Plasma air disinfecting and purifying air conditioner
A plasma and air disinfection technology, applied in the direction of plasma, air conditioning system, electrical components, etc., can solve the problems of secondary pollution, weak ozone penetration, inappropriate, etc., to achieve TVOC degradation, efficient killing of bacteria, working life long effect
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Embodiment 1
[0064] figure 1 It is a schematic diagram of the cross-sectional structure of the plasma air disinfection and purification air conditioner of the present invention; figure 2 It is a three-dimensional structure diagram of a plasma reactor half section of the present invention; image 3 It is a structural schematic diagram of the conductive rail for preventing micro-discharge of the present invention.
[0065] The plasma air disinfection and purification air conditioner includes an indoor cabinet and an outdoor host. The outdoor host is equipped with a compressor and a cooling fan. The indoor cabinet and the outdoor host are airtightly connected with a copper tube, and a heat transfer medium is provided in the copper tube. The indoor cabinet is equipped with a plasma reactor 1, a pulse power supply 2, a fan 3, a controller 4, an air inlet 5, an air outlet 6, an air filter 10, an air deflector 12, and a heat exchanger 15, all of which are installed in the casing 8 within. The...
Embodiment 2
[0069] The micro-discharge conductive rail 103 of the present invention is provided with convex portions 109 arranged equidistantly, and the two ends of the positive electrode 101 are the tops of the convex portion 109 respectively fixed on the corresponding conductive rail; the convex portion of the micro-discharge conductive rail 103 is prevented 109 are set as one group of two up and down symmetrical ones, and n groups are set up for each convex portion 109 that prevents the micro-discharge conductive rail 103, and the top of the convex portion 109 is provided with an outward bend. The two ends of the positive electrode 101 are provided with a stainless steel connection frame 110 , and a square hole is punched in the middle of the stainless steel connection frame 110 . A protruding negative electrode fixing pin 111 is provided on the upper and lower ends of the negative electrode 102 adjacent to the reactor shell 108, and the corresponding part of the reactor shell 108 is pr...
Embodiment 3
[0074] like Figure 4 As shown, the described anti-microdischarge conductive rail 103 is provided with recesses arranged at equal distances, and the concave portions are set in n groups. The two ends of the conductive rail 103 are fixed and electrically connected with four positive electrode metal supports 104 which are arranged orthogonally around the reactor; the outer edge of the positive electrode metal support 104 is provided with several cylindrical bars to prevent micro-discharge conduction. Rail fixing ring 107, prevent micro-discharge conducting rail fixing ring 107 from equidistantly apart from adjacent micro-discharging conducting rails 103; each positive electrode metal support 104 is provided with an insulating connector 105 and a shell 108 at the upper and lower ends The corresponding mounting holes are fixed. An insulating connector fixing bolt 106 is provided to fasten the insulating connector 105 on the metal reactor shell 108 .
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