Sewage mud-water separation treatment equipment for ceramic production

By combining an electric telescopic rod and a spiral agitator, the problem of long sedimentation time in traditional sewage treatment equipment is solved, achieving rapid and efficient sewage treatment.

CN223921187UActive Publication Date: 2026-02-17李荣华
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Patent Information

Application Number
CN202423117980.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2026-02-17
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

Traditional wastewater treatment equipment requires waiting for the sediment in the wastewater to completely settle to the bottom of the wastewater storage tank, resulting in a long processing time and making it impossible to achieve large-scale rapid treatment.

Method used

The filter layer is moved downwards by a multi-section electric telescopic rod to intercept sediment, and a spiral stirring rod is used to prevent the discharge pipe from clogging, thus simplifying the process of discharging sewage sediment.

Benefits of technology

It reduces wastewater settling time, improves wastewater treatment efficiency, ensures smooth flow in the discharge pipe, and is suitable for large-scale rapid processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of sewage treatment, and discloses sewage mud-water separation treatment equipment for ceramic production, which comprises a sewage storage barrel, an annular shell is fixedly connected to the top end in the sewage storage barrel, and a plurality of sections of electric telescopic rods are mounted in the annular shell; a mounting block is fixedly connected to the output end of the multi-section electric telescopic rod, a filtering layer is mounted in the mounting block, a telescopic feeding pipe is fixedly mounted at the top end of the filtering layer, a water outlet valve is mounted at the bottom end of the surface of the sewage storage barrel, and a water flowing pipe is fixedly connected to the end face, away from the sewage storage barrel, of the water outlet valve. The multi-section electric telescopic rod pushes the filter layer to move downwards, so that sediments in sewage are blocked when the filter layer moves downwards, then the filter layer can intercept large-particle suspended solids in the sewage, and the long sedimentation process of the sewage in the sewage treatment equipment is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to sewage treatment technical field especially relates to a sewage clay water separation treatment equipment for ceramic production. BACKGROUND

[0002] The large amount of sewage and sludge generated in the ceramic production process not only seriously pollutes the surrounding environment, but also contains a variety of harmful substances, which poses a threat to the ecological environment and human health. The traditional solution is to put a precipitant into the sewage to convert the dissolved or colloidal substances in the sewage into insoluble precipitates, and then to extract the water separated from the solid-liquid separation, thereby completing the solid-liquid separation step.

[0003] However, the traditional sewage treatment equipment needs to wait for the precipitates in the sewage to completely precipitate to the bottom of the sewage storage barrel, and then to extract the water in the sewage storage barrel, which makes the whole sewage treatment process take a long time, and thus the sewage storage barrel process is slow, which makes the sewage treatment equipment not suitable for large-scale and rapid sewage treatment. SUMMARY

[0004] The utility model discloses to the prior art needs to wait for the precipitates in the sewage to completely precipitate to the bottom of the sewage storage barrel, and then to extract the water in the sewage storage barrel, which makes the whole sewage treatment process take a long time, and thus the sewage storage barrel process is slow, which makes the sewage treatment equipment not suitable for large-scale and rapid sewage treatment problem, proposes the following technical scheme:

[0005] A sewage clay water separation treatment equipment for ceramic production, comprising: a sewage storage barrel, the inside top of the sewage storage barrel is fixedly connected with an annular shell, a plurality of multi-section electric telescopic rods are installed in the annular shell, the output end of the multi-section electric telescopic rod is fixedly connected with a mounting block, a filter layer is installed in the mounting block, a telescopic feeding pipe is fixedly installed at the top center position of the filter layer, a water outlet valve is installed on the surface of the bottom of the sewage storage barrel, the water outlet valve penetrates the inside of the sewage storage barrel, and a water flow pipe is fixedly connected to the end face of the water outlet valve away from the sewage storage barrel.

[0006] As a preferred embodiment of the above technical scheme, the number of multi-section electric telescopic rods is multiple, and the multiple multi-section electric telescopic rods are distributed in a circular array with the top face of the annular shell as the center.

[0007] As a preferred embodiment of the above technical scheme, the mounting block is in the shape of a circular ring.

[0008] As the preferred technical scheme of the above, the bottom end of the sewage storage barrel is internally provided with a discharging valve, the bottom end of the discharging valve is fixedly connected with a discharging pipe, and the end face of the discharging pipe away from the discharging valve is fixedly connected with a sewage outlet.

[0009] As the preferred technical scheme of the above, the inside of the discharging pipe is fixedly connected with a plurality of positioning blocks, the inside of the positioning blocks is rotatably connected with a rotating rod at the central position, the end face of the rotating rod close to the sewage outlet is fixedly connected with the output shaft of the driving motor, and the driving motor is installed on the ground through a mounting seat.

[0010] As the preferred technical scheme of the above, the shape of the positioning block is set as a cross shape.

[0011] The beneficial effects of the present application are as follows:

[0012] (1) The filter layer is pushed downward by the plurality of electric telescopic rods, so that the filter layer blocks the sediment in the sewage when moving downward, and the filter layer can intercept large-particle suspended solids in the sewage, thereby reducing the long sedimentation process of the sewage in the sewage treatment equipment.

[0013] (2) The spiral stirring rod is driven to rotate by the motor, so that the sewage sediment in the discharging pipe is discharged, and the problem that the sewage with sediment blocks the inside of the discharging pipe is avoided through the assistance of the spiral stirring rod, and the sewage sediment flows more smoothly in the discharging pipe. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 A front view of a sewage and water separation treatment equipment for ceramic production in example 1 is shown.

[0015] Figure 2 A back view of a sewage and water separation treatment equipment for ceramic production in example 1 is shown.

[0016] Figure 3 A sectional view of a sewage and water separation treatment equipment for ceramic production in example 1 is shown.

[0017] Figure 4 A schematic view of the structure of area A in the example 1 is shown. Figure 3

[0018] Figure 5 An internal structure diagram of the sewage storage barrel in example 1 is shown.

[0019] ​In the diagram: 1. Wastewater storage tank; 2. Annular outer shell; 3. Multi-section electric telescopic rod; 4. Mounting block; 5. Filter layer; 6. Telescopic feed pipe; 7. Water outlet valve; 8. Water pipe; 9. Discharge valve; 10. Discharge pipe; 11. Positioning block; 12. Rotating rod; 13. Drive motor; 14. Spiral stirring rod; 15. Wastewater outlet. Detailed Implementation

[0020] To make the objectives, technical solutions, and advantages of the present invention clearer, the technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments.

[0021] Example 1

[0022] This utility model provides a wastewater separation and treatment device for ceramic production, such as... Figures 1 to 5 As shown, the system includes a sewage storage tank 1, an annular outer shell 2 fixedly connected to the top of the sewage storage tank 1, several multi-section electric telescopic rods 3 installed inside the annular outer shell 2, an installation block 4 fixedly connected to the output end of the multi-section electric telescopic rods 3, a filter layer 5 installed inside the installation block 4, a telescopic feed pipe 6 fixedly installed at the center of the top of the filter layer 5, a water outlet valve 7 installed at the bottom of the surface of the sewage storage tank 1, the water outlet valve 7 penetrating the interior of the sewage storage tank 1, and a water pipe 8 fixedly connected to the end of the water outlet valve 7 away from the sewage storage tank 1. The filter layer 5 is composed of a filter screen and cloth, formed by wrapping the filter screen with cloth. A water pump is installed at the end of the water pipe 8 away from the water outlet valve 7. Existing sewage treatment equipment also includes a water pump, a sewage pump, an inlet pipe, an inlet valve, a dosing system, and other structures. During use, sewage to be treated is injected into the sewage storage tank 1 through the inlet pipe, and the settled water is extracted by the water pump. The above are all existing structures and will not be described in detail here.

[0023] like Figure 5 As shown, the number of multi-section electric telescopic rods 3 is set to multiple. The multiple multi-section electric telescopic rods 3 are arranged in a circular array with the top surface of the annular shell 2 as the center. When the multi-section electric telescopic rods 3 are started, the multiple multi-section electric telescopic rods 3 drive the mounting block 4 to move downward synchronously, making the downward movement of the mounting block 4 more stable, thereby avoiding the problem of displacement of the mounting block 4 during the downward movement, thus improving the stability of the mounting block 4 during the movement process.

[0024] like Figure 5 As shown, the mounting block 4 is circular in shape. The circular mounting block 4 drives the internal filter layer 5 to move downward in sync. Through the circular ring inside the mounting block 4, the water flows through the circular ring on the surface of the mounting block 4 and is filtered by the filter layer 5. Thus, the filter layer 5 inside the circular ring filters the sewage, thereby preventing the water from bypassing the filter layer 5.

[0025] As Figures 1 to 3 shown, the bottom end of the sewage storage barrel 1 is provided with a discharge valve 9, the bottom end of the discharge valve 9 is fixedly connected with a discharge pipe 10, the end face of the discharge pipe 10 away from the discharge valve 9 is fixedly connected with a sewage outlet 15, the sewage outlet 15 is provided with a sewage pump at the end away from the discharge pipe 10, the sewage with sediments in the sewage storage barrel 1 enters the inside of the discharge pipe 10 through the discharge valve 9 at the bottom end, and the sewage with sediments in the sewage storage barrel 1 is pumped out through the sewage outlet 15, so that the treatment process of the sewage with sediments in the sewage storage barrel 1 is simplified, thereby improving the efficiency of the sewage storage barrel 1 in treating the sewage with sediments.

[0026] As Figures 1 to 4 shown, the inside of the discharge pipe 10 is fixedly connected with a plurality of positioning blocks 11, the inside of the positioning block 11 is rotatably connected with a rotating rod 12 at the central position, the end face of the rotating rod 12 close to the sewage outlet 15 is fixedly connected with the output shaft of the driving motor 13, the driving motor 13 is installed on the ground through the mounting seat, when the sewage with sediments in the inside of the discharge pipe 10 is pumped out by the water pump, the driving motor 13 is started to drive the rotating rod 12 to rotate, the rotating rod 12 drives the spiral stirring rod 14 to rotate, the rotating rod 12 rotates in the inside of the positioning block 11, the spiral stirring rod 14 drives the sewage in the inside of the discharge pipe 10 to rotate, and then through the rotation of the spiral stirring rod 14, the problem that the sewage with sediments blocks the inside of the discharge pipe 10 is avoided, and the flow of the sewage sediments in the inside of the discharge pipe 10 is more smooth.

[0027] As Figure 5 shown, the shape of the positioning block 11 is set as a cross shape, the sewage flows in the inside of the sewage storage barrel 1 through the surface of the positioning block 11, so that the positioning block 11 supports the rotating rod 12 without affecting the flow of the sewage with sediments in the inside of the discharge pipe 10, thereby making the rotation process of the spiral stirring rod 14 in the inside of the discharge pipe 10 more stable.

[0028] Working principle: the worker opens the water inlet valve, so that the sewage flows in the inside of the water inlet pipe, and enters the inside of the sewage storage barrel 1 through the telescopic feeding pipe 6, when the inside of the sewage storage barrel 1 is filled with the moving sewage, the water inlet valve is closed, at this time, the precipitating agent is put into the inside of the sewage storage barrel 1, and at this time, the sewage and the dissolved matter or the colloidal matter are separated, the multi-section electric telescopic rod 3 is started, so that the multi-section electric telescopic rod 3 drives the mounting block 4 to move downwards, the mounting block 4 drives the filter layer 5 to move downwards, and the precipitate in the sewage is blocked, when the multi-section electric telescopic rod 3 drives the mounting block 4 to move to the position below the water outlet valve 7 in the inside of the sewage storage barrel 1, the water outlet valve 7 is started, and the water pump connected with the water pipe 8 is started to pump out the water in the inside of the sewage storage barrel 1, so that the process of pumping out the separated water in the inside of the sewage storage barrel 1 is completed, and the filter layer 5 can intercept the large particle suspended matter in the sewage, so that the long sedimentation process of the sewage in the inside of the sewage storage barrel 1 is reduced.

[0029] Finally, the worker opens the discharge valve 9, and the sewage with the precipitate remaining in the inside of the sewage storage barrel 1 is discharged, and the water pump far away from the discharge pipe 10 of the sewage outlet 15 is started to pump out the sewage with the precipitate remaining in the inside of the sewage storage barrel 1, the sewage with the precipitate enters the inside of the discharge pipe 10 through the discharge valve 9, at this time, the driving motor 13 is started to drive the spiral stirring rod 14 to rotate, the spiral stirring rod 14 rotates to stir the sewage with the precipitate in the inside of the discharge pipe 10, so that the problem that the precipitate in the inside of the discharge pipe 10 is blocked when the water pump pumps out the sewage with the precipitate in the inside of the sewage storage barrel 1 is avoided, and the sewage and the precipitate flow more smoothly in the inside of the discharge pipe 10.

[0030] The above examples are only used to illustrate the technical scheme of the utility model, and not limit it.

Claims

1. A sewage sludge and water separation treatment apparatus for ceramic production, characterized by, Include: The sewage storage barrel (1), the inside top of the sewage storage barrel (1) is fixedly connected with an annular shell (2), a plurality of multi-section electric telescopic rods (3) are installed in the annular shell (2), the output end of the multi-section electric telescopic rod (3) is fixedly connected with a mounting block (4), the inside of the mounting block (4) is installed with a filter layer (5), the top center position of the filter layer (5) is fixedly installed with a telescopic feeding pipe (6), the surface bottom of the sewage storage barrel (1) is installed with a water outlet valve (7), the water outlet valve (7) penetrates the inside of the sewage storage barrel (1), the end face of the water outlet valve (7) away from the sewage storage barrel (1) is fixedly connected with a water flow pipe (8).

2. The sewage sludge separating and treating apparatus for ceramic production according to claim 1, wherein The number of the multi-section electric telescopic rods (3) is set to be multiple, and the multiple multi-section electric telescopic rods (3) are distributed in a circular array with the top end face of the annular shell (2) as the center.

3. The sewage sludge separating and treating apparatus for ceramic production according to claim 1, wherein The shape of the mounting block (4) is circular.

4. The sewage sludge separating and treating apparatus for ceramic production according to claim 1, wherein The bottom of the inside of the sewage storage barrel (1) is installed with a discharge valve (9), the bottom of the discharge valve (9) is fixedly connected with a discharge pipe (10), the end face of the discharge pipe (10) away from the discharge valve (9) is fixedly connected with a sewage outlet (15).

5. The sewage sludge separating and treating apparatus for ceramic production according to claim 4, wherein The inside of the discharge pipe (10) is fixedly connected with a plurality of positioning blocks (11), the inside center position of the positioning block (11) is rotatably connected with a rotating rod (12), the end face of the rotating rod (12) close to the sewage outlet (15) is fixedly connected with the output shaft of a driving motor (13), the driving motor (13) is installed on the ground through a mounting seat.

6. The sewage sludge separating and treating apparatus for ceramic production according to claim 5, wherein The shape of the positioning block (11) is set to be cross-shaped.