A gas-water condensation separation device
A separation device and water condensation technology, applied in separation methods, dispersed particle separation, chemical instruments and methods, etc., can solve problems such as incomplete gas-water separation, no way to ensure that water vapor adheres to the air duct, and is easily carried out by the airflow , to achieve a good cooling effect, reduce the occupied space, and complete the effect of gas-water separation
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Embodiment 1
[0021] See figure 1 As shown, a gas-water condensation separation device of the present invention includes an air inlet 6, an air outlet 1, an air duct 2, a heat exchanger, a container for collecting condensed water, and a cooling column 5, and the heat exchanger is attached to the air duct 2 surface, the air inlet 6 is arranged at one end of the air guide tube 2, the water condensed in the air guide tube 2 flows into the container through one end or the other end of the air guide tube 2, and the remaining gas in the air guide tube 2 is discharged through the air outlet 1; The cooling column 5 is installed inside the air duct 2 and has a gap with the air duct 2, which is a gap and constitutes an air passage. Specifically, a circular piece 8 is installed in one end of the air duct 2, and a plurality of openings are distributed on the circular piece 8, and the openings form the air inlet 6; the cooling column 5 is supported by the circular piece 8 , and use screws 9 to lock wit...
Embodiment 2
[0029] A gas-water condensation separation device of the present invention differs from Embodiment 1 in that its container is a water-receiving container (ie, a non-reaction carrier), and the water-receiving container can be a cup, a bottle, or the like. One end of the air guide tube faces upwards, the other end faces down, and the other end of the air guide tube is sealed and connected with the opening of the water receiving container;
[0030] In the gas-water condensation separation device of the present invention, the gas to be separated (including water vapor) enters the air duct through the air inlet at the upper end of the air duct, and spirals downward along the threaded structure of the cooling column in the air duct. Since the temperature of the inner wall of the air duct and the cooling column is lower than the temperature of the gas itself, when the gas enters the interior of the air duct, the water vapor mixed in the gas will quickly condense into water droplets in...
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