Claims
- 1. A probe for measuring the oxygen potential of a furnace atmosphere relative to a reference medium of a known oxygen potential, especially to determine the carbon-transfer properties of a furnace atmosphere containing the gases H.sub.2, CO, and CH.sub.4, said probe comprising:
- an oxygen ion conducting solid measuring electrolyte exposed with a first surface to said furnace atmosphere and with a second surface to said reference medium;
- an oxygen ion conducting compensation electrolyte means for compensating oxygen potential deviations of said measuring electrolyte at said first surface in said furnace atmosphere, said compensation electrolyte means comprising a first solid body detachably connected to a portion of said first surface in said furnace atmosphere;
- a first contact electrode connected to said compensation electrolyte means remote from said portion of said first surface; and
- a second contact electrode connected to a portion of said second surface in said reference medium.
- 2. A probe according to claim 1, wherein said compensation electrolyte means further comprises a second solid body detachably connected between said second contact electrode and said portion of said second surface in said reference medium.
- 3. A probe according to claim 1, wherein said compensation electrolyte means is a cubic body of ZrO.sub.2.
- 4. A probe according to claim 1, wherein said compensation electrolyte means is a cylindrical body of ZrO.sub.2.
- 5. A probe according to claim 1, wherein said measuring electrolyte is tubular and wherein said compensation electrolyte means is a cylindrical body made of the same material as said measuring electrolyte, said probe further comprising an intermediate plate of precious metal connected between said compensation electrolyte and said first contact electrode, with said cylindrical body having a first end resting against said portion of said first surface of said measuring electrolyte and a second end connected to said intermediate plate.
- 6. A probe according to claim 1, wherein said compensation electrolyte means is made of the same material as said measuring electrolyte.
- 7. A probe according to claim 6, wherein said same material is ZrO.sub.2.
- 8. A probe according to claim 7, wherein said ZrO.sub.2 has at least one additive selected from the group consisting of Y.sub.2 O.sub.3, CaO, and MgO.
- 9. A probe according to claim 1, wherein said first contact electrode is made of gold.
- 10. A probe according to claim 1, wherein said first contact electrode is made of an alloy that contains predominantly gold.
- 11. A probe according to claim 1, wherein said first contact electrode comprises a semiconductor.
- 12. A probe according to claim 11, wherein said semiconductor is silicon carbide.
- 13. A probe according to claim 1, wherein said second contact electrode is made of heat-resistant chromium-nickel steel.
- 14. A method for measuring the oxygen potential of a furnace atmosphere relative to a reference medium of a known oxygen potential, especially to determine the carbon-transfer properties of a furnace atmosphere containing the gases H.sub.2, CO, and CH.sub.4, said method comprising the steps of:
- exposing a first surface of an oxygen ion conducting solid measuring electrolyte to said furnace atmosphere and a second surface to said reference medium;
- detachably connecting an oxygen ion conducting compensation electrolyte means that comprises a solid body between a first contact electrode and a portion of said first surface for avoiding oxygen potential deviations of said measuring electrolyte at said first surface in said furnace atmosphere by eliminating contact between said first surface of said measuring electrolyte and said first contact electrode; and
- connecting a second contact electrode to a portion of said second surface in said reference medium.
- 15. A method according to claim 14, further comprising the step of detachably connecting a second solid body of said compensation electrolyte means between said second contact electrode and said portion of said second surface in said reference medium.
Priority Claims (1)
Number |
Date |
Country |
Kind |
3833968 |
Oct 1988 |
DEX |
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Parent Case Info
This application is a continuation-in-part, of application Ser. No. 664,416 filed Feb. 28, 1991 now abandoned which in turn is a continuation-in-part application of Ser. No. 418,020 filed Oct. 6, 1989 now abandoned.
US Referenced Citations (13)
Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
664416 |
Feb 1991 |
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Parent |
418020 |
Oct 1989 |
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