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Principle Of Operation - Thermo Scientific 43i Instruction Manual

Pulsed fluorescence so2 analyzer

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Introduction

Principle of Operation

Principle of
Operation
1-2
Model 43i Trace Level-Enhanced Instruction Manual
high standards of quality, performance, and workmanship. Service
personnel are available for assistance with any questions or problems that
may arise in the use of this analyzer. For more information on servicing, see
the "Servicing" chapter.
The Model 43i Trace Level-Enhanced operates on the principle that SO
molecules absorb ultraviolet (UV) light and become excited at one
wavelength, then decay to a lower energy state emitting UV light at a
different wavelength. Specifically,
SO
The sample is drawn into the Model 43 i Trace Level-Enhanced through
the SAMPLE bulkhead, as shown in Figure 1–1. The sample flows through
a hydrocarbon "kicker," which removes hydrocarbons from the sample by
forcing the hydrocarbon molecules to permeate through the tube wall. The
SO
molecules pass through the hydrocarbon "kicker" unaffected.
2
The sample then flows into the fluorescence chamber, where pulsating UV
light excites the SO
molecules. The condensing lens focuses the pulsating
2
UV light into the mirror assembly. The mirror assembly contains eight
selective mirrors that reflect only the wavelengths which excite SO
molecules.
As the excited SO
molecules decay to lower energy states they emit UV
2
light that is proportional to the SO
allows only the wavelengths emitted by the excited SO
the photomultiplier tube (PMT). The PMT detects the UV light emission
from the decaying SO
2
of the fluorescence chamber, continuously monitors the pulsating UV light
source and is connected to a circuit that compensates for fluctuations in the
UV light.
As the sample leaves the optical chamber, it passes through a flow sensor, a
capillary, and the "shell" side of the hydrocarbon kicker. The sample then
flows to the pump and is exhausted out the EXHAUST bulkhead of the
analyzer. The Model 43i Trace Level-Enhanced outputs the SO
concentration to the front panel display and the analog outputs, and also
makes the data available over the serial or Ethernet connection.
υ
+
h
SO
*
SO
2
1
2
concentration. The bandpass filter
2
molecules. The photodetector, located at the back
υ
+
h
2
2
2
molecules to reach
2
2
Thermo Fisher Scientific
2

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