Bottled water cooler with built-in oxygen generator and...

C - Chemistry – Metallurgy – 02 – F

Patent

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Details

C02F 1/72 (2006.01) B67D 7/76 (2010.01) B67D 1/08 (2006.01) B67D 3/00 (2006.01) C02F 9/00 (2006.01) B67D 1/00 (2006.01)

Patent

CA 2346958

A bottled water/tap water cooler and compact oxygen generator system (100) combined within a single housing structure (10). The oxygen generator (100) includes an air compressor (300) for generating compressed air having into dual molecular sieve beds (120, 130) one at a time. As a first molecular sieve bed (120) absorbs nitrogen, up to approximately 95 % pure oxygen is allowed to pass therethrough to a flow meter (50) and into a diffuser (30) which passes the oxygen into a purified drinking water reservoir (20) supplied by the bottled water or filtered tap water. After the first molecular sieve bed (120) is full, the second molecular sieve bed (130) activates and starts absorbing nitrogen while allowing oxygen to pass therethrough, simultaneously, nitrogen is vented from the first molecular sieve into the atmosphere. The first and second molecular sieve beds alternate with one another allowing the system to run continuously by using timer controlled dual 3-way valves (113, 115).

L'invention concerne un système de refroidisseur d'eau embouteillée/du robinet et de générateur d'oxygène (100) combiné dans une structure d'enceinte unique (10). Le générateur d'oxygène (100) comprend un compresseur d'air (300) qui envoie de l'air comprimé dans deux tamis moléculaires (120, 130), un tamis après l'autre. Alors que le premier tamis moléculaire (120) absorbe l'azote, environ jusqu'à 95 % d'oxygène pur traverse ce tamis pour atteindre un indicateur de débit (50) et un diffuseur (30), lequel achemine l'oxygène vers un réservoir d'eau potable purifiée (20) alimenté en eau embouteillée ou en eau du robinet filtrée. Une fois que le premier tamis moléculaire (120) est rempli, on active le second tamis moléculaire (130), qui commence à absorber l'azote tout en laissant passer l'oxygène et, simultanément, l'azote est ventilé dans l'atmosphère depuis le premier tamis moléculaire. Les premier et second tamis moléculaires sont activés en alternance, ce qui permet au système de fonctionner en continu par le biais de deux soupapes à trois voies commandées par un temporisateur (113, 115).

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