Claims
- 1. A reactor, comprising:
a heater; a passage for transporting a reactant; a chamber containing a gas sample and being coupled to said passage for receiving the reactant and mixing the reactant with the gas sample; a connector leading from said chamber to said heater for transporting a mixture of the reactant and gas sample; and wherein said heater heats the mixture of the reactant and gas sample.
- 2. The reactor according to claim 1, wherein said passage further includes a second reactant.
- 3. The reactor according to claim 1, further comprising a second passage coupled to said connector for transporting a second reactant to the mixture of the reactant and gas sample.
- 4. The reactor according to claim 3, wherein said connector is placed within said second passage.
- 5. The reactor according to claim 3, wherein said second passage is concentric with said connector.
- 6. The reactor according to claim 1, wherein said connector is coupled to an outlet.
- 7. The reactor according to claim 6, further comprising an electrochemical gas sensor coupled to an outlet for detecting a gas component in the gas sample.
- 8. The reactor according to claim 7, wherein said electrochemical gas sensor comprises a substrate having a substrate, an electrode deposited on a surface of the substrate, an ionomer membrane in contact with the surface and electrode, the ionomer membrane having a first surface and a second surface, and an opening in the ionomer membrane extending from the first surface to the second surface in a location proximate to the electrode, thereby defining a passage for providing diffusion control for the gas.
- 9. A reactor, comprising:
a heater; a first passage for transporting a first reactant; a second passage for transporting a second reactant; a connector containing a gas sample and being coupled to said first passage for receiving the first reactant and mixing the first reactant with the gas sample; said connector extending from said first passage through said heater and coupling to said second passage for receiving the second reactant and mixing the first reactant and gas sample with the second reactant; and said second passage passing through said heater, whereby the second reactant, first reactant, and gas sample are heated by said heater.
- 10. The reactor according to claim 9, further comprising an electrochemical gas sensor coupled to said second passage for detecting a gas component in the gas sample.
- 11. A method for providing a reactor, comprising the steps of:
premixing at least two reactant gases together; combining the premix of the at least two reactant gases with a gas sample; heating the premix and gas sample; and detecting a gas component in the gas sample using an electrochemical gas sensor having a substrate, an electrode deposited on a surface of the substrate, an ionomer membrane in contact with the surface and electrode, the ionomer membrane having a first surface and a second surface, and an opening in the ionomer membrane extending from the first surface to the second surface in a location proximate to the electrode, thereby defining a passage for providing diffusion control for the gas.
- 12. The method according to claim 11, further comprising the step of providing a chamber and homogeneously combining the at least two reactant gases and gas sample in the chamber.
- 13. The method according to claim 11, further comprising the step of oxidizing the premix and gas sample.
- 14. The method according to claim 11, further comprising the step of reducing the premix and gas sample.
- 15. A method for providing a reactor, comprising the steps of:
mixing a first reactant gas with a gas sample; heating the mixture of the first reactant gas with the gas sample prior to adding the second reactant gas, adding a second reactant gas to the first reactant gas and gas sample; heating the first reactant gas, second reactant gas, and gas sample; and detecting a gas component in the gas sample using an electrochemical gas sensor having a substrate, an electrode deposited on a surface of the substrate, an ionomer membrane in contact with the surface and electrode, the ionomer membrane having a first surface and a second surface, and an opening in the ionomer membrane extending from the first surface to the second surface in a location proximate to the electrode, thereby defining a passage for providing diffusion control for the gas.
- 16. The method according to claim 15, further comprising the step of providing a chamber and homogeneously combining the first reactant gas, second reactant gas, gas sample, and combinations thereof in the chamber.
- 17. The method according to claim 15, further comprising the step of oxidizing the premix and gas sample.
- 18. The method according to claim 15, further comprising the step of reducing the premix and gas sample.
PRIORITY APPLICATION
[0001] This application is a continuation in part of copending U.S. patent application Ser. No. 09/443,875 for a “Film Type Solid Polymer Ionomer Sensor and Sensor Cell” filed on Nov. 19, 1999.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09443875 |
Nov 1999 |
US |
Child |
10397757 |
Mar 2003 |
US |