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Efficient energy-saving electrostatic dust collector

An electrostatic precipitator, energy-saving technology, applied in the field of high-efficiency and energy-saving electrostatic precipitators, can solve the problems of affecting the working efficiency of electrostatic precipitators, affecting the effect of ionization and dust collection, and dust removal effects, etc., so as to facilitate replacement and avoid The effect of breaking and avoiding energy waste

Pending Publication Date: 2017-10-24
伊文图斯安岢栎热能科技(苏州)有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] In the existing electrostatic precipitator, the metal wire on it often breaks due to excessive force or improper operation during installation or use, which will seriously affect the working efficiency of the entire electrostatic precipitator. Some electrostatic precipitators need power support during their working process, but the power supply effect directly affects the ionization and dust collection effects, and the dust removal effect may be affected due to the high temperature during the working process. , and even cause its failure due to high temperature, so the existing electrostatic precipitator still needs to be improved

Method used

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  • Efficient energy-saving electrostatic dust collector
  • Efficient energy-saving electrostatic dust collector
  • Efficient energy-saving electrostatic dust collector

Examples

Experimental program
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Effect test

Embodiment

[0034] A high-efficiency and energy-saving electrostatic precipitator as shown in the figure includes: a dust collector and a housing, the dust collector is arranged inside the housing, and the dust collector is provided with a dust collecting electrode row 1, an air guide port 2 and a control Device 3, wherein the dust collecting electrode row 1 is provided with a dust collecting plate 11;

[0035] The connections of the above components are as follows:

[0036] The dust collecting plate 11 is in a staggered design, the air guiding port 2 is provided with an air guiding plate 21 and a metal wire 22, the metal wire 22 is arranged between the two air guiding plates 21, and the dust collecting electrode row 1 Located behind the air guide port 2, the dust collecting plate 11 and the air guide plate 21 are both of a split design, and the dust collecting electrode row 1 and the air guide port 2 are both connected to the control device 3.

[0037] In this embodiment, the dust colle...

Embodiment 2

[0045] A high-efficiency energy-saving electrostatic precipitator as shown in the figure includes: a dust collector, in which a dust collection electrode row 1, an air guide port 2 and a control device 3 are arranged, wherein the dust collection electrode row 1 is provided with There is a dust collecting plate 11;

[0046] The connections of the above components are as follows:

[0047] The dust collecting plate 11 is in a staggered design, the air guiding port 2 is provided with an air guiding plate 21 and a metal wire 22, the metal wire 22 is arranged between the two air guiding plates 21, and the dust collecting electrode row 1 Located behind the air guide port 2, the dust collecting plate 11 and the air guide plate 21 are both of a split design, and the dust collecting electrode row 1 and the air guide port 2 are both connected to the control device 3.

[0048]In this embodiment, the dust collector is further provided with a support frame 4 , and the support frame 4 is pr...

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Abstract

Disclosed is an efficient energy-saving electrostatic dust collector. The efficient energy-saving electrostatic dust collector comprises a dust collector body; a dust collecting electrode row, an air guide port and a control device are disposed in the dust collector body; dust collecting plates are disposed in the dust collecting electrode row and are designed in a staggered mode; air guide plates and metal wires are disposed in the air guide port, and the metal wires are disposed between the two air guide plates; the dust collecting electrode row is disposed behind the air guide port; the dust collecting plates and the air guide plates are all designed in a split mode; the dust collecting electrode row and the air guide port are both connected with the control device; a power supply, a temperature detector, an electric power detector, a radiator and a controller are disposed in the control device; and the power supply, the temperature detector and the electric power detector are arranged on an outer frame and connected with the controller. By arranging the temperature detector and the electric power detector in the electrostatic dust collector, when the temperature is too high, the heat radiation treatment is performed through the radiator, electric power of the electrostatic dust collector can be detected out in real time with the help of the electric power detector, and therefore the efficient energy-saving electrostatic dust collector is intelligentialized.

Description

technical field [0001] The invention belongs to the technical field of environmental protection, and in particular relates to a high-efficiency and energy-saving electrostatic precipitator. Background technique [0002] The working principle of the electrostatic precipitator is to use a high-voltage electric field to ionize the flue gas, and the charged dust in the airflow is separated from the airflow under the action of the electric field. The negative electrode is made of metal wires with different cross-sectional shapes, called discharge electrodes; the positive electrode is made of metal plates with different geometric shapes, called dust collection electrodes. [0003] In the existing electrostatic precipitator, the metal wire on it often breaks due to excessive force or improper operation during installation or use, which will seriously affect the working efficiency of the entire electrostatic precipitator. Some electrostatic precipitators need power support during t...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B03C3/34B03C3/47B03C3/68B03C3/36
CPCB03C3/34B03C3/361B03C3/47B03C3/68
Inventor 崔宏涛
Owner 伊文图斯安岢栎热能科技(苏州)有限公司
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