Semi-barrier-full barrier electrode type micro-electrostatic air purifier adsorption module
An air purifier, semi-blocking technology, applied in the direction of external electrostatic separator, electrode structure, electrostatic separation, etc., can solve the problems of high energy consumption, increased cost, complex structure, etc.
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Embodiment 1
[0091] Semi-blocking-full blocking electrode type micro-static air purifier adsorption module, including semi-blocking-full blocking electrode group 1, casing 2; half-blocking-full blocking electrode group is located in the casing, nested and clamped; the semi-blocking -The full-blocking electrode group includes a semi-blocking square hole double-electrode conductive plate 3 and a half-blocking square hole hollow plate 4; the semi-blocking square hole hollow plate 4 and the half-blocking square hole double-electrode conductive plate 3 are alternately arranged to form a half group Blocking mode 5 and full blocking mode 6 are interlaced connection mode, the uppermost and the lower part are semi-blocking square hole hollow plates; the semi-blocking square hole double-electrode conductive plate includes polymer-based material hollow plate 7, positive electrode conductive strip 8 , Negative electrode conductive belt 9; The positive electrode conductive belt and the negative electrod...
Embodiment 2
[0136] The conductive material: insulating material: solvent is mixed and stirred evenly according to the design ratio of 1:1:3; the conductive material is mixed with copper, silver, and carbon in a ratio of 55%:5%:40%; the rest is the same as in Example 1.
[0137] In this embodiment, composite materials are used to make electrode conductive belts, and silver is decomposed into silver ions under the action of high voltage, which not only has a better dust removal effect compared to Embodiment 1, but also produces less ozone and has better disinfection and sterilization effects. The electrostatic air purification efficiency is 98.0%. Measured through 12 hours of continuous work, the average ozone concentration produced in 1 hour is 0.072mg / m 3 .
Embodiment 3
[0139] The conductive material is mixed with copper, silver, carbon and germanium in a mass percentage of 50%:5%:35%:10%; the rest are the same as in Example 2.
[0140] The primary micro-electrostatic air purification efficiency of this embodiment is 99.84%, and the ozone concentration produced in an average of 1 hour is 0.069mg / m through 12 hours of continuous work measurement 3 .
[0141] The difference of conductive materials will inevitably affect the resistance of the final product, so it is necessary to adjust the ratio of conductive materials, insulating materials and solvents. Such a configuration can be adjusted by those skilled in the art through limited experiments, but the formula What substances are used in the formula is unpredictable to those skilled in the art. The combination of the substances in this formula is scientific and reasonable. In the case of a thickness of 0.02±0.001mm, the measured resistivity reaches 1,000,000Ω. What is more important is the ba...
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