Multi-parameter intelligent monitoring liquid pollution emergency disposal device

The multi-parameter intelligent monitoring liquid pollution emergency response device solves the problem that cameras cannot detect water quality anomalies in time in existing technologies by using water quality sensors and a lifting ring system, and realizes real-time monitoring and rapid emergency response of sewage outlet water quality.

CN224188317UActive Publication Date: 2026-05-01GUANGZHOU LANJING TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGZHOU LANJING TECHNOLOGY CO LTD
Filing Date
2025-06-20
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing online monitoring devices for sewage outlets, relying solely on cameras, cannot detect water quality anomalies in a timely manner, resulting in an inability to respond quickly to emergencies.

Method used

The device employs a multi-parameter intelligent monitoring system for emergency response to liquid pollution. It utilizes water quality sensors to monitor water quality and ensures that the sensors are always in contact with the water body through a water quality sensor, airbag, and lifting ring system. It also combines a 4G/5G module to remotely transmit data.

Benefits of technology

It enables timely monitoring and rapid emergency response to water quality anomalies, avoiding detection blind spots caused by water level changes.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224188317U_ABST
Patent Text Reader

Abstract

The utility model discloses a multi-parameter intelligent monitoring liquid pollution emergency disposal device which comprises a base, a step column is connected to the center of the top of the base, a supporting sleeve is movably arranged at the bottom of the outer portion of the step column in a sleeved mode through a bearing, a monitoring component is installed on the right side of the outer portion of the supporting sleeve, and a display component is installed at the center of the outer portion of the step column. The top outside the stepped column is sleeved with an upper connecting sleeve, and the right side of the upper connecting sleeve is connected with a top plate. According to the utility model, the water quality sensor is arranged in the water body at the sewage draining exit, the water quality sensor is used for monitoring the quality of the water body at the sewage draining exit and transmitting the quality to the control case, then the quality is displayed on the display panel, and monitoring data is remotely transmitted to a control center through the 4G / 5G module arranged in the control case; when the water level at the drain outlet rises or falls, the air bag rises or falls outside the L-shaped mounting rod, and the water quality sensor is driven to rise and fall by the lifting ring and the suspender.
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Description

A multi-parameter intelligent monitoring and emergency response device for liquid pollution Technical Field

[0001] This utility model relates to the field of environmental protection technology, specifically a multi-parameter intelligent monitoring and emergency response device for liquid pollution. Background Technology

[0002] Environmental protection, also known as environmental conservation, refers to all actions taken by humankind to solve existing or potential environmental problems, coordinate the relationship between humans and the environment, and ensure the sustainable development of the economy and society. Its methods and means include engineering and technological, administrative and management, innovative research and development, as well as legal, economic, and public education approaches.

[0003] A search revealed patent number CN222209783U, entitled "An Online Monitoring Device for Sewage Outlets for Environmental Protection." The device includes a support plate with insert pins movably connected to its four corners. A support rod is mounted on top of the support plate, and a first fixing sleeve is fixedly fitted onto the outer surface of the support rod. Stabilizing components are located at the four corners of the upper surface of the support plate, and a lifting component is located at the center of the upper surface. This invention utilizes stabilizing components; rotating the limiting bolts in the stabilizing components clockwise causes them to press the insert pins downwards via a sliding plate, firmly securing the insert pins and preventing displacement due to external vibrations that could lead to instability. Operators can activate the motor in the lifting component and control its forward rotation. The motor rotation drives the lead screw, which in turn moves the lifting block, causing the support rod to move upwards for height adjustment. This device is suitable for monitoring sewage outlets at different distances and heights. However, research and analysis revealed that while it can monitor sewage outlets at different distances and heights, it still has the following drawbacks to some extent.

[0004] For example, this online monitoring device relies solely on a camera to monitor wastewater from a discharge outlet. When the wastewater discharged from the outlet does not show any color change, the camera cannot promptly detect any abnormalities in water quality, hindering rapid emergency response in the event of water pollution. To address these technical problems, we have designed a multi-parameter intelligent monitoring and emergency response device for liquid pollution. Summary of the Invention

[0005] The purpose of this invention is to provide a multi-parameter intelligent monitoring device for emergency response to liquid pollution. It has the advantage of using water quality sensors to monitor water quality and solves the problem that when monitoring sewage from a discharge outlet, relying solely on a camera means that when the sewage discharged from the outlet does not show any color change, the camera cannot detect abnormal water quality in time, making it impossible to quickly respond to water pollution.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a multi-parameter intelligent monitoring liquid pollution emergency response device, comprising a base, a stepped column connected to the center of the top of the base, a support sleeve movably fitted on the bottom of the stepped column via a bearing, a monitoring component installed on the right side of the support sleeve, a display component installed at the center of the stepped column, an upper connecting sleeve fitted on the top of the stepped column, a top plate connected to the right side of the upper connecting sleeve, a monitoring probe installed on the right side of the bottom of the top plate, the monitoring component comprising a connecting column, the left side of the connecting column connected to the support sleeve, a connecting threaded sleeve fitted on the outer thread of the connecting column, an L-shaped mounting rod threaded on the inner wall of the connecting threaded sleeve, a limit block connected to the bottom of the L-shaped mounting rod away from the connecting threaded sleeve, an airbag fitted on the bottom of the L-shaped mounting rod above the limit block, a lifting ring connected to the bottom of the airbag, and several lifting rods connected to the outer side of the bottom of the lifting ring.

[0007] Preferably, positioning rods are provided through the four corners of the top of the base, and positioning nuts are threaded on the top of the positioning rods and located at the top of the base. The bottom of the support sleeve is in sliding contact with the top of the base.

[0008] Preferably, the base has several positioning screw holes on its top and outside the support sleeve, a positioning block is installed on the left side outside the support sleeve, a positioning screw is provided on the top of the positioning block, and the bottom of the positioning screw passes through the positioning block and is threadedly connected to one of the positioning screw holes.

[0009] Preferably, a lower connecting sleeve is fitted on the top of the outer side of the stepped column and below the upper connecting sleeve. Positioning bolts are provided on the rear side of both the upper and lower connecting sleeves. The front side of the positioning bolts passes through the upper and lower connecting sleeves and is threadedly connected to the stepped column. A support diagonal rod is connected to the right side of the lower connecting sleeve, and the top of the support diagonal rod is connected to the bottom of the top plate.

[0010] Preferably, the inner wall of the lifting ring is slidably sleeved on the outside of the L-shaped mounting rod, and the bottom of several rods are connected to a mounting plate. The mounting plate is located below the limiting block, the rods are located outside the limiting block, several water quality sensors are installed at the bottom of the mounting plate, and several cable restraint rings are installed on the inner side of the L-shaped mounting rod.

[0011] Preferably, the display component includes a lower restraining sleeve and an upper restraining sleeve, both of which are fitted onto the outside of the stepped column. The lower restraining sleeve is located below the upper restraining sleeve. L-shaped connecting frames are connected to the left and right sides of both the lower and upper restraining sleeves. A control box is connected to the side of the L-shaped connecting frame away from the lower and upper restraining sleeves.

[0012] Preferably, the bottom of the L-shaped connecting bracket is connected to a lower connecting block, the bottom of the two lower connecting blocks are connected to a mounting plate, the top of the mounting plate is provided with a placement groove for use with the control box, the upper connecting block is connected between the upper and lower L-shaped connecting brackets, and a door is movably connected to the front side of the inner wall of the control box, with a display panel embedded on the door.

[0013] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0014] This invention utilizes a combination of monitoring components, positioning screw holes, positioning screws, positioning blocks, and support sleeves to monitor water quality using a water quality sensor. The water quality sensor is placed in the water at the sewage outlet, monitoring the water quality and transmitting the data to the control box. The data is then displayed on the display panel and remotely transmitted to the control center via a 4G / 5G module within the control box. When the water level at the sewage outlet rises or falls, the airbag rises or falls outside the L-shaped mounting rod. The lifting ring and the boom move the water quality sensor up and down, ensuring that the sensor remains in contact with the water at the sewage outlet for continuous monitoring. This avoids situations where the water level is too low to detect or too high to detect only the bottom of the water, facilitating rapid emergency response when abnormalities occur at the sewage outlet. Attached Figure Description

[0015] Figure 1 is a schematic diagram of the structure of this utility model;

[0016] Figure 2 is a bottom view of Figure 1 of this utility model;

[0017] Figure 3 is an exploded view of the monitoring component structure of this utility model;

[0018] Figure 4 is an exploded view of the display component structure of this utility model;

[0019] Figure 5 is a top view of Figure 4 of this utility model;

[0020] Figure 6 is a schematic diagram of the base structure of this utility model.

[0021] In the diagram: 1. Base; 2. Stepped column; 3. Monitoring component; 31. Connecting column; 32. Connecting screw sleeve; 33. L-shaped mounting rod; 34. Cable restraint ring; 35. Airbag; 36. Limiting block; 37. Lifting ring; 38. Hanging rod; 39. Mounting plate; 310. Water quality sensor; 4. Display component; 41. Display panel; 42. Box door; 43. Control box; 44. Placement plate; 45. Placement groove; 46. Upper restraint sleeve; 47. L-shaped connecting frame; 48. Lower connecting block; 49. Lower restraint sleeve; 410. Upper connecting block; 5. Supporting diagonal rod; 6. Top plate; 7. Upper connecting sleeve; 8. Lower connecting sleeve; 9. Monitoring probe; 10. Positioning rod; 11. Positioning screw hole; 12. Positioning screw; 13. Positioning block; 14. Support sleeve; 15. Positioning nut. Detailed Implementation

[0022] Please refer to Figures 1-6. A multi-parameter intelligent monitoring device for emergency response to liquid pollution includes a base 1. A stepped column 2 is connected to the center of the top of the base 1. A support sleeve 14 is movably fitted onto the bottom of the stepped column 2 via a bearing. A monitoring component 3 is installed on the right side of the support sleeve 14. A display component 4 is installed at the center of the stepped column 2. An upper connecting sleeve 7 is fitted onto the top of the stepped column 2. A top plate 6 is connected to the right side of the upper connecting sleeve 7. A monitoring probe 9 is installed on the right side of the bottom of the top plate 6. Component 3 includes a connecting column 31, the left side of which is connected to the support sleeve 14. A connecting threaded sleeve 32 is fitted on the outer thread of the connecting column 31. An L-shaped mounting rod 33 is threaded on the inner wall of the connecting threaded sleeve 32. A limit block 36 is connected to the bottom of the L-shaped mounting rod 33 on the side away from the connecting threaded sleeve 32. An airbag 35 is fitted on the bottom of the L-shaped mounting rod 33 and above the limit block 36. A lifting ring 37 is connected to the bottom of the airbag 35. Several lifting rods 38 are connected to the outer side of the bottom of the lifting ring 37.

[0023] Positioning rods 10 are installed through the four corners of the top of the base 1. Positioning nuts 15 are threaded onto the top of the positioning rods 10 and located on the top of the base 1. The bottom of the support sleeve 14 slides in contact with the top of the base 1. The positioning rods 10 are pre-embedded inside the installation platform. By using the cooperation of the positioning nuts 15 and the positioning rods 10, the base 1 can be positioned and installed, improving the stability of the entire device.

[0024] The top of the base 1 and the outside of the support sleeve 14 are provided with several positioning screw holes 11. A positioning block 13 is installed on the left side of the outside of the support sleeve 14. A positioning screw 12 is provided on the top of the positioning block 13. The bottom of the positioning screw 12 passes through the positioning block 13 and is threadedly connected to one of the positioning screw holes 11. Through the cooperation of the positioning screw holes 11, the positioning block 13 and the positioning screw 12, the support sleeve 14 can be positioned to improve the stability of the support sleeve 14.

[0025] A lower connecting sleeve 8 is fitted on the top of the outer side of the stepped column 2 and below the upper connecting sleeve 7. Positioning bolts are provided on the rear side of both the upper connecting sleeve 7 and the lower connecting sleeve 8. The front side of the positioning bolts passes through the upper connecting sleeve 7 and the lower connecting sleeve 8 and is threadedly connected to the stepped column 2. A support diagonal rod 5 is connected to the right side of the lower connecting sleeve 8. The top of the support diagonal rod 5 is connected to the bottom of the top plate 6. The positioning bolts can be used to position and install the upper connecting sleeve 7 and the lower connecting sleeve 8. The support diagonal rod 5 can be used to support the top plate 6 and improve the stability of the top plate 6.

[0026] The inner wall of the lifting ring 37 is slidably fitted onto the outside of the L-shaped mounting rod 33. The bottoms of several hanging rods 38 are connected to a mounting plate 39, which is located below the limiting block 36. The hanging rods 38 are located outside the limiting block 36. Several water quality sensors 310 are installed at the bottom of the mounting plate 39. Several cable restraint rings 34 are installed on the inner side of the L-shaped mounting rod 33. The several water quality sensors 310 are dissolved oxygen sensors, pH sensors, ammonia nitrogen sensors, and heavy metal sensors, etc. The limiting block 36 can limit the lifting ring 37 and the air bag 35 to prevent them from detaching from the L-shaped mounting rod 33. The cable restraint rings 34 can restrain the cables of the water quality sensors 310.

[0027] Display component 4 includes a lower retaining sleeve 49 and an upper retaining sleeve 46. Both the lower retaining sleeve 49 and the upper retaining sleeve 46 are fitted onto the outside of the step column 2. The lower retaining sleeve 49 is located below the upper retaining sleeve 46. L-shaped connecting brackets 47 are connected to the left and right sides of both the lower retaining sleeve 49 and the upper retaining sleeve 46. A control box 43 is connected to the side of the L-shaped connecting bracket 47 away from the lower retaining sleeve 49 and the upper retaining sleeve 46. The lower retaining sleeve 49 and the upper retaining sleeve 46 are located at the top and bottom of the step change point of the step column 2, respectively. At this time, the upper retaining sleeve 46 will not move down outside the step column 2, improving the placement stability of display component 4. The inner diameter of the lower retaining sleeve 49 is larger than the inner diameter of the upper retaining sleeve 46. The openings of the lower retaining sleeve 49 and the upper retaining sleeve 46 are secured by connecting bolts, thereby stably installing both on the step column 2.

[0028] The bottom of the L-shaped connecting bracket 47 is connected to a lower connecting block 48. The bottoms of the two lower connecting blocks 48 are connected to a mounting plate 44. The top of the mounting plate 44 has a placement groove 45 that works with the control box 43. An upper connecting block 410 is connected between the upper and lower L-shaped connecting brackets 47. A door 42 is movably connected to the front of the inner wall of the control box 43. A display panel 41 is embedded in the door 42. The bottom of the display panel 41 can be stored and placed through the placement groove 45. The control box 43 can be sealed using the door 42. The display panel 41 can display the detection data of the water quality sensor 310 and the image information captured by the monitoring probe 9. Various types of monitoring data are remotely transmitted to the control center through the 4G / 5G module inside the control box 43.

[0029] When using the device, if the position of the monitoring component 3 needs to be changed, the positioning screw 12 can be rotated out of the positioning screw hole 11 in advance. Then, the support sleeve 14 is rotated to drive the connecting column 31 to rotate. When the connecting column 31 is rotated to the corresponding angle, the positioning screw 12 is reset. (When the position of the monitoring component 3 changes, the positions of the display component 4, the top plate 6, and the monitoring probe 9 are also adjusted accordingly.) The L-shaped mounting rod 33 corresponds to the connecting column 31. Then, the connecting screw sleeve 32 is reversed to move it toward the L-shaped mounting rod 33 until its threads are fitted onto the outside of the L-shaped mounting rod 33, completing the positioning and installation of the L-shaped mounting rod 33. At this time, the water quality sensor 310 is placed in the water body at the sewage outlet. The water quality sensor 310 is used to monitor the sewage outlet. The water quality is monitored by the monitoring probe 9, which captures images of the water. Both images are transmitted to the control box 43 and then displayed on the display panel 41. The monitoring data is also transmitted remotely to the control center via the 4G / 5G module inside the control box 43. When the water level at the sewage outlet rises or falls, the airbag 35 rises or falls outside the L-shaped mounting rod 33. The lifting ring 37 and the hanging rod 38 drive the water quality sensor 310 to rise or fall, ensuring that the water quality sensor 310 is always in contact with the water at the sewage outlet to monitor the water. This avoids situations where the water level is too low to detect or too high to detect only the bottom of the water, and facilitates rapid emergency handling when the water at the sewage outlet is abnormal.

[0030] In summary, this multi-parameter intelligent monitoring liquid pollution emergency response device, through the coordinated use of monitoring component 3, positioning screw hole 11, positioning screw 12, positioning block 13 and support sleeve 14, solves the problem that when monitoring sewage from the discharge outlet, relying solely on the camera means that when the sewage discharged from the outlet does not show any color change, the camera cannot detect abnormal water quality in time, thus making it impossible to quickly respond to water pollution.

Claims

1. A multi-parameter intelligent monitoring and emergency response device for liquid pollution, comprising a base (1), characterized in that: A stepped column (2) is connected to the center of the top of the base (1). A support sleeve (14) is movably fitted on the bottom of the stepped column (2) via a bearing. A monitoring component (3) is installed on the right side of the support sleeve (14). A display component (4) is installed at the center of the outside of the stepped column (2). An upper connecting sleeve (7) is fitted on the top of the outside of the stepped column (2). A top plate (6) is connected to the right side of the upper connecting sleeve (7). A monitoring probe (9) is installed on the right side of the bottom of the top plate (6). The monitoring component (3) includes a connecting column (31). The left side of the connecting column (31) is connected to the support sleeve (14). The connecting thread (32) is provided with the connecting thread sleeve (32). The inner wall of the connecting thread sleeve (32) is connected with the L-shaped mounting rod (33). The bottom of the L-shaped mounting rod (33) away from the connecting thread sleeve (32) is connected with the limit block (36). The bottom of the L-shaped mounting rod (33) and above the limit block (36) is provided with an airbag (35). The bottom of the airbag (35) is connected with a lifting ring (37). The outer side of the bottom of the lifting ring (37) is connected with several lifting rods (38).

2. The multi-parameter intelligent monitoring liquid pollution emergency response device according to claim 1, characterized in that: Positioning rods (10) are provided through the four corners of the top of the base (1). Positioning nuts (15) are threaded on the top of the positioning rods (10) and located on the top of the base (1). The bottom of the support sleeve (14) slides in contact with the top of the base (1).

3. The multi-parameter intelligent monitoring liquid pollution emergency disposal device according to claim 1, characterized in that: The base (1) has several positioning screw holes (11) on its top and outside the support sleeve (14). A positioning block (13) is installed on the left side outside the support sleeve (14). A positioning screw (12) is provided on the top of the positioning block (13). The bottom of the positioning screw (12) passes through the positioning block (13) and is threadedly connected to one of the positioning screw holes (11).

4. The multi-parameter intelligent monitoring liquid pollution emergency disposal device according to claim 1, characterized in that: A lower connecting sleeve (8) is fitted on the top of the outer side of the stepped column (2) and below the upper connecting sleeve (7). A positioning bolt is provided on the rear side of both the upper connecting sleeve (7) and the lower connecting sleeve (8). The front side of the positioning bolt passes through the upper connecting sleeve (7) and the lower connecting sleeve (8) and is threaded to the stepped column (2). A support rod (5) is connected to the right side of the lower connecting sleeve (8). The top of the support rod (5) is connected to the bottom of the top plate (6).

5. The multi-parameter intelligent monitoring liquid pollution emergency response device according to claim 1, characterized in that: The inner wall of the lifting ring (37) is slidably sleeved on the outside of the L-shaped mounting rod (33). The bottom of several hanging rods (38) is connected to the mounting plate (39). The mounting plate (39) is located below the limiting block (36). The hanging rods (38) are located outside the limiting block (36). Several water quality sensors (310) are installed at the bottom of the mounting plate (39). Several cable restraint rings (34) are installed on the inner side of the L-shaped mounting rod (33).

6. The multi-parameter intelligent monitoring liquid pollution emergency disposal device according to claim 1, characterized in that: The display component (4) includes a lower retaining sleeve (49) and an upper retaining sleeve (46). Both the lower retaining sleeve (49) and the upper retaining sleeve (46) are fitted onto the outside of the step column (2). The lower retaining sleeve (49) is located below the upper retaining sleeve (46). L-shaped connecting brackets (47) are connected to the left and right sides of the lower retaining sleeve (49) and the upper retaining sleeve (46). A control box (43) is connected to the side of the L-shaped connecting bracket (47) away from the lower retaining sleeve (49) and the upper retaining sleeve (46).

7. The multi-parameter intelligent monitoring liquid pollution emergency response device according to claim 6, characterized in that: The bottom of the L-shaped connecting bracket (47) is connected to the bottom of the lower connecting block (48). The bottom of the two lower connecting blocks (48) is connected to the mounting plate (44). The top of the mounting plate (44) is provided with a placement groove (45) that is used in conjunction with the control box (43). The upper connecting block (410) is connected between the upper and lower L-shaped connecting brackets (47). The front side of the inner wall of the control box (43) is movably connected to the door (42). The door (42) is inlaid with a display panel (41).

Citation Information

Patent Citations

  • Sewage draining exit on-line monitoring device for environmental protection

    CN222209783U