IP Library Granted Patent US 10,697,865
Granted Patent B2
US 10,697,865 · App. 15/757,184 · Granted Jun 30, 2020

Preprocessing apparatus for gas analysis

Inventor: Saburo Sakai (Yokosuka, JP)
Assignee: JAPAN AGENCY FOR MARINE-EARTH SCIENCE AND TECHNOLOGY
G01N1/2226G01N1/00G01N1/22G01N30/12G01N30/20G01N31/00G01N33/0047G01N2030/025G01N2030/121
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Quick Facts
Patent No.
US 10,697,865
App. No.
15/757,184
Granted
Jun 30, 2020
Kind
B2
Abstract

Provided herein is a preprocessing apparatus for gas analysis that enables preprocessing for gas analysis to be performed without requiring a cryogen. A preprocessing apparatus for gas analysis 101 mainly includes a gas flow path 103 , a cooling portion 105 , and a plurality of valves V 101 to V 105 that serve as gas flow path connection changing means for changing the gas flow path. The cooling portion 105 is operable to cool the collecting portion 113 , and is constituted from a heat conductor 121 , a cooling device 127 , and a sealed structure 129 . The cooling device 127 can cooled a contact cooling section 131 to an extremely low temperature by utilizing electrical energy. The cooling device 127 is used to bring the collecting portion 113 to a first temperature at which the target gas to be analyzed is solidified, and to thereafter bring the collecting portion 113 to a second temperature at which only the target gas to be analyzed is gasified. By performing such processes, the target gas to be analyzed can be extracted by removing gases of impurities from a mixed gas.

Claims (62)

1. A preprocessing apparatus for gas analysis comprising:

a gas flow path including a collecting portion that is cooled to a plurality of temperature levels in order to separate a gas having the lowest solidification temperature, as a target gas to be analyzed, from a mixed gas containing a plurality of kinds of gases and to collect other kinds of gases other than the target gas, as gases of impurities;

a cooling device operable to cool the collecting portion of the gas flow path to the plurality of temperature levels;

a gas flow path connection changing means for connecting the gas flow path to a vacuum pump when evacuating the gas flow path, connecting the gas flow path to a gas generating source when introducing the mixed gas into the gas flow path after the gas flow path has been evacuated, and connecting the gas flow path to a gas analysis device in order to supply the target gas to be analyzed, which has been separated by the collecting portion, to the gas analysis device; and

a heat conductor configured to surround an outer periphery of the collecting portion, wherein

the cooling device includes a contact cooling section configured to contact the heat conductor to uniformly cool the collecting portion to a set temperature, and has a temperature adjusting function of adjusting a temperature of the contact cooling section to an arbitrary temperature by utilizing electrical energy;

the collecting portion, the heat conductor, and the contact cooling section are received in a vacuum chamber of a sealed structure, the vacuum chamber being connected to a vacuum pump and evacuated; and,

the vacuum chamber has been brought into a vacuum state by the vacuum pump when the collecting portion is cooled.

2. The preprocessing apparatus for gas analysis according to claim 1 , wherein

the heat conductor contacts the contact cooling section via an indium sheet.

3. The preprocessing apparatus for gas analysis according to claim 2 , wherein

the collecting portion is meanderingly arranged along a cooling surface of the contact cooling section.

4. The preprocessing apparatus for gas analysis according to claim 2 , wherein

the collecting portion has an overall length of 5 cm or more and 15 cm or less.

5. The preprocessing apparatus for gas analysis according to claim 2 , wherein

the collecting portion has a diameter of one-eighth of an inch (3.175 mm) or less.

6. The preprocessing apparatus for gas analysis according to claim 1 , wherein

the collecting portion is meanderingly arranged in the heat conductor.

7. The preprocessing apparatus for gas analysis according to claim 1 , wherein:

the collecting portion is a gas pipe through which the mixed gas flows; and

the heat conductor is insert molded including the gas pipe as an insert.

8. The preprocessing apparatus for gas analysis according to claim 1 , wherein

the heat conductor includes a heater configured to be electrically energized to generate heat.

9. The preprocessing apparatus for gas analysis according to claim 1 , wherein:

the mixed gas is a gas generated by adding phosphoric acid to a sample;

a main component of the impurities is water; and

the target gas to be analyzed is carbon dioxide.

10. A preprocessing apparatus for gas analysis comprising:

a gas flow path including a collecting portion that is cooled to a plurality of temperature levels in order to separate a plurality of kinds of gases contained in a mixed gas into a target gas to be analyzed and gases of impurities;

a cooling device operable to cool the collecting portion of the gas flow path to the plurality of temperature levels;

a gas flow path connection changing means for connecting the gas flow path to a vacuum pump when evacuating the gas flow path, connecting the gas flow path to a gas generating source when introducing the mixed gas into the gas flow path after the gas flow path has been evacuated, and connecting the gas flow path to a gas analysis device in order to supply the target gas to be analyzed, which has been separated by the collecting portion, to the gas analysis device; and

a heat conductor configured to surround an outer periphery of the collecting portion, wherein

the cooling device includes a contact cooling section configured to contact the heat conductor to uniformly cool the collecting portion to a set temperature, and has a temperature adjusting function of adjusting a temperature of the contact cooling section to an arbitrary temperature by utilizing electrical energy;

the collecting portion, the heat conductor, and the contact cooling section are received in a vacuum chamber of a sealed structure, the vacuum chamber being connected to a vacuum pump and evacuated; and,

the vacuum chamber has been brought into a vacuum state by the vacuum pump when the collecting portion is cooled.

11. The preprocessing apparatus for gas analysis according to claim 10 , wherein:

the collecting portion, the heat conductor, and the contact cooling section are received in a vacuum chamber of a sealed structure, the vacuum chamber being connected to a vacuum pump and evacuated; and

the vacuum chamber has been brought into a vacuum state by the vacuum pump when the collecting portion is cooled.

12. The preprocessing apparatus for gas analysis according to claim 10 , wherein

the heat conductor contacts the contact cooling section via an indium sheet.

13. The preprocessing apparatus for gas analysis according to claim 10 , wherein

the collecting portion is meanderingly arranged in the heat conductor.

14. The preprocessing apparatus for gas analysis according to claim 10 , wherein:

the collecting portion is a gas pipe through which the mixed gas flows; and

the heat conductor is insert molded including the gas pipe as an insert.

15. A preprocessing apparatus for gas analysis comprising:

a gas flow path including a collecting portion that is cooled in order to collect a target gas to be analyzed;

a cooling device operable to cool the collecting portion of the gas flow path; and

a heat conductor configured to surround an outer periphery of the collecting portion, wherein

the cooling device includes a contact cooling section configured to contact the heat conductor to uniformly cool the collecting portion to a set temperature, and has a temperature adjusting function of adjusting a temperature of the contact cooling section to an arbitrary temperature by utilizing electrical energy;

the collecting portion, the heat conductor, and the contact cooling section are received in a vacuum chamber of a sealed structure, the vacuum chamber being connected to a vacuum pump and evacuated; and,

the vacuum chamber has been brought into a vacuum state by the vacuum pump when the collecting portion is cooled.

16. The preprocessing apparatus for gas analysis according to claim 15 , wherein:

the collecting portion, the heat conductor, and the contact cooling section are received in a vacuum chamber of a sealed structure, the vacuum chamber being connected to a vacuum pump and evacuated; and

the vacuum chamber has been brought into a vacuum state by the vacuum pump when the collecting portion is cooled.

17. The preprocessing apparatus for gas analysis according to claim 15 , wherein

the heat conductor contacts the contact cooling section via an indium sheet.

18. The preprocessing apparatus for gas analysis according to claim 15 , wherein

the collecting portion is meanderingly arranged in the heat conductor.

19. The preprocessing apparatus for gas analysis according to claim 15 , wherein:

the collecting portion is a gas pipe through which the mixed gas flows; and

the heat conductor is insert molded including the gas pipe as an insert.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 13, 2018
From: SAKAI, SABURO
To: JAPAN AGENCY FOR MARINE-EARTH SCIENCE AND TECHNOLOGY
Reel/Frame 045536/0150 →
Priority Claims (1)
JP 2015-176635 · Sep 8, 2015 · national
Continuity (1)
Related Publication 20180252620A1 · Sep 6, 2018