Introduction
Principle of Operation
Thermo Scientific
42iQTL Instruction Manual
1-3
The 42iQTL operates on the principle that nitric oxide (NO) and ozone
(O
3
) react to produce a characteristic luminescence with an intensity
linearly proportional to the NO concentration. Infrared light emission
results when NO
2
molecules decay to lower energy states. Specifically:
h
+
O
+
NO
O
+
NO
2
2
3
Nitrogen dioxide (NO
2
) must first be transformed into NO before it can
be measured using the chemiluminescent reaction. NO
2
is converted to
NO by a molybdenum NO
2
-to-NO converter heated to about 325 °C.
The ambient air sample is drawn into the 42iQTL through the
sample
bulkhead, as shown in
Figure 1–2
. The sample flows through a capillary,
and then to the mode solenoid valve.
The mode solenoid valve determines whether the sample flows through the
NO
2
-to-NO (NO
x
mode) or bypasses the NO
2
-to-NO converter (NO
mode). The sample then flows through the converter output valve and a
flow sensor to the prereactor solenoid valve.
The prereactor solenoid valve directs the sample either to the reaction
chamber, where it mixes with ozone to give an NO reading, or to the
prereactor, where it reacts with ozone prior to the reaction chamber giving
a dynamic zero reading for the analyzer. The prereactor is sized so that
greater the 99% of a 200 ppb NO sample will react prior to entering the
reaction chamber, yet is small enough to allow other potential interferents
to pass through to the reaction chamber.
Dry air enters the 42iQTL through the permeation dryer, passes through a
flow switch, and then through a silent discharge ozonator. The ozonator
generates the ozone needed for the chemiluminescent reaction. At the
reaction chamber, the ozone reacts with the NO in the sample to produce
excited NO
2
molecules. A photomultiplier tube (PMT) housed in a
thermoelectric cooler detects the luminescence generated during this
reaction.
The NO and NO
x
concentrations calculated in the NO and NO
x
modes
are stored in memory. The difference between the concentrations is used to
calculate the NO
2
concentration. The 42iQTL outputs NO, NO
2
, and
NO
x
concentrations to the front panel display and the analog outputs, and
also makes the data available over the serial or Ethernet connection.
Principle of
Operation
Содержание 42iQTL
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Страница 229: ...Servicing Power Supply Replacement Thermo Scientific 42iQTL Instruction Manual 7 25 Figure 7 25 Replacing Power Supply ...
Страница 253: ...Servicing DMC Ozonator Thermo Scientific 42iQTL Instruction Manual 7 49 Figure 7 49 Remove Ammonia Scrubber ...
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