IP Library Granted Patent US 11,268,939
Granted Patent B2
US 11,268,939 · App. 16/560,099 · Granted Mar 8, 2022

Thermal conductivity detector and gas chromatograph equipped with the same

Inventor: Yuji Nakama (Kyoto, JP)
Assignee: Shimadzu Corporation
G01N30/66G01N2030/025
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Quick Facts
Patent No.
US 11,268,939
App. No.
16/560,099
Granted
Mar 8, 2022
Kind
B2
Abstract

A thermal conductivity detector includes a first pipe passage and an exhaust pipe passage. The first pipe passage is accommodated in a cell block together with a heating device. The exhaust pipe passage has an outlet port at the downstream end, and most of the exhaust pipe passage including the downstream end is drawn out of the cell block. The heating device maintains the space in the cell block at a temperature capable of vaporizing the sample. A filament is accommodated in the first pipe passage. The gas passing through the first pipe passage is discharged out of the thermal conductivity detector through the exhaust pipe passage outlet port. On the inner surface of the exhaust pipe passage, a coating having resistance to a cleaning fluid for removing the adhered substance due to the sample gas is formed.

Claims (21)

1. A thermal conductivity detector for a gas chromatograph, comprising:

a flow path having a first portion and a second portion arranged on a downstream of the first portion, the flow path being configured to guide a sample gas to an outlet port of the second portion via the first portion and the second portion;

a heating element accommodated in the first portion to detect thermal conductivity of the sample gas;

a heating device controllable to maintain a vaporization temperature of the sample gas in the first portion; and

a cell block having an inner space that accommodates at least the first portion and the heating device to keep the first portion warm,

wherein a first coating having resistance to a cleaning fluid for removing an adhered substance due to the sample gas is formed on an inner surface of the second portion of the flow path.

2. The thermal conductivity detector as recited in claim 1 ,

wherein the first coating is also formed on an inner surface of the first portion.

3. The thermal conductivity detector as recited in claim 1 ,

wherein the first coating has higher resistance to the cleaning fluid than a material forming the flow path.

4. The thermal conductivity detector as recited in claim 1 ,

wherein the heating element is provided with a second coating having resistance to the cleaning fluid.

5. The thermal conductivity detector as recited in claim 4 ,

wherein the second coating has higher resistance to the cleaning fluid than a material forming the heating element.

6. A gas chromatograph comprising:

a sample vaporization unit configured to generate a sample gas by vaporizing a sample;

a column configured to separate components of the sample gas generated by the sample vaporization unit; and

the thermal conductivity detector as recited in claim 1 ,

wherein the thermal conductivity detector detects thermal conductivity of the sample gas of each component separated by the column.

7. The thermal conductivity detector as recited in claim 1 ,

wherein the heating device is a cartridge heater.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 25, 2019
From: NAKAMA, YUJI
To: SHIMADZU CORPORATION
Reel/Frame 051110/0489 →
Priority Claims (1)
JP JP2018-171858 · Sep 13, 2018 · national
Continuity (1)
Related Publication 20200088697A1 · Mar 19, 2020