Adsorption treatment system based on oral diagnosis and treatment splashes, and treatment method thereof
A technology for adsorption treatment and spatter, which is applied in the field of oral diagnosis and treatment disinfection, can solve the problems of occupational exposure risk of cross-infection of medical staff, reduce the risk of occupational exposure, reduce the risk of cross-infection and occupational exposure, and reduce the number of bacteria in the clinic Effect
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Embodiment 1
[0045] Such as Figure 1-5 As shown, the embodiment of the present invention provides an adsorption treatment system based on oral cavity diagnosis and treatment spatter, which includes a casing 1 and an adsorption transmission module, a filter module and an air extraction module respectively arranged on the casing 1 to remove the The diseased blood foam and flying debris generated during the diagnosis and treatment of medical dental scalers, bone knives, implanters, laser treatment machines, etc. are splash-proof, collected, filtered and sterilized to improve the diagnosis and treatment environment, reduce contact pollution sources, and reduce The number of bacterial clusters in the clinic can reduce the cross-infection between patients and patients, patients and doctors, and doctors and doctors, and also reduce the risk of occupational exposure of doctors. It has the characteristics of active adsorption, real-time adsorption, and close-range adsorption. The specific settings ...
Embodiment 2
[0059] In embodiment 2, for the same structure as in embodiment 1, give the same symbol, omit the same description, embodiment 2 has made improvement on the basis of embodiment 1, as Figure 6 As shown, the inner wall of the filter cavity 4 is respectively provided with a photocatalyst filter screen 7 and an ultraviolet light tube 8 corresponding to the photocatalyst filter screen 7, and the ultraviolet light tube 8 is electrically connected with a power module 9 for utilizing Ultraviolet light is the energy source, and the electrons (e-) on the nano-titanium dioxide photocatalyst on the photocatalyst filter screen 7 are excited to jump to the conduction band, and at the same time, corresponding holes (h+) are generated on the valence band to generate active oxygen with a strong oxidation effect. and hydroxyl radicals, and then oxidize and decompose pollutants, odors, bacteria, etc. into harmless CO 2 and H 2 O, in order to achieve the purpose of purifying the air and decompo...
Embodiment 3
[0068] In embodiment 3, for the same structure as in embodiment 1, the same symbols are given, and the same description is omitted. The difference between embodiment 3 and embodiment 1 is that, as Figure 7 As shown in -B and 7-C, there are multiple adsorption transfer pipes 3, and the inlet ends of the plurality of adsorption transfer pipes 3 are all equipped with dirt collection covers 2, and correspond to each medical chair one by one, and the plurality of adsorption transfer pipes 3 The outlet ends of the pipes 3 are connected with a total transmission pipeline, the outlet end of the total transmission pipeline is connected with the filter chamber 4 in the casing 1, the filter pull plate 5 of the non-woven fabric layer is connected with the exhaust fan 6 are all arranged on the outside of the casing 1, wherein the filter drawing plate 5 of the non-woven fabric layer is provided with several and respectively plugged and arranged on each adsorption transmission pipe 3, the in...
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