Glass fiber reinforced plastic anode system of dust remover
By combining hexagonal rhomboid anode tubes and cathode corona wires, the problem of inconvenient cathode corona wire assembly is solved, enabling convenient replacement and efficient dust removal, and improving the efficiency of dust adsorption and collection.
Patent Information
- Application Number
- CN202423178357.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-20
AI Technical Summary
The existing anode system has inconvenient cathode corona wire assembly and cannot be easily replaced, which affects dust removal efficiency.
It adopts a hexagonal rhomboid anode tube structure and a hollow mounting tube, with a cathode corona wire inside. A strong electric field is formed by high voltage current. Ions generated by the corona layer collide with dust particles and become charged, adsorbing onto the anode surface. Dust is treated in combination with an airflow uniform plate and a dust collection bag.
It enables convenient assembly and replacement of the cathode corona wire, improves dust removal efficiency, and ensures efficient adsorption and centralized collection of dust.
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Figure CN223669392U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to an anode system, in particular to a dust remover glass steel anode system. BACKGROUND
[0002] In recent years, more requirements for ultra-clean emission are proposed, and the pollution gas to be discharged needs to be pre-removed and treated, and the flue gas is treated by using dust removal equipment, so that subsequent emission can be carried out. The demand for ultra-clean emission treatment equipment of boiler tail gas is increasing, and the wet electrostatic precipitator can realize the synergistic control of various pollutants, has high dust removal efficiency, is integrated with the desulfurizing tower, saves energy consumption, reduces the carrying of slurry at the outlet of the desulfurizing tower, and reduces the emission of heavy metals such as mercury.
[0003] In the prior art: 201921295002.2 a new type of electric dust collector anode system, the utility model discloses a new type of electric dust collector anode system, and specifically relates to the technical field of electric dust collector, including shell and anode sheet, the shell front surface is fixedly installed with anode sheet, and the shell front surface is provided with a wiping assembly near the front of the anode sheet, the wiping assembly is fixedly connected with the shell, the anode sheet is fixedly provided with a cathode sheet above, the cathode sheet is provided with a water spraying assembly above, and the anode sheet is fixedly installed with a fixed assembly at both ends.
[0004] The prior art can ensure good cleaning effect, improve cleaning efficiency, greatly improve the dust removal efficiency of the anode system, and the design is more thorough compared with the existing water spraying cleaning on the anode sheet, but the cathode corona wire in the prior art is inconvenient to assemble and cannot be replaced with subsequent corona wire. Utility model content
[0005] In order to overcome the defects of the prior art, the utility model provides a dust remover glass steel anode system.
[0006] The utility model discloses the following technical scheme realizes: a dust remover glass steel anode system is provided with dust removal case and anode pipe, the dust removal case is provided with the assembly space for further installing anode pipe in, the bottom of dust removal case is provided with support platform, the support platform is provided with side baffle, the support platform middle position is provided with the dust outlet, the side baffle is against anode pipe, the anode pipe is hexagonal rhombus anode pipe structure, the hexagonal rhombus anode pipe abuts each other, the hexagonal rhombus anode pipe abuts each other and forms anode system, the anode pipe is provided with mounting part, the mounting part is installation pipe, the installation pipe is provided with cathode corona wire.
[0007] The dust removal case is provided with an air inlet and an air outlet, one side of the dust removal case is provided with an air inlet connecting plate, the air inlet connecting plate is provided with the air inlet, the other side of the dust removal case is provided with an air outlet connecting plate, and the air outlet connecting plate is provided with the air outlet.
[0008] The air inlet and the dust removal case are provided with a flue gas pretreatment device, the flue gas pretreatment device adopts a flue gas treatment plate, and the flue gas treatment plate is an airflow uniform plate.
[0009] The dust outlet arranged at the middle position of the support platform is a square dust outlet, and one side of the square dust outlet is provided with a dust collection pipeline.
[0010] The dust collection pipeline adopts a bent pipe structure, one side of the bent pipe structure is provided with a mounting plate, and the mounting plate is provided with a dust collection bag.
[0011] Compared with the prior art, when flue gas needs to be treated, the flue gas is transmitted to the anode system for anode treatment. The anode system is provided with anode pipes, and the anode pipes are provided with cathode corona wires. The cathode corona wires can release corona. A high-voltage current device is arranged between the anode pipes and the cathode corona wires to apply tens of thousands of volts of direct-current high voltage, so that a strong electric field is formed. Under the action of the electric field, a corona layer is generated around the corona wire. The air in the corona layer is ionized to generate a large number of negative ions and a small amount of positive ions. The ions collide with the smoke dust particles entering the dust remover, so that the smoke dust particles are charged. The charged smoke dust particles move to the anode pipes under the action of the electric field force and are finally adsorbed on the surface of the anode. In this way, the dust can be concentrated and adsorbed, and then the dust can be concentrated and treated. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 is a structural schematic diagram of the utility model;
[0013] Figure 2 is a sectional view of the utility model;
[0014] Figure 3 is a sectional view of the utility model;
[0015] Figure 4 is a sectional view of the utility model;
[0016] Figure 5 is a local enlarged view of the utility model;
[0017] In the figure: 1 is dust removal box, 2 is assembly space, 3 is support platform, 4 is side baffle, 5 is dust outlet, 6 is anode tube, 7 is installation pipe, 8 is cathode corona wire, 9 is traction line, 10 is air inlet, 12 is air outlet, 13 is dust collection pipeline, 14 is mounting plate, 15 is airflow uniform plate. DETAILED DESCRIPTION
[0018] In the following, the utility model is further described in combination with the drawings and specific embodiments, and it should be noted that the following described embodiments or technical features can be combined to form new embodiments without conflict.
[0019] A dust remover glass steel anode system is provided with dust removal box 1 and anode tube, the dust removal box 1 is provided with assembly space 2 for further installing anode tube, the bottom of dust removal box 1 is provided with support platform 3, the support platform 4 is provided with side baffle 4, the middle position of support platform 4 is provided with dust outlet 5, the side baffle 4 is against anode tube 6, the anode tube 6 is hexagonal rhombus anode tube structure, the hexagonal rhombus anode tube abuts each other, the hexagonal rhombus anode tube abuts each other to form anode system, the anode tube 6 is provided with installation component, the installation component is installation pipe 7, the installation pipe 7 is provided with cathode corona wire 8, the installation pipe 7 is hollow structure, the installation pipe is provided with assembly rod, the assembly rod passes through installation pipe, the assembly rod is provided with locking clip, the locking clip clamps traction line 9, cathode corona wire 8 is connected between traction line 9, so that the subsequent assembly and replacement of cathode corona wire 8 can be facilitated.
[0020] In need of carrying out the treatment of smoke dust by using anode tube, rely on using cathode electric glow wire can release electric glow, through high voltage current device between anode tube and cathode electric glow wire to apply tens of thousands of volts direct current high voltage, form strong electric field, under the action of electric field, electric glow wire around will produce electric glow layer, air in electric glow layer ionization, produce a large number of negative ions and a small amount of positive ions, these ions and into the dust particles of dust bin collide, make it charged. Charged dust particles under the action of electric field force, will move to anode tube, and eventually be adsorbed on the anode surface, so as to carry out the centralized adsorption of dust, cathode electric glow wire 8 release dust bin 1 is provided with air inlet 10 and air outlet 11, the dust bin 1 side is provided with air inlet connecting plate, the air inlet connecting plate is provided with air inlet 10, the other side of the dust bin 1 is provided with air outlet connecting plate, and the air outlet connecting plate is provided with air outlet 11.
[0021] In the process of flue gas treatment, the flue gas pretreatment device is needed to carry out the pretreatment adsorption of flue gas, and the flue gas pretreatment device is arranged between the air inlet 10 and the dust bin 1. The flue gas pretreatment device adopts a flue gas treatment plate, which is a uniform air flow plate 15. The uniform air flow plate 15 can make the flue gas enter the dust bin 1 uniformly, so that the air flow is more stable. The dust outlet 6 arranged at the middle position of the support platform 4 adopts a square dust outlet, and the square dust outlet is provided with a dust collection pipeline 13 on one side.
[0022] The dust collection pipeline 13 adopts a bent pipe structure, and the bent pipe structure is provided with a mounting plate 14 on one side. The mounting plate 14 is provided with a dust collection bag. The cathode electric glow wire can release electric glow. Through the high voltage current device, tens of thousands of volts direct current high voltage is applied between the anode tube and the cathode electric glow wire to form a strong electric field. Under the action of the electric field, an electric glow layer is generated around the electric glow wire. The air in the electric glow layer ionizes to produce a large number of negative ions and a small amount of positive ions. These ions collide with the dust particles entering the dust bin to make them charged. The charged dust particles move to the anode tube under the action of the electric field force and are finally adsorbed on the anode surface. Thus, the dust can be concentrated and adsorbed. The adsorbed dust needs to be treated and collected by the dust collection bag.
[0023] The above embodiments are only preferred embodiments of the present application, and cannot be used to limit the scope of protection of the present application. Any non-substantial changes and replacements made by those skilled in the art based on the present application belong to the scope of protection of the present application.
Claims
1. A fiberglass anode system for a dust collector, comprising a dust collection box and anode tubes, wherein the dust collection box contains an assembly space for further installation of the anode tubes, a support platform is provided at the bottom of the dust collection box, a side baffle is provided on the support platform, a dust outlet is provided in the middle of the support platform, the side baffles abut against the anode tubes, the anode tubes are hexagonal rhombic anode tubes, the hexagonal rhombic anode tubes abut against each other, and the hexagonal rhombic anode tubes abut against each other to form an anode system, characterized in that: The anode tube is internally provided with a mounting component, which is a mounting tube, and the mounting tube is provided with a cathode corona wire.
2. A dust collector glass steel anode system according to claim 1, characterized in that: The dust removal box is provided with an air inlet and an air outlet, one side of the dust removal box is provided with an air inlet connecting plate, the air inlet connecting plate is provided with an air inlet, the other side of the dust removal box is provided with an air outlet connecting plate, and the air outlet connecting plate is provided with an air outlet.
3. A dust collector glass steel anode system according to claim 2, characterized in that: The flue gas pretreatment device is arranged between the air inlet and the dust removal box, the flue gas pretreatment device adopts a flue gas treatment plate, and the flue gas treatment plate is a uniform air flow plate.
4. A dust collector glass steel anode system according to claim 2, characterized in that: The dust outlet arranged at the middle position of the supporting platform adopts a square dust outlet, and one side of the square dust outlet is provided with a dust collection pipeline.
5. A dust collector glass steel anode system according to claim 4, characterized in that: The dust collection pipeline adopts a bent pipe structure, one side of the bent pipe structure is provided with a mounting plate, and the mounting plate is provided with a dust collection bag.
Citation Information
Patent Citations
Novel electric precipitator cathode-anode system
CN210411157U