Integrated equipment for detecting and purifying water body

Through the combination of integrated equipment aeration and plant purification, the problem of pollutant purification in the early stages of rainwater entering the river is solved, and efficient water quality detection and purification effects are achieved. It is suitable for water purification in small rivers, simplifying the structure and improving the detection accuracy.

CN223255073UActive Publication Date: 2025-08-22FUJIAN ACAD OF BUILDING RES CO LTD +1
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Patent Information

Application Number
CN202422410381.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-08-22
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

Without adding new urban shore land, how to effectively purify pollutants in the early rainwater drainage of rivers and lakes, and reduce the pollution impact on water bodies, especially the problem of high suspended substance content and poor biochemical properties.

Method used

Design an integrated equipment for water body detection and purification, including a box, air pump, plant storage tank, detection outer rod and inner detection head, and use the aeration function to release ultra-micro bubbles and plant purified plants. Combined with water quality and hydrological detection, it can achieve high-precision detection and purification of early rainwater.

Benefits of technology

It improves the purification efficiency of early rainwater pollutants, enhances the accuracy of water quality detection, simplifies the device structure, is suitable for small river channels, has wide adaptability, and can effectively purify rainwater entering the river without increasing shore land, providing flexible power and buoyancy control.

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Abstract

The utility model discloses integrated equipment for water body detection and purification in the technical field of water body treatment, which comprises a box body, an air pump, a plant storage tank, a detection outer rod and an inner detection head, the air pump is communicated with aeration pipes, a propelling nozzle and an air bag through pipelines, and a plurality of aeration pipes are arranged at the bottom of the box body. The left side and the right side of the back face of the box body are each provided with a plurality of propelling nozzles, the two detection outer rods extend out of the left side and the right side of the box body respectively, and an inner detection head is arranged in the box body. Different plants can be planted on the integrated floating island of the device, so that the purpose of purifying various pollutants is achieved; meanwhile, an aeration function is also added, so that ultramicro bubbles can be released underwater; the device can also detect the water quality and hydrology of a water body, and can also detect the water quality of initial rainwater by extending the detection outer rod into a river rainwater discharge port.
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Description

Technical Field

[0001] The utility model relates to the technical field of water body treatment, in particular to an integrated device for water body detection and purification. Background Art

[0002] With the continuous advancement of urbanization, newly built urban drainage systems generally adopt a diversion system, where rainwater and sewage are collected and transported in different pipes respectively; among them, sewage will be transported to sewage treatment plants through sewage pipes for treatment, while rainwater is generally discharged directly into surrounding water bodies.

[0003] In the early stages of rainfall, rainwater washes urban roads, roofs, etc., washing dust and ground pollutants into the rainwater pipes. At the same time, it also carries pollutants in the atmosphere into the rainwater. Therefore, the initial rainwater discharged from the rainwater pipes into the river will carry a large amount of pollutants, that is, the initial flushing effect. If it is discharged directly into the water body, it will cause greater pollution to the water body.

[0004] Building initial stormwater treatment facilities based on the same procedures as urban sewage treatment plants would require significant investment and involve land acquisition, resulting in low plant utilization and excessively high investment costs. Given the increasing scarcity of urban land resources, the urgent challenge is how to utilize water resources appropriately, without increasing the need for new urban land, to purify polluted initial stormwater entering rivers and lakes, and to reduce the impact of initial stormwater pollutants on water quality.

[0005] Judging from the main pollution indicators, due to the influence of urban underlying surface and pipeline sediment scouring, the suspended matter content in the initial urban rainwater is relatively high and its biodegradability is poor. A more significant purification effect can be achieved through microbial decomposition, plant impurity solidification and other methods.

[0006] Based on this, the utility model designs an integrated device for water body detection and purification to solve the above problems. Utility Model Content

[0007] The purpose of the utility model is to provide an integrated device for water body detection and purification, which can be used for the pollution control of initial rainwater at the rainwater outlet into the river. It has an integrated structure and also adds a plurality of independent plant storage tanks. Different plants can be planted on the integrated floating island of the device to achieve the purpose of purifying a variety of pollutants. At the same time, an aeration function is added, which can release ultrafine bubbles underwater, which has a better water purification effect. The device can also perform water quality and hydrological detection on the water body, and can also extend the detection outer rod into the rainwater outlet into the river to perform water quality detection on the initial rainwater. When the device detects, the rainwater has not yet flowed into the river, and the water quality detection accuracy of the initial rainwater is higher.

[0008] The utility model is implemented as follows: an integrated device for water body detection and purification, comprising:

[0009] Box, air pump, plant storage tank, detection outer rod and inner detection head;

[0010] The box body is a hollow box body, and a plurality of aeration pipes are provided at the bottom of the box body, and each of the aeration pipes is interconnected;

[0011] A positioner and an air inlet pipe are provided on the top of the box;

[0012] A closed waterproof housing is provided on the outside of the air pump, the air inlet of the air pump is sealedly connected to the air inlet pipe, the air outlet of the air pump is provided with a regulating valve, and three air outlet pipes are provided on the regulating valve, and the air outlets of the regulating valve are respectively sealedly connected to the air supply pipe, the propulsion air pipe and the buoyancy air pipe; the air supply pipe, the propulsion air pipe and the buoyancy air pipe are all independently provided sealed pipes;

[0013] Each of the aeration pipes is sealed and connected to the gas delivery pipe;

[0014] A plurality of propulsion nozzles are provided on both the left and right sides of the back of the box, and each of the propulsion nozzles on the left and right sides is sealedly connected to a propulsion air pipe; a propulsion valve is provided on the propulsion air pipe;

[0015] The plant storage tank is a flower pot-shaped structure with openings at the top and bottom. A plurality of plant storage tanks are arranged on the top of the box body. Each plant storage tank is wrapped with an air bag on the outside. Each air bag is connected to each other and is connected to the buoyancy air pipe.

[0016] There are two detection outer rods, which extend from the left and right sides of the box respectively;

[0017] The internal detection head is arranged inside the box body, and the internal detection head is located between the aeration pipe and the plant storage tank.

[0018] Furthermore, a support rod is horizontally arranged on the rear side of the box body, and the propulsion nozzles on the left and right sides are fixedly installed on the left and right ends of the support rod. A separate propulsion air pipe is arranged on each side of the support rod, and the propulsion nozzles on the left and right sides are separately connected to a propulsion air pipe, and each propulsion air pipe is provided with a separately controlled propulsion valve.

[0019] Furthermore, the two detection outer rods are symmetrically arranged on both sides of the box body, and the two detection outer rods are curved pipes extending downward from the outside;

[0020] Water quality monitoring sensors are provided inside the inner detection head and the outer detection rod, and the outer detection rod is an integral long rubber rod.

[0021] Furthermore, carbon fiber ecological grass is hung inside the plant storage tank;

[0022] The airbag is a rubber airbag;

[0023] The aeration pipe is provided with a plurality of ultrafine atomizing nozzles, each of which is connected to the air delivery pipe through the aeration pipe; and a microorganism solidification carrier is provided on the top of the aeration pipe.

[0024] Furthermore, the propulsion valve is a solenoid valve, and the regulating valve is a four-way solenoid valve.

[0025] Furthermore, the locator is a position tracker;

[0026] A waterproof cover is provided on the top of the air inlet pipe; a solar cell is also provided on the top of the box body, and the air pump is connected to the solar cell.

[0027] The beneficial effects of the utility model are as follows: 1. The utility model can supply air to the aeration tube through the air pump to emit ultrafine bubbles and release them into the underwater part of the box, effectively purifying the water quality, especially the area inside the box; and the aeration tube is also added with a microbial solidification carrier, which can effectively expand and release beneficial microorganisms through bioengineering methods such as adsorption, embedding, cross-linking and covalent bonding, thereby enhancing the activity of microorganisms, and the combined purification effect of water body is better;

[0028] 2. Purification plants are planted in the plant storage tank of this device, which can maximize the absorption and transformation of inorganic salts such as inorganic nitrogen and inorganic phosphorus in the water, solve the eutrophication of the water body, improve the living environment of water microorganisms and effectively purify the water body. It can also use microbial communities to absorb and degrade nutrients in the water body; on the other hand, it can create a habitat for aquatic organisms, increase the biological carrying capacity, and thus improve the purification efficiency;

[0029] 3. The air pump of this device can also supply air to the propulsion nozzle and provide power, so that the device can provide more flexible power, make the device move freely, and can also unilaterally jet and turn without adding other driving devices, simplifying the internal structure of the box. At the same time, the air pump of this device can also inflate the air bag on the top of the box through the regulating valve to adjust the buoyancy, greatly simplifying the structure and having a high degree of integration;

[0030] 4. The water quality detection of this device not only adds detection outer rods on the left and right sides, the detection outer rods used to operate the box body are extended into the drain outlet where rainwater flows into the waterway, and the water quality of the rainwater pipe is directly detected, avoiding the detection method of mixing rainwater and river water, effectively improving the detection accuracy of initial rainwater, and a separate internal detection head is added. When the box body is completely floating in the river, the internal detection head can effectively detect the river water treated inside the water tank, and the detection outer rods can detect the water quality of the water body in the river; it plays a role in data comparison, and can obtain more water quality comparison data, making the river water quality monitoring clearer. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0032] Figure 1 This is a schematic diagram of the overall structure of the utility model;

[0033] Figure 2 This is a schematic diagram of the internal structure of the box of the utility model;

[0034] Figure 3 This is a schematic diagram of the internal side structure of the box body of the utility model;

[0035] Figure 4 This is a schematic diagram of a top view of the box body of the utility model;

[0036] Figure 5 This is a schematic diagram of the propulsion trachea structure of the utility model;

[0037] Figure 6 This is a schematic diagram of the wrapped state of a single plant storage tank and air bag of the utility model.

[0038] In the accompanying drawings, the components represented by the reference numerals are as follows:

[0039] 1- box body, 11- positioner, 12- aeration pipe, 13- air inlet pipe, 2- air pump, 21- propulsion nozzle, 22- support rod, 23- propulsion valve, 3- plant storage tank, 31- inflation valve, 32- air bag, 4- detection outer rod, 41- internal detection head, 5- regulating valve, 51- propulsion air pipe, 52- buoyancy air pipe, 53- air supply pipe. DETAILED DESCRIPTION

[0040] See also Figures 1 to 6 As shown, the present invention provides an integrated device for water detection and purification. In order to better understand the above technical solution, the above technical solution will be described in detail below in combination with the drawings in the specification and specific implementation methods.

[0041] In a specific embodiment of the technical solution of the present utility model:

[0042] It includes a box body 1, an air pump 2, a plant storage tank 3, an outer detection rod 4 and an inner detection head 41;

[0043] The box body 1 is a hollow box body, and a plurality of aeration pipes 12 are provided at the bottom of the box body 1, and each aeration pipe 12 is connected to each other;

[0044] A locator 11 and an air intake pipe 13 are provided on the top of the box 1. The locator 11 is a position tracker. The locator 11 is controlled by signal transmission from a remote control platform to optimize the moving route of the water purification machine. A communication device also needs to be installed on the top of the box 1. The communication device is used to connect with the intelligent system and remotely control the air intake valve and the inflation valve to facilitate the control of the air pump aeration and the propulsion of the entire box 1. A waterproof cover is provided on the top of the air intake pipe 13 to prevent rainwater from entering the air pump 2. The air pump 2 needs to be waterproof to ensure that it will not be damaged by water and can be immersed in water for use. A solar cell is also provided on the top of the box 1, and the air pump 2 is connected to the solar cell.

[0045] A closed waterproof housing is provided on the outside of the air pump 2. The air inlet of the air pump 2 is sealedly connected to the air inlet pipe 13. A regulating valve 5 is provided at the air outlet of the air pump 2. Three air outlet pipes are provided on the regulating valve 5. The air outlet of the regulating valve 5 is sealedly connected to the air supply pipe 53, the propulsion air pipe 51 and the buoyancy air pipe 52 respectively; the air supply pipe 53, the propulsion air pipe 51 and the buoyancy air pipe 52 are all independently provided sealed pipes.

[0046] Each aeration pipe 12 is sealed and connected to the gas delivery pipe 53;

[0047] The propulsion valve 23 is a solenoid valve, and the regulating valve 5 is a four-way solenoid valve. It is convenient for flexible control, and the regulating valve 5 can flexibly control the opening or closing of each valve port.

[0048] Multiple propulsion nozzles 21 are provided on both sides of the back of the housing 1. Each propulsion nozzle 21 is sealed and connected to a propulsion air pipe 51. A propulsion valve 23 is provided on the propulsion air pipe 51. A support rod 22 is also provided horizontally on the back of the housing 1. The left and right propulsion nozzles 21 are fixedly mounted on the left and right ends of the support rod 22. A separate propulsion air pipe 51 is provided on each side of the support rod 22. Each propulsion nozzle 21 is connected to a separate propulsion air pipe 51. Each propulsion air pipe 51 is equipped with a separately controlled propulsion valve 23. This structure allows the separate propulsion valves 23 on the left and right propulsion air pipes 51 to independently control the start and stop of airflow, thereby enabling the propulsion nozzles 21 on both sides of the housing 1 to propel simultaneously, or for one propulsion nozzle 21 to propel only to achieve the purpose of steering. This makes the control of the housing 1 more flexible and also provides a more flexible operation method for the device to turn the detection outer rod 4 into the vertical drain outlet of the rainwater pipe. Moreover, the power intensity required by this device is not large. It mainly moves on the water in the form of a floating island and generally does not need to be propelled. It is only driven in special circumstances, such as when inspecting rainwater pipes and adjusting the posture, and moving the device to the shore when maintenance is required. Also, when a new microbial carrier needs to be replaced, the device needs to be driven and adjusted through the propulsion nozzle 21. When purifying the water area at ordinary times, it does not need to be driven, and the device can float on its own in the water.

[0049] This device can be equipped with a camera on the top of the box body 1 to observe the extension direction of the outer rod 4, and can also observe the surrounding environment and control the moving direction of the box body 1. If a camera is not installed, personnel can approach the device and operate it on site. The operation of the camera and the control valve 5 is remote control, and can use the remote control system of the drone, or the existing floating island or unmanned remote control rescue ship control device; it belongs to the existing device and the existing technology, and will not be repeated.

[0050] The plant storage tank 3 is a flower pot-shaped structure with openings on the top and bottom. Carbon fiber ecological grass is hung inside the plant storage tank 3. The specific surface area of ​​carbon fiber ecological grass is more than 10 times larger than that of ordinary fillers, which greatly increases the biological carrying capacity, thereby improving the purification efficiency, and can effectively buffer the impact of the initial rainwater pollution impact at the rainwater outlet on the water quality of rivers and lakes; the plant storage tank 3 can be a hard flower pot supported by PVC, with a small opening on the top and a small opening on the bottom to facilitate the accommodation of plants. If necessary, it can be filled with soilless cultivation sponge to avoid polluting the waterway as much as possible, and it needs to be not easy to break and light in weight. A plurality of plant storage tanks 3 are arranged on the top of the box body 1, and each plant storage tank 3 is wrapped with an air bag 32 on the outside. Each air bag 32 are interconnected, and the airbag 32 is connected to the buoyancy air tube 52; the airbag 32 is a rubber airbag; the airbag 32 is an integral sac, similar to a rubber lifebuoy, except that a plurality of hard plant storage tanks 3 are arranged on the top, and the plant storage tanks 3 are embedded in the top of the airbag 32, and the top of the plant storage tank 3 is covered by the cover of the box body 1, or it can be directly exposed. The airbag 32 is fixed as a whole on the top of the inner cavity of the box body 1, and the airbag 32 can be controlled to be deflated or inflated by the regulating valve 5. When the regulating valve 5 controls the air pump 2 to be connected to the airbag 32, the airbag 32 will be inflated. When the regulating valve 5 controls the airbag 32 to be connected to the aeration pipe 12, the airbag 32 is deflated until the water pressure is balanced with the bottom of the aeration pipe 12.

[0051] A plurality of ultrafine atomizing nozzles are provided on the aeration tube 12, and each ultrafine atomizing nozzle is connected to the air supply pipe 53 through the aeration tube 12; and a microorganism solidification carrier is provided on the top of the aeration tube 12; the nozzle of the aeration tube 12 can spray air downward, and bubbles float upward, and the selected high-quality combined microbial flora is solidified on the carrier, and the aeration oxygen supply is cleverly used to realize the circulation of water, effectively expand and release beneficial microorganisms, and greatly improve the water purification efficiency.

[0052] There are two detection outer rods 4, and the two detection outer rods 4 extend respectively on the left and right sides of the box body 1;

[0053] The inner detection head 41 is arranged inside the box body 1 , and the inner detection head 41 is located between the aeration pipe 12 and the plant storage tank 3 .

[0054] The two detection outer rods 4 are symmetrically arranged on both sides of the box body 1, and the two detection outer rods 4 are curved pipes extending downward from the outside;

[0055] The inner detection head 41 is arranged at the rear side of the box body 1, preferably within the wrapping range of the carbon fiber ecological grass, so as to facilitate the detection of the water quality after aeration;

[0056] Water quality monitoring sensors are installed inside the inner detection head 41 and the detection outer rod 4. The detection outer rod 4 is an integral long rubber rod, and the water quality monitoring sensor is exposed at the outer end of the detection outer rod 4; the types of water quality monitoring sensors include dissolved oxygen, ammonia nitrogen, and permanganate index.

[0057] A radar flow meter and a radar water level meter are also provided in the box 1 for real-time monitoring of the flow and hydrological data of the river. These are conventional equipment for detecting floating islands. The rear side of the water tank 1 is open, making the water tank 1 of this device an open structure, which can facilitate circulation with the water environment.

[0058] It should be noted that:

[0059] 1. There are existing water purification floating islands, but they can basically only purify the waters in which they are located and work by floating. They cannot be driven by remote control because the driving of the floating island in the water basically relies on the motor to drive the propeller. The driving device is heavy. When installed on the floating island, the volume requirement of the floating island is relatively large. If other water purification functions are added, a larger load buoyancy is required, and the volume is too large to be suitable for use in most small rivers or waters. The present device has a simple structure and does not require a separate marine driving device. Instead, the aeration device of the air pump 2 is disassembled and then combined with the propulsion nozzle 21 to form a tiny driving device. This can miniaturize the floating island and even integrate it into a 1 cubic meter box 1. It is particularly suitable for use in urban rivers and has a wide range of applications.

[0060] 2. Generally, water purification floating islands have some water quality or hydrological monitoring functions, but they are all for floating waters. There is no way to extend them into the rainwater pipe for detection. Therefore, it is impossible to accurately detect the water quality of the initial rainwater. It can only be detected near the rainwater outlet and in the surrounding area. The detection is not the real water quality of the initial rainwater, but only the approximate data, and the accurate data relationship cannot be obtained. However, this device can not only accurately detect the water quality of the initial rainwater by extending the detection outer rod 4 into the rainwater pipe outlet in the river, but also accurately detect the water quality of the initial rainwater through the detection outer rods 4 on the left and right sides. The sewer pipes on both sides of the river can be inspected. Due to the effect of water flow, the front end of the device must face upstream when it is inserted into the river for inspection. Therefore, it is necessary to set up detection outer rods 4 on both sides of the box 1 to make inspection more convenient. The initial rainwater data obtained by the river and lake water flow quality model can establish a quantitative response relationship between the initial rainwater pollution load and the river and lake water quality. Combined with the purification unit structure of the device, the layout, movement route and speed of the device can be more scientifically evaluated. The device can also be assembled and spliced ​​into multiple connected modules to maximize the purification efficiency.

[0061] 3. At the same time, the device also adds an internal detection head 41, which can simultaneously detect the water quality inside the box 1 and the water quality of the external water area. Once it is found that the water quality difference is too large, it means that the water purification effect of the device is good, but the river is heavily polluted, and more devices are needed to purify the entire water area.

[0062] When using the present invention, suitable emergent and floating plants such as cattails and foxtail algae are first planted in the plant storage tank 3 of the device to absorb and transform inorganic salts such as inorganic nitrogen and inorganic phosphorus in the water, thereby improving the living environment of aquatic microorganisms. If necessary, different plants can be placed. Since the plant storage tank 3 of the present device is independent, different plants can be placed according to water quality requirements to achieve the best purification effect. Plants with long root systems are preferably selected to prevent the box 1 from floating too high and the plant roots from contacting the river water.

[0063] Carbon fiber ecological grass is hung inside the box. It is a bionic product of aquatic grass. On the one hand, it can make full use of the microbial community to absorb and degrade nutrients in the water and bottom mud; on the other hand, it can create a habitat for aquatic organisms and bind a solid microbial carrier to the top of the aeration pipe 12. The microbial carrier adopts a micro-nano coupled biological release head and introduces carrier solidification microbial technology. Through bioengineering methods such as ion adsorption, embedding, cross-linking and covalent bonding, various high-quality combined microbial flora selected for specific pollutants are solidified on the carrier, which can effectively expand and release beneficial microorganisms, enhance microbial activity, and purify water quality.

[0064] Place the box 1 in the target water area on the shore, fill the box 1 with water, then turn on the air pump 2 to adjust the buoyancy of the air bag 32 to control the overall buoyancy balance of the box 1. The buoyancy needs to expose the top of the box 1 above the water surface, and most of the box 1 is immersed in water. The part of the top of the box 1 exposed to the water surface is generally controlled to be sufficient to soak the plant roots in the water.

[0065] Then release the box 1, and send the gas from the air pump 2 into the propulsion air pipe 51 through the regulating valve 5. The air flows along the propulsion valve 23 and is discharged backward from the propulsion nozzle 21, driving the box 1 floating on the water to slowly move away from the shore.

[0066] Then control the regulating valve 5 to pump the gas in the air pump 2 into the aeration pipe 12, and aerate and purify the water inside the box 1 through the ultra-fine atomizing nozzle to achieve the effect of purifying the water quality, and then start to test the water quality and hydrology;

[0067] This device is just a carrier for adding water quality and hydrological equipment, and provides a driving platform for the detection method. The detection device can use the existing detection equipment.

[0068] When it is necessary to detect the quality of initial rainwater, control the propulsion nozzles 21 on the left and right sides, adjust the propulsion and movement posture of the box body 1, so that the front of the box body 1 faces upstream, and then continuously adjust the box body 1, and extend the detection outer rod 4 on one side into the interior of the rainwater outlet into the river. The detection time is very short, and it only needs to contact the water flow. The docking time of the box body 1 can be arranged according to needs to ensure that the initial rainwater detection is accurate.

[0069] When the rainfall intensity or water flow rate exceeds the set threshold, an alert is sent to the remote controller, and personnel control all purification devices in the water body to return to the designated location on the river bank for fixation or recycle them to the shore.

[0070] The threshold settings for rainfall intensity and water flow rate are set according to actual needs. Generally, the alarm response control measures are activated when the total precipitation in 12 hours is ≥15mm or the water flow rate is ≥1.5m / s.

[0071] The front side of the device refers to the direction of forward movement of the box 1, and the rear side refers to the direction of driving the jet. The orientation or position relationship indicated is based on the orientation or position relationship shown in the accompanying drawings. It is only for the convenience of describing the present invention and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it cannot be understood as a limitation to the present invention.

[0072] Although the specific implementation methods of the present invention are described above, those skilled in the art should understand that the specific embodiments described are merely illustrative and are not intended to limit the scope of the present invention. Equivalent modifications and changes made by those skilled in the art in accordance with the spirit of the present invention should be included within the scope of protection of the claims of the present invention.

Claims

1. An integrated device for water detection and purification, characterized in that: include: Box body (1), air pump (2), plant storage tank (3), detection outer rod (4) and inner detection head (41); The box body (1) is a hollow box body, and a plurality of aeration pipes (12) are provided at the bottom of the box body (1), and each of the aeration pipes (12) is interconnected; A positioner (11) and an air inlet pipe (13) are provided on the top of the box body (1); A closed waterproof housing is provided on the outside of the air pump (2); the air inlet of the air pump (2) is sealedly connected to the air inlet pipe (13); a regulating valve (5) is provided at the air outlet of the air pump (2); three air outlet pipes are provided on the regulating valve (5); the air outlet of the regulating valve (5) is sealedly connected to an air supply pipe (53), a propulsion air pipe (51) and a buoyancy air pipe (52); the air supply pipe (53), the propulsion air pipe (51) and the buoyancy air pipe (52) are all independently provided sealed pipes; Each of the aeration pipes (12) is sealedly connected to the air delivery pipe (53); A plurality of propulsion nozzles (21) are provided on both the left and right sides of the back of the box (1), and each of the propulsion nozzles (21) is in sealed communication with a propulsion air pipe (51); a propulsion valve (23) is provided on the propulsion air pipe (51); The plant storage tank (3) is a flowerpot-shaped structure with openings at the top and bottom. A plurality of plant storage tanks (3) are arranged on the top of the box (1). An air bag (32) is wrapped around the outside of each plant storage tank (3). Each air bag (32) is connected to each other, and the air bag (32) is connected to the buoyancy air pipe (52). There are two detection outer rods (4), and the two detection outer rods (4) extend respectively on the left and right sides of the box body (1); The internal detection head (41) is arranged inside the box (1), and the internal detection head (41) is located between the aeration pipe (12) and the plant storage tank (3).

2. The integrated device for water detection and purification according to claim 1, characterized in that: A support rod (22) is also horizontally arranged on the rear side of the box body (1), and the propulsion nozzles (21) on the left and right sides are fixedly installed on the left and right ends of the support rod (22). A separate propulsion air pipe (51) is respectively arranged on the left and right sides of the support rod (22), and the propulsion nozzles (21) on the left and right sides are respectively connected to the propulsion air pipes (51) on the left and right sides, and each propulsion air pipe (51) is provided with a separately controlled propulsion valve (23).

3. The integrated device for water detection and purification according to claim 1, characterized in that: The two detection outer rods (4) are symmetrically arranged on both sides of the box body (1), and the two detection outer rods (4) are curved pipes extending downward from the outside; Water quality monitoring sensors are provided inside the inner detection head (41) and the detection outer rod (4), and the detection outer rod (4) is an integral long rubber rod.

4. The integrated device for water detection and purification according to claim 1, characterized in that: Carbon fiber ecological grass is suspended inside the plant storage tank (3); The airbag (32) is a rubber airbag; A plurality of ultrafine atomizing nozzles are provided on the aeration pipe (12), and each of the ultrafine atomizing nozzles is connected to the air delivery pipe (53) through the aeration pipe (12); and a microorganism solidification carrier is provided on the top of the aeration pipe (12).

5. The integrated device for water detection and purification according to claim 1, characterized in that: The propulsion valve (23) is a solenoid valve, and the regulating valve (5) is a four-way solenoid valve.

6. The integrated device for water detection and purification according to claim 1, characterized in that: The locator (11) is a position tracker; A waterproof cover is provided on the top of the air inlet pipe (13); a solar cell is also provided on the top of the box body (1), and the air pump (2) is connected to the battery.

Citation Information

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