Mechanical vibration type treatment equipment for treating marine aquaculture sewage

By introducing mechanical vibration filtration and hierarchical filtration technology into marine aquaculture sewage treatment equipment, the problems of clogging and lack of hierarchical filtration of traditional equipment are solved, and efficient and automated sewage treatment is achieved.

CN119929934APending Publication Date: 2025-05-06GUANGDONG OCEAN UNIVERSITY
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Patent Information

Application Number
CN202510180557.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-19
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

When traditional sewage treatment equipment treats marine aquaculture sewage, static filtration methods can easily lead to clogging of the filter net and lack the hierarchical filtration function, resulting in poor sewage treatment effect.

Method used

A mechanical vibration treatment equipment is designed, including a mobile base, a vibration table, a primary filter box, agitating assembly and a secondary sewage treatment mechanism. The vibration assembly generates mechanical vibration for vibration filtration, combines the agitating assembly to accelerate the mixing reaction of sewage and flocculant, and improves the sewage treatment efficiency through staging filtration and secondary treatment.

Benefits of technology

Effectively prevent filter clogging, improve filtration efficiency, enhance pollutant removal rate, realize hierarchical filtration and automated intelligent treatment of sewage, and improve treatment accuracy and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses mechanical vibration type treatment equipment for treating marine aquaculture sewage. The mechanical vibration type treatment equipment comprises a movable base, a primary filtering box, a stirring assembly and a secondary sewage treatment mechanism, a control system and a vibration table are installed on the movable base, and a vibration assembly is installed on the vibration table. The primary filtering box is mounted on the vibrating table; a water inlet pipe and a dosing pipe are mounted at the top of the primary filtering box; a first filter screen and a second filter screen are mounted in the primary filter box, and the first filter screen is positioned above the second filter screen; the bottom of the water inlet pipe is positioned above the first filter screen; the stirring assembly is mounted on the primary filtering box; the secondary sewage treatment mechanism is mounted on the movable base, and the water inlet end of the secondary sewage treatment mechanism is fixedly connected and communicated with the bottom of the primary filter box through a pump liquid assembly. According to the invention, vibration filtration and grading filtration of sewage can be realized, automation and intelligence of the sewage treatment process are realized, and the treatment effect and working efficiency of marine aquaculture sewage are improved.
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Description

Technical Field

[0001] The invention relates to the technical field of sewage treatment, and in particular to a mechanical vibration treatment device for treating marine aquaculture sewage. Background Art

[0002] In the field of marine aquaculture, sewage treatment is a key link in ensuring the health of the aquaculture environment and sustainable development. Traditional sewage treatment devices often face many challenges when treating marine aquaculture sewage. On the one hand, most of the existing sewage treatment equipment adopts static filtration, and the filter is easy to clog during use, which not only reduces the filtration efficiency, but also increases maintenance costs and time. On the other hand, the existing sewage treatment devices are of a single design and lack the function of graded filtration, which makes it difficult to effectively separate and treat pollutants of different sizes and properties in the sewage, resulting in poor sewage treatment effects and low work efficiency.

[0003] Therefore, a mechanical vibration treatment device for treating marine aquaculture wastewater is proposed. Summary of the invention

[0004] The object of the present invention is to provide a mechanical vibration treatment device for marine aquaculture wastewater treatment, aiming to solve or improve at least one of the above-mentioned technical problems.

[0005] To achieve the above object, the present invention provides the following solution: The present invention provides a mechanical vibration treatment device for treating marine aquaculture wastewater, comprising:

[0006] A mobile base, on which a control system and a vibration table are installed, and on which a vibration component is installed;

[0007] A primary filter box, the primary filter box is mounted on the vibration platform; a water inlet pipe and a drug adding pipe are mounted on the top of the primary filter box; a first filter screen and a second filter screen are mounted in the primary filter box, the first filter screen is located above the second filter screen; the bottom of the water inlet pipe is located above the first filter screen;

[0008] A stirring assembly, wherein the stirring assembly is mounted on the primary filter box;

[0009] A secondary sewage treatment mechanism, the secondary sewage treatment mechanism is installed on the mobile base, and the water inlet end of the secondary sewage treatment mechanism is fixedly connected and communicated with the bottom of the primary filter box through a pump liquid component;

[0010] Among them, the output end of the stirring component and the bottom of the dosing tube are both located between the first filter screen and the second filter screen; the vibration component, the stirring component, the secondary sewage treatment mechanism and the pump liquid component are all electrically connected to the control system.

[0011] According to a mechanical vibration treatment device for treating marine aquaculture wastewater provided by the present invention, the secondary wastewater treatment mechanism comprises a treatment cylinder and a pressure pump, the treatment cylinder is mounted on the mobile base through a bracket, a filter element is detachably connected inside the treatment cylinder, a first water inlet is mounted at the bottom of the treatment cylinder, and a first drain port is mounted at the top of the side wall of the treatment cylinder;

[0012] The pressure pump is fixedly connected and communicated with the first drain port through a pipeline, the pump fluid assembly is fixedly connected and communicated with the first water inlet, and the pressure pump is electrically connected with the control system.

[0013] According to a mechanical vibration treatment device for treating marine aquaculture wastewater provided by the present invention, the pump liquid assembly comprises a first water pipe and a second water pipe, a telescopic hose is installed between the first water pipe and the second water pipe, a lifting pump is installed on the first water pipe, a first solenoid valve is installed on the second water pipe, and the lifting pump and the first solenoid valve are both electrically connected to the control system;

[0014] The first water pipe is fixedly connected to the bottom of the side wall of the primary filter box, and the first water pipe is communicated with the inner cavity of the primary filter box, and the second water pipe is fixedly connected to and communicated with the first water inlet.

[0015] According to a mechanical vibration treatment device for treating marine aquaculture wastewater provided by the present invention, the vibration platform comprises a platform body, a plurality of support frames are installed at the bottom of the platform body, a plurality of telescopic rod assemblies and a plurality of air bag assemblies are installed at the bottom of the platform body, the primary filter box is installed on the top surface of the platform body, and the vibration assembly is installed at the bottom of the platform body;

[0016] The telescopic rod assembly and the airbag assembly are both fixedly connected to the top surface of the mobile base, a plurality of spring seats are installed between the platform body and the mobile base, and a gap is provided between the bottom of the support frame and the top surface of the mobile base.

[0017] According to a mechanical vibration treatment device for marine aquaculture wastewater treatment provided by the present invention, the vibration component includes a plurality of vibration motors, the plurality of vibration motors are all installed on the bottom surface of the platform body, and the plurality of vibration motors are all electrically connected to the control system.

[0018] According to a mechanical vibration treatment device for treating marine aquaculture wastewater provided by the present invention, the airbag assembly comprises an upper connecting wing plate and a lower connecting wing plate, the upper connecting wing plate is fixedly mounted on the bottom surface of the platform body, the lower connecting wing plate is detachably connected to the top surface of the mobile base, and the airbag body is fixedly mounted between the upper connecting wing plate and the lower connecting wing plate;

[0019] The telescopic rod assembly includes a sleeve and a connecting rod, wherein the sleeve is fixedly mounted on the bottom surface of the platform body, the top of the connecting rod is slidably connected to the inner wall of the sleeve, and a supporting leg is mounted on the bottom of the connecting rod, and the supporting leg is placed on the top surface of the mobile base.

[0020] According to a mechanical vibration treatment equipment for marine aquaculture wastewater treatment provided by the present invention, a slide groove is vertically opened on the side wall of the sleeve, a slider is installed on the top of the side wall of the connecting rod, and a limit block is installed on the bottom of the side wall of the connecting rod, the slider is slidably connected to the slide groove, and the limit block is located below the sleeve.

[0021] According to a mechanical vibration treatment device for treating marine aquaculture wastewater provided by the present invention, the stirring component comprises:

[0022] A driving motor, wherein the driving motor is mounted on the outer wall of the primary filter box, and an output shaft of the driving motor extends into the inner cavity of the primary filter box;

[0023] A first bevel gear, wherein the first bevel gear is mounted on the output shaft of the driving motor, and a cover is disposed outside the first bevel gear;

[0024] A stirring shaft, the stirring shaft is rotatably connected to the bottom of the housing, and the top of the stirring shaft extends into the housing;

[0025] A second bevel gear, the second bevel gear is mounted at the bottom of the stirring shaft, and the second bevel gear is meshed with the first bevel gear for transmission;

[0026] A stirring blade, the stirring blade is installed at the bottom of the stirring shaft;

[0027] Wherein, the cover shell and the stirring blade are both located in the inner cavity of the primary filter box, and the stirring blade and the cover shell are both located between the first filter screen and the second filter screen.

[0028] According to a mechanical vibration treatment equipment for marine aquaculture wastewater treatment provided by the present invention, the first filter screen and the second filter screen are both arranged obliquely, and the side wall of the primary filter box is installed with a first sewage pipe and a second sewage pipe, the first sewage pipe is located at the lower end of the first filter screen, and the second sewage pipe is located at the lower end of the second filter screen; the first sewage pipe and the second sewage pipe are both installed with a second solenoid valve, and the two second solenoid valves are electrically connected to the control system.

[0029] According to the mechanical vibration treatment equipment for treating marine aquaculture wastewater provided by the present invention, a push rod is installed on one side of the mobile base.

[0030] The present invention discloses the following technical effects:

[0031] The present invention generates mechanical vibration through a vibration component and drives the primary filter box to perform vibration filtration, which can effectively prevent the filter screen from being blocked and improve the filtration efficiency of the first filter screen and the second filter screen in the primary filter box; at the same time, the stirring action of the stirring component helps to accelerate the mixing reaction of sewage and flocculant, improve the removal rate of pollutants, and improve the treatment efficiency of marine aquaculture sewage;

[0032] The present invention performs graded filtration through a first filter screen and a second filter screen, and further treats the sewage through a secondary sewage treatment mechanism, thereby achieving graded filtration of sewage and improving the sewage treatment effect; through the control system, precise control of the vibration component, the stirring component, the secondary sewage treatment mechanism and the pump liquid component is achieved, thereby achieving automation and intelligence of the sewage treatment process and improving the treatment accuracy and stability. BRIEF DESCRIPTION OF THE DRAWINGS

[0033] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0034] Figure 1 It is a structural schematic diagram of the present invention;

[0035] Figure 2 for Figure 1 A partial enlarged view of middle A;

[0036] Figure 3 This is a schematic diagram of the internal structure of the primary filter box in the present invention;

[0037] Figure 4 It is a schematic diagram of the structure of the vibration table in the present invention.

[0038] Among them, 1. mobile base; 2. control system; 3. vibration table; 4. primary filter box; 5. water inlet pipe; 6. dosing pipe; 7. first filter screen; 8. second filter screen; 9. treatment cylinder; 10. pressure pump; 11. bracket; 12. pipeline; 13. first water pipe; 14. second water pipe; 15. telescopic hose; 16. first solenoid valve; 17. first bevel gear; 18. cover shell; 19. stirring shaft; 20. second bevel gear; 21 , stirring blade; 22, first sewage pipe; 23, second sewage pipe; 24, second solenoid valve; 25, push rod; 301, platform body; 302, support frame; 303, spring seat; 304, vibration motor; 305, upper connecting wing plate; 306, lower connecting wing plate; 307, airbag body; 308, sleeve; 309, connecting rod; 310, support leg; 311, slide groove; 312, slider; 313, limit block. DETAILED DESCRIPTION

[0039] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0040] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the present invention is further described in detail below with reference to the accompanying drawings and specific embodiments.

[0041] Reference Figure 1-Figure 4 The present invention provides a mechanical vibration treatment device for treating marine aquaculture wastewater, comprising:

[0042] A mobile base 1, on which a control system 2 and a vibration table 3 are installed, and on which a vibration component is installed;

[0043] A primary filter box 4 is installed on the vibration table 3; a water inlet pipe 5 and a dosing pipe 6 are installed on the top of the primary filter box 4; a first filter screen 7 and a second filter screen 8 are installed in the primary filter box 4, and the first filter screen 7 is located above the second filter screen 8; the bottom of the water inlet pipe 5 is located above the first filter screen 7;

[0044] A stirring assembly, the stirring assembly is installed on the primary filter box 4;

[0045] A secondary sewage treatment mechanism is installed on the mobile base 1, and the water inlet end of the secondary sewage treatment mechanism is fixedly connected and communicated with the bottom of the primary filter box 4 through a pump liquid component;

[0046] The output end of the stirring assembly and the bottom of the dosing pipe 6 are located between the first filter screen 7 and the second filter screen 8; the vibration assembly, the stirring assembly, the secondary sewage treatment mechanism and the pump assembly are all electrically connected to the control system 2;

[0047] In this way, the present invention generates mechanical vibration through the vibration component and drives the primary filter box 4 to perform vibration filtration, which can effectively prevent the filter screen from being blocked and improve the filtration efficiency of the first filter screen 7 and the second filter screen 8 in the primary filter box 4; at the same time, the stirring action of the stirring component helps to accelerate the mixing reaction of sewage and flocculant, improve the removal rate of pollutants, and improve the treatment efficiency of marine aquaculture sewage;

[0048] The present invention performs graded filtration through the first filter screen 7 and the second filter screen 8, and further treats it through the secondary sewage treatment mechanism, thereby realizing graded filtration of sewage and improving the sewage treatment effect; through the precise control of the vibration component, the stirring component, the secondary sewage treatment mechanism and the pump liquid component by the control system 2, the automation and intelligence of the sewage treatment process are realized, and the treatment accuracy and stability are improved.

[0049] Further optimizing the scheme, the secondary sewage treatment mechanism includes a treatment barrel 9 and a pressure pump 10, the treatment barrel 9 is installed on the mobile base 1 through a bracket 11, a filter element is detachably connected in the treatment barrel 9, a first water inlet is installed at the bottom of the treatment barrel 9, and a first drain port is installed at the top of the side wall of the treatment barrel 9;

[0050] The pressure pump 10 is fixedly connected and communicated with the first drain port through the pipeline 12, the pump fluid assembly is fixedly connected and communicated with the first water inlet, and the pressure pump 10 is electrically connected with the control system 2;

[0051] In this way, the sewage that has been preliminarily treated by the primary filter box 4 is pumped into the first water inlet of the treatment cylinder 9 through the pump liquid assembly; a detachable filter element is installed inside the treatment cylinder 9 to further remove fine particles and soluble pollutants in the sewage;

[0052] The treated clean water is discharged from the first drain port at the top of the side wall of the treatment tube 9, and then pressurized by the pressure pump 10, and can be further transported or discharged as needed; the working state of the pressure pump 10 is precisely controlled by the control system 2 to ensure the stability of the water flow and the treatment efficiency.

[0053] Further optimized solution, the pump liquid assembly includes a first water pipe 13 and a second water pipe 14, a telescopic hose 15 is installed between the first water pipe 13 and the second water pipe 14, a lift pump is installed on the first water pipe 13, and a first solenoid valve 16 is installed on the second water pipe 14, and the lift pump and the first solenoid valve 16 are both electrically connected to the control system 2;

[0054] The first water pipe 13 is fixedly connected to the bottom of the side wall of the primary filter box 4, and the first water pipe 13 is connected to the inner cavity of the primary filter box 4, and the second water pipe 14 is fixedly connected to and connected to the first water inlet; with such an arrangement, when the lifting pump is started, when the lifting pump draws sewage from the bottom of the primary filter box 4, it is transported to the first water inlet of the treatment cylinder 9 through the first water pipe 13 and the telescopic hose 15 and then through the second water pipe 14.

[0055] Further optimized solution, the vibration table 3 includes a platform body 301, a plurality of support frames 302 are installed at the bottom of the platform body 301, a plurality of telescopic rod assemblies and a plurality of airbag assemblies are installed at the bottom of the platform body 301, the primary filter box 4 is installed on the top surface of the platform body 301, and the vibration assembly is installed at the bottom of the platform body 301;

[0056] The telescopic rod assembly and the airbag assembly are both fixedly connected to the top surface of the mobile base 1, a plurality of spring seats 303 are installed between the platform body 301 and the mobile base 1, and a gap is provided between the bottom of the support frame 302 and the top surface of the mobile base 1;

[0057] With such arrangement, the spring seat 303, the telescopic rod assembly and the airbag assembly provide additional buffering and support, and the multiple buffering mechanisms effectively reduce energy loss and unstable factors during the vibration process, thereby ensuring the stability and durability of the vibration.

[0058] Further optimization scheme, the vibration assembly includes a plurality of vibration motors 304, and the plurality of vibration motors 304 are all installed on the bottom surface of the platform body 301, and the plurality of vibration motors 304 are all electrically connected to the control system 2; the vibration motors 304 are all installed on the bottom surface of the platform body 301, and are directly electrically connected to the control system 2, ensuring that the vibration energy can be efficiently and directly transmitted to the platform body 301, and then to the primary filter box 4, to achieve vibration filtration. The control system 2 controls the vibration frequency and intensity of the vibration motor 304 to meet different sewage treatment requirements.

[0059] Further optimized solution, the airbag assembly includes an upper connecting wing plate 305 and a lower connecting wing plate 306, the upper connecting wing plate 305 is fixedly installed on the bottom surface of the platform body 301, the lower connecting wing plate 306 is detachably connected to the top surface of the mobile base 1, and the airbag body 307 is fixedly installed between the upper connecting wing plate 305 and the lower connecting wing plate 306;

[0060] The telescopic rod assembly includes a sleeve 308 and a connecting rod 309. The sleeve 308 is fixedly mounted on the bottom surface of the platform body 301. The top of the connecting rod 309 is slidably connected to the inner wall of the sleeve 308. The bottom of the connecting rod 309 is equipped with a supporting leg 310, which is placed on the top surface of the mobile base 1.

[0061] As a flexible connector, the airbag body 307 can provide effective shock absorption and buffering during vibration. When the vibration motor 304 is started, the airbag body 307 can absorb part of the vibration energy, reduce the impact of vibration on other parts of the equipment, and extend the service life of the equipment. By adjusting the inflation amount of the airbag body 307, the distance between the upper connecting wing plate 305 and the lower connecting wing plate 306 can be changed, thereby achieving height adjustment of the platform body 301, which helps to optimize the effect of vibration filtering and increase the stability of the equipment.

[0062] The connecting rod 309 in the telescopic rod assembly slides in the sleeve 308, providing stable support and guidance for the platform body 301, ensuring the stability and directionality of the platform body during vibration, and preventing shaking or deviation caused by vibration; the telescopic rod assembly is made of high-strength material and can withstand large loads.

[0063] To further optimize the solution, a sliding groove 311 is vertically opened on the side wall of the sleeve 308, a slider 312 is installed on the top of the side wall of the connecting rod 309, a limiting block 313 is installed on the bottom of the side wall of the connecting rod 309, the slider 312 is slidably connected to the sliding groove 311, and the limiting block 313 is located below the sleeve 308; the connecting rod 309 in the telescopic rod assembly slides in the sleeve 308, and the stable movement and limitation of the connecting rod 309 are ensured by the cooperation of the slider 312 and the sliding groove 311.

[0064] To further optimize the solution, the stirring components include:

[0065] A drive motor is mounted on the outer wall of the primary filter box 4, and an output shaft of the drive motor extends into the inner cavity of the primary filter box 4;

[0066] A first bevel gear 17, which is mounted on the output shaft of the driving motor, and a cover 18 is disposed outside the first bevel gear 17;

[0067] A stirring shaft 19, the stirring shaft 19 is rotatably connected to the bottom of the housing 18, and the top of the stirring shaft 19 extends into the housing 18;

[0068] A second bevel gear 20, which is mounted at the bottom of the stirring shaft 19, and is meshed with the first bevel gear 17 for transmission;

[0069] A stirring blade 21, the stirring blade 21 is installed at the bottom of the stirring shaft 19;

[0070] The cover 18 and the stirring blade 21 are both located in the inner cavity of the primary filter box 4, and the stirring blade 21 and the cover 18 are both located between the first filter screen 7 and the second filter screen 8;

[0071] With such arrangement, after the driving motor is started, it drives the first bevel gear 17 to rotate, and the first bevel gear 17 meshes with the second bevel gear 20 to transmit the rotational power to the stirring shaft 19; the stirring blades 21 at the bottom of the stirring shaft 19 rotate accordingly, generating a stirring effect, and accelerating the mixing reaction of sewage and flocculant.

[0072] Further optimized solution, the first filter screen 7 and the second filter screen 8 are both inclined, the side wall of the primary filter box 4 is installed with a first sewage pipe 22 and a second sewage pipe 23, the first sewage pipe 22 is located at the lower end of the first filter screen 7, and the second sewage pipe 23 is located at the lower end of the second filter screen 8; the first sewage pipe 22 and the second sewage pipe 23 are both installed with a second solenoid valve 24, and the two second solenoid valves 24 are electrically connected to the control system 2;

[0073] The inclined first filter screen 7 and the second filter screen 8 facilitate the trapped particles to slide to the lower end; when the first filter screen 7 and the second filter screen 8 need to be cleaned, the control system 2 opens the corresponding second solenoid valve 24 of the first sewage pipe 22 or the second sewage pipe 23, and the trapped particles are discharged, reducing the frequency and difficulty of manual cleaning.

[0074] To further optimize the solution, a push rod 25 is installed on one side of the mobile base 1 to facilitate the operator to move the entire processing equipment.

[0075] To further optimize the solution, a water quality sensor (not shown in the figure) is installed at the bottom of the inner cavity of the primary filter box 4, and the water quality sensor is used to monitor the pH value, turbidity and dissolved oxygen parameters of the sewage in the primary filter box 4 in real time; a display screen (not shown in the figure) is installed on the outer wall of the primary filter box 4, and the display screen and the water quality sensor are electrically connected to the control system 2, and the monitoring data is transmitted to the control system 2 in real time, and the data information is displayed on the display screen; real-time water quality monitoring helps operators to understand the effect and water quality of sewage treatment in a timely manner, and provide data support for adjusting treatment parameters and optimizing treatment processes. When the water quality parameters exceed the preset range, the control system 2 can automatically adjust the working status of the vibration component, the stirring component, the secondary sewage treatment mechanism, etc. to ensure that the effluent water quality meets the requirements.

[0076] A further optimization scheme is provided in which high-pressure nozzles (not shown in the figure) are installed on both sides of the bottom of the inner wall of the primary filter box 4, and the high-pressure nozzles are connected to the high-pressure water pump through a high-pressure pipe. The high-pressure water pump is installed on the outer wall of the primary filter box 4, and the high-pressure water pump is connected to an external water source; the high-pressure water pump is electrically connected to the control system 2, and the high-pressure water pump is started regularly or on demand through the control system 2, and the first filter screen 7 and the second filter screen 8 are cleaned through the high-pressure nozzles, so as to effectively remove dirt and particulate matter attached to the first filter screen 7 and the second filter screen 8, thereby extending the service life of the first filter screen 7 and the second filter screen 8 and reducing the frequency of manual cleaning.

[0077] In the description of the present invention, it should be understood that the terms "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside" and "outside" etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present invention.

[0078] Obviously, the above embodiments of the present invention are merely examples for clearly explaining the present invention, and are not intended to limit the implementation methods of the present invention. For ordinary technical users in the relevant field, other different forms of changes or modifications can be made on the basis of the above description. It is not necessary and impossible to list all the implementation methods here. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the protection scope of the claims of the present invention.

Claims

1. A mechanical vibration treatment device for marine aquaculture wastewater treatment, characterized in that: include: A mobile base (1), a control system (2) and a vibration table (3) being installed on the mobile base (1), and a vibration component being installed on the vibration table (3); A primary filter box (4), the primary filter box (4) being mounted on the vibration table (3); a water inlet pipe (5) and a drug adding pipe (6) being mounted on the top of the primary filter box (4); a first filter screen (7) and a second filter screen (8) being mounted in the primary filter box (4), the first filter screen (7) being located above the second filter screen (8); and a bottom of the water inlet pipe (5) being located above the first filter screen (7); A stirring assembly, the stirring assembly being mounted on the primary filter box (4); A secondary sewage treatment mechanism, the secondary sewage treatment mechanism being mounted on the mobile base (1), the water inlet end of the secondary sewage treatment mechanism being fixedly connected and in communication with the bottom of the primary filter box (4) via a pump liquid assembly; The output end of the stirring component and the bottom of the dosing pipe (6) are both located between the first filter screen (7) and the second filter screen (8); the vibration component, the stirring component, the secondary sewage treatment mechanism and the pump liquid component are all electrically connected to the control system (2).

2. The mechanical vibration treatment equipment for marine aquaculture wastewater treatment according to claim 1 is characterized by: The secondary sewage treatment mechanism comprises a treatment cylinder (9) and a pressure pump (10); the treatment cylinder (9) is mounted on the mobile base (1) via a bracket (11); a filter element is detachably connected to the inside of the treatment cylinder (9); a first water inlet is mounted at the bottom of the treatment cylinder (9); and a first drain port is mounted at the top of the side wall of the treatment cylinder (9); The pressure pump (10) is fixedly connected and communicated with the first drain port via a pipeline (12), the pump fluid assembly is fixedly connected and communicated with the first water inlet, and the pressure pump (10) is electrically connected to the control system (2).

3. The mechanical vibration treatment equipment for marine aquaculture wastewater treatment according to claim 2 is characterized in that: The pump liquid assembly comprises a first water pipe (13) and a second water pipe (14), a telescopic hose (15) is installed between the first water pipe (13) and the second water pipe (14), a lift pump is installed on the first water pipe (13), and a first solenoid valve (16) is installed on the second water pipe (14), and the lift pump and the first solenoid valve (16) are both electrically connected to the control system (2); The first water pipe (13) is fixedly connected to the bottom of the side wall of the primary filter box (4), and the first water pipe (13) is connected to the inner cavity of the primary filter box (4), and the second water pipe (14) is fixedly connected to and connected to the first water inlet.

4. The mechanical vibration treatment equipment for marine aquaculture wastewater treatment according to claim 1 is characterized by: The vibration platform (3) comprises a platform body (301), a plurality of support frames (302) are installed at the bottom of the platform body (301), a plurality of telescopic rod assemblies and a plurality of airbag assemblies are installed at the bottom of the platform body (301), the primary filter box (4) is installed on the top surface of the platform body (301), and the vibration assembly is installed at the bottom of the platform body (301); The telescopic rod assembly and the airbag assembly are both fixedly connected to the top surface of the mobile base (1), a plurality of spring seats (303) are installed between the platform body (301) and the mobile base (1), and a gap is provided between the bottom of the support frame (302) and the top surface of the mobile base (1).

5. The mechanical vibration treatment equipment for marine aquaculture wastewater treatment according to claim 4 is characterized in that: The vibration assembly comprises a plurality of vibration motors (304), the plurality of vibration motors (304) are all mounted on the bottom surface of the platform body (301), and the plurality of vibration motors (304) are all electrically connected to the control system (2).

6. The mechanical vibration treatment equipment for marine aquaculture wastewater treatment according to claim 4 is characterized by: The airbag assembly comprises an upper connecting wing plate (305) and a lower connecting wing plate (306), wherein the upper connecting wing plate (305) is fixedly mounted on the bottom surface of the platform body (301), and the lower connecting wing plate (306) is detachably connected to the top surface of the mobile base (1), and an airbag body (307) is fixedly mounted between the upper connecting wing plate (305) and the lower connecting wing plate (306); The telescopic rod assembly comprises a sleeve (308) and a connecting rod (309), wherein the sleeve (308) is fixedly mounted on the bottom surface of the platform body (301), the top of the connecting rod (309) is slidably connected to the inner wall of the sleeve (308), and a supporting leg (310) is mounted on the bottom of the connecting rod (309), and the supporting leg (310) is placed on the top surface of the mobile base (1).

7. The mechanical vibration treatment equipment for marine aquaculture wastewater treatment according to claim 6 is characterized by: A sliding groove (311) is vertically provided on the side wall of the sleeve (308), a sliding block (312) is installed on the top of the side wall of the connecting rod (309), and a limiting block (313) is installed on the bottom of the side wall of the connecting rod (309). The sliding block (312) is slidably connected to the sliding groove (311), and the limiting block (313) is located below the sleeve (308).

8. The mechanical vibration treatment equipment for marine aquaculture wastewater treatment according to claim 1 is characterized by: The stirring assembly comprises: A drive motor, the drive motor being mounted on the outer wall of the primary filter box (4), and the output shaft of the drive motor extending into the inner cavity of the primary filter box (4); A first bevel gear (17), wherein the first bevel gear (17) is mounted on an output shaft of the driving motor, and a cover (18) is disposed outside the first bevel gear (17); A stirring shaft (19), the stirring shaft (19) is rotatably connected to the bottom of the housing (18), and the top of the stirring shaft (19) extends into the housing (18); A second bevel gear (20), the second bevel gear (20) is mounted on the bottom of the stirring shaft (19), and the second bevel gear (20) is meshed with the first bevel gear (17) for transmission; A stirring blade (21), wherein the stirring blade (21) is installed at the bottom of the stirring shaft (19); The cover shell (18) and the stirring blade (21) are both located in the inner cavity of the primary filter box (4), and the stirring blade (21) and the cover shell (18) are both located between the first filter screen (7) and the second filter screen (8).

9. The mechanical vibration treatment equipment for marine aquaculture wastewater treatment according to claim 1, characterized in that: The first filter screen (7) and the second filter screen (8) are both arranged at an inclination, and the side wall of the primary filter box (4) is provided with a first sewage discharge pipe (22) and a second sewage discharge pipe (23), wherein the first sewage discharge pipe (22) is located at the lower end of the first filter screen (7), and the second sewage discharge pipe (23) is located at the lower end of the second filter screen (8); a second solenoid valve (24) is installed in each of the first sewage discharge pipe (22) and the second sewage discharge pipe (23), and both of the second solenoid valves (24) are electrically connected to the control system (2).

10. The mechanical vibration treatment equipment for marine aquaculture wastewater treatment according to claim 1, characterized in that: A push rod (25) is installed on one side of the movable base (1).

Citation Information

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