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Essentially, it consists of a sealed plastic container that comprises a gas permeable film, a work electrode, a reference electrode, an opposite electrode, and an electrolyte solution. The function principle essentially is as follows: the potential of the work electrode vis-a-vis the reference electrode is regulated as electrolysis takes place, measuring the electrolytic current that flows at that time, in order to determine the concentration of the target gas. To take the example of CO (carbon monoxide), the oxidation reaction shown in equation (1) takes place in the working electrode and a redox process (2) occurs in the opposite electrode with equation (3) expressing the entire chemical reaction. At this time, the current that flows to the working electrode and the opposite electrode respectively is proportional to the concentration of the carbon monoxide present. (1)
Carbon monoxide: CO + H2O → CO2 + 2H+ + 2e- Hydrogen sulphide: H2S + 4H2O → H2SO4 + 8H+ + 8e- (2)
Carbon monoxide: 1/2O2 + 2H+ + 2e- → H2OHydrogen sulphide: O2 + 4H+ + 4e- → 2 H2O (3)
Carbon monoxide: CO + 1/2O2 → CO2Hydrogen sulphide: H2S + |
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[CO-601E]
![]() CM-6A-2 / CM-6A |
[CO-604E]
![]() CM-6B |
[CO-602E]
![]() CM-2B |
[CO-605E (CM-31)]
![]() CM-3AH |
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[CO-603E]
![]() GOMHC-3A etc |
[CO-505E]
![]() GOC-1A |
[CO-509E]
![]() CM-5A |
[CO-50AE]
![]() CM-5B |
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[CO-50BE]
![]() CM-5C |
[CO-51EE]
![]() CMCD-11 |
[CO-501E]
![]() CM-525HB |
[CO-502E]
![]() CM-1050 |
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[CO-503E]
![]() CM-525LB |
[CO-504E]
![]() CM-2510 |
[CMF-D]
![]() Fixed type |
[CM-105B]
![]() CM-600 |
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[CM-105H]
![]() CM-6000 |
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[H2S-604E]
![]() HS-6A |
[H2S-602E]
![]() HS-2B |
[H2S-603E]
![]() GOMHC-3A |
[H2S-502E]
![]() GOH-1A |
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[H2S-50DE]
![]() HS-5A |
[H2S-51BE]
![]() HS-5B |
[H2S-50EE]
![]() HS-5C |
[HS-10]
![]() HSS-1050HL |
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[HS-100]
![]() HSS-1050HL |
[H2S-501E]
![]() HS-1050 |
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