An environmental water body pollution early warning device
By designing a water pollution early warning device with a sliding column and a multi-area detection inner shell, the problem of existing devices being limited to single-area detection has been solved, enabling accurate detection and real-time early warning of multiple pollutants and improving the efficiency of water pollution early warning.
Patent Information
- Application Number
- CN202211617353.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-15
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2042-12-15
AI Technical Summary
Existing water pollution early warning devices can only detect and issue warnings for a single type of pollution, and cannot effectively detect multiple types of pollution. Furthermore, sampling can only detect water bodies at one location or in one direction, which introduces errors.
An environmental water pollution early warning device was designed. It uses a sliding column and meshing components to realize multi-level water level detection, and a float is set to provide power support. The detection inner shell is divided into multiple areas for mixing and pretreatment of different pollutants, and is equipped with a water body early warning component to measure and upload data of multiple pollutants.
It enables effective detection of multiple types of pollution, reduces sampling errors, and provides real-time early warnings through data upload, thereby improving the accuracy and efficiency of water pollution early warning.
Smart Images

Figure CN116908396B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of water quality monitoring equipment technology, specifically to an environmental water pollution early warning device. Background Technology
[0002] Water pollution mainly refers to the phenomenon where pollutants discharged by human activities enter water bodies, causing a decline in water quality and a reduction or loss of its usability. Strictly speaking, there are two categories of causes of water pollution: one is caused by human factors, mainly industrial wastewater discharge. This also includes domestic sewage, agricultural drainage, rainwater leaching of atmospheric pollutants, and pollutants from accumulated garbage that are washed into water bodies by rainwater. The other category includes water pollution caused by natural factors, such as rock weathering and hydrolysis, volcanic eruptions, water erosion of the ground, and precipitation leaching of atmospheric dust.
[0003] Water pollution early warning devices typically sample and test water bodies within a certain area, then issue warnings based on the test results, enabling staff to carry out targeted remediation. However, water pollution is diverse, and the detection methods vary. Existing water pollution early warning devices can usually only detect and issue warnings for a single type of pollution, and cannot effectively detect other types of pollution, thus failing to achieve a good early warning effect for environmental water bodies. In addition, existing early warning devices can only sample water bodies at one location or in one direction, which introduces a certain degree of error.
[0004] Therefore, it is necessary to provide an environmental water pollution early warning device to solve the above problems. Summary of the Invention
[0005] To achieve the above objectives, the present invention provides the following technical solution: an environmental water pollution early warning device, comprising:
[0006] The device base has four sets of fixed anchor rods fixedly installed below it, which are horizontally fixed to the bottom of the water body. A sliding column is fixedly assembled on the device base. A rack is provided on the surface of the sliding column, and two sets of meshing components are engaged on it. A drive motor is configured on the meshing components, and the two sets of meshing components are respectively embedded in the center of the upper and lower side planes of the detection inner shell.
[0007] The inner shell of the detection is fixedly assembled with a detection outer shell. There is a sandwich between the inner shell and the upper part and side of the detection outer shell. Three sets of water sample retrieval components are fixedly assembled at the bottom and a water sample inlet component is fixedly assembled at the upper end.
[0008] The pontoon is coaxially and slidably mounted on the upper end of the sliding column, and a solar panel is fixedly mounted on it.
[0009] Further, as preferred, the detection inner shell is divided into three annular regions and a middle column region distributed vertically, and a partition plate is arranged in the lower annular region to divide it into three regions.
[0010] Further, as preferred, three sets of mechanical arms are rotatably arranged on the inner wall of the upper surface of the upper annular region of the detection inner shell, and drying chambers and sterilization chambers are arranged on both sides of each set of mechanical arms. A water body early warning assembly is rotatably arranged in the middle of the region, and multiple sample bottle holding groups are placed in the drying chambers.
[0011] Further, as preferred, a water sample mixing blade is coaxially rotatably arranged in the annular region in the middle of the detection inner shell, a drive gear set is coaxially fixedly arranged in the middle of the water sample mixing blade, a first drive motor is fixedly arranged at the lower end of the drive gear set, and the first drive motor is fixedly arranged on the side wall of the middle column of the detection inner shell.
[0012] Further, as preferred, the water body early warning assembly comprises:
[0013] A drive assembly is coaxially slidably arranged on the sliding column, a detection early warning plate is fixedly arranged above the drive assembly, the detection early warning plate is fixedly arranged on the inner wall of the top of the detection inner shell, a detection frame is rotatably arranged at the lower end of the drive assembly, and a waste sample holding box is fixedly arranged at the lower end of the detection frame.
[0014] Further, as preferred, twelve sets of compression springs are fixedly arranged at the upper end of the detection frame, an automatic suction cup is fixedly arranged above each set of compression springs, and twelve sets of pneumatic clamps are fixedly arranged at the lower end of the detection frame.
[0015] Further, as preferred, twelve sets of telescopic detection heads are fixedly arranged below the detection early warning plate, and a data sending module is arranged inside the detection early warning plate.
[0016] Further, as preferred, the water sample retrieval assembly comprises:
[0017] A water pump is fixedly arranged on the inner wall of the bottom of the interlayer between the detection inner shell and the detection outer shell, the water pump is provided with two output ports, a water distribution pipe is fixedly arranged on the upper output port of the water pump, a flow control valve is fixedly arranged on the upper end of the water distribution pipe, a two-way pipe is fixedly arranged on the input port of the water pump, and a switch valve is arranged at each pipe port of the water pump.
[0018] Further, as preferred, the water sample entering assembly comprises:
[0019] Second drive motor, fixed assembly on the detection shell upper surface, its output shaft fixed assembly has transmission gear set, transmission gear set another pole coaxially fixed assembly has main gear, main gear placed in detection inner shell and detection outer shell upper end interlayer, and coaxially rotating assembly in the detection inner shell upper, main gear outside engagement has six groups of gear, the gear lower end coaxially fixed assembly has iris switch door.
[0020] Further, as preferred, the sliding column is spliced, and its length is proportional to the depth of the water body.
[0021] Compared with the prior art, the present application provides an environmental water pollution early warning device, which has the following advantages
[0022] Beneficial effects:
[0023] In the application, the engagement assembly is arranged, so that the device can move up and down on the sliding column, facilitating the device to detect the water body at each water level, and the float is arranged to float on the water surface, so that the solar panel is always above the water surface, providing power support for the operation of the device, and the detection inner shell is divided into three regions, the mixed sample area in the middle part can mix the water samples in different directions entered by the six water sample entering assemblies, preventing detection errors under single sampling, and avoiding multiple sampling, and the treatment area below is divided into three parts, so that the water sample can be pretreated in a targeted manner, facilitating the detection and early warning work, and the detection area above is provided with a water body early warning assembly, which can measure different pollutants in the water sample and upload the results to the central computer in the control room through the data sending module, and the unqualified data is early warned. BRIEF DESCRIPTION OF DRAWINGS
[0024] Fig. 1 It is a structure diagram of an environmental water pollution early warning device.
[0025] Fig. 2 It is a partial sectional structure diagram of an environmental water pollution early warning device.
[0026] Fig. 3 It is a structure diagram of a detection inner shell of an environmental water pollution early warning device.
[0027] Fig. 4 It is a structure diagram of a water body early warning assembly of an environmental water pollution early warning device.
[0028] Fig. 5 It is a structure diagram of a water sample taking assembly of an environmental water pollution early warning device.
[0029] In the figure: 1, device base; 2, fixed anchor rod; 3, sliding column; 4, meshing assembly; 5, detection inner shell; 6, detection outer shell; 7, water sample retrieval assembly; 8, water sample inlet assembly; 9, buoy; 10, solar panel; 51, mechanical arm; 52, drying chamber; 53, sterilization chamber; 54, water body early warning assembly; 55, water sample mixing blade; 56, spacer plate; 57, drive gear set; 58, first drive motor; 59, sample bottle; 541, drive assembly; 542, detection early warning plate; 543, detection frame; 544, waste sample storage box; 545, compression spring; 546, pneumatic clamp; 547, automatic suction cup; 548, telescopic detection head; 71, water pump; 72, water distribution pipe; 73, flow control valve; 74, two-way pipe; 81, second drive motor; 82, transmission gear set; 83, main gear; 84, auxiliary gear; 85, iris switch door. DETAILED DESCRIPTION
[0030] For reference Figs. 1-5 The present application provides a kind of environmental water body pollution early warning device, comprising:
[0031] Device base 1, below fixedly provided with four groups of fixed anchor rod 2, it is horizontally fixed in water body bottom, the device base 1 is fixedly assembled with sliding column 3 on, the sliding column 3 surface is provided with rack, is assembled with two groups of meshing assembly 4 on it, the meshing assembly 4 is configured with drive motor, and two groups of the meshing assembly 4 is respectively embedded in detection inner shell 5 upper and lower side plane center;
[0032] Detection inner shell 5 is fixedly assembled with detection outer shell 6 outside, there is interlayer in detection inner shell 5 and detection outer shell 6 upper portion and side face, its bottom is fixedly assembled with three groups of water sample retrieval assembly 7, and its upper end is fixedly assembled with water sample inlet assembly 8;
[0033] Buoy 9, coaxial sliding assembly is in the upper end of the sliding column 3, and solar panel 10 is fixedly assembled on it;
[0034] As a preferred embodiment, select suitable position, utilize four groups of fixed anchor rod 2 to horizontally fix device base 1 in water body bottom, to ensure that sliding column 3 is perpendicular to water body water surface, so that the water sample obtained by the device is at the same water level, the connecting portion of meshing assembly 4 and sliding column 3 is provided with sealing assembly, maintains a certain sealing property while sliding, places the water of outside into the device, and the drive motor of two groups of meshing assembly 4 is synchronous operation, so that detection inner shell 5 and detection outer shell 6 can move up and down along sliding column 3 under the drive thereof, facilitate the water body detection of each water level of the device, the buoy 9 floats on the water surface, so as to ensure that solar panel 10 is always above the water surface, provides power support for the operation of the device.
[0035] Further, the detection inner shell 5 is divided into three annular regions and a middle column region from top to bottom, and a partition plate 56 is arranged in the lower annular region to divide it into three regions.
[0036] As a preferred embodiment, the three regions in the detection inner shell 5 are detection region, mixing region and processing region from top to bottom, and the three regions in the processing region are respectively standing region, natural region (without any treatment) and filtering region. Each set of water sample retrieval assembly 7 corresponds to a region of the processing region, and each region works independently without interference.
[0037] Further, three sets of mechanical arms 51 are rotatably arranged on the inner wall of the upper surface of the annular region of the detection inner shell 5, and a drying chamber 52 and a sterilization chamber 53 are arranged on both sides of each set of mechanical arms 51. A water body early warning assembly 54 is rotatably arranged in the middle of the region, and a plurality of sample bottles 59 are arranged in the drying chamber 52.
[0038] As a preferred embodiment, the number of sample bottles 59 placed in each set of drying chamber 52 is not equal, and a clamping jaw is arranged at the front end of the mechanical arm 51. When detecting, the mechanical arm 51 clamps the sample bottle 59 in the drying chamber 52 and places it under the water sample retrieval assembly 7. After the sample bottle 59 is filled with water sample, it is placed on the water body early warning assembly 54 for detection. If the detection is not qualified, an alarm is given. When the sample bottle 59 needs to be sterilized, the mechanical arm 51 clamps it out, first places it in the sterilization chamber 53 for sterilization treatment, and then performs subsequent operation.
[0039] Further, a water sample mixing blade 55 is coaxially rotatably arranged in the annular region of the middle of the detection inner shell 5. A driving gear set 57 is coaxially fixedly arranged in the middle of the water sample mixing blade 55. A first driving motor 58 is fixedly arranged at the lower end of the driving gear set 57, and the first driving motor 58 is fixedly arranged on the side wall of the middle column of the detection inner shell 5.
[0040] As a preferred embodiment, the driving gear set 57 is composed of an internal gear and a spur gear which are engaged with each other. The internal gear is coaxially fixedly arranged on the inner side of the water sample mixing blade 55, and the internal gear is embedded in the middle of the mixing region. A waterproof pad is arranged at the connection to prevent water leakage during rotation.
[0041] Further, the water body early warning assembly 54 comprises:
[0042] The driving assembly 541 is coaxially and slidingly assembled on the sliding column 3, a detection warning plate 542 is fixedly assembled above the driving assembly 541, the detection warning plate 542 is fixedly assembled on the inner wall of the top of the detection inner shell 5, a detection frame 543 is rotatably assembled at the lower end of the driving assembly 541, and a waste sample containing box 544 is fixedly assembled at the lower end of the detection frame 543.
[0043] Further, twelve groups of compression springs 545 are fixedly assembled at the upper end of the detection frame 543, an automatic suction cup 547 is fixedly assembled above each group of the compression springs 545, and twelve groups of pneumatic clamps 546 are fixedly assembled at the lower end of the detection frame 543.
[0044] Further, twelve groups of telescopic detection heads 548 are fixedly assembled below the detection warning plate 542, and a data sending module is arranged in the detection warning plate 542.
[0045] As a preferred embodiment, the front end of the pneumatic clamp 546 is provided with a suction cup, and the initial state of the pneumatic clamp 546 is fully extended, and the suction cup on it is perpendicular to the automatic suction cup 547, which is automatically sucked tightly after sensing the pressure and loosens after the pressure disappears. The suction cup at the front end of the pneumatic clamp 546 operates synchronously with the automatic suction cup 547, and the twelve groups of telescopic detection heads 548 correspond one-to-one with the sample bottles 59 fixed below them, and each group of telescopic detection heads 548 detects different pollutants. At the same time, among the twelve groups of telescopic detection heads 548, the initial state of the three groups of telescopic detection heads 548 corresponding to the three mechanical arms 51 does not make any detection, and the corresponding sample bottles 59 below them are the first sample bottles 59 clamped by each group of mechanical arms 51, which are waste samples to prevent water samples from being left in the water sample taking assembly 7 during the water sample taking process, causing errors in the detection results. At the same time, the driving motor in the driving assembly 541 is a stepper motor, which drives the detection frame 543 to rotate 30° each time. During detection, the three mechanical arms 51 respectively place the first sample bottles 59 as waste samples on the corresponding automatic suction cups 547 on the detection frame 543, and the automatic suction cups 547 and the suction cups on the pneumatic clamps 546 below them suck the sample bottles 59 tightly after sensing the pressure. After the placement is completed, the three mechanical arms 51 continue to work, the driving assembly 541 drives the detection frame 543 to rotate 30° clockwise, and the above operation is repeated (it should be noted that the three mechanical arms 51 correspond to three groups of water samples with different treatment methods, so the number of sample bottles 59 clamped by the three mechanical arms 51 is not equal, which is determined according to the specific situation. At the same time, the telescopic detection heads 548 and their corresponding assemblies can be appropriately increased for different water bodies). Until the detection frame 543 returns to the initial position, the twelve groups of telescopic detection heads 548 are extended for detection, and the results are uploaded to the central computer in the control room through the data sending module, and the unqualified data is prewarned. After the detection is completed, the twelve groups of pneumatic clamps 546 are retracted, driving the corresponding sample bottles 59 to tilt inward, the inside of the compression spring 545 is compressed, and the outside is stretched, until the water sample in it is poured into the waste sample storage box 544. The twelve groups of pneumatic clamps 546 are simultaneously extended to return to the initial position, the mechanical arm 51 is started to clamp the sample bottle 59 and reposition it in the drying chamber 52, completing the detection work. Because some pollutants need to be detected by reagents, the water sample in the waste sample storage box 544 needs to be treated regularly to prevent pollution caused by direct discharge into the water body.
[0046] Further, the water sample taking assembly 7 comprises:
[0047] A water pump 71 is fixedly assembled on the inner wall of the bottom interlayer of the detection inner shell 5 and the detection outer shell 6. The water pump 71 is provided with two output ports. The output port at the upper end is fixedly assembled with a water distribution pipe 72. The upper end of the water distribution pipe 72 is fixedly assembled with a flow control valve 73. The input port of the water pump 71 is fixedly assembled with a two-way pipe 74. The water pump 71 is provided with an on-off valve at each pipe port.
[0048] As a preferred embodiment, the flow control valve 73 is used to control the water flow of the water sample to avoid too little water flow to fill the sample bottle 59 and too much water flow to spill into the device. The water pump 71 is provided with five pipe ports, which are respectively a, b, c, d and e. The a and b are input ports, which are connected to the processing area of the detection inner shell 5. The c, d and e are output ports, which are respectively connected to the mixing area and the detection area of the detection inner shell 5 and the water body outside the device. The c and b are not connected through the water pump 71. In the initial state, the a, b, c, d and e are closed. The water sample enters the mixing area. After mixing, the b and c are opened. The water in the mixing area flows into the corresponding area of the processing area. After completion, the b and c are closed. After the water sample in the processing area is processed, the b and d are opened. The water pump 71 is started. The water sample flows out from the b through the flow control valve 73. The operation is repeated until the sampling is completed. After the detection is completed, the a and e are opened. The water pump 71 is started to discharge the water in the device.
[0049] Further, the water sample entering assembly 8 comprises:
[0050] A second driving motor 81 is fixedly assembled on the upper surface of the detection outer shell 6. A transmission gear set 82 is fixedly assembled on the output shaft of the second driving motor 81. A main gear 83 is coaxially fixedly assembled below the other end of the transmission gear set 82. The main gear 83 is placed in the interlayer of the upper end of the detection inner shell 5 and the detection outer shell 6 and is coaxially rotatably assembled above the detection inner shell 5. Six groups of auxiliary gears 84 are engaged with the outer side of the main gear 83. An iris shutter door 85 is coaxially fixedly assembled at the lower end of the auxiliary gear 84.
[0051] As the preferred embodiment, the iris switch door 85 is arranged on the inside and outside of the detection inner shell 5 and the detection outer shell 6, and the secondary gear 84 is coaxially fixed on the outside of the iris switch door 85. The initial state of the iris switch door 85 is closed, and it is opened after being rotated counterclockwise by 36°. When the device needs to detect water samples, the second driving motor 81 is started, and the primary gear 83 is driven to rotate clockwise under the driving of the transmission gear set 82, and the six groups of secondary gears 84 are driven to rotate counterclockwise. The water in the water body flows into the device from six directions, and is fully mixed in the device, thereby avoiding detection errors caused by single sampling and multiple sampling. After the secondary gear 84 is rotated counterclockwise by 36°, the second driving motor 81 is turned off. After the sampling in the device is completed, the second driving motor 81 is started and reversed, so that the iris switch door 85 is closed again.
[0052] Further, the sliding column 3 is arranged in a splicing mode, and the length thereof is proportional to the depth of the water body.
[0053] In specific implementation, the following steps are included: selecting a suitable position, fixing the device base 1 horizontally on the bottom of the water body by using the four groups of fixed anchor rods 2, regularly detecting the water body to prevent pollution, driving the meshing assembly 4 to move on the sliding column 3 and stopping the device at a suitable water level when detection is needed, starting the water sample entering assembly 8 to make the water sample enter the processing area of the detection inner shell 5, starting the first driving motor 58 to make the water sample mixing blade 55 stir and mix the water sample, gradually starting the water sample taking assembly 7 to transfer the water sample to the processing area after the mixing is completed, extracting the water sample to the detection area through the corresponding water sample taking assembly 7 after the processing condition is completed, placing the water sample on the water body early warning assembly 54 through the mechanical arm 51, detecting the water sample, uploading the result to the central computer in the control room through the data sending module, and early warning the unqualified data. After the detection is completed, the pneumatic clamp 546 is started to pour the water sample into the waste sample container 544, and the water sample taking assembly 7 is started to discharge the excess water sample in the processing area from the device. After the detection of the water level is completed, the meshing assembly 4 can be driven to move on the sliding column 3 and stop at other water levels in the area, and the above operation is repeated to detect pollution.
[0054] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art can make equivalent replacement or change according to the technical solution and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.
Claims
1. An environmental water body pollution early warning device, characterized in that: The utility model relates to a water quality detection device, including: Device base (1) is fixedly provided with four groups of fixed anchor rod (2) below, is fixedly equipped with sliding column (3) on the device base (1), the surface of sliding column (3) is provided with rack, is engagedly equipped with two groups of engagement assembly (4) on it, is equipped with drive motor on the engagement assembly (4), and two groups of the engagement assembly (4) are respectively embedded in the detection inner shell (5) upper and lower side plane center; The detection inner shell (5) is fixedly equipped with detection shell (6) outside, and there is interlayer in the upper and side of detection inner shell (5) and detection shell (6), is fixedly equipped with three groups of water sample call subassembly (7) at its bottom, is fixedly equipped with water sample into subassembly (8) at its upper end; Buoy (9) is coaxially slidingly equipped on the upper end of sliding column (3), is fixedly equipped with solar panel (10) on it; The inside of detection inner shell (5) is divided into three annular regions and middle column area that distribute up and down, and interval plate (56) is arranged in the lower annular region of it, and it is divided into three regions equally; The inner wall of the upper surface of the upper annular region of detection inner shell (5) is rotatably equipped with three groups of mechanical arm (51), and dry room (52) and sterilization room (53) are arranged on both sides of each group of mechanical arm (51), and water body early warning subassembly (54) is rotatably equipped in the middle of this area, and multiple sample bottles (59) are placed in dry room (52); The water body early warning subassembly (54) includes: Drive subassembly (541) is coaxially slidingly equipped on sliding column (3), is fixedly equipped with detection early warning board (542) above, detection early warning board (542) is fixedly equipped on the inner wall of the top of detection inner shell (5), detection frame (543) is rotatably equipped at the lower end of drive subassembly (541), waste sample containing box (544) is fixedly equipped at the lower end of detection frame (543); Twelve groups of compression springs (545) are fixedly equipped at the upper end of detection frame (543), automatic suction cup (547) is fixedly equipped above each group of compression springs (545), and twelve groups of pneumatic clamp (546) are fixedly equipped at the lower end of detection frame (543); The suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of pneumatic clamp (546) is provided with suction cup, and the suction cup of the front end of 2. The device for early warning of pollution of an environmental water body according to claim 1, characterized in that: The water sample mixing blade (55) is coaxially arranged in the annular area of the middle part of the detection inner shell (5), the middle part of the water sample mixing blade (55) is coaxially fixedly arranged with a driving gear set (57), the lower end of the driving gear set (57) is fixedly arranged with a first driving motor (58), and the first driving motor (58) is fixedly arranged on the side wall of the middle part of the detection inner shell (5).
3. The device for early warning of pollution of an environmental water body according to claim 1, characterized in that: Twelve groups of telescopic detection heads (548) are fixedly arranged below the detection and early warning plate (542), and a data sending module is arranged in the detection and early warning plate (542).
4. The device for early warning of pollution of an environmental water body according to claim 1, characterized in that: The water sample taking assembly (7) comprises: The water pump (71) is fixedly arranged on the inner wall of the bottom of the interlayer of the detection inner shell (5) and the detection outer shell (6), the water pump (71) is provided with two output ports, the output port at the upper end is fixedly arranged with a water distribution pipe (72), the upper end of the water distribution pipe (72) is fixedly arranged with a flow control valve (73), the input port of the water pump (71) is fixedly arranged with a two-way pipe (74), and each pipe port of the water pump (71) is provided with a switch valve.
5. The device for early warning of pollution of an environmental water body according to claim 1, characterized in that: The water sample entering assembly (8) comprises: The second driving motor (81) is fixedly arranged on the upper surface of the detection outer shell (6), the output shaft of the second driving motor (81) is fixedly arranged with a transmission gear set (82), the other end of the transmission gear set (82) is coaxially fixedly arranged with a main gear (83), the main gear (83) is placed in the interlayer of the upper end of the detection inner shell (5) and the detection outer shell (6), and is coaxially arranged above the detection inner shell (5), the outer side of the main gear (83) is engaged with six groups of auxiliary gears (84), the lower end of the auxiliary gear (84) is coaxially fixedly arranged with an iris switch door (85).
6. The device for early warning of pollution of an environmental water body according to claim 1, characterized in that: The sliding column (3) is arranged in a splicing mode, and the length thereof is proportional to the depth of the water body. The sliding column (3) is arranged in a splicing mode, and the length thereof is proportional to the depth of the water body.
Citation Information
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