A deep deoxidation device and its application
A technology of deep deoxidation and deoxidizer, which is applied to the separation of dispersed particles, chemical instruments and methods, separation methods, etc., can solve the problems of high cost of platinum-based catalysts, insufficient deoxidation precision, and low deoxidation efficiency, so as to reduce the deoxidation effect , fast deoxidation speed, long and narrow channels
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Embodiment 1
[0068] The raw material Ar gas flow is set at 250ml / min, the temperature is kept constant at 300°C, and Figure 5 It is a schematic diagram of the change of oxygen content after 2 h of flowing Ar gas. After 184 minutes of the test, the oxygen content at the inlet and outlet of the furnace decreased to 1.79×10 -11 / 2.34×10 -5 ppm; after another 55 minutes, the oxygen content at both ends was basically stable at 10 -11 ppm, with an average of 1.442×10 -11 / 5.470×10 -11 ppm.
Embodiment 2
[0070] Example 2 is following Example 1, and the gas temperature is changed to 400°C, that is, after Ar gas is still introduced at 250ml / min for 132min, the oxygen content at the inlet and outlet is finally reduced to 10 -15 / 10 -14 ppm, see the attached schematic diagram for the change of oxygen content Figure 5 . It can be seen from the figure that the oxygen content decreases steadily, and the average oxygen content at the intake end is 4.55×10 -15 ppm, the average oxygen content at the gas outlet is 4.15×10 -14 around ppm, which will further reduce the oxygen content over time.
Embodiment 3
[0072] Compared with Example 1, the difference is that Ar-10%H was introduced when the gas temperature was 300°C 2 Mixed gas, namely Ar, H 2 The flow rates were adjusted to 250 and 25ml / min respectively. After 200 minutes, the oxygen content at the inlet and outlet was stabilized at 10 -19 / 10 -18 ppm, the schematic diagram of oxygen content change after 144min is attached Figure 6 . It can be seen from the figure that when Ar and H 2 Mixed gas, the oxygen content is greatly reduced, and after 344 minutes of the experiment, the oxygen content at the inlet end changes slightly, and the oxygen content at the outlet end may be affected by the mixed gas flow in the furnace. ppm).
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