Sludge dewatering treatment device

By designing a sludge dewatering treatment device and adopting multi-stage treatment technology, the problems of inconvenient transportation and poor dewatering effect during the sludge dewatering process were solved, achieving efficient and automated sludge dewatering and improving transportation and work efficiency.

CN223458223UActive Publication Date: 2025-10-21CHONGQING YULANZE ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422520245.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-17
Publication Date
2025-10-21
Estimated Expiration
2034-10-17

AI Technical Summary

Technical Problem

In existing sludge dewatering processes, the large volume of sludge and the inconvenience of transportation make it difficult to achieve the required dewatering effect, and the process is cumbersome, affecting efficiency.

Method used

A sludge dewatering treatment device was designed, including a wet material storage bin, a wall-breaking conveying pump, a conveying pipeline, a high-pressure stacked dewatering machine, a low-temperature belt dewatering machine, and other components. The device achieves efficient dewatering of sludge through multi-stage treatment and reduces the moisture content of sludge by using technologies such as wall breaking, stacking, and low-temperature turning.

Benefits of technology

It achieves efficient and automated dewatering of sludge, reducing the moisture content to less than 30%, improving transportation and work efficiency, and simplifying the operation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a sludge dewatering treatment device, which relates to the technical field of sludge treatment and comprises a wet material temporary storage box, a wall-breaking delivery pump is arranged on the outer surface of the lower end of the wet material temporary storage box, a first transport vehicle is arranged at the front end of the upper portion of the wet material temporary storage box, a material conveying pipeline is arranged at the front end of the wall-breaking delivery pump, and a second transport vehicle is arranged at the rear end of the wall-breaking delivery pump. A high-pressure lamination dehydrator is arranged at the rear end of the material conveying pipeline, a belt conveyor is further arranged above the high-pressure lamination dehydrator, and a buffer storage bin is arranged below the tail end of the belt conveyor. According to the sludge dewatering treatment device disclosed by the utility model, the wall-breaking conveying pump, the material conveying pipeline and the belt conveyor are arranged, so that when the sludge is dewatered by the device, the sludge is relatively convenient to transport, more time and labor are saved, the dewatering process is more automatic, the working time of people is saved, and the working efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to sludge treatment technical field especially relates to a sludge dewatering treatment device. BACKGROUND

[0002] Sludge dewatering is an important procedure in sludge treatment, and sludge dewatering is to remove water in sludge, so that subsequent further treatment of sludge is facilitated.

[0003] In the process of dewatering treatment of sludge, multiple procedures are required for step-by-step treatment, otherwise the dewatering effect is difficult to meet the requirements, and the sludge to be treated is very large in quality and volume, and it is very troublesome to transport the large volume of sludge when changing procedures, which brings certain adverse effects to the process of sludge dewatering, in order to solve the problems in the prior art, we provide a sludge dewatering treatment device. UTILITY MODEL CONTENT

[0004] The main purpose of the utility model is to provide a sludge dewatering treatment device, which can effectively solve the problems in the background art.

[0005] To achieve the above-mentioned purpose, the technical scheme adopted by the utility model is as follows:

[0006] A sludge dewatering treatment device, comprising a wet material temporary storage bin, a wall-breaking conveying pump is arranged on the outer surface of the lower end of the wet material temporary storage bin, a first transport vehicle is arranged at the upper front end of the wet material temporary storage bin, a material conveying pipeline is arranged at the front end of the wall-breaking conveying pump, a high-pressure laminated dewatering machine is arranged at the rear end of the material conveying pipeline, a third scraper conveyor is arranged at the front end of the high-pressure laminated dewatering machine, a second transport vehicle is arranged below the third scraper conveyor, a belt conveyor is further arranged above the high-pressure laminated dewatering machine, and a buffer bin is arranged below the tail end of the belt conveyor.

[0007] Preferably, a first scraper conveyor is arranged on the side wall of the buffer bin, a low-temperature belt type dewatering machine is arranged at the rear end of the first scraper conveyor, a spiral conveyor is arranged in the middle of the low-temperature belt type dewatering machine, a second scraper conveyor is arranged at the rear end of the spiral conveyor, and a dry material temporary storage bin is arranged below the tail end of the second scraper conveyor.

[0008] Preferably, a mounting interface is arranged between the wall-breaking conveying pump and the wet material temporary storage bin, the wall-breaking conveying pump is detachably connected with the wet material temporary storage bin through the mounting interface, and a connecting port is arranged between the material conveying pipeline, the wall-breaking conveying pump and the high-pressure laminated dewatering machine, and the material conveying pipeline is detachably connected with the wall-breaking conveying pump and the high-pressure laminated dewatering machine through the connecting port.

[0009] Preferably, the third scraper conveyor and the high-pressure laminated dehydrator are provided with mounting interfaces, the third scraper conveyor is detachably connected with the high-pressure laminated dehydrator through the mounting interfaces, the belt conveyor and the high-pressure laminated dehydrator are provided with mounting interfaces, the belt conveyor is detachably connected with the high-pressure laminated dehydrator through the mounting interfaces, and the buffer bin and the high-pressure laminated dehydrator are provided with fixing interfaces, the buffer bin is detachably connected with the high-pressure laminated dehydrator through the fixing interfaces.

[0010] Preferably, the first scraper conveyor and the buffer bin are provided with connecting interfaces, and the first scraper conveyor is detachably connected with the buffer bin through the connecting interfaces.

[0011] Preferably, the screw conveyor and the low-temperature belt-type dehydrator are provided with mounting interfaces, the screw conveyor is detachably connected with the low-temperature belt-type dehydrator through the mounting interfaces, the second scraper conveyor and the low-temperature belt-type dehydrator are provided with connecting interfaces, and the second scraper conveyor is detachably connected with the low-temperature belt-type dehydrator through the connecting interfaces.

[0012] Beneficial effects

[0013] Compared with the prior art, the utility model has the beneficial effects that:

[0014] 1、 the utility model discloses, through setting up the broken wall conveying pump and the material pipeline and the belt conveyor, when the device is dehydrated to the sludge and handles, it is convenient to transport, and it is more time -saving and labor -saving, and the process of dehydration is more automatic, saves people's working time, improves work efficiency, and the lower half of the wet material temporary storage tank is arranged below the ground, and the inlet of the upper half is flush with the ground, so the first transport vehicle can directly unload the wet material temporary storage tank, the sludge with water content more than eighty percent is unloaded into the wet material temporary storage tank by the first transport vehicle, then enters the broken wall conveying pump, the broken wall conveying pump is conveyed to the high-pressure laminated dehydrator inside through the material pipeline after breaking the wall of the sludge, the high-pressure laminated dehydrator is through laminated cloth, high-pressure filter dehydration, and the water content of the sludge is reduced to fifty -five percent, and the thickness is uniform, then from the high-pressure laminated dehydrator output enters the belt conveyor, and the belt conveyor outputs the sludge into the buffer bin.

[0015] 2. The utility model discloses a low -temperature belt type dehydrator is set up through, and the device can further dewater the sludge, and the effect of sludge dewatering is more complete, and the inside of the buffer bin is provided with large diameter spiral structure, and the sludge is exported into the inside of the no. The sludge is lifted and is inputed into the feeding port of the low -temperature belt type dehydrator, and the feeding port of the low -temperature belt type dehydrator adopts the material distributor, and the sludge is evenly spread to the mesh belt width inside the low -temperature belt type dehydrator, and the thickness reaches about cm, and the inside of the low -temperature belt type dehydrator adopts multilayer mesh belt, and the sludge is turned over during falling, and the sludge is low -temperature dewatered to the water content less than thirty percent and is exported into the spiral conveyor, and the spiral conveyor exports material into the no. The material is lifted and is outputed into the dry material temporary storage bin, and the dry material temporary storage bin stores the sludge with the water content less than thirty percent, and waits for the transportation of the no. 3 transport vehicle. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the whole structure schematic diagram of the utility model;

[0017] Figure 2 It is the whole front view structure schematic diagram of the utility model;

[0018] Figure 3 It is the whole plan structure schematic diagram of the utility model;

[0019] Figure 4 It is the high -pressure laminated dehydrator structure schematic diagram of the utility model;

[0020] In the drawing: 1, wet material temporary storage bin;2, wall breaking conveying pump;3, high -pressure laminated dehydrator;4, belt conveyor;5, buffer bin;6, no. The sludge is lifted and is inputed into the feeding port of the low -temperature belt type dehydrator, and the feeding port of the low -temperature belt type dehydrator adopts the material distributor, and the sludge is evenly spread to the mesh belt width inside the low -temperature belt type dehydrator, and the thickness reaches about cm, and the inside of the low -temperature belt type dehydrator adopts multilayer mesh belt, and the sludge is turned over during falling, and the sludge is low -temperature dewatered to the water content less than thirty percent and is exported into the spiral conveyor, and the spiral conveyor exports material into the no. The material is lifted and is outputed into the dry material temporary storage bin, and the dry material temporary storage bin stores the sludge with the water content less than thirty percent, and waits for the transportation of the no. 3 transport vehicle. DETAILED DESCRIPTION

[0021] In order to make the technical means, the creation characteristics, the purpose and the effect of the utility model easy to understand, the utility model is further described below in combination with specific implementation manners.

[0022] As Figures 1-4As shown, a kind of sludge dewatering treatment device, including wet material temporary storage bin 1, the lower half of wet material temporary storage bin 1 is set below ground, and the sludge that is not handled is temporarily stored, and the lower end outer surface of wet material temporary storage bin 1 is provided with wall breaking delivery pump 2, wall breaking delivery pump 2 carries out wall breaking to sludge, then exports from wet material temporary storage bin 1, and the upper front end of wet material temporary storage bin 1 is provided with No. 1 transport vehicle 12, No. 1 transport vehicle 12 transports sludge into the inside of wet material temporary storage bin 1, and the front end of wall breaking delivery pump 2 is provided with material conveying pipe 15, the rear end of material conveying pipe 15 is provided with high-pressure laminated dewatering machine 3, high-pressure laminated dewatering machine 3 dewatering sludge moisture content to below 55%, material conveying pipe 15 connects wall breaking delivery pump 2 with high-pressure laminated dewatering machine 3, and the front end of high-pressure laminated dewatering machine 3 is provided with No. 3 scraper conveyor 11, No. 3 scraper conveyor 11 is bypass conveying system, and emergency unloading conveying is carried out, and the lower portion of No. 3 scraper conveyor 11 is provided with No. 2 transport vehicle 13, No. 2 transport vehicle 13 transports sludge with moisture content of 55%, and the upper portion of high-pressure laminated dewatering machine 3 is further provided with belt conveyor 4, and the lower portion of the tail end of belt conveyor 4 is provided with buffer bin 5, belt conveyor 4 transports sludge treated in high-pressure laminated dewatering machine 3 to the inside of buffer bin 5, and the inside of buffer bin 5 is provided with large-diameter spiral structure.

[0023] As shown, Figures 1-4 The sidewall of buffer bin 5 is provided with No. 1 scraper conveyor 6, buffer bin 5 transports sludge to the middle of No. 1 scraper conveyor 6 through spiral structure, the rear end of No. 1 scraper conveyor 6 is provided with low-temperature belt dewatering machine 7, No. 1 scraper conveyor 6 lifts and transports sludge to the inlet of low-temperature belt dewatering machine 7, the inlet of low-temperature belt dewatering machine 7 adopts material carrier, and sludge is evenly spread to the width of outer belt inside low-temperature belt dewatering machine 7, and the thickness of spreading is about 8cm-10cm, the inside of low-temperature belt dewatering machine 7 is provided with multiple layers of mesh belt, sludge is turned over when falling, and moisture content is reduced to below 30%, the middle of low-temperature belt dewatering machine 7 is provided with spiral conveyor 8, the rear end of spiral conveyor 8 is provided with No. 2 scraper conveyor 9, spiral conveyor 8 outputs treated sludge into No. 2 scraper conveyor 9 through spiral rotation, the lower portion of the tail end of No. 2 scraper conveyor 9 is provided with dry material temporary storage bin 10, No. 2 scraper conveyor 9 lifts and outputs sludge to the inside of dry material temporary storage bin 10, and the lower portion of dry material temporary storage bin 10 is provided with No. 3 transport vehicle 14, dry material temporary storage bin 10 temporarily stores treated sludge, and waits for No. 3 transport vehicle 14 to transport.

[0024] It needs to be explained that the utility model discloses a sludge dewatering treatment device, when using, the sludge with water content more than eighty percent is unloaded through the first transport vehicle 12 and enters the inside of wet material temporary storage bin 1, then enters the wall breaking conveying pump 2, and the wall breaking conveying pump 2 is transported to the inside of high-pressure laminated dewatering machine 3 through material pipeline 15 after breaking the wall of sludge, and the high-pressure laminated dewatering machine 3 is through laminated cloth, high-pressure pressure filtration dewatering, and the water content of sludge is reduced to fifty-five percent, and the thickness is uniform, then from the output of high-pressure laminated dewatering machine 3 and enters the belt conveyor 4, and the belt conveyor 4 exports the sludge and enters the buffer bin 5, and the buffer bin 5 is internally provided with large-diameter spiral structure, exports the sludge at uniform speed and enters the inside of the first scraper conveyor 6, and the first scraper conveyor 6 lifts the sludge and inputs the inlet of low-temperature belt dewatering machine 7, and the inlet of low-temperature belt dewatering machine 7 adopts material distributor, and the sludge is evenly spread to the width of mesh belt inside low-temperature belt dewatering machine 7, and the thickness reaches 8-10cm, and the inside of low-temperature belt dewatering machine 7 adopts multilayer mesh belt, and the sludge is turned over during falling, and the sludge is dewatered to less than thirty percent after outputting into the spiral conveyor 8, and the spiral conveyor 8 exports material through spiral rotation and enters the second scraper conveyor 9, and the second scraper conveyor 9 exports material and inputs dry material temporary storage bin 10, and the dry material temporary storage bin 10 stores the sludge with water content less than thirty percent, and waits for the transportation of the third transport vehicle 14.

[0025] The basic principle and main features of the utility model and the advantages of the utility model are shown and described above. It should be understood by the person skilled in the art that the utility model is not limited by the above-mentioned embodiments, and the above-mentioned embodiments and the description in the specification only illustrate the principle of the utility model, and various changes and improvements can be made to the utility model without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed. The scope of protection of the utility model is defined by the appended claims and their equivalents.

Claims

1. A sludge dewatering treatment apparatus comprising a wet material temporary storage bin (1), characterized by: The lower end outer surface of the wet material temporary storage bin (1) is provided with a wall-broken conveying pump (2), the upper front end of the wet material temporary storage bin (1) is provided with a first transport vehicle (12), the front end of the wall-broken conveying pump (2) is provided with a material conveying pipeline (15), the rear end of the material conveying pipeline (15) is provided with a high-pressure laminated dewatering machine (3), the front end of the high-pressure laminated dewatering machine (3) is provided with a third scraper conveyor (11), the lower side of the third scraper conveyor (11) is provided with a second transport vehicle (13), the upper side of the high-pressure laminated dewatering machine (3) is further provided with a belt conveyor (4), and the lower end of the belt conveyor (4) is provided with a buffer storage bin (5).

2. The sludge dewatering treatment apparatus according to claim 1, characterized by: The sidewall of the buffer storage bin (5) is provided with a first scraper conveyor (6), the rear end of the first scraper conveyor (6) is provided with a low-temperature belt dewatering machine (7), the middle of the low-temperature belt dewatering machine (7) is provided with a spiral conveyor (8), the rear end of the spiral conveyor (8) is provided with a second scraper conveyor (9), and the lower end of the second scraper conveyor (9) is provided with a dry material temporary storage bin (10). The lower side of the dry material temporary storage bin (10) is provided with a third transport vehicle (14).

3. The sludge dewatering device of claim 1, wherein: The wall-broken conveying pump (2) and the wet material temporary storage bin (1) are provided with a mounting interface, the wall-broken conveying pump (2) is detachably connected with the wet material temporary storage bin (1) through the mounting interface, the material conveying pipeline (15), the wall-broken conveying pump (2) and the high-pressure laminated dewatering machine (3) are all provided with a connecting port, and the material conveying pipeline (15) is detachably connected with the wall-broken conveying pump (2) and the high-pressure laminated dewatering machine (3) through the connecting port.

4. The sludge dewatering device of claim 1, wherein: The third scraper conveyor (11) and the high-pressure laminated dewatering machine (3) are provided with a mounting interface, the third scraper conveyor (11) is detachably connected with the high-pressure laminated dewatering machine (3) through the mounting interface, the belt conveyor (4) and the high-pressure laminated dewatering machine (3) are provided with a mounting interface, the belt conveyor (4) is detachably connected with the high-pressure laminated dewatering machine (3) through the mounting interface, and the buffer storage bin (5) and the high-pressure laminated dewatering machine (3) are provided with a fixed interface. The buffer storage bin (5) is detachably connected with the high-pressure laminated dewatering machine (3) through the fixed interface.

5. The sludge dewatering device of claim 2, wherein: The first scraper conveyor (6) and the buffer storage bin (5) are provided with a connecting port, and the first scraper conveyor (6) is detachably connected with the buffer storage bin (5) through the connecting port.

6. The sludge dewatering device of claim 2, wherein: The spiral conveyor (8) and the low-temperature belt dewatering machine (7) are provided with a mounting interface, the spiral conveyor (8) is detachably connected with the low-temperature belt dewatering machine (7) through the mounting interface, the second scraper conveyor (9) and the low-temperature belt dewatering machine (7) are provided with a connecting port, and the second scraper conveyor (9) is detachably connected with the low-temperature belt dewatering machine (7) through the connecting port.