Efficient intelligent dosing reaction equipment

By designing a highly efficient and intelligent dosing reaction device, the problems of large footprint and poor sedimentation effect of existing equipment have been solved, achieving efficient wastewater treatment and cost reduction.

CN223561318UActive Publication Date: 2025-11-18JIANGSU TIANCONG ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202423066081.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2025-11-18
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

Existing chemical dosing reaction equipment has a large footprint, poor sedimentation effect, and high cost, making it difficult to meet environmental protection requirements.

Method used

A highly efficient and intelligent chemical dosing reaction device was designed, including an inlet pipe, an outlet pipe, a central guide tube, a sludge hopper, a pipe mixer, and a sludge pumping pipe. By simultaneously adding chemicals to mix with and settle the wastewater, the traditional chemical dosing reaction tank is eliminated, reducing the equipment's footprint and cost.

Benefits of technology

It improves wastewater treatment efficiency, reduces equipment footprint and cost, and achieves efficient wastewater sedimentation and sludge treatment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides efficient intelligent dosing reaction equipment which comprises an equipment body, the equipment body comprises a water inlet pipe, a water outlet pipe, a central guide cylinder and a mud bucket, the position of the water inlet pipe is higher than that of the water outlet pipe, the water outlet end of the water inlet pipe is connected with the central guide cylinder, and a pipeline mixer is further arranged in the equipment body. The top of the pipeline mixer is connected with a dosing pipe, the water outlet end of the water inlet pipe is connected with the water inlet end of the pipeline mixer, the water outlet end of the pipeline mixer is communicated with the central guide cylinder, a sludge pumping pipe is arranged in the sludge bucket, one end of the sludge pumping pipe is communicated with the sludge bucket, and the other end of the sludge pumping pipe is connected with a sludge tank. A chemical agent is synchronously added through the chemical agent adding pipe, the sludge hopper discharges the settled sludge to the sludge tank through the sludge pumping pipe, the treated sewage is discharged through the water outlet pipe along with the rising of the water level, the sewage treatment effect is effectively improved, meanwhile, a traditional chemical agent adding reaction tank is omitted, and the occupied area and the cost of equipment are reduced.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to sewage treatment technical field, more specifically, relate to a kind of efficient intelligent dosing reaction equipment. BACKGROUND

[0002] Many industrial enterprises have built wastewater treatment facilities very early, but as the national environmental protection requirement gradually improves, many facilities discharge standards cannot meet the existing requirements, so some dosing enhanced treatment equipment needs to be added to improve discharge standards.

[0003] However, in the prior art, there are: the existing dosing reaction is mainly divided into dosing reaction tank, sedimentation tank, large land occupation, poor sedimentation effect, and high manufacturing cost. UTILITY MODEL CONTENT

[0004] Therefore, in order to solve the above technical problems, the utility model provides a kind of efficient intelligent dosing reaction equipment, including equipment body 10, the equipment body 10 includes inlet pipe 20, outlet pipe 30, center flow guide cylinder 40 and mud bucket 50, the position of the inlet pipe 20 is higher than the position of the outlet pipe 30, the water outlet end of the inlet pipe 20 is connected with the center flow guide cylinder 40, the top end of the center flow guide cylinder 40 is connected with the equipment body 10, the bottom end water outlet of the center flow guide cylinder 40 is placed above the mud bucket 50, the equipment body 10 is also provided with pipeline mixer 60 for mixing of reagent and sewage, the top of the pipeline mixer 60 is connected with dosing pipe 70, the water outlet end of the inlet pipe 20 is connected with the water inlet end of the pipeline mixer 60, the water outlet end of the pipeline mixer 60 is communicated with the center flow guide cylinder 40, the mud bucket 50 is provided with mud suction pipe 80, one end of the mud suction pipe 80 is communicated with the mud bucket 50, the other end is connected with sludge tank, when sewage enters the pipeline mixer 60 through the inlet pipe 20, reagent is added through the dosing pipe 70 at the same time, the pipeline mixer 60 discharges mixed sewage to the lower through the center flow guide cylinder 40, the mud bucket 50 discharges sludge to the sludge tank through the mud suction pipe 80 after sedimentation, the treated sewage is discharged through the outlet pipe 30 with water level rising, sewage treatment effect is effectively improved, and the traditional dosing reaction tank is cancelled, the equipment land occupation and cost are reduced.

[0005] The utility model provides a kind of high-efficiency intelligent dosing reaction equipment, including equipment body 10, the equipment body 10 includes water inlet pipe 20, water outlet pipe 30, center flow guide cylinder 40 and hopper 50, the position of water inlet pipe 20 is higher than the position of water outlet pipe 30, the water outlet end of water inlet pipe 20 is connected center flow guide cylinder 40, the top end of center flow guide cylinder 40 is connected equipment body 10, the bottom end water outlet of center flow guide cylinder 40 is placed above hopper 50, pipeline mixer 60 for mixing reagent and sewage is further provided in equipment body 10, the top of pipeline mixer 60 is connected and is equipped with dosing pipe 70, the water outlet end of water inlet pipe 20 is connected with the water inlet end of pipeline mixer 60, the water outlet end of pipeline mixer 60 is communicated with center flow guide cylinder 40, suction pipe 80 is equipped in hopper 50, one end of suction pipe 80 is communicated with hopper 50, and the other end is connected sludge tank, when sewage enters pipeline mixer 60 through water inlet pipe 20, reagent is added simultaneously through dosing pipe 70, and the sewage after mixing is discharged to below through center flow guide cylinder 40 by pipeline mixer 60, and the sludge after precipitation is discharged to sludge tank through suction pipe 80 by hopper 50, and the sewage after treatment is discharged through water outlet pipe 30 along with water level rising.

[0006] Further, the outside of the equipment body 10 is provided with a control cabinet 90 and a sludge discharge pump 100, a control cable 110 is provided between the control cabinet 90 and the sludge discharge pump 100, the control cabinet 90 is connected with the sludge discharge pump 100 through the control cable 110, one end of the suction pipe 80 is communicated with the hopper 50, and the other end is connected with the sludge discharge pump 100, the sludge discharge pump 100 is provided with a sludge discharge pipe 120 away from one side of the hopper 50, one end of the sludge discharge pipe 120 is connected with the sludge discharge pump 100, and the other end is connected with the sludge tank, in normal state, the sludge discharge pump 100 is in closed state, the suction pipe 80 does not discharge sludge, when sludge needs to be discharged, the control cabinet 90 controls the sludge discharge pump 100 through the control cable 110, at this time, the sludge discharge pump 100 is opened, under the action of the sludge discharge pump 100, the sludge in the hopper 50 is discharged to the sludge tank through the suction pipe 80 and the sludge discharge pipe 120.

[0007] Further, the equipment body 10 is further connected with a sludge liquid level meter 130, the bottom end of the sludge liquid level meter 130 extends into the hopper 50, the top end of the sludge liquid level meter 130 is located in the upper part of the water inlet pipe 20, the top end of the sludge liquid level meter 130 is signal connected with the control cabinet 90 through the control cable 110, when the sludge deposited in the hopper 50 contacts the contact of the sludge liquid level meter 130, the sludge liquid level meter 130 sends a signal, the control cabinet 90 controls the sludge discharge pump 100 to open through the control cable 110, and sludge is discharged outward.

[0008] Further, the shape of the hopper 50 is a conical sludge hopper, which facilitates the gathering and discharging of sludge.

[0009] Further, the water outlet at the bottom end of the central flow guide cylinder 40 is a horn-shaped opening, which plays a buffering role and prevents the impact of excessive downward sewage on the sludge deposited in the hopper 50.

[0010] Further, a water baffle 140 is connected at the water outlet at the bottom end of the central flow guide cylinder 40, which is used to radiate the sewage outward.

[0011] Further, the diameter of the cross section of the water baffle 140 is greater than that of the water outlet at the bottom end of the central flow guide cylinder 40, which makes the radiation better.

[0012] Further, a plurality of first deflection mud baffles 150 and a plurality of second deflection mud baffles 160 are arranged in the device body 10, the plurality of first deflection mud baffles 150 are uniformly and parallelly arranged, and the first deflection mud baffles 150 are arranged obliquely downward, the plurality of second deflection mud baffles 160 are uniformly and parallelly arranged, and the second deflection mud baffles 160 are arranged obliquely upward, the first deflection mud baffles 150 and the second deflection mud baffles 160 are used to prolong the flow path of the sewage and strengthen the sedimentation effect.

[0013] Further, the first deflection mud baffles 150 and the second deflection mud baffles 160 are both left with an included angle with the horizontal plane, which facilitates the separation of mud and water and strengthens the sedimentation effect.

[0014] Further, the angle of the included angle is 60º.

[0015] The utility model discloses an efficient intelligent dosing reaction equipment, including equipment body 10, equipment body 10 includes water inlet pipe 20, water outlet pipe 30, center flow guide cylinder 40 and hopper 50, the position of water inlet pipe 20 is higher than the position of water outlet pipe 30, the water outlet end of water inlet pipe 20 is connected center flow guide cylinder 40, the top end of center flow guide cylinder 40 is connected equipment body 10, the bottom end water outlet of center flow guide cylinder 40 is located the top of hopper 50, still be equipped with pipeline mixer 60 for the mixing of reagent and sewage in equipment body 10, be equipped with dosing pipe 70 to the top of pipeline mixer 60, the water outlet end of water inlet pipe 20 is connected with the water inlet end of pipeline mixer 60, the water outlet end of pipeline mixer 60 is connected with center flow guide cylinder 40, be equipped with mud pipe 80 in hopper 50, mud pipe 80 one end is connected with hopper 50, and the other end is connected sludge pool, when sewage enters pipeline mixer 60 through water inlet pipe 20, simultaneously adds reagent through dosing pipe 70, and pipeline mixer 60 is arranged to the lower reaches through center flow guide cylinder 40 to the sewage after mixing, hopper 50 is arranged to the sludge after precipitation through mud pipe 80 and exports to sludge pool, and the sewage after processing is along with water level rise and exports through water outlet pipe 30, and the sewage treatment effect effectively improves, and the traditional dosing reaction pool is cancelled simultaneously, and the equipment land area and cost expense are reduced. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a structure schematic diagram of the utility model discloses an efficient intelligent dosing reaction equipment.

[0017] Main element symbol explains:

[0018] Equipment body 10, water inlet pipe 20, water outlet pipe 30, center flow guide cylinder 40, hopper 50, pipeline mixer 60, dosing pipe 70, mud pipe 80, control cabinet 90, sludge pump 100, control cable 110, sludge pipe 120, sludge liquid level meter 130, water baffle 140, first baffle 150, second baffle 160.

[0019] The following specific embodiments will be further described in conjunction with the above-mentioned drawings to further illustrate the utility model. DETAILED DESCRIPTION

[0020] The following examples are described to assist in the understanding of the present application, the examples are not and should not be interpreted as limiting the protection scope of the present application in any way.

[0021] In the following description, those skilled in the art will realize that components can be described as separate functional units (may include sub-units), but those skilled in the art will realize that various components or parts thereof can be divided into separate components, or can be integrated together (including integrated into a single system or component).

[0022] At the same time, the connection between the components or systems is not intended to be limited to direct connection, on the contrary, the data between these components can be modified, reformatted, or otherwise changed by intermediate components. In addition, additional or fewer connections can be used. It should also be noted that the terms "coupled", "connected", or "input" should be understood to include direct connection, indirect connection through one or more intermediate devices, and wireless connection. Embodiments

[0023] As shown in the figure, 1 is a structural schematic diagram of a high-efficiency intelligent dosing reaction equipment.

[0024] A high-efficiency intelligent dosing reaction equipment, comprising a device body 10, the device body 10 comprises a water inlet pipe 20, a water outlet pipe 30, a center flow guide cylinder 40 and a mud bucket 50, the position of the water inlet pipe 20 is higher than the position of the water outlet pipe 30, the water outlet end of the water inlet pipe 20 is connected with the center flow guide cylinder 40, the top end of the center flow guide cylinder 40 is connected with the device body 10, the bottom end of the center flow guide cylinder 40 is disposed above the mud bucket 50, a pipeline mixer 60 for mixing reagent and sewage is further arranged in the device body 10, a dosing pipe 70 is arranged at the top of the pipeline mixer 60, the water outlet end of the water inlet pipe 20 is connected with the water inlet end of the pipeline mixer 60, the water outlet end of the pipeline mixer 60 is communicated with the center flow guide cylinder 40, a mud pumping pipe 80 is arranged in the mud bucket 50, one end of the mud pumping pipe 80 is communicated with the mud bucket 50, and the other end is connected with a sludge pool, when the sewage enters the pipeline mixer 60 through the water inlet pipe 20, the reagent is added synchronously through the dosing pipe 70, the mixed sewage is discharged to the lower side through the center flow guide cylinder 40 by the pipeline mixer 60, the sludge after precipitation is discharged to the sludge pool through the mud pumping pipe 80 by the mud bucket 50, and the treated sewage is discharged through the water outlet pipe 30 as the water level rises.

[0025] The device body 10 is externally provided with a control cabinet 90 and a sludge pump 100, a control cable 110 is arranged between the control cabinet 90 and the sludge pump 100, the control cabinet 90 is connected with the sludge pump 100 through the control cable 110, one end of the sludge suction pipe 80 is communicated with the sludge hopper 50, and the other end is connected with the sludge pump 100, the side, away from the sludge hopper 50, of the sludge pump 100 is provided with a sludge discharge pipe 120, one end of the sludge discharge pipe 120 is connected with the sludge pump 100, and the other end is connected with a sludge pool, in a normal state, the sludge pump 100 is in a closed state, and the sludge suction pipe 80 does not discharge sludge, when it is necessary to discharge sludge, the control cabinet 90 controls the sludge pump 100 through the control cable 110, at this time, the sludge pump 100 is opened, and under the action of the sludge pump 100, sludge in the sludge hopper 50 is discharged to the sludge pool through the sludge suction pipe 80 and the sludge discharge pipe 120.

[0026] The device body 10 is further connected with a sludge liquid level meter 130, the bottom end of the sludge liquid level meter 130 extends into the sludge hopper 50, the top end of the sludge liquid level meter 130 is located at the upper portion of the water inlet pipe 20, and the top end of the sludge liquid level meter 130 is signal connected with the control cabinet 90 through the control cable 110, when sludge deposited in the sludge hopper 50 contacts the contact point of the sludge liquid level meter 130, the sludge liquid level meter 130 sends a signal, the control cabinet 90 controls the sludge pump 100 to open and discharge sludge outward through the control cable 110.

[0027] The sludge hopper 50 is a conical sludge hopper, which facilitates the gathering and discharging of sludge.

[0028] The water outlet at the bottom end of the central flow guide cylinder 40 is a horn-shaped opening, which plays a buffering role and prevents the impact force of downward sewage from being too large to impact sludge deposited in the sludge hopper 50.

[0029] The water outlet at the bottom end of the central flow guide cylinder 40 is connected with a water baffle 140, and the water baffle 140 is used for radiating sewage outward.

[0030] The diameter of the cross section of the water baffle 140 is greater than that of the water outlet at the bottom end of the central flow guide cylinder 40, and the radiation degree is better.

[0031] The device body 10 is provided with a plurality of first baffle plates 150 and a plurality of second baffle plates 160, the plurality of first baffle plates 150 are uniformly and parallelly arranged, and the first baffle plates 150 are arranged to be inclined downward, the plurality of second baffle plates 160 are uniformly and parallelly arranged, and the second baffle plates 160 are arranged to be inclined upward, and the first baffle plates 150 and the second baffle plates 160 are used for prolonging the flow path of sewage and strengthening the sedimentation effect.

[0032] The first baffle 150 and the second baffle 160 are arranged at an angle with the horizontal plane, so as to facilitate mud-water separation and strengthen the sedimentation effect.

[0033] The angle of the angle is 60º.

[0034] The utility model discloses an efficient intelligent dosing reaction equipment, including equipment body 10, the equipment body 10 includes water inlet pipe 20, water outlet pipe 30, center flow guide cylinder 40 and mud bucket 50, the position of water inlet pipe 20 is higher than the position of water outlet pipe 30, the water outlet end of water inlet pipe 20 is connected with center flow guide cylinder 40, the top end of center flow guide cylinder 40 is connected with equipment body 10, and the bottom end water outlet of center flow guide cylinder 40 is arranged above mud bucket 50, and the equipment body 10 is also equipped with pipeline mixer 60 for mixing medicament and sewage, the top of pipeline mixer 60 is connected with dosing pipe 70, the water outlet end of water inlet pipe 20 is connected with the water inlet end of pipeline mixer 60, the water outlet end of pipeline mixer 60 is communicated with center flow guide cylinder 40, the mud bucket 50 is equipped with mud suction pipe 80, one end of mud suction pipe 80 is communicated with mud bucket 50, and the other end is connected with sludge pool, when sewage enters pipeline mixer 60 through water inlet pipe 20, simultaneously adds medicament through dosing pipe 70, and pipeline mixer 60 discharges mixed sewage to the below through center flow guide cylinder 40, and mud bucket 50 discharges sludge after sedimentation to sludge pool through mud suction pipe 80, and the sewage after treatment is discharged through water outlet pipe 30 along with water level rise, and the sewage treatment effect is effectively improved, and the traditional dosing reaction tank is cancelled, and the equipment land area and cost are reduced.

[0035] The above-mentioned embodiments only express several implementation manners of the utility model, and the description is more specific and detailed, but can not be understood as the limitation of the utility model patent scope. It should be pointed out that for ordinary skilled person in the art, without departing from the utility model concept, can make several deformation and improvement, and these all belong to the protection scope of the utility model. Therefore, the protection scope of the utility model patent should be the appended claims.

Claims

1. A high-efficiency intelligent dosing reaction device, comprising a device body (10), the device body (10) comprising an inlet pipe (20), an outlet pipe (30), a central guide cylinder (40), and a mud hopper (50), wherein the inlet pipe (20) is positioned higher than the outlet pipe (30), the outlet end of the inlet pipe (20) is connected to the central guide cylinder (40), the top end of the central guide cylinder (40) is connected to the device body (10), and the bottom outlet of the central guide cylinder (40) is positioned above the mud hopper (50), characterized in that: The device body (10) is further provided with a pipeline mixer (60) for mixing the sewage and the medicament, the top of the pipeline mixer (60) is connected with a medicament adding pipe (70), the water outlet end of the water inlet pipe (20) is connected with the water inlet end of the pipeline mixer (60), the water outlet end of the pipeline mixer (60) is communicated with the center flow guide cylinder (40), the mud bucket (50) is provided with a mud pumping pipe (80), one end of the mud pumping pipe (80) is communicated with the mud bucket (50), and the other end is connected with a sludge pool, when the sewage enters the pipeline mixer (60) through the water inlet pipe (20), the medicament is added synchronously through the medicament adding pipe (70), the pipeline mixer (60) discharges the mixed sewage to the lower side through the center flow guide cylinder (40), the mud bucket (50) discharges the sludge deposited after the sedimentation to the sludge pool through the mud pumping pipe (80), and the treated sewage is discharged through the water outlet pipe (30) along with the rising water level.

2. The efficient intelligent dosing reaction apparatus according to claim 1, characterized in that: The device body (10) is further provided with a control cabinet (90) and a sludge discharge pump (100), a control cable (110) is arranged between the control cabinet (90) and the sludge discharge pump (100), the control cabinet (90) is connected with the sludge discharge pump (100) through the control cable (110), one end of the mud pumping pipe (80) is communicated with the mud bucket (50), and the other end is connected with the sludge discharge pump (100), the side, away from the mud bucket (50), of the sludge discharge pump (100) is provided with a sludge discharge pipe (120), one end of the sludge discharge pipe (120) is connected with the sludge discharge pump (100), and the other end is connected with a sludge pool, in a normal state, the sludge discharge pump (100) is in a closed state, and the mud pumping pipe (80) does not discharge sludge, when it is necessary to discharge sludge, the control cabinet (90) controls the sludge discharge pump (100) through the control cable (110), at this time, the sludge discharge pump (100) is opened, and under the action of the sludge discharge pump (100), the sludge in the mud bucket (50) is discharged to the sludge pool through the mud pumping pipe (80) and the sludge discharge pipe (120).

3. The efficient intelligent dosing reaction apparatus according to claim 2, characterized in that: The device body (10) is further provided with a sludge liquid level meter (130), the bottom end of the sludge liquid level meter (130) extends into the mud bucket (50), the top end of the sludge liquid level meter (130) is located at the upper portion of the water inlet pipe (20), and the top end of the sludge liquid level meter (130) is signal connected with the control cabinet (90) through the control cable (110), when the sludge deposited in the mud bucket (50) contacts the contact point of the sludge liquid level meter (130), the sludge liquid level meter (130) sends a signal, the control cabinet (90) controls the sludge discharge pump (100) to be opened through the control cable (110), and the sludge is discharged outward.

4. The efficient intelligent dosing reaction apparatus according to claim 3, characterized in that: The shape of the mud bucket (50) is a conical sludge bucket, which is convenient for gathering and discharging sludge.

5. The efficient intelligent dosing reaction apparatus according to claim 4, characterized in that: The water outlet of the bottom end of the center flow guide cylinder (40) is a horn-shaped opening, which plays a buffering role and prevents the impact force of the downward sewage from being too large to impact the sludge deposited in the mud bucket (50).

6. The efficient intelligent dosing reaction apparatus according to claim 5, characterized in that: The water outlet at the bottom end of the center flow guide cylinder (40) is connected with a water baffle (140), which is used to radiate the sewage outward.

7. The efficient smart dosing reaction apparatus of claim 6, wherein: The cross-sectional diameter of the water baffle (140) is greater than that of the water outlet at the bottom end of the center flow guide cylinder (40), and the radiation is better.

8. The efficient intelligent dosing reaction apparatus according to claim 3, characterized in that: The device body (10) is provided with a plurality of first baffle plates (150) and a plurality of second baffle plates (160). The plurality of first baffle plates (150) are uniformly and parallelly arranged, and the first baffle plates (150) are arranged obliquely downward. The plurality of second baffle plates (160) are uniformly and parallelly arranged, and the second baffle plates (160) are arranged obliquely upward. The first baffle plates (150) and the second baffle plates (160) are used to prolong the flow path of the sewage and strengthen the sedimentation effect.

9. The efficient smart dosing reaction apparatus of claim 8, wherein: The first baffle plates (150) and the second baffle plates (160) are both left with an included angle with the horizontal plane, which is convenient for separating the mud and water and strengthening the sedimentation effect.

10. The efficient smart dosing reaction apparatus of claim 9, wherein: The angle of the included angle is 60º.