Movable sludge filter pressing complete device

The mobile sludge filter press system and conditioning system solve the sludge treatment problem during the upgrade and renovation of the sludge dewatering system, and realize the immediate reduction and treatment of sludge concentration. It is suitable for sewage treatment plants of different sizes.

CN224194194UActive Publication Date: 2026-05-05SHENZHEN BAOQINGTIAN ENVIRONMENTAL PROTECTION CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN BAOQINGTIAN ENVIRONMENTAL PROTECTION CO LTD
Filing Date
2025-05-22
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

The existing sludge dewatering system was unable to handle sludge during the upgrade and renovation, resulting in increased sludge concentration, which affected the effluent indicators and caused them to exceed the standards. Furthermore, the existing equipment and site limitations made treatment difficult.

Method used

A mobile sludge dewatering unit is provided, comprising a dewatering system and a conditioning system. Composed of a mobile dewatering system and a conditioning system, it can be directly transported to the wastewater treatment plant site for operation, achieving immediate treatment and concentration reduction of sludge.

Benefits of technology

It enables emergency treatment during the upgrading and renovation of sludge dewatering systems in wastewater treatment plants, reduces sludge concentration, meets the treatment needs of wastewater treatment plants of different sizes, and avoids exceeding effluent standards.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a movable sludge filter pressing complete device, and relates to the technical field of sludge dewatering equipment. The device comprises a filter pressing system and a conditioning system which are connected with each other, a diaphragm filter press of the filter pressing system is arranged on a flat car of the filter pressing system, a spiral conveyor is arranged at the bottom of the diaphragm filter press, and a feeding screw pump and a squeezing water tank are arranged on two opposite sides of the diaphragm filter press; a sludge conditioner water tank, a sludge conditioner and a sludge storage tank of the conditioning system are sequentially arranged on a conditioning system flat car; and the filter pressing system flat car is connected with the conditioning system flat car. The utility model provides a movable sludge filter-pressing complete device which consists of a movable filter-pressing system and a movable conditioning system, and can completely meet the functional requirement of sludge dewatering. The movable sludge filter pressing complete device can be directly hauled to a required sewage plant site to be put into operation, and the requirement for emergency treatment of the sludge in the sewage plant can be effectively met.
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Description

Technical Field

[0001] This utility model relates to the technical field of sludge dewatering equipment, and in particular to a mobile sludge filter press assembly. Background Technology

[0002] In the sludge dewatering industry, to address issues such as high transportation costs due to excessive sludge moisture content, overly simplistic disposal methods, and susceptibility to spoilage during sludge stockpiling, complete sets of equipment such as belt filter presses, screw presses, centrifugal dewatering machines, and plate and frame filter presses are commonly used to reduce sludge moisture content and increase its solids content, facilitating transportation and subsequent disposal. In the municipal sludge dewatering industry, if upgrades to existing sludge dewatering systems are necessary due to limited plant space, the existing system may need to be dismantled, leaving sludge unprocessed during the renovation period. In such cases, the concentration of residual sludge at the wastewater treatment plant will continue to rise, eventually causing effluent quality indicators to exceed standards. Similarly, if a wastewater treatment plant with an existing sludge dewatering system experiences a situation where the actual daily influent exceeds the design standard, resulting in daily sludge production exceeding the design standard, or if the sludge dewatering system's performance deteriorates and cannot meet the plant's daily sludge production requirements, the concentration of residual sludge at the wastewater treatment plant will also continue to rise, eventually causing effluent quality indicators to exceed standards. Utility Model Content

[0003] To address the aforementioned technical problems, this utility model proposes a mobile sludge filter press assembly. This mobile sludge filter press assembly is applied in sludge dewatering wastewater treatment plants. It can be promptly deployed to the required sludge dewatering wastewater treatment plants and put into operation after connecting to water, electricity, and sludge transport pipelines. It can solve the problem of sludge not being able to be processed during the upgrading and renovation of existing wastewater treatment plant sludge dewatering systems, as well as the problem of reducing the sludge concentration in the wastewater treatment system when used in conjunction with the wastewater treatment plant sludge dewatering system.

[0004] The objective of this utility model is achieved through the following technical solution:

[0005] A mobile sludge filter press assembly is provided, comprising a filter press system and a conditioning system connected to each other. The filter press system includes a filter press system flatbed trolley, a diaphragm filter press, a screw conveyor, a feed screw pump, and a pressing water tank. The diaphragm filter press is mounted on the filter press system flatbed trolley, the screw conveyor is located at the bottom of the diaphragm filter press, and the feed screw pump and pressing water tank are located on opposite sides of the diaphragm filter press. The conditioning system includes a conditioning system flatbed trolley, a sludge conditioner water tank, a sludge conditioner, and a sludge storage tank, which are sequentially mounted on the conditioning system flatbed trolley. The filter press system flatbed trolley and the conditioning system flatbed trolley are connected.

[0006] Furthermore, the filter press system also includes a first frame assembly, which is mounted on a filter press system flatbed vehicle. The diaphragm filter press is mounted inside the first frame assembly, and a wing frame assembly is mounted on top of the first frame assembly.

[0007] Preferably, the first frame assembly is connected to the filter press system flatbed truck via four corner vehicle locks.

[0008] Preferably, the screw conveyor is located at the lower part of the first frame assembly. The screw conveyor is used to transport the filtered cake out of the filter press system flatbed truck.

[0009] Furthermore, the filter press system also includes an inlet control cabinet and a filter press control cabinet. The inlet control cabinet is located inside the first frame assembly at the front of the diaphragm filter press, and the filter press control cabinet is located on one side of the inlet control cabinet.

[0010] Furthermore, the filter press system also includes a multi-stage centrifugal pump and a filter press pump station. The multi-stage centrifugal pump is installed in the first frame assembly at the tail end of the diaphragm filter press, and the filter press pump station is installed on one side of the multi-stage centrifugal pump.

[0011] Furthermore, the conditioning system also includes a second frame assembly, which is mounted on the conditioning system flatbed truck. The sludge conditioner tank, sludge conditioner, and sludge storage tank are all located within the second frame assembly.

[0012] Preferably, the second frame assembly is connected to the conditioning system flatbed truck via four corner vehicle locks.

[0013] Preferably, the conditioning system further includes a container cover. ( (For use in conditioning internal components to protect against wind and rain), the container cover is fixed to the second frame assembly by bolts.

[0014] Furthermore, the sludge conditioner tank includes a sludge conditioner A tank and a sludge conditioner B tank, with the sludge conditioner B tank positioned between the sludge conditioner A tank and the sludge conditioner.

[0015] Furthermore, the conditioning system also includes an air compressor and an air storage tank. The air compressor is located between the sludge conditioner and the sludge storage tank, and the air storage tank is located on one side of the air compressor.

[0016] Furthermore, the conditioning system also includes a sludge conditioner A delivery pump, a sludge conditioner B delivery pump, and a sludge delivery pump. The sludge conditioner A delivery pump is connected to the sludge conditioner A tank and the sludge conditioner, the sludge conditioner B delivery pump is connected to the sludge conditioner B tank and the sludge conditioner, and the sludge delivery pump is connected to the sludge conditioner.

[0017] The sludge transfer pump is also connected to the sludge storage tank of the water plant. The sludge transfer pump can transport the sludge from the sludge storage tank to the sludge conditioner for sludge conditioning and modification.

[0018] Furthermore, the mobile sludge filter press assembly also includes a main cable from the wastewater treatment plant to the mobile drying vehicle and a pipeline for the wastewater treatment plant's sludge into the conditioning system. The main cable from the wastewater treatment plant to the mobile drying vehicle is connected to the main inlet cabinet, and the pipeline for the wastewater treatment plant's sludge into the conditioning system is connected to the sludge conditioner.

[0019] Furthermore, the mobile sludge filter press assembly also includes a filtrate outlet pipe and a sludge intake pipe from the conditioning system for the filter press system. The filtrate outlet pipe is connected to the diaphragm filter press. The feed screw pump is connected to the sludge storage tank through the sludge intake pipe from the conditioning system for the filter press system. The screw conveyor is also equipped with a sludge cake outlet for the filter press system.

[0020] Preferably, the feed screw pump is connected to a diaphragm filter press.

[0021] Preferably, the mobile sludge filter press assembly further includes a cable from the filter press system to the conditioning system, and the filter press system and the conditioning system are electrically connected through the cable from the filter press system to the conditioning system.

[0022] This utility model provides a mobile sludge filter press assembly, which has the following advantages:

[0023] Composed of a mobile filter press system and a mobile conditioning system, these two systems can fully meet the functional requirements of sludge dewatering. The mobile sludge filter press unit composed of these two systems can be directly transported to the required wastewater treatment plant site and put into operation. It can effectively solve the emergency treatment requirements of wastewater treatment plants and meet the needs of wastewater treatment plants with different sludge treatment capacities. Attached Figure Description

[0024] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0025] Figure 1 This is a top view of the mobile sludge filter press assembly according to an embodiment of the present invention;

[0026] Figure 2 This is a side view of the filter press system according to an embodiment of the present invention;

[0027] Figure 3This is a top view of the filter press system according to an embodiment of the present invention;

[0028] Figure 4 for Figure 2 Schematic diagram of the structure in direction A;

[0029] Figure 5 for Figure 2 Schematic diagram of the structure in direction B;

[0030] Figure 6 This is a side view of the conditioning system according to an embodiment of the present invention;

[0031] Figure 7 This is a top view of the conditioning system according to an embodiment of the present invention.

[0032] Explanation of the markings in the image:

[0033] 1-First frame assembly; 2-Diaphragm filter press; 3-Feed screw pump; 4-Screw conveyor; 5-Filter press system flatbed trolley; 6-Filter press pump station; 7-Filter press control cabinet; 8-Inlet main cabinet; 9-Multistage centrifugal pump; 10-Flying wing frame assembly; 11-Pressing water tank; 12-Conditioning system flatbed trolley; 13-Sludge conditioner A water tank; 14-Second frame assembly; 15-Sludge conditioner B water tank; 16-Sludge conditioner; 17-Sludge storage tank Storage tank; 18-Sludge conditioner A transfer pump; 19-Sludge conditioner B transfer pump; 20-Sludge transfer pump; 21-Air compressor; 22-Air storage tank; 23-Main cable from wastewater treatment plant to mobile drying vehicle; 24-Filtrate outlet pipe; 25-Cable from filter press system to conditioning system; 26-Sludge inlet pipe from wastewater treatment plant to conditioning system; 27-Sludge extraction pipe from conditioning system to filter press system; 28-Filter press system; 29-Conditioning system; 30-Filter press system cake outlet. Detailed Implementation

[0034] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0035] It should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the product is in use. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the present invention.

[0036] In the description of this utility model, it should also be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0037] Example

[0038] Please see Figures 1-7 The mobile sludge filter press assembly shown includes a filter press system 28 and a conditioning system 29 connected to each other. The filter press system 28 is used to filter sludge to achieve solid-liquid separation; the conditioning system 29 conditions and modifies the sludge.

[0039] The filter press system 28 includes a filter press system flatbed trolley 5, a diaphragm filter press 2, a screw conveyor 4, a feed screw pump 3, and a pressing water tank 11. The diaphragm filter press 2 is mounted on the filter press system flatbed trolley 5, the screw conveyor 4 is located at the bottom of the diaphragm filter press 2, and the feed screw pump 3 and the pressing water tank 11 are located on opposite sides of the diaphragm filter press 2. The filter press system flatbed trolley 5 is used to transport the filter press system 28 and serves as its working platform. The diaphragm filter press 2 has diaphragm filter plate chambers, each containing filter cloth. Wastewater enters the diaphragm filter press 2 and passes through the filter cloth for sludge-water separation. Sludge is retained in the diaphragm filter plate chambers, while the filtrate is discharged, thus achieving solid-liquid separation. The feed screw pump 3 is connected to the diaphragm filter press 2 and is used to feed sludge into the diaphragm filter press 2.

[0040] The filter press system 28 also includes a first frame assembly 1, which is mounted on the filter press system flatbed trolley 5. The diaphragm filter press 2 is mounted inside the first frame assembly 1, and a wing frame assembly 10 is mounted on top of the first frame assembly 1. In this embodiment, the screw conveyor 4 is located at the lower part of the first frame assembly 1 and at the bottom of the diaphragm filter press 2. The filtered mud cake is output from the filter press system 28 via the screw conveyor 4. The pressing water tank 11 is used to store pressing water for secondary pressing of the mud cake to reduce its moisture content. The first frame assembly 1 supports the diaphragm filter press 2, the multi-stage centrifugal pump 9, the feed screw pump 3, and the screw conveyor 4. In this embodiment, the first frame assembly 1 is connected to the filter press system flatbed trolley 5 via four corner locks. In this embodiment, the flying wing frame assembly 10 includes a rain shelter structure and a pedestrian walkway step that are connected to each other. The rain shelter structure and the pedestrian walkway step can be opened or closed, so that the rain shelter structure and the pedestrian walkway step can be opened during production and operation, and closed during the transfer process. The rain shelter structure and the pedestrian walkway step are attached to the top side wall of the first frame assembly 1 to realize the overall enclosure of the filter press system 28.

[0041] The filter press system 28 also includes an inlet main cabinet 8, a filter press control cabinet 7, a multi-stage centrifugal pump 9, and a filter press pump station 6. The inlet main cabinet 8 is located within the first frame assembly 1, at the front of the diaphragm filter press 2, and the filter press control cabinet 7 is located to one side of the inlet main cabinet 8. The multi-stage centrifugal pump 9 is located within the first frame assembly 1, at the rear of the diaphragm filter press 2, and the filter press pump station 6 is located to one side of the multi-stage centrifugal pump 9. The filter press pump station 6 is used for the extension and retraction of the hydraulic cylinders of the diaphragm filter press 2, and the filter press control cabinet 7 is used to control the operation of the diaphragm filter press 2. The mobile sludge filter press assembly also includes a main cable 23 from the wastewater treatment plant to the mobile drying vehicle, which connects to the inlet main cabinet 8. The inlet main cabinet 8 provides power to the entire mobile sludge filter press assembly. The multi-stage centrifugal pump 9 is used for pressing, pumping the pressed water into the diaphragm filter plate chamber of the diaphragm filter press 2. The diaphragm filter plate in the diaphragm filter plate chamber forms a squeezing force on the mud cake, squeezing out the water from the mud cake.

[0042] The conditioning system 29 includes a conditioning system flatbed trolley 12, a sludge conditioner tank, a sludge conditioner 16, and a sludge storage tank 17, all sequentially mounted on the conditioning system flatbed trolley 12. The filter press system flatbed trolley 5 is connected to the conditioning system flatbed trolley 12. The conditioning system flatbed trolley 12 serves as a platform for transporting the conditioning system 29. In this embodiment, the mobile sludge filter press assembly also includes a tractor unit; the filter press system flatbed trolley 5 and the conditioning system flatbed trolley 12 are quickly transferred via the tractor unit. The conditioning system 29 also includes a second frame assembly 14, mounted on the conditioning system flatbed trolley 12. The sludge conditioner tank, sludge conditioner 16, and sludge storage tank 17 are all housed within the second frame 14. In this embodiment, the second frame assembly 14 is connected to the conditioning system flatbed trolley 12 via four corner vehicle locks. The conditioning system 29 also includes a container cover, which is bolted to the second frame assembly 14 and serves to protect the internal components of the conditioning system 29 from wind and rain. The sludge conditioner tanks include a sludge conditioner A tank 13 and a sludge conditioner B tank 15, with the sludge conditioner B tank 15 positioned between the sludge conditioner A tank 13 and the sludge conditioner 16. The conditioning system 29 also includes an air compressor 21 and an air tank 22, with the air compressor 21 positioned between the sludge conditioner 16 and the sludge storage tank 17, and the air tank 22 located to one side of the air compressor 21. The conditioning system flatbed trolley 12 supports the sludge storage tank 17, the sludge conditioner tanks, the sludge conditioner 16, the air compressor 21, and the air tank 22. Tank 13 for sludge conditioner A is used to hold sludge conditioner A solution, and tank 15 for sludge conditioner B is used to hold sludge conditioner B solution. Sludge conditioner 16 is used to condition the sludge. Sludge storage tank 17 is used for conditioning, mixing, and storing sludge. Air compressor 21 is used to supply compressed air to the entire mobile sludge filter press. Air tank 22 is used for temporary storage of compressed air.

[0043] The conditioning system 29 also includes a sludge conditioner A delivery pump 18, a sludge conditioner B delivery pump 19, and a sludge delivery pump 20. The second frame assembly 14 supports the sludge storage tank 17, the sludge conditioner 16, the sludge conditioner water tank, the sludge conditioner A delivery pump 18, the sludge conditioner B delivery pump 19, and the container cover. The sludge conditioner A delivery pump 18 connects the sludge conditioner A water tank 13 and the sludge conditioner 16; the sludge conditioner B delivery pump 19 connects the sludge conditioner B water tank 15 and the sludge conditioner 16; and the sludge delivery pump 20 connects to the sludge conditioner 16. Specifically, the sludge conditioner A delivery pump 18 delivers the sludge conditioner A solution, and the sludge conditioner B delivery pump 19 delivers the sludge conditioner B solution. The sludge delivery pump 20 transports the wastewater treatment plant sludge into the sludge conditioner 16 for sludge conditioning and modification.

[0044] The mobile sludge filter press assembly also includes a sludge inlet pipe 26 for the wastewater treatment plant's sludge conditioning system, which is connected to a sludge conditioner 16. The mobile sludge filter press assembly also includes a filtrate outlet pipe 24 and a sludge extraction pipe 27 for the filter press system from the conditioning system. The filtrate outlet pipe 24 is connected to a diaphragm filter press 2. The feed screw pump 3 is connected to a sludge storage tank 17 via the sludge extraction pipe 27. The screw conveyor 4 is also equipped with a filter press system cake outlet 30. In this embodiment, the mobile sludge filter press assembly also includes a cable 25 connecting the filter press system to the conditioning system, and the filter press system 28 and the conditioning system 29 are electrically connected via the cable 25.

[0045] The working principle of the mobile sludge filter press unit is as follows:

[0046] The filter press system flatbed truck 5 and the conditioning system flatbed truck 12 are transported to the required wastewater treatment plant site and placed there using a tractor unit. The sludge conditioner 16 is connected to the wastewater treatment plant sludge inlet conditioning system pipe 26, and the filter press system 28 and conditioning system 29 are electrically connected via the filter press system to conditioning system cable 25, thus connecting the cables and sludge inlet pipes between the conditioning system 29 and the filter press system 28. A main cable (sludge plant to mobile drying vehicle main cable 23) is connected from the wastewater treatment plant to the main inlet cabinet 8 of the filter press system 28. Sludge from the wastewater treatment plant sludge storage tank is pumped through the sludge transfer pump 20 and fed into the sludge conditioner 16 of the conditioning system 29 via the pipe (sludge inlet conditioning system pipe 26). A filtrate pipe (filtrate outlet pipe 24) is connected to the wastewater treatment plant's wastewater well. At this point, the pipes and cables between the filter press system 28 and the conditioning system 29 are connected, and the mobile sludge filter press unit can be put into operation with power and water supply.

[0047] First, sludge is fed from the sludge storage tank of the wastewater treatment plant into the sludge conditioner 16 of the conditioning system 29. Simultaneously, sludge conditioner A delivery pump 18 and sludge conditioner B delivery pump 19 simultaneously feed sludge conditioners A and B into the sludge conditioner 16 for sludge mixing and conditioning modification. After sufficient conditioning and modification in the sludge conditioner 16, the sludge is temporarily stored in the sludge storage tank 17. The sludge storage tank 17 is connected to the feed screw pump 3 via a pipeline (the sludge intake pipeline 27 from the conditioning system in the filter press system). The feed screw pump 3 delivers the sludge conditioner... The sludge is fed into the diaphragm filter press 2. After the diaphragm filter press 2 is filled with sludge, the multi-stage centrifugal pump 9 is started to input the pressing water into the diaphragm filter plate chamber of the diaphragm filter press, which squeezes and presses the sludge cake to remove water and reduce the moisture content of the sludge cake. The filtrate water is discharged into the sewage well of the sewage treatment plant through the filtrate outlet pipe 24. After pressing, the pressing water is discharged into the pressing water tank 11. The diaphragm filter press 2 unloads the sludge, and the sludge cake is unloaded and falls into the screw conveyor 4 and output from the filter press system 28 to the sludge cake transfer vehicle. This completes the sludge dewatering. At the same time, the air compressor 21 and the air storage tank 22 in the conditioning system 29 form a compressed air system, which is used for the pneumatic valves of the whole system, and provides power to ensure that the sludge in the sludge storage tank 17 is in a disturbed state, replacing the setting of a mixer.

[0048] This utility model provides a mobile sludge filter press assembly, which has the following advantages:

[0049] Composed of a mobile filter press system and a mobile conditioning system, these two systems can fully meet the functional requirements of sludge dewatering. The mobile sludge filter press unit composed of these two systems can be directly transported to the required wastewater treatment plant site and put into operation. It can effectively solve the emergency treatment requirements of wastewater treatment plants and meet the needs of wastewater treatment plants with different sludge treatment capacities.

[0050] In another embodiment, the mobile sludge filter press unit can combine the filter press system and the conditioning system into multiple sets to meet the needs of wastewater treatment plants with different sludge treatment capacities.

[0051] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any person skilled in the art can easily conceive of various equivalent modifications or substitutions within the technical scope disclosed in this utility model, and these modifications or substitutions should all be covered within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.

Claims

1. A mobile sludge filter press assembly, characterized in that, The system includes an interconnected filter press system and a conditioning system. The filter press system comprises a filter press system trolley, a diaphragm filter press, a screw conveyor, a feed screw pump, and a pressing water tank. The diaphragm filter press is mounted on the filter press system trolley, the screw conveyor is located at the bottom of the diaphragm filter press, and the feed screw pump and pressing water tank are located on opposite sides of the diaphragm filter press. The conditioning system comprises a conditioning system trolley, a sludge conditioner water tank, a sludge conditioner, and a sludge storage tank. The sludge conditioner water tank, sludge conditioner, and sludge storage tank are sequentially mounted on the conditioning system trolley. The filter press system trolley and the conditioning system trolley are connected.

2. The mobile sludge filter press assembly as described in claim 1, characterized in that, The filter press system also includes a first frame assembly, which is mounted on a filter press system flatbed truck. The diaphragm filter press is mounted inside the first frame assembly, and a wing frame assembly is mounted on top of the first frame assembly.

3. The mobile sludge filter press assembly as described in claim 2, characterized in that, The filter press system also includes an inlet control cabinet and a filter press control cabinet. The inlet control cabinet is located inside the first frame assembly at the front of the diaphragm filter press, and the filter press control cabinet is located on one side of the inlet control cabinet.

4. The mobile sludge filter press assembly as described in claim 3, characterized in that, The filter press system also includes a multi-stage centrifugal pump and a filter press pump station. The multi-stage centrifugal pump is installed in the first frame assembly at the tail end of the diaphragm filter press, and the filter press pump station is installed on one side of the multi-stage centrifugal pump.

5. The mobile sludge filter press assembly as described in claim 4, characterized in that, The conditioning system also includes a second frame assembly, which is mounted on a flatbed truck of the conditioning system. The sludge conditioner tank, sludge conditioner, and sludge storage tank are all located within the second frame assembly.

6. The mobile sludge filter press assembly as described in claim 5, characterized in that, The sludge conditioner tank includes a sludge conditioner A tank and a sludge conditioner B tank, with the sludge conditioner B tank located between the sludge conditioner A tank and the sludge conditioner.

7. The mobile sludge filter press assembly as described in claim 6, characterized in that, The conditioning system also includes an air compressor and an air tank. The air compressor is located between the sludge conditioner and the sludge storage tank, and the air tank is located on one side of the air compressor.

8. The mobile sludge filter press assembly as described in claim 7, characterized in that, The conditioning system also includes a sludge conditioner A delivery pump, a sludge conditioner B delivery pump, and a sludge delivery pump. The sludge conditioner A delivery pump is connected to the sludge conditioner A tank and the sludge conditioner. The sludge conditioner B delivery pump is connected to the sludge conditioner B tank and the sludge conditioner. The sludge delivery pump is connected to the sludge conditioner.

9. The mobile sludge filter press assembly as described in claim 8, characterized in that, It also includes the main cable from the wastewater treatment plant to the mobile drying vehicle and the pipeline for the wastewater treatment plant sludge into the conditioning system. The main cable from the wastewater treatment plant to the mobile drying vehicle is connected to the main inlet cabinet, and the pipeline for the wastewater treatment plant sludge into the conditioning system is connected to the sludge conditioner.

10. The mobile sludge filter press assembly as described in claim 9, characterized in that, It also includes a filtrate outlet pipe and a sludge intake pipe from the conditioning system to the filter press system. The filtrate outlet pipe is connected to the diaphragm filter press. The feed screw pump is connected to the sludge storage tank through the sludge intake pipe from the conditioning system to the filter press system. The screw conveyor is also equipped with a sludge cake outlet for the filter press system.