Adsorbent bed pressure balancing for a gas concentrator
A system and a method are described for monitoring pressure imbalances in the adsorbent beds of a portable gas concentrator. Using the programmability features found in modern portable concentrators, various mitigative procedures to adjust for pressure imbalances and to predict the need for service are disclosed.
1. A portable gas concentrator, for therapeutic delivery of oxygen to a patient comprising; a compressor, a controller, a rechargeable power source, an adsorption cycle section including adsorbent beds, at least one purge and/or feed gas flow control valve disposed in each bed and connected to the controller, wherein at least one of valve timing and flow is controlled by the controller, a gas product element a product line disposed to deliver oxygen to a patient, a single pressure sensor connected to the controller and disposed in the gas product element product line; and, a controller configured to read the pressure sensor disposed in the product line and to control oxygen delivery to the patient and to adjust at least one of valve timing and flow to balance peak product gas pressure observed in pressurization cycle steps from data obtained from the pressure sensor disposed in the product line; wherein the portable concentrator is less than 10 lbs, in weight, less than 1 cu. ft. in volume and generates less than 45 dbA acoustic noise.
2. The gas concentrator of claim 1 wherein the adsorption cycle is one of a Pressure Swing Adsorption Cycle (PSA), a Vacuum Pressure Swing Adsorption Cycle (VPSA), or a Vacuum Swing Adsorption Cycle (VSA).
3. The gas concentrator of claim 1 wherein valve timing is adjusted in response to the monitored pressure of the product gas whereby the bed pressures are balanced without affecting the overall cycle time.