IP Library › Patent Application 10563036
Patent Application
App. No. 10/563,036

Method and apparatus for analysing combustion products

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Patent No.
US None
App. No.
10/563,036
Abstract

A method of analysing a sample, such as a fuel, comprises feeding the sample to a combustion chamber 2 , the at least partial combustion of the sample in the combustion chamber 2 to form combustion products, the removal of the combustion products from the combustion chamber 2 , the feeding of the combustion products to a measuring chamber 16,30 and the measurement of a component of the combustion products in the measuring chamber 16,30 . The combustion products are removed from the combustion chamber 2 to a reservoir 15 in which the combustion products are collected, after which the collected combustion products are fed out of the reservoir 15 to the measuring chamber 16,30 . An analysis device 1 with which the above method may be used is also disclosed.

Claims (37)

1 . A method of analysing a sample, comprising:

combusting the sample in a combustion chamber ( 2 ) to produce combustion products;

collecting the combustion products from the combustion chamber ( 2 ) into a reservoir ( 15 ) comprising a gas displacer;

operating the gas displacer to force the collected combustion products out of the reservoir ( 15 ) to a measuring chamber ( 16 , 30 ) under pressure; and

measuring at least one property of the combustion products in the measuring chamber ( 16 , 30 ).

2 . The method according to claim 1 , wherein the reservoir ( 15 ) is connected by a first connection ( 11 ) to the combustion chamber ( 2 ) and is connected by a second connection ( 14 ) to the measuring chamber ( 16 , 30 ), comprising shutting off the second connection ( 14 ) to the measuring chamber ( 16 , 30 ) during the collection of the combustion products and shutting off the first connection ( 11 ) to the combustion chamber ( 2 ) during the feeding of the combustion products to the measuring chamber ( 16 , 30 ).

3 . The method according to claim 1 , wherein the speed with which the combustion products collected in the reservoir ( 15 ) are fed to the measuring chamber ( 16 , 30 ) is higher than the speed with which the combustion products are removed from the combustion chamber to the reservoir ( 15 ).

4 . The method according to claim 1 , wherein the measuring chamber ( 16 , 30 ) has a discharge line ( 18 ) for removing combustion products, further comprising shutting off the discharge line ( 18 ) during the feeding of the combustion products to the measuring chamber ( 16 , 30 ).

5 . The method according to claim 4 , wherein substantially all of the combustion products are forced into the measuring chamber ( 16 , 30 ) prior to the measurement step.

6 . The method according to claim 1 , wherein the sample is substantially completely burnt in the combustion chamber ( 2 ) and substantially all the combustion products formed are collected in the reservoir ( 15 ).

7 . The method according to claim 1 , comprising the conditioning of the combustion products between combustion in the combustion chamber ( 2 ) and measurement in the measuring chamber ( 16 , 30 ).

8 . The method according to claim 7 , wherein the conditioning comprises drying the combustion products.

9 . The method according to claim 1 , wherein the combustion products are collected into the reservoir ( 15 ) while the sample is being combusted.

10 . The method according to claim 1 , wherein the combustion products are provided to the measuring chamber ( 16 , 30 ) once substantially all of the combustion products have been collected into the reservoir ( 15 ).

11 . The method according to claim 1 , wherein the gas displacer comprises a piston ( 21 ) movably incorporated in the reservoir ( 15 ).

12 . The method according to claim 11 , wherein the combustion products are drawn into the reservoir ( 15 ) by the opening action of the piston ( 21 ).

13 . An analysis device for analysing a sample, the device comprising:

a combustion chamber ( 2 ) arranged to combust the sample to produce combustion products;

a reservoir ( 15 ) comprising a gas displacer, the reservoir being downstream of the combustion chamber ( 2 ) and arranged to collect the combustion products from the combustion chamber ( 2 ); and

a measuring chamber ( 16 , 30 ) downstream of the reservoir ( 15 ) and arranged to receive the collected combustion products from the reservoir ( 15 ) and to measure at least one property of the combustion products,

wherein the gas displacer is operable to force the collected combustion products out of the reservoir ( 15 ) to the measuring chamber ( 16 , 30 ) under pressure.

14 . The analysis device according to claim 13 , wherein the combustion chamber ( 2 ) has an inlet opening ( 3 ) for feeding the sample and has an outlet opening ( 5 ) for removing the combustion products.

15 . The analysis device according to claim 14 , wherein the measuring chamber ( 16 , 30 ) is connected to the outlet opening ( 5 ) of the combustion chamber ( 2 ) and the reservoir ( 15 ) is connected by a first connection ( 11 ) to the combustion chamber ( 2 ) and is connected by a second connection ( 14 ) to the measuring chamber ( 16 , 30 ).

16 . The analysis device according to claim 13 , wherein the measuring chamber ( 16 , 30 ) has measurement means for measuring the at least one property of the combustion products.

17 . The analysis device according to claim 15 , wherein shut-off means ( 10 ) are provided for shutting off the second connection ( 14 ) to the measuring chamber ( 16 , 30 ) during the collection of the combustion products and shutting off the first connection ( 11 ) to the combustion chamber ( 2 ) during the feeding of the combustion products to the measuring chamber ( 16 , 30 ).

18 . The analysis device according to claim 17 , wherein the shut-off means comprises a three-way stopcock ( 10 ) that is connected to the first and second connection ( 11 , 14 ).

19 . The analysis device according to claim 13 , wherein the measuring chamber ( 16 , 30 ) has a discharge line ( 18 ) for removing combustion products, which discharge line ( 18 ) can be shut off by a valve ( 19 ).

20 . The analysis device according to claim 13 , wherein the gas displacer comprises a cylinder ( 20 ) in which a piston ( 21 ) is movably incorporated.

21 . The analysis device according to claim 20 , wherein the cylinder ( 20 ) comprises two chambers ( 23 , 24 ) separated by the movable piston ( 21 ), wherein one of the chambers forms a filling space ( 23 ) for the collection of the combustion products and the piston ( 21 ) can be energized by a stepping motor in one direction to force the combustion products out of the filling chamber ( 23 ).

22 . The analysis device according to claim 13 , wherein the reservoir ( 15 ) is confined by walls that are lined on the inside with a lining material that does not react with sulphur and/or nitrogen.

23 . The analysis device according to claim 13 , wherein a conditioning unit ( 7 ) for conditioning the combustion products is fitted between the combustion chamber ( 2 ) and the measuring chamber ( 16 , 30 ).

24 . The analysis device according to claim 23 , wherein the conditioning unit ( 7 ) comprises a tube ( 8 ) that is made of a material through which water can diffuse.

25 . The analysis device according to claim 24 , wherein the material is a copolymer such as Nafion®.

26 . The analysis device according to claim 13 comprising a gas source for continuously passing a gas through the analysis device.

27 . The analysis device according to claim 26 , wherein the gas comprises oxygen and/or an inert gas, such as argon.

28 . A method of analysing a sample, such as a fuel, comprising feeding the sample to a combustion chamber ( 2 ), the at least partial combustion of the sample in the combustion chamber ( 2 ) to combustion products, the removal of the combustion products from the combustion chamber ( 2 ), the feeding of the combustion products to a measuring chamber ( 16 , 30 ) and the measurement of a component of the combustion products in the measuring chamber ( 16 , 30 ), characterized in that the combustion products are removed from the combustion chamber ( 2 ) to a reservoir ( 15 ) comprising a gas displacer, the combustion products being collected in the reservoir ( 15 ), after which the gas displacer is operated to force the collected combustion products out of the reservoir ( 15 ) to the measuring chamber ( 16 , 30 ) under pressure.

29 . An analysis device for analysing a sample, comprising a combustion chamber ( 2 ) for at least partially burning the sample to combustion products, which combustion chamber ( 2 ) has an inlet opening ( 3 ) for feeding the sample and has an outlet opening ( 5 ) for removing the combustion products, and also a measuring chamber ( 16 , 30 ) that is connected to the outlet opening ( 5 ) of the combustion chamber ( 2 ), wherein the measuring chamber ( 16 , 30 ) has measurement means for measuring a component of the combustion products, characterized in that a reservoir ( 15 ) is provided for the temporary collection of the combustion products, which reservoir is connected by a first connection ( 11 ) to the combustion chamber ( 2 ) and is connected by a second connection ( 14 ) to the measuring chamber ( 16 , 30 ), the reservoir comprising a gas displacer operable to force the collected combustion products out of the reservoir ( 15 ) to the measuring chamber ( 16 , 30 ) under pressure.

Assignments (2)
CHANGE OF NAME Recorded Dec 7, 2006
From: THERMO ELECTRON CORPORATION
To: THERMO FISHER SCIENTIFIC INC.
Reel/Frame 018595/0625 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 4, 2006
From: SPRINKHUIZEN, QUIRINUS ADRIANUS; WILHELMUS VAN DER ZALM, MARINUS ARNOLDUS; WAGEMAKER, JOHAN HENDRIK
To: THERMO ELECTRON CORPORATION
Reel/Frame 018052/0675 →