplied to the upstream surface of the membrane;a vacuum pumping means for drawing oxygen-enriched air from the downstream surface of the membrane of each of the plurality of membrane elements;an electric drive motor for driving said vacuum pumping means;and control means for preventing said electric drive motor from be­ing started before a vacuum level prevailing on a suction side of said vacuum pumping means drops below a predetermined vacuum level.
  22. 24
    An apparatus for providing oxygen-enriched air to a medical patient, the apparatus comprising:a plurality of membrane elements, each element being provided with a selectively permeable membrane having an upstream sur­face and a downstream surface, the membrane having an oxygen permeation rate higher than nitrogen, when atmospheric air is supplied to the upstream surface of the membrane;a vacuum pumping means for drawing oxygen-enriched air from the downstream surface of the membrane of each of the plurality of membrane elements;an electric drive motor for driving said vacuum pumping means;control means for automatically delaying restart of said elec­tric drive motor after an interruption of operation of said ap­paratus until at least such time as a vacuum level prevailing on a suction side of said vacuum pumping means drops below a predetermined vacuum level.
Independent claims22