Claims
- 1. A method for elemental analysis, the method comprising the steps of:
providing a combustion reactor; providing a gas chromatographic analyzer connected to said combustion reactor; providing a pneumatic circuit connected to said combustion reactor and to said gas chromatographic analyzer; passing a carrier gas through said pneumatic circuit, first through said combustion reactor and then to said gas chromatographic analyzer; providing an oxygen feed line connected to said pneumatic circuit at an injection point upstream of said combustion reactor, said oxygen feed line including a restriction arranged upstream of said injection point; measuring pressure in said oxygen feed line upstream and downstream of said restriction; feeding oxygen from said oxygen feed line into said pneumatic circuit; adjusting one of an amount and a duration of the oxygen fed to said pneumatic circuit by adjusting said pressure upstream and downstream of said restriction.
- 2. A method in accordance with claim 1, wherein:
said adjusting of said pressure upstream and downstream of said restriction is performed to provide for an independent selection of the oxygen volumes and of the injection times, according to which an identical volume of oxygen can be injected for a different duration of time.
- 3. A method in accordance with claim 1, wherein:
said adjusting of said one of said amount and duration includes adjusting a length of time of said feeding of oxygen.
- 4. A method in accordance with claim 1, further comprising:
feeding a sample to said combustion reactor; determining a theoretical amount of oxygen for substantially complete combustion of the sample based on a matrix of the sample, a combustion adjuvant of the sample and from a weight of the sample; proceeding with said adjusting of said one of said amount and said duration of said oxygen from said theoretical amount; obtaining analytical results from said adjusting of said one of said amounts and duration of oxygen; determining optimal said amounts and durations of said oxygen by convergence of said analytical results.
- 5. An elemental analyzer system comprising:
a combustion reactor; a gas chromatographic analyzer connected to said combustion reactor; a pneumatic circuit connected to said combustion reactor, said pneumatic circuit passing a carrier gas through said combustion reactor and to said gas chromatographic analyzer; an oxygen feed line connected to said pneumatic circuit at an injection point upstream of said combustion reactor; a restriction in said oxygen feed line arranged upstream of said injection point; a processor adjusting one of an amount and a duration of the oxygen fed to said pneumatic circuit by adjusting pressure upstream and downstream of said restriction.
- 6. An elemental analyzer system in accordance with claim 5, wherein:
said processor regulates based on a measurement of differences in said pressure upstream and downstream of said restriction, said processor varying said difference in pressure at said restriction for an independent selection of the amount of oxygen and the duration, according to which an identical volume of oxygen can be injected for a different duration of time.
- 7. An elemental analyzer system in accordance with claim 5, wherein:
said processor also adjusts a length of time of said feeding of oxygen.
- 8. An elemental analyzer system in accordance with claim 5, wherein:
a sample is placed in said combustion reactor; a theoretical amount of oxygen for substantially complete combustion of the sample is determined based on a matrix of the sample, a combustion adjuvant of the sample and from a weight of the sample; said processor proceeds with said adjusting of said one of said amount and said duration of said oxygen from said theoretical amount; said processor obtains analytical results from said adjusting of said one of said amounts and duration of oxygen; said processor determines optimal said amounts and durations of said oxygen by convergence of said analytical results.
- 9. The method for improving dynamic flash combustion reaction that is connected with gas chromatography for elemental analysis of C H N S O in an automatic elemental analyzer, the method comprising the steps of:
providing at least one combustion reactor; providing a sampling device; introducing a sample of material into the combustion reactor with the sampling device; providing an oxygen feed line with a restriction; admitting controlled volumes of oxygen with the oxygen feed line into the combustion reactor depending on the sample for the complete combustion thereof; providing a pneumatic circuit, in which the oxygen feed line converges and creating a continuous flow of a carrier gas that is able to carry the oxygen to the reactor and the gases of the combustion through the reactor, then through a gas chromatographic analyzer, and after their separation, into a thermal conductivity detector; providing an electronic apparatus with a data processor for controlling the process systems including
regulating the oxygen flow based on a measurement of the differences in pressure upstream and downstream of said restriction, injecting an identical volume of oxygen for a different duration of time by varying said pressure upstream and downstream of said restriction for an independent selection of the oxygen volumes and of the injection times.
- 10. A device for metering the oxygen in an elemental analyzer of the gases of the combustion of a sample
a combustion reactor, a sampling device, a sample of material being introduced into the combustion reactor with the sampling device; an oxygen feed line for admitting controlled volumes of oxygen into the combustion reactor depending on the sample for the complete combustion thereof, a pneumatic circuit, in which the oxygen feed line converges and creates a continuous flow of a carrier gas that is able to carry the oxygen to the reactor and the gases of the combustion through the reactor, then through a gas chromatographic analyzer, and after their separation, into a thermal conductivity detector; an electronic apparatus with a data processor for controlling the process; a restriction (R1) in said oxygen support line; an admission valve upstream of said restriction; an injection valve downstream of the said restriction; a carrier line for a carrier gas, having an admission valve, and being divided by means of a T junction, into a reference line (X) and into a sample line (Y), said oxygen feed line with said restriction (RI) meets said sample line; an electronic oxygen pressure regulator associated with said oxygen feed line upstream of said restriction; an electronic carrier gas pressure regulator on a carrier gas sample line; and an electronic flow meter, for the measurement of the carrier gas flow in the sample line; an electronic pressure regulator or an electronic flow regulator for the carrier gas in the reference line; a carrier gas outlet valve included in the reference line, for the control of the reference carrier gas, which is also used for purging the sampling device.
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| BS98A000068 |
Sep 1998 |
IT |
|
Parent Case Info
[0001] This is a Continuation of application Ser. No. 09/369,998 filed Aug. 6, 1999, and the entire disclosure of this prior application is considered to be part of the disclosure of the accompanying application and is hereby incorporated by reference therein.
Continuations (1)
|
Number |
Date |
Country |
| Parent |
09369998 |
Aug 1999 |
US |
| Child |
10302306 |
Nov 2002 |
US |