A mobile intelligent wall protection slurry purification and storage device
Patent Information
- Application Number
- CN202522107817.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-30
- Publication Date
- 2026-09-08
- Estimated Expiration
- 2035-09-30
AI Technical Summary
[0003]实际工况中施工部位存在较为集中的情况,当施工部位需要频繁转场时,制浆站及沉淀池等附属设施无法转移,只能增加设施数量,费时费力,成本高昂
[0014]根据本申请实施例提供的技术方案,所述牵引系统上还设置有电力系统,用于供电;所述储浆箱顶部设置有人孔。
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Figure CN224723801U_ABST
Abstract
Description
Technical Field
[0001] This disclosure relates to the field of building construction technology, specifically to a mobile intelligent wall-protecting slurry purification and storage device. Background Technology
[0002] During the construction of cutoff walls and pile foundations, a protective grout is needed to protect the borehole (trench) walls during drilling to prevent collapse. The protective grout needs to be recycled, but a certain amount is lost with each cycle, requiring timely replenishment. Therefore, a fixed grout preparation station needs to be established on the construction site to replenish the grout as needed. Simultaneously, a settling tank needs to be built to settle and clarify the recovered grout. Grout preparation stations and settling tanks have become essential facilities for pile foundation and cutoff wall construction projects.
[0003] In actual construction conditions, construction sites are often concentrated. When frequent relocation is required, auxiliary facilities such as the slurry preparation station and sedimentation tank cannot be moved, necessitating an increase in the number of facilities, which is time-consuming, labor-intensive, and costly. Furthermore, during pouring, the slurry overflowing from the trench needs to be pumped back to the sedimentation tank. Heavier sludge settles to the bottom and separates from the lighter slurry, a lengthy process that results in siltation at the bottom of the sedimentation tank. If the sedimentation tank is too small, frequent dredging is necessary, which is time-consuming and labor-intensive; conversely, an excessively large sedimentation tank significantly increases construction costs.
[0004] To address this, we propose a mobile intelligent wall-protecting slurry purification and storage device. Utility Model Content
[0005] In view of the above-mentioned defects or deficiencies in the prior art, it is desirable to provide a mobile intelligent wall-protecting slurry purification and storage device.
[0006] This application provides a mobile intelligent wall-protecting slurry purification and storage device, comprising: A slurry storage system, wherein the slurry storage system stores a wall-protecting slurry; A slurry sedimentation system for settling the wall-protecting slurry containing silt and sand; A slurry recovery and purification system is installed at the top of the slurry storage system and connected to the slurry storage system. It is used to recover the wall-protecting slurry containing silt and sand, and to transport a fully filtered portion of the wall-protecting slurry into the slurry storage system, and to transport the incompletely filtered portion of the wall-protecting slurry into the slurry sedimentation system. A sedimentation and recovery system, which connects the slurry storage system and the slurry sedimentation system, is used to recover the settled wall-protecting slurry back into the slurry storage system; A traction system for transporting the slurry storage system and the slurry sedimentation system.
[0007] According to the technical solution provided in the embodiments of this application, the slurry storage system includes a slurry storage tank, the slurry sedimentation system includes a sedimentation tank, and both the slurry storage tank and the sedimentation tank are fixedly installed on the traction system.
[0008] According to the technical solution provided in the embodiments of this application, the slurry recovery and purification system includes: A fixing device is fixedly installed on the top of the slurry storage tank, and includes two fixing parts that are connected to each other, forming an installation space between the two fixing parts, and the installation space is in communication with the inside of the slurry storage tank; A filter is disposed within the installation space. The filter has a housing with multiple leakage holes extending through its circumferential sidewalls, and a filter membrane is disposed inside the housing.
[0009] According to the technical solution provided in the embodiments of this application, the filter has a first input end and a first output end at its two ends. The first input end is connected to a recovery pump through a slurry recovery pipeline for recovering wall protection slurry containing mud and sand. The first output end is connected to a three-way pipe. The three-way pipe has a second input end, a second output end and a third output end. The second input end is connected to the first output end. The second output end is connected to the inside of the sedimentation tank through a sedimentation pipeline, which is used to transport the incompletely filtered wall protection slurry to the inside of the sedimentation tank. The third output end is connected to the inside of the slurry storage tank through an emergency recovery pipeline.
[0010] According to the technical solution provided in the embodiments of this application, the sedimentation and recovery system includes a sedimentation and recovery interface, which is connected to the interior of the sedimentation tank through a sedimentation and recovery pipeline, and is used to recover the wall-protecting slurry after sedimentation in the sedimentation tank.
[0011] According to the technical solution provided in the embodiments of this application, a slurry discharge port is provided on the side wall of the slurry storage tank, which is connected to a slurry discharge pipeline for outputting wall protection slurry to the construction area. The discharge port is equipped with a first control valve, the second output end is equipped with a second control valve, and the third output end is equipped with a third control valve.
[0012] According to the technical solution provided in the embodiments of this application, a level gauge is also provided on the slurry storage tank for real-time monitoring of the volume of the wall-protecting slurry in the slurry storage tank.
[0013] According to the technical solution provided in the embodiments of this application, a control system is also included. The control system includes a control module disposed on the traction system. The control module is electrically connected to the first control valve, the second control valve, the third control valve, and the level gauge. The control system also includes a controller, which is electrically connected to the control module.
[0014] According to the technical solution provided in the embodiments of this application, the traction system is also equipped with an electrical system for power supply; and a manhole is provided on the top of the slurry storage tank.
[0015] According to the technical solution provided in the embodiments of this application, a one-way air intake valve is provided on the three-way pipe.
[0016] In summary, this technical solution specifically discloses a mobile intelligent wall-protecting slurry purification and storage device, including a slurry storage system that stores wall-protecting slurry; a slurry sedimentation system for sedimenting wall-protecting slurry containing silt; a slurry recovery and purification system located at the top of the slurry storage system for recovering wall-protecting slurry containing silt, and transporting fully filtered wall-protecting slurry to the slurry storage system, while transporting incompletely filtered wall-protecting slurry to the slurry sedimentation system; a sedimentation and recovery system connecting the slurry storage system and the slurry sedimentation system for recovering the sedimented wall-protecting slurry back to the slurry storage system; and a traction system for transporting the slurry storage system and the slurry sedimentation system to different construction areas. The traction system facilitates the transfer of slurry storage and sedimentation systems, enabling slurry discharge and recycling in different construction areas. It also allows for the diversion of slurry containing silt and sand, with a portion being fully filtered and returned to the slurry storage system, while the remaining partially filtered portion enters the sedimentation system for settling and subsequent recycling. Compared to existing technologies where auxiliary facilities such as slurry preparation stations and sedimentation tanks cannot be transferred and sedimentation times are long, this equipment can transfer slurry storage and sedimentation systems and divert slurry containing silt and sand, shortening sedimentation time and saving costs. Attached Figure Description
[0017] Other features, objects, and advantages of this application will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings: Figure 1 This is a schematic diagram of a mobile intelligent wall-protecting slurry purification and storage device.
[0018] Figure 2 This is a schematic diagram of a slurry storage tank.
[0019] Figure 3 This is a schematic diagram of a T-junction.
[0020] Figure 4 This is a schematic diagram of a filter.
[0021] Figure 5 This is a schematic diagram of a sedimentation and recovery pipeline.
[0022] Numbered in the diagram: 1. Slurry storage system; 2. Slurry sedimentation system; 3. Slurry recovery and purification system; 4. Traction system; 5. Slurry storage tank; 6. Sedimentation tank; 7. Fixing device; 8. Filter; 9. Slurry recovery pipeline; 10. Recovery pump; 11. T-junction; 12. Sedimentation pipeline; 13. Emergency recovery pipeline; 14. Sedimentation recovery interface; 15. Sedimentation recovery pipeline; 16. Slurry discharge port; 17. Slurry discharge pipeline; 18. First control valve; 19. Second control valve; 20. Third control valve; 21. Level gauge; 22. Control module; 23. Power system; 24. Manhole; 25. One-way air inlet valve; 26. Traction vehicle. Detailed Implementation
[0023] The present application will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the relevant utility model and not intended to limit the scope of the utility model. Furthermore, it should be noted that, for ease of description, only the parts relevant to the utility model are shown in the accompanying drawings.
[0024] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. This application will now be described in detail with reference to the accompanying drawings and embodiments.
[0025] Please refer to Figure 1 and Figure 2 A mobile intelligent wall-protecting slurry purification and storage device, comprising: Slurry storage system 1, which stores wall-protecting slurry inside; Slurry sedimentation system 2 is used to settle the wall protection slurry containing mud and sand; The slurry recovery and purification system 3 is located on top of the slurry storage system 1 and is connected to the slurry storage system 1. It is used to recover the wall protection slurry containing mud and sand, and to transport a portion of the fully filtered wall protection slurry into the slurry storage system 1, and to transport the other portion of the incompletely filtered wall protection slurry into the slurry sedimentation system 2. The sedimentation and recovery system connects the slurry storage system 1 and the slurry sedimentation system 2, and is used to recover the settled wall protection slurry into the slurry storage system 1. The traction system 4 is used to transport the slurry storage system 1 and the slurry sedimentation system 2.
[0026] Specifically, the slurry recovery and purification system 3 can recover and filter excess wall protection slurry in the construction area. When the wall protection slurry is recovered, it contains a large amount of mud and sand. The wall protection slurry containing mud and sand is divided into two parts during the process of the slurry recovery and purification system 3. One part is completely filtered and enters the slurry storage system 1 directly through the connection between the slurry recovery and purification system 3 and the slurry storage system 1. The other part of the wall protection slurry containing mud and sand that is not completely filtered is transported to the slurry sedimentation system 2. After a period of sedimentation, the mud and sand and other impurities sink down, and the clear wall protection slurry floats up. The wall protection slurry is then recovered into the slurry storage system 1 through the sedimentation and recovery system. Therefore, by dividing the wall-protecting slurry containing silt into two parts for recycling, compared with the existing technology that uses a sedimentation tank for long-term sedimentation before recycling, the slurry recycling and purification system 3 of this application improves the recycling and purification efficiency and saves time; at the same time, the slurry storage system 1 and the slurry sedimentation system 2 are transported by the traction system 4, which facilitates transfer to different construction areas and saves costs.
[0027] The traction system 4 includes a tractor 26, which has a frame capable of carrying the equipment and wheels that support and transport the frame. The slurry storage system 1 and the slurry sedimentation system 2 are both fixedly mounted on the frame. The tractor 26 is a vehicle with a separate power system, which can be a semi-trailer, a separate trailer, etc., to provide sufficient traction for the entire equipment to achieve transportation.
[0028] Furthermore, the slurry storage system 1 includes a slurry storage tank 5, and the slurry sedimentation system 2 includes a sedimentation tank 6. Both the slurry storage tank 5 and the sedimentation tank 6 are fixedly installed on the traction system 4.
[0029] Among them, the slurry storage tank 5 is a hollow steel box, and its volume can be customized according to the amount of wall protection slurry used and the traction force limitation; the sedimentation tank 6 can be a box with an open top.
[0030] Furthermore, such as Figure 3 and Figure 4 As shown, the slurry recovery and purification system 3 includes: The fixing device 7 is fixedly installed on the top of the slurry storage tank 5, and includes two fixing parts that are connected to each other, forming an installation space between the two fixing parts, and the installation space is connected to the inside of the slurry storage tank 5. Filter 8 is installed in the installation space. Filter 8 has a housing with multiple leakage holes through the circumferential sidewalls of the housing and a filter membrane inside the housing.
[0031] Specifically, by separating the two fixing parts, placing the filter 8 into the installation space, and then closing and connecting the two fixing parts, splashing of mud and slurry can be avoided during the filtration process of the wall protection slurry containing mud and sand. The filter 8 can be a tubular filter device with an outer shell made of rigid material and a leakage hole. Inside is a filter membrane, the density of which can be selected according to the type of wall protection slurry used and the soil conditions at the construction site.
[0032] The wall-protecting slurry containing silt enters the filter 8. Part of it is completely filtered through the filter membrane and enters the installation space. It then enters the storage tank 5 through the connection between the installation space and the storage tank 5. The other part is not completely filtered and flows through the filter 8 while flushing the filter membrane to prevent it from becoming clogged. The wall-protecting slurry used to flush the filter membrane will flow to the sedimentation tank 6 along with the silt. The wall-protecting slurry that has undergone sedimentation treatment can be returned to the storage tank 5 through the sedimentation and recovery system. The remaining silt in the sedimentation tank 6 can be discharged through the drain outlet at the bottom of the sedimentation tank 6 with water for harmless treatment or reuse, which facilitates the cleaning of the sedimentation tank 6.
[0033] Furthermore, the filter 8 has a first input end and a first output end at its two ends, respectively. The first input end is connected to the recovery pump 10 through the slurry recovery pipeline 9 for recovering the wall protection slurry containing mud and sand. The first output end is connected to a three-way pipe 11. The three-way pipe 11 has a second input end, a second output end and a third output end. The second input end is connected to the first output end. The second output end is connected to the inside of the sedimentation tank 6 through the sedimentation pipe 12, which is used to transport the incompletely filtered wall protection slurry to the inside of the sedimentation tank 6. The third output end is connected to the inside of the slurry storage tank 5 through the emergency recovery pipe 13.
[0034] Specifically, the construction area contains wall-protecting slurry mixed with mud and sand. When recovering the wall-protecting slurry mixed with mud and sand, the recovery pump is started and the slurry is input to the filter 8 through the slurry recovery pipeline 9. Part of it is completely filtered and enters the slurry storage tank 5, while the other part is not completely filtered and enters the three-way pipe 11 from the first output end, and then enters the sedimentation tank 6 through the sedimentation pipeline 12 through the second output end. When the pouring construction is fast, the recovery speed of the wall protection slurry needs to be accelerated. At this time, the second output end can be closed and the third output end can be opened. The wall protection slurry mixed with mud and sand will completely enter the slurry storage tank 5. Later, the slurry storage tank 5 can be cleaned manually.
[0035] Furthermore, such as Figure 5 As shown, the sedimentation and recovery system includes a sedimentation and recovery interface 14, which is connected to the interior of the sedimentation tank 6 through a sedimentation and recovery pipeline 15, and is used to recover the wall-protecting slurry after sedimentation in the sedimentation tank 6.
[0036] Specifically, the sedimentation recovery pipeline 15 and the sedimentation recovery interface 14 can be connected by a flange. A spherical leakage device is provided at the end of the sedimentation recovery pipeline 15 away from the sedimentation recovery interface 14. The device can be a hollow sphere with an opening on the upper part of its outer wall. The bottom of the spherical leakage device contacts the sediment in the lower layer after sedimentation, and the opening is used to introduce the clarified wall protection slurry in the upper layer after sedimentation, thereby preventing the sediment from flowing in. The clarified wall protection slurry in the upper layer is sucked in and transported to the slurry storage tank 5 through the siphon effect, thus completing the recovery operation of the wall protection slurry in the sedimentation tank 6.
[0037] Furthermore, a slurry discharge port 16 is provided on the side wall of the slurry storage tank 5, which is connected to a slurry discharge pipeline 17 for discharging the wall protection slurry to the construction area. The discharge port 16 is equipped with a first control valve 18, the second output port is equipped with a second control valve 19, and the third output port is equipped with a third control valve 20.
[0038] Specifically, during construction, the wall-protecting slurry inside the slurry storage tank 5 is discharged through the slurry discharge port 16 and discharged through the slurry discharge pipe 17. The slurry discharge port 16 and the slurry discharge pipe 17 can be connected by a flange.
[0039] Furthermore, a level gauge 21 is also installed on the slurry storage tank 5 to monitor the volume of the wall-protecting slurry in the slurry storage tank 5 in real time.
[0040] Furthermore, it also includes a control system, which includes a control module 22 disposed on the traction system 4. The control module 22 is electrically connected to the first control valve 18, the second control valve 19, the third control valve 20 and the level gauge 21. The control system also includes a controller, which is electrically connected to the control module 22.
[0041] Specifically, the controller control system can be a remote display and control device, consisting of a general-purpose PLC or microcontroller and a handheld display device. It can wirelessly transmit signals with the signal forwarding circuit in the slurry tank control box. The power supply of the remote display and control device can be supplied by a battery or directly by mains power. The control module 22 is installed on the tractor 26. It is a general-purpose PLC or microcontroller, and the controller is a handheld display device. It can be controlled by the operators in the construction area. The operator can send or receive signals to the control module 22 to control the first control valve 18, the second control valve 19, the third control valve 20, and display the monitoring results of the liquid level gauge 21.
[0042] Furthermore, the traction system 4 is also equipped with an electrical system 23 for power supply; a manhole 24 is provided on the top of the slurry storage tank 5.
[0043] Specifically, the power system is installed on the tractor 26 and is a general-purpose generator with a battery, which can stably output 380V and 220V voltage, and the power can meet the power needs of all equipment; the manhole 24 is used for the entry and exit of the workers when cleaning the slurry tank 5 regularly.
[0044] Furthermore, a one-way air intake valve 25 is provided on the three-way pipe 11.
[0045] Specifically, air is supplied into the three-way pipe 11 through the one-way air inlet valve 25 to eliminate the siphon effect of the sedimentation pipe 12. More specifically, the incompletely filtered wall-protecting slurry containing silt is transported to the sedimentation tank 6 through the second output end. To avoid the negative pressure generated in the three-way pipe 11 during the transportation process, which would cause a siphon effect and quickly suck away the wall-protecting slurry containing silt, thus reducing the filtration efficiency of the wall-protecting slurry containing silt, air is supplied into the three-way pipe 11 through the one-way air inlet valve 25 to ensure that the air pressure at both ends of the sedimentation pipe 12 is consistent, thereby ensuring the normal filtration of the wall-protecting slurry containing silt.
[0046] Working principle: The equipment is moved to the construction area by the traction system 4 and parked securely before normal construction can begin.
[0047] The operator in the construction area sends a signal to the control module 22 through the handheld controller to open the first control valve 18. The wall-protecting slurry in the slurry storage tank 5 flows to the construction area along the slurry discharge pipeline 17 under the action of gravity. At this time, the opening degree of the first control valve 18 can be adjusted by the controller to adapt to the on-site trenching (hole) progress. When the grout discharge volume meets the demand of the construction area, the first control valve 18 is closed by the controller.
[0048] After the pouring operation begins, the recovery pump 10 needs to be turned on to promptly recover excess wall-protecting slurry from the site. At this time, the wall-protecting slurry contains a large amount of mud and sand. To prevent the mud and sand from flowing into the storage tank 5, the second control valve 19 is opened. When the recovered wall-protecting slurry containing mud and sand returns to the filter 8, the wall-protecting slurry that has been completely filtered through the filter membrane in the filter 8 will flow into the storage tank 5 through the leakage hole, while the wall-protecting slurry that has not been completely filtered and contains a large amount of mud and sand will flow into the sedimentation tank 6 through the sedimentation pipe 12 for sedimentation and clarification. During the slurry recovery process, if the filtration efficiency of the wall-protecting slurry is low, the opening of the second control valve 19 can be adjusted appropriately to reduce the flow rate of the turbid wall-protecting slurry and increase the internal pressure of the filter to accelerate filtration.
[0049] To eliminate the siphon effect of the sedimentation pipe 12, a one-way air inlet valve 25 is installed on the three-way pipe 11, which ensures that the sedimentation pipe 12 cannot create negative pressure on the filter.
[0050] When the pouring construction is fast, the recovery speed of the wall protection slurry needs to be accelerated. At this time, the second control valve 19 can be closed and the third control valve 20 can be opened. The wall protection slurry mixed with a large amount of mud and sand will completely enter the slurry storage tank 5. Later, the slurry storage tank 5 can be cleaned manually.
[0051] The level gauge 21 on the slurry tank 5 can monitor the slurry volume in the slurry tank 5 in real time and send a capacity signal to the controller.
[0052] The filter in this equipment is a tangential filter, meaning that the wall-protecting slurry flowing through the filter is divided into two parts. One part passes through the filter membrane and is completely filtered before entering the slurry storage tank 5, while the other part is not completely filtered and is flushed during its passage through the filter to prevent clogging. The incompletely filtered wall-protecting slurry flows to the sedimentation tank 6 along with the silt. The wall-protecting slurry that has undergone sedimentation treatment can be connected to the wall-protecting slurry in the slurry storage tank 5 through the sedimentation recovery pipeline 15. During the next slurry discharge, the clarified wall-protecting slurry in the sedimentation tank will flow to the construction area together with the wall-protecting slurry in the slurry storage tank 5. The remaining silt in the sedimentation tank 6 can be discharged with water through the drain outlet at the bottom of the sedimentation tank 6 for harmless treatment or reuse.
[0053] The above description is merely a preferred embodiment of this application and an explanation of the technical principles employed. Those skilled in the art should understand that the scope of the utility model involved in this application is not limited to the technical solutions formed by specific combinations of the above-described technical features, but should also cover other technical solutions formed by arbitrary combinations of the above-described technical features or their equivalents without departing from the inventive concept. For example, technical solutions formed by substituting the above features with (but not limited to) technical features with similar functions disclosed in this application.
Claims
1. A mobile intelligent wall protection slurry purification and storage device, characterized in that, The utility model relates to a wall protection slurry storage system, which comprises: a slurry storage system (1) for storing wall protection slurry inside; a slurry sedimentation system (2) for sedimenting the wall protection slurry with silt; a slurry recovery and purification system (3) arranged on the top of the slurry storage system (1) and communicating with the slurry storage system (1), for recovering the wall protection slurry with silt, and conveying a part of the wall protection slurry completely filtered to the inside of the slurry storage system (1) and another part of the wall protection slurry incompletely filtered to the inside of the slurry sedimentation system (2); a sedimentation recovery system communicating the slurry storage system (1) and the slurry sedimentation system (2), for recovering the wall protection slurry after sedimentation to the slurry storage system (1); a traction system (4) for carrying the slurry storage system (1) and the slurry sedimentation system (2).
2. The mobile intelligent diaphragm slurry purification and storage equipment according to claim 1, characterized in that, The slurry storage system (1) comprises a slurry storage tank (5), and the slurry sedimentation system (2) comprises a sedimentation tank (6), both of which are fixedly arranged on the traction system (4).
3. The mobile intelligent diaphragm slurry purification and storage equipment according to claim 2, characterized in that, The slurry recovery and purification system (3) comprises: a fixing device (7) fixedly arranged on the top of the slurry storage tank (5) and comprising two fixed parts connected in butt joint, an installation space being formed between the two fixed parts and communicating with the inside of the slurry storage tank (5); a filter (8) arranged in the installation space, the filter (8) having a shell, a plurality of liquid leakage holes being arranged through the circumferential sidewall of the shell, and a filter membrane being arranged in the shell.
4. The mobile intelligent diaphragm slurry purification and storage equipment according to claim 3, characterized in that, Both ends of the filter (8) are respectively a first input end and a first output end, the first input end is connected with a recovery pump (10) through a slurry recovery pipeline (9), for recovering the wall protection slurry with silt, and the first output end is connected with a tee (11); the tee (11) has a second input end, a second output end and a third output end, the second input end and the first output end communicate, the second output end communicates with the inside of the sedimentation tank (6) through a sedimentation pipeline (12), for conveying the wall protection slurry not completely filtered to the inside of the sedimentation tank (6), and the third output end communicates with the inside of the slurry storage tank (5) through an emergency recovery pipeline (13).
5. The mobile intelligent diaphragm slurry purification and storage device according to claim 4, characterized in that, The sedimentation recovery system comprises a sedimentation recovery interface (14) communicating with the inside of the sedimentation tank (6) through a sedimentation recovery pipeline (15), for recovering the wall protection slurry after sedimentation in the sedimentation tank (6).
6. The mobile intelligent diaphragm slurry purification and storage apparatus according to claim 4, characterized in that, A slurry discharge port (16) is arranged on the sidewall of the slurry storage tank (5) and connected with a slurry discharge pipeline (17), for outputting the wall protection slurry to a construction area; the slurry discharge port (16) is provided with a first control valve (18), the second output end is provided with a second control valve (19), and the third output end is provided with a third control valve (20).
7. The mobile intelligent diaphragm slurry purification and storage apparatus according to claim 6, characterized in that, The slurry tank (5) is further provided with a liquid level gauge (21) for monitoring the capacity of the wall protection slurry in the slurry tank (5) in real time.
8. The mobile intelligent diaphragm slurry purification and storage apparatus according to claim 7, characterized in that, The control system further comprises a control module (22) arranged on the traction system (4), the control module (22) being electrically connected with the first control valve (18), the second control valve (19), the third control valve (20) and the liquid level gauge (21); the control system further comprises a controller electrically connected with the control module (22).
9. The mobile intelligent diaphragm slurry purification and storage apparatus according to claim 7, characterized in that, The traction system (4) is further provided with a power system (23) for power supply; the top of the slurry tank (5) is provided with a manhole (24).
10. The mobile intelligent diaphragm slurry purification and storage apparatus according to claim 4, characterized in that, The three-way pipe (11) is provided with a one-way air inlet valve (25).