Apparatus and method for humidity conditioning sample gas of a patient breathing circuit affiliated with a ventilator and/or nitric oxide delivery system
A therapeutic gas is administered to a patient. A sample gas is drawn from the therapeutic gas supply, and passed through a water-permeable tubular membrane. Concurrently, a section of the water permeable tubular membrane is maintained as a ventilated water permeable tubular membrane, by exposing outer surfaces of the ventilated water permeable tubular membrane to an ambient air flow. The ambient air flow may in some examples be moved over the tubular membrane via forced air such as for example via a fan associated with a housing surrounding the tubular membrane.
1. A method for analyzing nitric oxide for delivery to a patient, comprising:
nitric oxide being added as a supplement to a mixture gas, and the mixture gas supplemented with the nitric oxide being delivered, through a conduit, to the patient;
receiving a sample gas, comprising a sample of the mixture gas supplemented with the nitric oxide, from the conduit through a gas sample line;
humidity conditioning the sample gas, by passing the sample gas through a water permeable tubular membrane, wherein the sample gas leaving the water-permeable tubular membrane is a humidity conditioned sample gas;
analyzing the humidity conditioned sample gas to determine a mixing ratio; and
concurrent with passing the sample gas through the water-permeable tubular membrane, maintaining a section of the water permeable tubular membrane as a ventilated water permeable tubular membrane, by operations that include exposing outer surfaces of the ventilated water permeable tubular membrane to an ambient air flow.
2. The method of claim 1 , wherein passing the sample gas through the water-permeable tubular membrane comprises passing the sample gas through a tubular membrane formed of a sulfonated tetrafluoroethylene based fluoropolymer-copolymer.
3. The method of claim 1 , wherein passing the sample gas through the water-permeable tubular membrane comprises passing the sample gas through a tubular membrane formed of a material that transfers humidity through the ventilated water permeable tubular membrane, based on First Order Kinetic reaction.
4. The method of claim 2 , wherein passing the tubular membrane comprises use of a tubular membrane formed of Nafion.
5. The method of claim 1 , wherein exposing outer surfaces of the ventilated water permeable tubular membrane to the ambient air flow establishes characteristics of the ambient air flow that prevent or significantly retard formation of a skin of dry gas around the outer surfaces of the ventilated water permeable tubular membrane.
6. The method of claim 1 , wherein the ventilated water permeable tubular membrane has an input end and an output end, spaced wherein the sample gas travels a passage length from the input end to the output, wherein the passage length in combination with a rate of the sample gas provides, for at least a range of humidity level at the input end that is outside of a given acceptable range, a humidity of the sample gas at the output end that is within the given acceptable range.
7. The method of claim 6 , wherein the given acceptable range extends from approximately 15% relative humidity to approximately 90% relative humidity.
8. The method of claim 1 , wherein the ambient air flow is urged by a fan.
9. The method of claim 1 , wherein the ventilated water permeable tubular membrane includes a coiled tube section.