Flue gas treatment device
Through the dual-chamber design and dual treatment of the flue gas ionization device, the problem of low efficiency of traditional flue gas treatment is solved, and more thorough removal of particles and harmful gases is achieved.
Patent Information
- Application Number
- CN202421536251.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-02
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-07-02
AI Technical Summary
Traditional flue gas treatment methods have low processing efficiency, require secondary treatment and incomplete results.
Using a dual-chamber design, the flue gas is ionized twice through chamber one and chamber two, and the flue gas is ionized first and secondly respectively by using a flue gas ionization device.
Improves the flue gas treatment efficiency, completely removes particles and harmful gases, and improves the treatment effect.
Smart Images

Figure CN223276416U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of flue gas treatment, in particular to a flue gas processor. Background Art
[0002] With the rapid development of industrialization, flue gas emissions have gradually become a major concern for environmental protection. Flue gas often contains a large number of harmful substances such as particulates and hazardous gases. Direct emission into the atmosphere can cause serious environmental pollution and have adverse effects on human health.
[0003] Traditional flue gas treatment methods primarily include physical adsorption, chemical absorption, and catalytic oxidation. While these methods can remove harmful substances from flue gas to a certain extent, they often suffer from low treatment efficiency and require secondary treatment of the treated flue gas to further improve treatment effectiveness. To this end, we have proposed a flue gas treatment device that uses two sets of flue gas ionization devices to perform two ionization treatments on the flue gas passing through chambers one and two. This effectively removes particulates and harmful gases from the flue gas, improving treatment efficiency. Furthermore, the secondary treatment design allows for more thorough removal of harmful substances from the flue gas, further enhancing treatment effectiveness. Utility Model Content
[0004] In view of the deficiencies in the prior art, the present invention provides a flue gas processor that solves the problems raised in the above-mentioned background technology.
[0005] To achieve the above objectives, the present invention is implemented through the following technical solutions: A flue gas processor, comprising:
[0006] Cabinets;
[0007] A partition is fixed inside the cabinet, and the partition forms a first chamber and a second chamber inside the cabinet;
[0008] A flue gas treatment component is fixed to the cabinet and performs ionization treatment on the flue gas in chamber one and chamber two;
[0009] A delivery pipe, the delivery pipe is fixed to the lower part of the cabinet, and the air outlet end of the delivery pipe is connected to the lower part of the chamber;
[0010] The air guide pipe is fixed on one side of the cabinet, the air inlet end of the air guide pipe is connected to the upper part of the chamber one, and the air outlet end of the air guide pipe is connected to the lower part of the chamber two.
[0011] Furthermore, the flue gas processor further includes:
[0012] The air outlet is opened at the upper part of the cabinet, and the air outlet and the second chamber are in a communicating structure.
[0013] Furthermore, the flue gas processor further includes:
[0014] Drain pipes, two groups of drain pipes are fixed at the lower part of the cabinet, the two groups of drain pipes are connected to chamber one and chamber two respectively, and valves are connected in series at the outlet ends of the two groups of drain pipes.
[0015] Furthermore, the flue gas processor further includes:
[0016] Universal wheels, multiple sets of which are fixed to the lower part of the cabinet, and multiple sets of universal wheels make the smoke processor easy to move;
[0017] Furthermore, the flue gas processor further includes:
[0018] The bracket is fixed on the side of the cabinet, the delivery pipe and the guide pipe both pass through the bracket, and the bracket fixes the delivery pipe and the guide pipe.
[0019] Furthermore, the flue gas treatment component includes:
[0020] Side panels, two sets of side panels are mounted on the cabinet via locks;
[0021] Control cabinets, two sets of control cabinets are fixed on two sets of side panels;
[0022] The two groups of flue gas ionization devices are connected to the two groups of control cabinets, and the two groups of flue gas ionization devices are respectively located inside the first chamber and the second chamber.
[0023] Compared with the above-mentioned background technology, the flue gas treatment device provided in the present application includes a cabinet, a partition, a flue gas treatment component, a delivery pipe, a guide pipe, and an air outlet. The interior of the cabinet is formed into chamber one and chamber two through the partition. The flue gas enters chamber one through the delivery pipe. At this time, the flue gas treatment component performs a primary treatment on the flue gas in chamber one. The residual flue gas in chamber one is allowed to enter chamber two through the guide pipe through the smoke exhaust fan. The flue gas treatment component performs a secondary treatment on the flue gas in chamber two, thereby realizing double treatment of the flue gas.
[0024] The utility model provides a flue gas processor. Compared with the existing technology, it has the following beneficial effects:
[0025] A flue gas processor adopts a dual-chamber design of chamber one and chamber two to achieve two ionization treatments of flue gas. The first treatment is carried out by the flue gas ionization device in chamber one, and then the residual flue gas enters chamber two through a guide tube and undergoes secondary treatment by the flue gas ionization device. This dual treatment mechanism can more thoroughly remove particulates and harmful gases in the flue gas, thereby improving the treatment effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 It is a structural diagram of a flue gas processor;
[0027] Figure 2 This is a schematic diagram of the disassembled structure of a flue gas processor;
[0028] Figure 3 This is a schematic diagram of the structure of a flue gas treatment component in a flue gas processor.
[0029] In the figure: 1. Cabinet; 2. Partition; 3. Flue gas treatment component; 31. Side panel; 32. Control cabinet; 33. Flue gas ionization device; 4. Delivery pipe; 5. Diversion pipe; 6. Air outlet; 7. Drain pipe; 8. Universal wheel; 9. Bracket; 11. Chamber 1; 12. Chamber 2. DETAILED DESCRIPTION
[0030] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0031] See also Figure 1-3 The utility model provides a technical solution for a flue gas processor: a flue gas processor, including a cabinet 1, a partition 2, a flue gas processing component 3, a delivery pipe 4, a guide pipe 5, an air outlet 6, a sewage pipe 7, a universal wheel 8 and a bracket 9. Specifically, the cabinet 1 is internally formed with a chamber 11 and a chamber 2 12 through the partition 2, and the air outlet 6 is connected to a smoke exhaust fan through a pipeline. The flue gas enters the chamber 11 through the delivery pipe 4. At this time, the flue gas processing component 3 performs a one-time treatment on the flue gas in the chamber 11, and the exhaust fan makes the chamber 12 The residual flue gas in chamber 11 enters chamber 2 12 through the guide pipe 5. The flue gas treatment component 3 performs secondary treatment on the flue gas in chamber 2 12. The flue gas processor adopts a dual-chamber design of chamber 11 and chamber 2 12 to achieve double treatment of the flue gas. This dual treatment mechanism can more thoroughly remove particulates and harmful gases in the flue gas, thereby improving the treatment effect. In addition, the partition 2 forms two chambers inside the cabinet 1. This compact structural design not only improves space utilization, but also makes the entire device more lightweight.
[0032] The two sets of sewage pipes 7 are connected to the chamber 1 11 and the chamber 2 12 respectively. The outlet ends of the two sets of sewage pipes 7 are connected in series with valves. After the smoke treatment component 3 is disassembled, when the cabinet 1 is cleaned, the sewage during cleaning can be discharged through the two sets of sewage pipes 7.
[0033] The delivery pipe 4 and the flow guide pipe 5 are effectively fixed and supported by the bracket 9, thereby ensuring the stability and safety of the pipelines and reducing vibration and displacement that may occur during operation of the pipelines.
[0034] The flue gas treatment component 3 includes side panels 31, a control cabinet 32 and a flue gas ionization device 33. Specifically, the two sets of side panels 31 are installed on the cabinet 1 by locks, which facilitates the disassembly and assembly of the flue gas treatment component 3. During maintenance or cleaning, it can be quickly disassembled. The two sets of control cabinets 32 respectively control the two sets of flue gas ionization devices 33. The two sets of flue gas ionization devices 33 are respectively located inside chamber 11 and chamber 2 12, and remove particulates and harmful gases in the flue gas in chamber 11 and chamber 2 12. In this embodiment, the flue gas ionization device 33, among the above-mentioned components, its own structural characteristics, working principles and specific circuit structure for external electrical connection all adopt existing technologies and will not be described in detail here.
[0035] In actual use of the flue gas processor, the flue gas enters chamber one 11 through the conveying pipe 4. At this time, a group of flue gas ionization devices 33 in the flue gas treatment component 3 performs primary treatment on the flue gas in chamber one 11. The smoke exhaust fan allows the residual flue gas in chamber one 11 to enter chamber two 12 through the guide pipe 5. Another group of flue gas ionization devices 33 in the flue gas treatment component 3 performs secondary treatment on the flue gas in chamber two 12.
Claims
1. A flue gas processor, characterized in that: include: Cabinet (1); A partition (2), wherein the partition (2) is fixed inside the cabinet (1), and a chamber 1 (11) and a chamber 2 (12) are formed inside the cabinet (1) through the partition (2); A flue gas treatment component (3), wherein the flue gas treatment component (3) is fixed to the cabinet (1), and the flue gas treatment component (3) performs ionization treatment on the flue gas in the first chamber (11) and the second chamber (12); A delivery pipe (4), the delivery pipe (4) is fixed to the lower part of the cabinet (1), and the air outlet end of the delivery pipe (4) is connected to the lower part of the chamber (11); A flow guide pipe (5) is fixed to one side of the cabinet (1), an air inlet end of the flow guide pipe (5) is connected to the upper part of the first chamber (11), and an air outlet end of the flow guide pipe (5) is connected to the lower part of the second chamber (12).
2. A flue gas processor according to claim 1, characterized in that: Also includes: An air outlet (6), the air outlet (6) is opened at the upper part of the cabinet (1), and the air outlet (6) and the second chamber (12) are in a communicating structure.
3. A flue gas processor according to claim 1, characterized in that: Also includes: Drain pipes (7), two groups of drain pipes (7) are fixed at the lower part of the cabinet (1), and the two groups of drain pipes (7) are connected to chamber 1 (11) and chamber 2 (12) respectively, and valves are connected in series at the outlet ends of the two groups of drain pipes (7).
4. The flue gas processor according to claim 1, characterized in that: Also includes: Universal wheels (8), multiple sets of universal wheels (8) are fixed to the lower part of the cabinet (1), and the multiple sets of universal wheels (8) make the smoke treatment device easy to move.
5. The flue gas processor according to claim 1, characterized in that: Also includes: A bracket (9), wherein the bracket (9) is fixed to the side of the cabinet (1), the delivery pipe (4) and the guide pipe (5) both pass through the bracket (9), and the bracket (9) fixes the delivery pipe (4) and the guide pipe (5).
6. The flue gas processor according to claim 1, characterized in that: The flue gas treatment component (3) comprises: Side panels (31), two sets of side panels (31) are mounted on the cabinet (1) via locks; Control cabinets (32), two sets of control cabinets (32) are fixed on two sets of side panels (31); The two groups of flue gas ionization devices (33) are connected to the two groups of control cabinets (32), and the two groups of flue gas ionization devices (33) are respectively located inside the first chamber (11) and the second chamber (12).