Method of using rotating electrode to shield high-voltage static electricity to purify gas and purifier thereof
A rotating electrode and high-voltage electrostatic technology, which is applied in the field of gas purification, can solve the problems that the purification effect is difficult to meet the needs of environmental protection, and achieve the effect of simple structure, convenient installation and easy implementation
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Embodiment 1
[0029] A method for the rotating electrode to shield high-voltage static electricity to purify gas. A rotating electrode and a fixed electrode are arranged on the gas ventilation channel. The function of generating rotating high-voltage static electricity to shield, intercept and purify the gas, thereby effectively intercepting and purifying the gas passing through the ventilation channel, or intercepting and purifying it and then further purifying it by adsorption and capture and decomposition of ozone.
[0030] In the method, the rotating electrode is an anode, and the fixed electrode is a cathode, or the rotating electrode is a cathode, and the fixed electrode is an anode.
[0031] Realize the rotating electrode shielding high-voltage electrostatic purifier of above-mentioned method, refer to Figure 1 to Figure 3 As shown, it includes a housing 1 provided with an air inlet 11 and an air outlet 12, and a purification device 2 inside the housing 1. The purification device 2 ...
Embodiment 2
[0038] Such as Figure 4 The rotating electrode shielding high-voltage electrostatic purifier shown has the technical characteristics that: the electrode body 212 of the fixed electrode 21 is composed of several circular discharge electrode plates 214, and the discharge electrode plates 214 are provided with one or more Ventilation holes 2141, the ventilation holes 2141 of each discharge electrode plate 214 can be staggered or non-staggered, and a zigzag 2142 is provided on the edge of the discharge electrode plate 214, and an electrostatic purification process is formed between the zigzag edge and the rotating electrode 22 interval. Specifically, the ventilation holes 2141 in the staggered distribution of each discharge electrode plate 214 make the exhaust gas particles entering the gas from the air inlet 12 form a strong collision between the fixed electrode 21 and the rotating electrode 22, and prolong the collision time, thereby more effectively intercepting the gas. Exha...
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