Claims
- 1. System for determining the total sulfur content of a sample, comprising:
an enclosed burner to combust the sample in a flame, wherein the burner is a flame ionization detector supplying a measuring signal, a downstream feeder to provide a dosed supply of the combustion products, a gas chromatograph to receive the dosed supply and to separate the combustion product sulfur dioxide from other combustion products, a downstream detector to detect the sulfur dioxide and supply a detector signal, and a correction device correcting the detector signal by the measuring signal supplied by the flame ionization detector.
- 2. System as claimed in claim 1, further comprising at least one feed path to supply hydrogen and oxygen to the sample for combustion in the burner.
- 3. System as claimed in claim 2, wherein the oxygen is supplied as air.
- 4. System as claimed in claim 1, further comprising a liquid-sample vaporizer inserted in a feed path upstream of the burner.
- 5. System as claimed in claim 4, further comprising an oven for the feed path of the sample at least in an area between the liquid-sample vaporizer and the burner.
- 6. System as claimed in claim 4, further comprising at least one feed path to supply hydrogen and oxygen to the sample for combustion in the burner, wherein either the hydrogen or the oxygen is fed into the sample upstream of the liquid-sample vaporizer.
- 7. System as claimed in claim 6, wherein the feed path for the sample contains a capillary material at least in sections downstream of the hydrogen or oxygen supply.
- 8. System as claimed in claim 5, further comprising at least one feed path to supply hydrogen and oxygen to the sample for combustion in the burner, wherein either the hydrogen or the oxygen is fed into the sample upstream of the liquid-sample vaporizer.
- 9. System as claimed in claim 8, wherein the feed path for the sample contains a capillary material at least in sections downstream of the hydrogen or oxygen supply.
- 10. System as claimed in claim 4, wherein an interior of the liquid-sample vaporizer is filled with a high-surface-area material.
- 11. System as claimed in claim 1, wherein the detector is a flame photometer detector.
- 12. A method, comprising:
combusting a sample to form combustion products; outputting a measuring signal indicative of quantitative fluctuations in the sample; dosing the combustion products; separating sulfur dioxide from the dosed products; determining a sulfur dioxide concentration from the separated sulfur dioxide; utilizing the determined concentration and the measuring signal to determine a total sulfur content of the sample.
- 13. The method according to claim 12, wherein said combusting is performed in a flame ionization detector having a small combustion flame, and said determining is performed in a gas chromatograph.
- 14. An apparatus, comprising:
a flame ionization detector combusting a sample into combustion products and supplying a measuring signal indicative of quantitative fluctuations in the sample, a downstream feeder providing a dosed supply of the combustion products, a gas chromatograph receiving the dosed supply and separating the combustion product sulfur dioxide from other combustion products, a downstream detector outputting a detection signal indicative of the separated sulfur dioxide; and a correction device outputting a signal indicative of a total sulfur content of the sample by processing the detection signal and the measuring signal.
Priority Claims (1)
Number |
Date |
Country |
Kind |
10034879.3 |
Jul 2000 |
DE |
|
Parent Case Info
[0001] This is a Continuation of International Application PCT/DE01/02686, with an international filing date of Jul. 18, 2001, which was published under PCT Article 21(2) in German, and the disclosure of which is incorporated into this application by reference.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/DE01/02686 |
Jul 2001 |
US |
Child |
10347404 |
Jan 2003 |
US |