Sewage odor treatment device
By designing a sewage odor treatment device containing multi-layer purification treatment technology, the problem of unsatisfactory purification effect of existing devices and the need for frequent replacement of adsorption networks is solved, and the sewage odor treatment is fully purified and environmental protection is achieved.
Patent Information
- Application Number
- CN202421398646.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-19
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-06-19
AI Technical Summary
The existing sewage odor treatment device has poor purification effect when used, and the adsorption network needs to be replaced frequently, and the discharged sewage odor still contains harmful chemicals, affecting the environment and human health.
A sewage odor treatment device is designed, including a filter mesh, a fixed box, a nozzle, a photocatalyst network, an ultraviolet lamp, an activated carbon mesh, a servo motor and an electric heating plate. Through multi-layer filtration, deodorization, photocatalysis, adsorption and drying treatment, the sewage odor is fully purified.
The device can effectively filter and purify the odor of sewage, reduce the emission of harmful chemicals, extend the service life of the filter, improve the purification effect, and protect the environment and human health.
Smart Images

Figure CN222930498U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sewage treatment, in particular to a sewage odor treatment device. Background Art
[0002] Sewage treatment is a process of purifying sewage to meet the water quality requirements for discharging into a certain water body or reusing it. Sewage treatment is widely applied in various fields such as construction, agriculture, transportation, energy, petrochemical, environmental protection, urban landscape, medical treatment, catering, etc., and is also increasingly entering the daily life of ordinary people.
[0003] However, when the existing sewage odor treatment device is in use, it usually uses a single adsorption net to purify sewage odor. However, the purification effect of the adsorption net becomes poor after long-term use and needs to be replaced in time. At the same time, the purification effect of a single adsorption net on sewage odor is not ideal, and the discharged sewage odor still contains more harmful chemical substances, which will cause damage to the respiratory, digestive and nervous systems of the surrounding people. Therefore, a sewage odor treatment device is provided. Summary of the Utility Model
[0004] The main purpose of the utility model is to provide a sewage odor treatment device. By setting a fixed box, a spray head, a photocatalyst net A, a photocatalyst net B, an ultraviolet lamp, a support plate A, a support plate B, an activated carbon net, a pump body, a liquid tank and a filter screen, the utility model solves the problem that the existing sewage odor treatment device is inconvenient to fully purify sewage odor during use.
[0005] The technical solution adopted by the present utility model to solve its technical problems is a sewage odor treatment device, including a chassis and a box frame. Inside the box frame, a filter screen for filtering sewage odor is fixed by screws. At the top end inside the box frame, a fixed box for storing deodorant is fixed by bolts. On one side of the fixed box, a nozzle for spraying deodorant is fixed by screws. On one side of the chassis, a liquid box for placing deodorant is fixed by bolts. On one side of the fixed box, a branch pipe A connected to a pump body is inserted. Outside the pump body, a branch pipe B connected to the liquid box is fixed by screws. A blower B connected to a pipe B is fixed by bolts outside the box frame. At one end of the box frame far from the blower B, a blower A connected to a pipe A is fixed by screws. Inside the box frame, a support plate B for fixing a photocatalyst mesh B is fixed by screws. On the inner wall of the box frame, a support plate A for fixing a photocatalyst mesh A is fixed by screws. Outside the support plate B, ultraviolet lamps for irradiating the photocatalyst mesh A and the photocatalyst mesh B are symmetrically fixed by screws. On one side of the box frame, an activated carbon mesh for adsorbing sewage odor is fixed by screws. Inside the box frame, a servo motor A for driving a threaded rod to rotate is connected by bolts. Outside the threaded rod, a driving block for fixing a servo motor B is threadedly connected. On one side of the servo motor B, a brush for cleaning the surface of the filter screen is fixed by screws. Inside both the support plate A and the support plate B, electric heating plates for drying the purified sewage odor are fixed by screws.
[0006] By adopting the above technical solution, when the sewage odor is transported into the box frame through the pipe B on one side of the blower B, the filter screen in the box frame filters the solid particles in the sewage odor. Subsequently, the sewage odor flows to the bottom of the fixed box. At the same time, the pump body outside the box frame transports the deodorant in the liquid box into the fixed box on one side of the branch pipe A through the branch pipe B. Then, the nozzle on the fixed box sprays the deodorant, enabling the deodorant to contact the sewage odor and perform preliminary purification treatment on the sewage odor. Then, the preliminarily purified sewage odor flows outside the support plate B, and the ultraviolet lamps outside the support plate B irradiate the photocatalyst mesh A and the photocatalyst mesh B, enabling the odor molecules in the sewage odor to be rapidly decomposed. The support plate A and the support plate B in the box frame extend the residence time of the sewage odor in the box frame, enabling the odor molecules in the sewage odor to be decomposed sufficiently. Then, the purified sewage odor passes through the activated carbon mesh in the box frame, and the activated carbon mesh adsorbs the odor in the sewage odor, thereby facilitating the full purification treatment of the sewage odor. When the filter screen filters the solid particles of the sewage odor, at the same time, the servo motor A in the box frame converts the received electrical energy into mechanical energy. The servo motor A drives the threaded rod to rotate. Then, the driving block outside the threaded rod drives the servo motor B to move. At the same time, the servo motor B converts the received electrical energy into mechanical energy, and the servo motor B drives the brush to clean different positions on the surface of the filter screen, thereby preventing the filter screen from being blocked. When the deodorant purifies the sewage odor, the purified sewage odor flows outside the support plate A and the support plate B. Then, the electric heating plates outside the support plate A and the support plate B convert the electrical energy into heat, enabling the purified sewage odor to be dried.
[0007] Specifically, through holes for allowing excess deodorant to flow into the liquid tank are formed in the bottom of the box frame, and the number of the through holes is several.
[0008] By adopting the above technical solution, after the deodorant sprayed in the box frame purifies the sewage odor, the excess deodorant falls to the bottom of the box frame, and then the through holes formed in the bottom of the box frame allow the deodorant to flow into the liquid tank, thereby facilitating the full use of the deodorant.
[0009] Specifically, the input ends of the servo motor A, the servo motor B, the fan A and the fan B are all electrically connected to the output end of an external power supply.
[0010] By adopting the above technical solution, by connecting to an external power supply, the electrical equipment works normally.
[0011] Advantages of the present utility model:
[0012] (1) For a sewage odor treatment device of the present utility model, when the sewage odor is transported into the box frame through the pipeline B on one side of the fan B, the filter screen in the box frame filters the solid particles in the sewage odor. Subsequently, the sewage odor flows to the bottom of the fixed box. Meanwhile, the pump body outside the box frame transports the deodorant in the liquid tank into the fixed box on one side of the branch pipe A through the branch pipe B, and then the spray head on the fixed box sprays the deodorant, enabling the deodorant to contact the sewage odor and performing a preliminary purification treatment on the sewage odor. Then, the preliminarily purified sewage odor flows outside the support plate B, and the ultraviolet lamp outside the support plate B irradiates the photocatalyst network A and the photocatalyst network B, enabling the odor molecules in the sewage odor to be rapidly decomposed. The support plate A and the support plate B in the box frame extend the residence time of the sewage odor in the box frame, enabling the odor molecules of the sewage odor to be decomposed sufficiently. Then, the purified sewage odor passes through the activated carbon network in the box frame, and the activated carbon network adsorbs the odor in the sewage odor, thereby facilitating the full purification treatment of the sewage odor.
[0013] (2) For a sewage odor treatment device of the present utility model, when the filter screen filters the solid particles of the sewage odor, at the same time, the servo motor A in the box frame converts the received electrical energy into mechanical energy. The servo motor A drives the threaded rod to rotate, and then the driving block outside the threaded rod drives the servo motor B to move. At the same time, the servo motor B converts the received electrical energy into mechanical energy, and the servo motor B drives the brush to clean different positions on the surface of the filter screen, thereby preventing the filter screen from being blocked. Description of the Drawings
[0014] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0015] Figure 1 is the overall structural schematic diagram of a sewage odor treatment device of the present utility model;
[0016] Figure 2 Schematic diagram of the internal structure of the box frame of a sewage odor treatment device of the present utility model;
[0017] Figure 3 Schematic diagram of the internal structure of the support plate A of a sewage odor treatment device of the present utility model;
[0018] In the figure: 1, pipeline A; 2, box frame; 3, chassis; 4, fan A; 5, liquid tank; 6, branch pipe A; 7, pump body; 8, branch pipe B; 9, fan B; 10, pipeline B; 11, activated carbon net; 12, photocatalyst net A; 13, support plate A; 14, support plate B; 15, through hole; 16, photocatalyst net B; 17, ultraviolet lamp; 18, fixed box; 19, nozzle; 20, filter screen; 21, servo motor A; 22, drive block; 23, servo motor B; 24, brush; 25, electric heating plate; 26, threaded rod. Detailed implementation manners
[0019] In order to make the technical means, creative features, achieved purposes and functions of the present utility model easy to understand, the present utility model will be further described below in conjunction with the detailed implementation manners.
[0020] For purifying and treating sewage odor, as an embodiment of the present utility model, such as Figure 1 , Figure 2 and Figure 3As shown in the figure, a sewage odor treatment device of the present utility model includes a chassis 3 and a box frame 2. A filter screen 20 for filtering sewage odor is fixed inside the box frame 2 by screws. A fixing box 18 for storing deodorant is fixed at the top end inside the box frame 2 by bolts. A spray head 19 for spraying deodorant is fixed on one side of the fixing box 18 by screws. A liquid box 5 for placing deodorant is fixed on one side of the chassis 3 by bolts. A branch pipe A 6 connected to a pump body 7 is inserted on one side of the fixing box 18. A branch pipe B 8 connected to the liquid box 5 is fixed outside the pump body 7 by screws. A blower B 9 connected to a pipe B 10 is fixed outside the box frame 2 by bolts. A blower A 4 connected to a pipe A 1 is fixed by screws at one end of the box frame 2 away from the blower B 9. A support plate B 14 for fixing a photocatalyst mesh B 16 is fixed inside the box frame 2 by screws. A support plate A 13 for fixing a photocatalyst mesh A 12 is fixed on the inner wall of the box frame 2 by screws. Ultraviolet lamps 17 for irradiating the photocatalyst mesh A 12 and the photocatalyst mesh B 16 are symmetrically fixed outside the support plate B 14 by screws. An activated carbon mesh 11 for adsorbing sewage odor is fixed on one side of the box frame 2 by screws. A servo motor A 21 for driving a threaded rod 26 to rotate is connected to the inner side of the box frame 2 by bolts. A driving block 22 for fixing a servo motor B 23 is threadedly connected to the outside of the threaded rod 26. A brush 24 for cleaning the surface of the filter screen 20 is fixed on one side of the servo motor B 23 by screws. Electric heating plates 25 for drying the purified sewage odor are fixed inside both the support plate A 13 and the support plate B 14 by screws.
[0021] When in use, when the sewage odor is transported to the box frame 2 through the pipe B10 on the side of the fan B9, the filter screen 20 in the box frame 2 filters the solid particles in the sewage odor, and then the sewage odor flows to the bottom of the fixed box 18. At the same time, the pump body 7 outside the box frame 2 transports the deodorant in the liquid tank 5 to the fixed box 18 on the side of the branch pipe A6 through the branch pipe B8, and then the nozzle 19 on the fixed box 18 sprays the deodorant, so that the deodorant contacts the sewage odor and performs preliminary deodorization on the sewage odor. After the initial purification treatment, the sewage odor flows to the outside of the support plate B14, and the ultraviolet lamp 17 outside the support plate B14 irradiates the photocatalyst net A12 and the photocatalyst net B16, so that the odor molecules in the sewage odor can be quickly decomposed. The support plates A13 and B14 in the box frame 2 prolong the time that the sewage odor stays in the box frame 2, so that the odor molecules in the sewage odor are fully decomposed, and then the purified sewage odor passes through the activated carbon net 11 in the box frame 2, and the activated carbon net 11 The odor in the sewage odor is adsorbed, so as to facilitate the full purification of the sewage odor. When the sewage odor enters the box frame 2 through the pipe B10 on the side of the fan B9, the sewage odor contacts the filter 20 in the box frame 2, and the filter 20 filters the solid particles of the sewage odor. At the same time, the servo motor A21 in the box frame 2 converts the received electrical energy into mechanical energy. The servo motor A21 drives the threaded rod 26 to rotate, and then the driving block 22 outside the threaded rod 26 drives the servo motor B23 to move. At the same time, the servo motor B23 converts the received electrical energy into mechanical energy. The servo motor B23 drives the brush 24 to clean different positions on the surface of the filter 20, so as to avoid clogging of the filter 20. When the deodorant purifies the sewage odor, the purified sewage odor flows to the outside of the support plate A13 and the support plate B14, and then the electric heating plate 25 outside the support plate A13 and the support plate B14 converts the electrical energy into heat, so that the purified sewage odor is dried.
[0022] In order to fully use the deodorant, exemplary, such as Figure 2 As shown, the utility model also includes that the bottom of the box frame 2 is provided with a through hole 15 for allowing excess deodorant to flow into the liquid box 5, and the number of the through holes 15 is several.
[0023] When in use, after the deodorant sprayed in the box frame 2 purifies the sewage odor, the excess deodorant falls to the bottom of the box frame 2, and then the through hole 15 opened at the bottom of the box frame 2 allows the deodorant to flow into the liquid tank 5, thereby facilitating full use of the deodorant.
[0024] In order to use the electrical equipment to work normally, for example, Figure 1 , Figure 2 and Figure 3 As shown, the utility model also includes that the input ends of the servo motor A21, the servo motor B23, the fan A4 and the fan B9 are all electrically connected to the output end of the external power supply.
[0025] When in use, by connecting to an external power supply, the electrical device operates normally.
[0026] When the present utility model is in use, when the sewage odor is transported into the box frame 2 through the pipeline B10 on one side of the fan B9, the filter screen 20 in the box frame 2 filters the solid particles in the sewage odor. Subsequently, the sewage odor flows to the bottom of the fixed box 18. At the same time, the pump body 7 outside the box frame 2 transports the deodorant in the liquid tank 5 into the fixed box 18 on one side of the branch pipe A6 through the branch pipe B8. Then, the spray head 19 on the fixed box 18 sprays the deodorant, enabling the deodorant to contact the sewage odor and perform preliminary purification treatment on the sewage odor. Then, the preliminarily purified sewage odor flows outside the support plate B14, and the ultraviolet lamp 17 outside the support plate B14 irradiates the photocatalyst net A12 and the photocatalyst net B16, enabling the odor molecules in the sewage odor to be rapidly decomposed. The support plate A13 and the support plate B14 in the box frame 2 extend the residence time of the sewage odor in the box frame 2, enabling the odor molecules of the sewage odor to be decomposed sufficiently. Then, the purified sewage odor passes through the activated carbon net 11 in the box frame 2, and the activated carbon net 11 adsorbs the odor in the sewage odor, thereby facilitating the full purification treatment of the sewage odor.
[0027] After the sewage odor enters the box frame 2 through the pipeline B10 on one side of the fan B9, the sewage odor contacts the filter screen 20 in the box frame 2. The filter screen 20 filters the solid particles of the sewage odor. At the same time, the servo motor A21 in the box frame 2 converts the received electrical energy into mechanical energy. The servo motor A21 drives the threaded rod 26 to rotate. Then, the driving block 22 outside the threaded rod 26 drives the servo motor B23 to move. At the same time, the servo motor B23 converts the received electrical energy into mechanical energy. The servo motor B23 drives the brush 24 to clean different positions on the surface of the filter screen 20, thereby preventing the filter screen 20 from being blocked.
[0028] After the deodorant purifies the sewage odor, the purified sewage odor flows outside the support plate A13 and the support plate B14. Then, the electric heating plate 25 outside the support plate A13 and the support plate B14 converts electrical energy into heat, enabling the purified sewage odor to be dried.
[0029] After the deodorant sprayed in the box frame 2 purifies the sewage odor, the excess deodorant falls to the bottom of the box frame 2. Then, the through hole 15 opened at the bottom of the box frame 2 allows the deodorant to flow into the liquid tank 5, thereby facilitating the full use of the deodorant.
[0030] The foregoing has shown and described the basic principles, main features, and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. The above-described embodiments and descriptions in the specification only illustrate the principles of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and all these changes and improvements fall within the scope of protection required by the present utility model. The scope of protection required by the present utility model is defined by the appended claims and their equivalents.
Claims
1. A sewage odor treatment device, characterized in that: The invention comprises a base frame (3) and a box frame (2), wherein a filter screen (20) for filtering sewage odor is fixed by screws inside the box frame (2), a fixed box (18) for storing deodorant is fixed by bolts at the top of the box frame (2), a nozzle (19) for spraying deodorant is fixed by screws on one side of the fixed box (18), a liquid tank (5) for storing deodorant is fixed by bolts on one side of the base frame (3), a branch pipe A (6) connected to a pump body (7) is plugged into one side of the fixed box (18), a branch pipe B (8) connected to the liquid tank (5) is fixed by screws on the outer side of the pump body (7), a fan B (9) connected to a pipeline B (10) is fixed by bolts on the outer side of the box frame (2), a fan A (4) connected to a pipeline A (1) is fixed by screws on the outer end of the box frame (2) away from the fan B (9), and a photocatalyst net B (16) is fixed by screws inside the box frame (2). A support plate B (14) is fixed, a support plate A (13) for fixing a photocatalyst net A (12) is screwed to the inner wall of the box frame (2), an ultraviolet lamp (17) for irradiating the photocatalyst net A (12) and the photocatalyst net B (16) is symmetrically screwed to the outside of the support plate B (14), an activated carbon net (11) for adsorbing sewage odor is screwed to one side of the box frame (2), a servo motor A (21) for driving a threaded rod (26) to rotate is bolted to the inside of the box frame (2), a driving block (22) for fixing a servo motor B (23) is screwed to the outside of the threaded rod (26), a brush (24) for cleaning the surface of the filter screen (20) is screwed to one side of the servo motor B (23), and an electric heating plate (25) for drying the purified sewage odor is screwed to the inside of the support plate A (13) and the support plate B (14).
2. A sewage odor treatment device according to claim 1, characterized in that: The bottom of the box frame (2) is provided with a through hole (15) for allowing excess deodorant to flow into the liquid box (5), and the number of the through holes (15) is several.
3. The sewage odor treatment device according to claim 1, characterized in that: The input ends of the servo motor A (21), the servo motor B (23), the fan A (4) and the fan B (9) are all electrically connected to the output end of the external power supply.