A micro-nano bubble tail water decontamination device based on family farms

By using a combination of micro-nano bubble generation modules and direction control modules in the pond, the problems of suspended matter removal and clogging of the pond purification device are solved, achieving efficient water purification and convenient equipment maintenance.

CN118833895BActive Publication Date: 2025-09-16ZHEJIANG INST OF FRESH WATER FISHERIES
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Patent Information

Application Number
CN202411002131.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-07-25
Publication Date
2025-09-16
Estimated Expiration
2044-07-25

AI Technical Summary

Technical Problem

Existing pond purification devices are difficult to effectively remove suspended matter and improve water transparency, and the equipment is easily blocked, affecting its use.

Method used

A micro-nano bubble generation module is used to generate bubbles at different depths. Combined with a floating module and an anti-loss rope, it facilitates equipment suspension operation and collection. Anti-stirring blades and cleaning brushes are used to prevent blockage, and the control module is used to remove suspended matter.

Benefits of technology

It improves the transparency and decontamination effect of pond water, prevents equipment clogging, and simplifies the maintenance process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a micro-nano bubble tail water decontamination device for family farms, belonging to the technical field of water regulation and decontamination equipment. A floating module is provided on the upper part of the micro-decontamination device, an anti-loss motor module is provided at the bottom of the floating module, a micro-nano bubble generating module is installed at the bottom of the anti-loss motor module, and a set of rotating long-axis exhaust pipes are provided on the left and right sides of the micro-nano bubble generating module. The invention facilitates the micro-decontamination device to operate at different depths through the control module, effectively absorbs suspended matter in the water body, such as algae and plankton, at different depths through micro-nano bubbles, and brings them to the water surface under the action of flotation, thereby improving the transparency of the water body and enhancing the decontamination effect; the floating module and the anti-loss rope make it easy for users to collect the micro-decontamination device when it is used abnormally, facilitating subsequent maintenance; and two sets of anti-stirring blades and cleaning brushes are used to prevent objects such as algae from clogging the device and affecting its use.
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Description

Technical Field

[0001] The present invention relates to the technical field of water decontamination equipment, and in particular to a micro-nano bubble tail water decontamination device for family farms. Background Art

[0002] Tiny bubbles in liquids are called microbubbles when their diameter is under 100μm, and nanobubbles when their diameter is under 100nm. Micro-nano bubbles are bubbles with diameters between tens of microns and hundreds of nanometers when they occur. These bubbles are between microbubbles and nanobubbles, and possess physical and chemical properties not possessed by conventional bubbles.

[0003] Micro-nano bubbles rise slowly in water, have a long residence time, high dissolution efficiency, and have the characteristics of self-oxygenation, negative charge, and rich in highly oxidizing free radicals. With the scale of pond aquaculture, the problem of pond water quality has become increasingly prominent, posing a serious threat to the living environment and aquaculture results around the pond. As an emerging water treatment technology, micro-nano bubble technology has shown good application prospects in pond water management due to its unique physical and chemical properties. These characteristics make micro-nano bubbles have broad application prospects in pond water treatment.

[0004] In summary, it is necessary to improve the existing traditional pond purification device. Summary of the Invention

[0005] In order to comprehensively solve the above problems, especially to address the shortcomings of the existing technology, the present invention provides a micro-nano bubble tail water decontamination device for family farms that can comprehensively solve the above problems.

[0006] To achieve the above objectives, the present invention adopts the following technical means:

[0007] The present invention provides a micro-nano bubble tail water decontamination device for family farms, comprising a pond, in which micro-decontaminators are evenly placed, and the micro-decontaminators comprise a floating module, an anti-loss motor module, and a micro-nano bubble generating module; a floating module is provided on the upper part of the micro-decontaminator, an anti-loss motor module is provided at the bottom of the floating module, a micro-nano bubble generating module is installed at the bottom of the anti-loss motor module, a group of rotating long-axis exhaust pipes are respectively provided on the left and right sides of the micro-nano bubble generating module, and direction control modules are provided at the bottoms of both ends of the micro-nano bubble generating module.

[0008] Furthermore, a handle frame is installed on the upper part of the floating module, a warning light is provided on the upper end of the handle frame, an anti-loss rope is provided at the bottom of the anti-loss motor module, and the bottom of the anti-loss rope is connected to the micro-nano bubble generating module.

[0009] Furthermore, a water inlet is provided on the left side of the micro-nano bubble generating module, a gas outlet is installed in the middle of the micro-nano bubble generating module, and a water suction pump, a filtering device and a gas generating device are installed inside the micro-nano bubble generating module.

[0010] Furthermore, a hollow rotating rod is provided at the rear of the rotating long-axis exhaust pipe, a rotating motor is provided at the bottom of the hollow rotating rod, an air supply pipe is provided at the top of the hollow rotating rod, and micro-nano bubble holes are evenly arranged on the rotating long-axis exhaust pipe.

[0011] Furthermore, a support base is provided at the bottom of the micro-nano bubble generating module, a power supply is provided inside the support base, a controller is provided at the front end of the support base, and a positioner is provided at the bottom of the controller.

[0012] Furthermore, power steering motors are provided on both sides of the support seat, a rotating shaft is provided at the output end of the power steering motor, and a steering module is installed at the front end of the rotating shaft.

[0013] Furthermore, a first support frame is provided at the front end of the interior of the control module, a first drive motor is installed at the front end of the first support frame, the output end of the first drive motor is connected to the first rotating shaft frame, and propeller blades, a first cleaning brush and a first anti-stirring blade are sequentially provided on the upper part of the first rotating shaft frame, and a first filter screen and a second filter screen are respectively provided on both sides of the control module.

[0014] Furthermore, a second support frame is provided at the rear end of the control module, a second drive motor is installed at the front end of the second support frame, the output end of the second drive motor is connected to a second rotating shaft frame, and a second cleaning brush and a second anti-stirring blade are sequentially provided on the upper part of the second rotating shaft frame.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: the present invention facilitates the suspension operation of the micro-decontaminator at different depths through the control module, effectively absorbs suspended matter in the water body, such as algae, plankton, etc., at different depths through micro-nano bubbles, and brings them to the water surface under the action of flotation, thereby improving the transparency of the water body and enhancing the decontamination effect; the floating module and the anti-loss rope make it easy for users to collect the micro-decontaminator when it is used abnormally, and facilitate subsequent maintenance; two sets of anti-stirring blades and cleaning brushes are used to prevent objects such as algae from clogging the equipment and affecting its use. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic structural diagram of the present invention;

[0017] Figure 2 This invention Figure 1 Enlarged view of point A in the middle;

[0018] Figure 3 It is a schematic diagram of the structure of the present invention when in use;

[0019] Figure 4 This is a front view of the structure of the present invention when in use;

[0020] Figure 5 This is a front view of the micro-decontaminant remover of the present invention when in use;

[0021] Figure 6 This is a right side view of the micro-decontaminant remover of the present invention when in use;

[0022] Figure 7 This invention Figure 6 Enlarged view of point B in the middle;

[0023] Figure 8 Schematic diagram of the structure of the micro-decontaminant remover of the present invention;

[0024] Figure 9 This is a schematic diagram of the control module structure of the present invention;

[0025] Figure 10 This is a cross-sectional view of the control module structure of the present invention;

[0026] Figure 11 It is an assembly drawing of the control module of the present invention.

[0027] In the picture:

[0028] 1. Pond; 2. Micro-decontaminant; 21. Floating module; 22. Handle holder; 23. Anti-loss motor module; 24. Micro-nano bubble generation module; 25. Rotating motor; 26. Support base; 27. Power steering motor; 28. Direction control module; 221. Warning light; 231. Anti-loss rope; 241. Water inlet; 242. Air outlet; 251. Hollow rotating rod; 252. Rotating long-axis exhaust pipe; 253. Air supply pipe; 261. Controller; 262. Positioner; 271, rotating shaft; 281, first support frame; 282, first drive motor; 283, first rotating shaft frame; 284, propeller blade; 285, first cleaning brush; 286, first anti-stirring blade; 287, second support frame; 288, second drive motor; 289, second rotating shaft frame; 290, second cleaning brush; 291, second anti-stirring blade; 292, first filter; 293, second filter; 2521, micro-nano bubble pore. DETAILED DESCRIPTION

[0029] The present invention will be further described below with reference to the accompanying drawings: Example 1:

[0030] As attached Figure 1 To the attached Figure 8As shown, in one embodiment of the present invention, a micro-nano bubble tail water decontamination device for family farms includes a pond 1, in which micro-decontaminators 2 are evenly placed, and the micro-decontaminators 2 include a floating module 21, an anti-loss motor module 23, and a micro-nano bubble generating module 24; a floating module 21 is provided on the upper part of the micro-decontaminator 2, an anti-loss motor module 23 is provided at the bottom of the floating module 21, and a micro-nano bubble generating module 24 is installed at the bottom of the anti-loss motor module 23, a group of rotating long axis exhaust pipes 252 are provided on the left and right sides of the micro-nano bubble generating module 24, and a control module 28 is provided at the bottom of both ends of the micro-nano bubble generating module 24; a handle frame 22 is installed on the upper part of the floating module 21 A warning light 221 is provided at the upper end of the handle frame 22, an anti-loss rope 231 is provided at the bottom of the anti-loss motor module 23, and the bottom of the anti-loss rope 231 is connected to the micro-nano bubble generating module 24; a water inlet 241 is provided on the left side of the micro-nano bubble generating module 24, and an air outlet 242 is installed in the middle position of the micro-nano bubble generating module 24. A water suction pump, a filtering device and a gas generating device are installed inside the micro-nano bubble generating module 24; a hollow rotating rod 251 is provided at the rear of the rotating long axis exhaust pipe 252, a rotating motor 25 is provided at the bottom of the hollow rotating rod 251, an air supply pipe 253 is provided on the upper part of the hollow rotating rod 251, and micro-nano bubble holes 2521 are evenly arranged on the rotating long axis exhaust pipe 252.

[0031] In this example, the first driving motor 282 drives the propeller blades 284 on the first rotating shaft frame 283 to rotate, and the micro-decontaminator 2 begins to sink slowly. At the same time, the anti-loss motor module 23 is started, and the anti-loss rope 231 is synchronously and slowly extended.

[0032] Furthermore, after diving to a certain depth, the first drive motor 282 and the anti-loss motor module 23 stop at the same time, and the floating module 21 floats on the surface of the pond 1. At this time, the rotating motor 25 starts, and the rotating motor 25 drives the hollow rotating rod 251 to rotate. The hollow rotating rod 251 drives the rotating long-axis exhaust pipe 252 to rotate, and the rotation angle is 0° to 270°. The synchronous micro-nano bubble generating module 24 starts to start, produces micro-nano bubbles, and the micro-nano bubbles are discharged through the micro-nano bubble holes 2521. Example 2:

[0033] As attached Figure 5 To the attached Figure 11As shown, in one embodiment of the present invention, specifically, the micro-nano bubble generating module 24 is provided with a support base 26 at the bottom, a power supply is provided inside the support base 26, a controller 261 is provided at the front end of the support base 26, and a positioner 262 is provided at the bottom of the controller 261; a power steering motor 27 is provided on both sides of the support base 26, a rotating shaft 271 is provided at the output end of the power steering motor 27, and a control module 28 is installed at the front end of the rotating shaft 271; a first support frame 281 is provided at the front end of the control module 28, and a first drive motor 282 is installed at the front end of the first support frame 281. The output end of the motor 282 is connected to the first rotating shaft frame 283, and the upper part of the first rotating shaft frame 283 is sequentially provided with a propeller blade 284, a first cleaning brush 285 and a first anti-stirring blade 286, and the first filter screen 292 and the second filter screen 293 are respectively provided on both sides of the control module 28; the rear end of the control module 28 is provided with a second support frame 287, and the front end of the second support frame 287 is installed with a second drive motor 288, and the output end of the second drive motor 288 is connected to the second rotating shaft frame 289, and the upper part of the second rotating shaft frame 289 is sequentially provided with a second cleaning brush 290 and a second anti-stirring blade 291.

[0034] In this embodiment, when the direction control module 28 is operating, the first anti-stirring blade 286 and the second anti-stirring blade 291 rotate synchronously to cut objects entering the direction control module 28 at high speed to prevent algae and other garbage from clogging the direction control module 28. At the same time, the first filter net 292 and the second filter net 293 filter, and the first cleaning brush 285 and the second cleaning brush 290 clean to further prevent the direction control module 28 from being blocked and affecting the use of the equipment.

[0035] How it works

[0036] Before use, the present invention selects a suitable and mature micro-decontaminator 2 according to the size of the pond 1 and the decontamination control range of the micro-decontaminator 2 and arranges it in the pond 1.

[0037] Start the first drive motor 282 in the control module 28, the first drive motor 282 drives the propeller blade 284 on the first rotating shaft frame 283 to rotate, and the micro-decontaminator 2 begins to sink slowly. At the same time, the anti-loss motor module 23 is started, and the anti-loss rope 231 is synchronously and slowly extended.

[0038] After diving to a certain depth, the first drive motor 282 and the anti-lost motor module 23 stop at the same time, and the floating module 21 floats on the surface of the pond 1. At this time, the rotating motor 25 starts, and the rotating motor 25 drives the hollow rotating rod 251 to rotate. The hollow rotating rod 251 drives the rotating long axis exhaust pipe 252 to rotate, and the rotation angle is 0° to 270°. The synchronous micro-nano bubble generating module 24 starts to start and produces micro-nano bubbles. The micro-nano bubbles are discharged through the micro-nano bubble holes 2521. After a period of time, the first drive motor 282 and the anti-lost motor module 23 stop at the same time, and the floating module 21 floats on the surface of the pond 1. At this time, the rotating motor 25 starts, and the rotating motor 25 drives the hollow rotating rod 251 to rotate. The hollow rotating rod 251 drives the rotating long axis exhaust pipe 252 to rotate. The rotation angle is 0° to 270°. The synchronous micro-nano bubble generating module 24 starts to start and produces micro-nano bubbles. The micro-nano bubbles are discharged through the micro-nano bubble holes 2521. After a period of time, the first drive motor 282 and the anti-lost motor module 23 stop at the same time. The loss-of-motor module 23 is started at the same time, and the micro-contaminant remover 2 continues to dive to a certain depth and then repeats the above operations, performing micro-nano bubble decontamination treatment at different depths of the pond 1, and the locator 262 synchronously detects the position information of the micro-contaminant remover 2. When the lifting information of the micro-nano bubble generating module 24 is inconsistent with the extension information of the anti-loss rope 231, the controller 261 controls the micro-contaminant remover 2 to stop working, and the warning light 221 flashes to emit a warning light. The user moves to this position and lifts the micro-contaminant remover 2 out of the pond 1 through the handle frame 22 for maintenance.

[0039] When the direction control module 28 is operating, the first anti-stirring blade 286 and the second anti-stirring blade 291 rotate synchronously to cut objects entering the direction control module 28 at high speed to prevent algae and other garbage from clogging the direction control module 28. At the same time, the first filter net 292 and the second filter net 293 filter, and the first cleaning brush 285 and the second cleaning brush 290 clean to further prevent the direction control module 28 from being blocked and affecting the use of the equipment.

[0040] In the description of the present invention, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inside", "outside", etc., indicating directions or positional relationships, are based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and therefore should not be understood as limiting the present invention.

[0041] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art will be able to modify the technical solutions described in the aforementioned embodiments or substitute equivalents for some of the technical features. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. A micro-nano bubble tail water decontamination device for family farms, comprising a pond (1), characterized in that: Micro-decontaminators (2) are evenly placed in the pond (1), and the micro-decontaminators (2) include a floating module (21), an anti-loss motor module (23), and a micro-nano bubble generation module (24); The micro-decontaminator (2) is provided with a floating module (21) at the top, an anti-loss motor module (23) is provided at the bottom of the floating module (21), a micro-nano bubble generating module (24) is installed at the bottom of the anti-loss motor module (23), a set of rotating long-axis exhaust pipes (252) are provided on the left and right sides of the micro-nano bubble generating module (24), and direction control modules (28) are provided at the bottoms of both ends of the micro-nano bubble generating module (24); A hollow rotating rod (251) is provided at the rear of the rotating long-axis exhaust pipe (252), a rotating motor (25) is provided at the bottom of the hollow rotating rod (251), an air delivery pipe (253) is provided at the top of the hollow rotating rod (251), and micro-nano bubble holes (2521) are evenly arranged on the rotating long-axis exhaust pipe (252); The front end of the control module (28) is provided with a first support frame (281), the front end of the first support frame (281) is equipped with a first drive motor (282), the output end of the first drive motor (282) is connected to a first rotating shaft frame (283), the upper part of the first rotating shaft frame (283) is provided with a propeller blade (284), a first cleaning brush (285) and a first anti-stirring blade (286) in sequence, and the two sides of the control module (28) are provided with a first filter (292) and a second filter (293) respectively; the rear end of the control module (28) is provided with a second support frame (287), the front end of the second support frame (287) is equipped with a second drive motor (288), the output end of the second drive motor (288) is connected to a second rotating shaft frame (289), and the upper part of the second rotating shaft frame (289) is provided with a second cleaning brush (290) and a second anti-stirring blade (291) in sequence; the micro-decontaminator (2) is controlled by the control module (28) to operate in suspension at different depths.

2. A micro-nano bubble tail water decontamination device based on family farms according to claim 1, characterized in that, A handle frame (22) is mounted on the upper portion of the floating module (21), a warning light (221) is provided at the upper end of the handle frame (22), an anti-loss rope (231) is provided at the bottom of the anti-loss motor module (23), and a micro-nano bubble generating module (24) is connected to the bottom of the anti-loss rope (231).

3. A micro-nano bubble tail water decontamination device based on family farms according to claim 1, characterized in that, A water inlet (241) is provided on the left side of the micro-nano bubble generating module (24), a gas outlet (242) is installed in the middle of the micro-nano bubble generating module (24), and a water suction pump, a filtering device, and a gas generating device are installed inside the micro-nano bubble generating module (24).

4. A micro-nano bubble tail water decontamination device based on family farms according to claim 1, characterized in that, A support base (26) is provided at the bottom of the micro-nano bubble generating module (24), a power supply is provided inside the support base (26), a controller (261) is provided at the front end of the support base (26), and a positioner (262) is provided at the bottom of the controller (261).

Citation Information

Patent Citations

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