A purification system for a respiratory ward
A purification system and ward technology, applied in the field of respiratory department, can solve problems such as inability of fresh air to be fed, and inability to purify germs, etc., to achieve the effects of improving comfort, improving air quality, and ensuring the effect of disinfection
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Embodiment 1
[0033] refer to Figure 1-3 , a respiratory ward purification system, including a purification box 22, the top and bottom of the purification box 22 are respectively installed with a first cylinder 7 and a second cylinder 16, the first cylinder 7 and the second cylinder 16 are arranged horizontally , the first cylinder 7 and the second cylinder 16 are provided with a magnetic piston 5, and a push-pull mechanism that can simultaneously drive the two magnetic pistons 5 to move reciprocally is installed in the purification box 22. The front end of the first cylinder 7 is connected with a The waste gas suction pipe 2 and the waste gas outlet pipe 4, the rear end of the first cylinder 7 is connected with a suction pipe 8 and a liquid outlet pipe 9, the front end of the second cylinder 16 is connected with a suction pipe 18 and a water outlet pipe 17, the second cylinder The rear end of 16 is connected with a suction pipe 19 and an air outlet pipe 15, a disinfection mechanism connec...
Embodiment 2
[0044] refer to Figure 4-5 , the difference between this example and Example 1 is that the filter cavity 20 is installed with a fixed block 29 located between the adjacent filter screens 21, the fixed block 29 is provided with a circular cavity, and both sides of the circular cavity pass through the second The spring 31 is elastically connected with a resist rod 30 , the end of the resist rod 30 extends out of a circular cavity, and the second spring 31 is electrically connected with the piezoelectric ceramic sheet 25 .
[0045] When the piezoelectric ceramic sheet 25 discharges, it supplies power to the second spring 31, and the second spring 31 is energized and contracted to push the rod 30 to hit the filter screen 21, which can shake off the dust adsorbed on the filter screen 21 and improve the filtering effect.
Embodiment 3
[0047] refer to Image 6 The difference between this embodiment and Embodiment 1 is that the connecting plate 11 is provided with a cavity 32, the cavity 32 is filled with evaporative liquid, and the connecting rod 6 located in the second cylinder 16 is provided with a heating cavity 34, The top of the cavity 32 is communicated with the heating cavity 34 through a connecting pipe. A heat-conducting plate 33 is embedded on the rear side of the connecting plate 11 , and the heat-conducting plate 33 is disposed in contact with the cavity 32 .
[0048] In winter, the evaporating liquid can be injected into the cavity 32, and the evaporating liquid can be heated by collecting solar energy through the heat-conducting plate. When the evaporation temperature of the evaporating liquid is reached, it will evaporate from the liquid into gas, and enter the heating cavity 34 through the connecting pipe. If the height is high, the connecting rod 6 can heat the air sucked into the second cyl...
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