Integrated device for circular treatment of industrial wastewater
By using a rotating pipe and stirring plate structure, dynamic counter-mixing of chemical agents and wastewater is achieved, solving the problems of slow reaction speed and uneven mixing in existing technologies, and improving wastewater treatment efficiency and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- WUXI KDM MACHINERY TECH CO LTD
- Filing Date
- 2026-03-10
- Publication Date
- 2026-05-12
AI Technical Summary
Existing wastewater treatment equipment reacts slowly after the addition of chemical agents, making it difficult to achieve thorough mixing of the chemical agents and wastewater, thus affecting treatment efficiency.
The structure employs a rotating pipe and mixing plate. By rotating the first and second pipes in opposite directions, combined with the spray holes and impact components of the mixing plate, dynamic mixing of chemical agents and wastewater is achieved, enhancing the mixing effect. Furthermore, the linkage between the drive component and the impact component improves the mixing uniformity.
It shortens the effective contact time between the agent and the wastewater, improves the timeliness of the reaction and the uniformity of mixing, protects the health of the staff, reduces the space occupied by the equipment and the power consumption, and improves the efficiency of wastewater treatment.
Smart Images

Figure CN122010235A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of wastewater treatment technology, specifically to an integrated device for industrial wastewater recycling and treatment. Background Technology
[0002] With the acceleration of global industrialization and the continuous expansion of industrial production scale, wastewater discharge has increased dramatically, posing a serious threat to water resources and the environment. Industrial wastewater is complex and diverse, containing heavy metal ions (such as lead, mercury, chromium, cadmium, etc.), organic pollutants (such as benzene compounds, phenols, polycyclic aromatic hydrocarbons, etc.), acidic and alkaline substances, high-salt components, and various suspended particulate matter. It is characterized by high toxicity, difficulty in degradation, and high treatment difficulty. If discharged directly without effective treatment, it will not only pollute surface water bodies, groundwater, and soil, disrupting the ecological balance, but also indirectly endanger human health and cause a huge waste of water resources.
[0003] Existing wastewater treatment devices, after adding chemical agents to wastewater and sewage, allow the chemicals to diffuse freely and react with harmful substances or oil in the sewage. This reaction is slow and makes it difficult to achieve thorough mixing of the chemicals and sewage, severely impacting wastewater treatment efficiency. Therefore, there is an urgent need to provide an integrated industrial wastewater recycling and treatment device to overcome the shortcomings in current practical applications. Summary of the Invention
[0004] The purpose of this invention is to provide an integrated device for industrial wastewater recycling and treatment, which aims to solve the problems mentioned in the background art.
[0005] This invention is implemented as follows: an integrated industrial wastewater recycling and treatment device, comprising:
[0006] The processing box is equipped with a feed pipe and a drain pipe;
[0007] A stirring assembly, located inside the treatment tank, is used for mixing wastewater and chemical agents; the stirring assembly includes:
[0008] Rotary tube one is rotatably installed inside the processing box, and its tube wall is provided with at least two mounting parts;
[0009] Multiple sets of rotating pipes are rotatably mounted on each of the mounting parts;
[0010] A stirring plate is fixedly installed on the second rotating pipe. The stirring plate is connected to the first rotating pipe through the second rotating pipe, and multiple sets of spray holes are provided on the stirring plate.
[0011] The reagent tube is fixedly installed on the processing box and rotatably connected to the rotating tube.
[0012] A drive assembly, mounted on the processing box, is used to drive the first rotating tube to rotate around its own axis and to drive the two second rotating tubes in the mounting parts to rotate in opposite directions around their respective axes.
[0013] As a further aspect of the present invention: the driving component includes:
[0014] The drive box is fixedly installed on the processing box, and its interior has a receiving hole;
[0015] The drive column is rotatably installed in the receiving hole and is fixedly connected to the rotating tube.
[0016] The power unit, installed inside the drive box, is used to drive the drive column to rotate.
[0017] As a further aspect of the present invention: the power unit includes:
[0018] Electric motor;
[0019] The drive gear is rotatably mounted in the drive box via a rotating shaft, and the output shaft of the motor is connected to the rotating shaft for transmission.
[0020] The driven gear ring is fixedly fitted onto the drive column and meshes with the drive gear.
[0021] As a further aspect of the present invention: the driving assembly further includes a reciprocating driving mechanism for driving the second rotating tube to rotate, the reciprocating driving mechanism comprising:
[0022] An eccentric transmission unit is provided on the drive column;
[0023] The swing plate is mounted on top of the drive box via a ball joint;
[0024] A connecting shaft is connected at one end to the swing plate and at the other end to the eccentric transmission part, so that when the drive column rotates, it can drive the swing plate to swing back and forth.
[0025] Two sets of lifting pistons, the upper ends of which respectively abut against the lower surface of the swing plate;
[0026] The first elastic element and the second elastic element act on the two sets of lifting pistons respectively to provide a reset elastic force;
[0027] One set of the lifting pistons is connected to a linkage component, which is used to convert the reciprocating linear motion of the lifting pistons into the rotation of the second rotary tube.
[0028] As a further embodiment of the present invention: the eccentric transmission part is a drive hole opened on the edge of the drive column, and one end of the connecting shaft extends into the drive hole;
[0029] A tapered portion is fixed to the lower surface of the swing plate, and the other end of the connecting shaft is connected to the tapered portion.
[0030] As a further aspect of the present invention: the drive assembly further includes a conical support plate fixed to the top of the drive box, the ball joint is located at the top center of the support plate, and the edge of the swing plate is in contact with the conical surface of the support plate.
[0031] As a further aspect of the present invention: the linkage component includes:
[0032] The adjusting gear is fixedly installed on the shaft end of the second rotating tube;
[0033] The push rod is fixedly connected to the lifting piston;
[0034] The adjusting frame is connected to the push rod via a connector and can move up and down with it; racks are fixed on two opposite inner sides of the adjusting frame, and the racks mesh with all the adjusting gears on the same mounting part.
[0035] As a further aspect of the present invention, it also includes an impact component, the impact component comprising:
[0036] An air cylinder is fixedly installed in the receiving hole of the drive box and slides and seals with one of the sets of lifting pistons;
[0037] At least one impact plate is fixedly installed on the inner wall of the processing box, with a flow channel inside and a suction port on the plate surface facing the inside of the processing box.
[0038] A conduit connects the air cylinder to the internal flow channel of the impact plate.
[0039] As a further aspect of the present invention: a sealing plug is detachably installed at the inlet end of the feed pipe, and a through hole is opened on the sealing plug;
[0040] The sealing plug is also fixedly installed with a gas collection hood, which is provided with an exhaust pipe for connecting to an external gas purification device.
[0041] As a further aspect of the present invention: multiple sets of drain pipes are arranged along the height direction of the treatment box, and a control valve is installed on each set of drain pipes.
[0042] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0043] The chemical reagents are directly delivered into the mixing plate through transfer pipes one and two, and then sprayed out from the injection holes of the mixing plate. The location where the reagents are added is the location where the mixing takes effect, eliminating the need for the reagents to diffuse into the mixing area after being added. While the mixing plate is rotating and mixing, the reagents can directly contact and react with the passing wastewater. Compared with the traditional method of adding reagents first and then mixing, this shortens the effective contact time between the reagents and the wastewater and improves the timeliness of the reaction.
[0044] The two rotating pipes of the two installation parts rotate in opposite directions, which will cause the agitator plates of the two installation parts to rotate in opposite directions. When the spray hole of the agitator plate of one installation part is facing the bottom of the treatment tank, the spray hole of the agitator plate of the other installation part will be facing the top of the treatment tank. During the revolution of the agitator plates, the sewage will be driven to flow to the bottom and top respectively, forming an upward and downward countercurrent.
[0045] When the angle of the mixing plate changes so that the spray holes face each other at the mounting points, it will cause the sewage to form a lateral counter-current between the two mounting points. The dynamically changing counter-current direction ensures that the sewage and the agent are mixed without dead corners, and there will be no situation where some parts are fully mixed and others are not. This will fully decompose the oil and neutralize the harmful substances in the sewage.
[0046] As the drive unit operates, the air cylinder of the impact component drives the lifting piston to reciprocate, thereby drawing the mixture in the processing tank into the impact plate through the conduit and then spraying it out. The sprayed mixture will then collide with the mixture driven by the agitator. For local areas that were not fully mixed during the agitation process, this cyclical collision can supplement the mixing and further improve the overall mixing uniformity.
[0047] The sealed through holes ensure the connection between the inside of the treatment tank and the gas collection hood. Whether it is toxic volatile gases carried by the sewage itself or toxic gases produced by the reaction between the chemicals and the sewage, they will all flow upward into the gas collection hood and then be discharged to the external purification equipment through the pipes of the gas collection hood. This prevents toxic gases from spilling out of the feed pipe into the working environment, protects the health of on-site personnel, and avoids air pollution caused by direct gas emissions.
[0048] Multiple sets of drainage pipes, equipped with solenoid valves, allow for flexible selection of the timing and volume of drainage based on the progress of wastewater treatment. For example, the treated clean water from the upper layer of the treatment tank can be discharged first, followed by the treatment of the wastewater from the lower layer. Simultaneously, the drainage pipes can be connected to a small wastewater sedimentation tank. The device itself performs the treatment of reagent mixing and reaction, while the sedimentation tank completes the subsequent treatment of sedimentation and separation, forming a small-scale treatment process without the need for additional connecting structures.
[0049] The linkage design of the drive components only requires one motor as a power source to simultaneously realize the revolution drive of the first rotating tube, the reverse rotation drive of the two mounting tubes, and the operation of the impact components. It does not require multiple additional power devices, which saves the installation space of the equipment, reduces the power consumption of the equipment and the difficulty of later maintenance. At the same time, all the transmission structures are concentrated inside the drive box and the processing box, which are less affected by external interference and have stronger operational stability. Attached Figure Description
[0050] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0051] Figure 1 This is a schematic diagram of the structure of the present invention.
[0052] Figure 2 This is a schematic diagram of the front cross-sectional structure of the present invention.
[0053] Figure 3 This is a schematic diagram of the stirring assembly in this invention.
[0054] Figure 4 This is a schematic diagram of the structure of the adjustment frame and the rack in this invention.
[0055] Figure 5 for Figure 1 A magnified structural diagram of point A in the middle.
[0056] Figure 6 This is a rear view schematic diagram of the support plate and pressing plate in this invention.
[0057] Figure 7 This is a schematic diagram of the drive column and rotating shaft in this invention.
[0058] Figure 8 This is a top sectional view of the drive box in this invention.
[0059] In the attached diagram: 1-Processing box, 2-Feed pipe, 3-Sealing plug, 4-Gas collection hood, 5-Drive box, 6-Pressing plate, 7-Lifting piston, 8-Spring 1, 9-Air cylinder, 10-Drive column, 11-Rotating tube 1, 12-Spring 2, 13-Push rod, 14-Impact plate, 15-Stirring plate, 16-Conduit, 17-Connector, 18-Adjusting frame, 19-Rotating tube 2, 20-Adjusting gear, 21-Drain pipe, 22-Agent pipe, 23-Rack, 24-Conical part, 25-Driven gear ring, 26-Connecting shaft, 27-Support plate, 28-Spherical hinge, 29-Receiving hole, 30-Motor, 31-Transmission component, 32-Drive gear, 33-Rotating shaft, 34-Drive hole. Detailed Implementation
[0060] The technical solution of the present invention will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0061] In the description of this invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0062] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art will understand the specific meaning of the above terms in this invention according to the specific circumstances.
[0063] The present invention will be further explained below with reference to specific embodiments.
[0064] Please see Figures 1-8 An integrated industrial wastewater recycling treatment device provided in this embodiment of the invention includes:
[0065] The processing box 1, the inlet pipe 2 and the drain pipe 21 installed on the processing box 1, and the processing box 1 is also provided with support legs;
[0066] A mixing assembly for mixing wastewater and chemical agents is located inside the treatment tank 1. The mixing assembly includes a first rotating pipe 11, a chemical agent pipe 22, and a mixing plate 15. The first rotating pipe 11 is rotatably installed inside the treatment tank 1 and has two mounting parts. Each mounting part has multiple sets of second rotating pipes 19 rotatably installed on it. The mixing plate 15 is fixedly installed on the second rotating pipes 19 and is connected to the first rotating pipe 11 through the second rotating pipes 19. The mixing plate 15 has multiple sets of spray holes. The chemical agent pipe 22 is fixedly installed on the treatment tank 1 and is rotatably connected to the first rotating pipe 11.
[0067] A drive assembly for driving the first rotating tube 11 to rotate and for driving the second rotating tube 19 in the two mounting parts to rotate in opposite directions, the drive assembly being mounted on the processing box 1.
[0068] In an embodiment of the present invention, during use, wastewater is first introduced into the treatment tank 1 through the feed pipe 2. After the drive assembly starts working, chemical agents are then introduced into the first rotating pipe 11 through the agent pipe 22. The chemical agents entering the first rotating pipe 11 will enter the stirring plate 15 through the second rotating pipe 19 and be sprayed out through the spray holes on the stirring plate 15. The drive assembly can realize the rotation of the stirring plate 15 around the first rotating pipe 11 by driving the first rotating pipe 11 to rotate and driving the second rotating pipes 19 in the two mounting parts to rotate in opposite directions. The mixing plate 15 reciprocates around the rotating pipe 19 as its axis. By rotating around the rotating pipe 11 as its axis, the mixing plate 15 agitates the wastewater in the treatment tank 1, mixing the wastewater with the chemical agents sprayed from the mixing plate 15. The angle of the mixing plate 15 can be adjusted by rotating around the rotating pipe 19, causing the spray holes on the mixing plate 15 located in the two mounting sections to move closer or further apart. After angle adjustment, the direction of wastewater flow is changed during the rotation of the mixing plate 15. This causes the stirring plate 15 in one of the installation sections to drive the sewage in the treatment tank 1 to flow to the other installation section, or to move the sewage to the top or bottom of the treatment tank 1, thereby creating a counter-current effect and achieving full mixing of sewage and chemical agents, effectively improving the sewage treatment effect. The treated sewage will be discharged through the drain pipe 21. The opposite rotation direction means that when the rotating pipe 19 in one installation section rotates counterclockwise, the rotating pipe 19 in the other installation section rotates clockwise. The drain pipe 21 can also be connected to a small sewage sedimentation tank to achieve further treatment of sewage and improve the sewage treatment effect. The sewage sedimentation tank is a publicly available technology. Compared with the prior art, the present invention, through the cooperative arrangement of the stirring component and the driving component, avoids the problem in existing sewage treatment devices where, after adding chemical agents to wastewater and sewage, the chemical agents can freely diffuse and come into contact with harmful substances or oil in the sewage, resulting in a slow reaction rate and difficulty in achieving full mixing of chemical agents and sewage, which seriously affects the sewage treatment efficiency.
[0069] In one embodiment of the present invention, please refer to Figure 1 , Figure 2 as well as Figures 4-8 The driving component includes:
[0070] The drive box 5 is fixedly installed on the processing box 1, and the drive box 5 has multiple receiving holes 29 inside;
[0071] The drive column 10 is rotatably mounted in the receiving hole 29 and is fixedly connected to the rotating tube 11.
[0072] A power unit for driving the drive column 10 to rotate, the power unit is installed in the drive box 5;
[0073] The power unit includes:
[0074] The drive gear 32 is rotatably mounted on the drive housing 5 via a rotating shaft 33.
[0075] The motor 30 is fixedly installed in the drive box 5, and the output shaft of the motor 30 is connected to the rotating shaft 33 through the transmission component 31.
[0076] Driven gear ring 25, which is fixedly mounted on drive column 10 and meshes with drive gear 32; motor 30, through cooperation with transmission component 31, can drive shaft 33 and drive gear 32 to rotate, thereby driving drive column 10 to rotate.
[0077] The driving component also includes:
[0078] A drive hole 34 is formed on the drive column 10; the drive hole 34 is formed at the edge of the drive column 10.
[0079] Support plate 27, which is fixedly installed on the top of drive box 5;
[0080] The pressing plate 6 is mounted on the support plate 27 via a ball joint 28, and a tapered part 24 is fixedly mounted on the pressing plate 6. The tapered part 24 is connected to the drive hole 34 via a connecting shaft 26. The connecting shaft 26 can be inserted into the drive hole 34, and the diameter of the drive hole 34 is slightly larger than the diameter of the connecting shaft 26.
[0081] Air cylinder 9, which is fixedly installed in receiving hole 29, and an impact component is also connected to air cylinder 9;
[0082] Two sets of lifting pistons 7, each with a pointed tip that contacts the pressing plate 6. One set of lifting pistons 7 is slidably installed in the receiving hole 29 via a second spring 12, and this set of lifting pistons 7 is connected to the second rotating tube 19 via a linkage. The other set of lifting pistons 7 is slidably installed in the air cylinder 9 via a first spring 8. The first spring 8, through its cooperation with one set of lifting pistons 7, and the second spring 12, through its cooperation with the other set of lifting pistons 7, enable elastic pressing of the pressing plate 6.
[0083] The support plate 27 has a conical structure;
[0084] The linkage component includes:
[0085] Adjusting gear 20, which is fixedly installed on rotating tube 19;
[0086] Push rod 13, which is fixedly installed on lifting piston 7;
[0087] Multiple sets of adjustment frames 18 are mounted on push rods 13 via connectors 17. Each set of adjustment frames 18 is equipped with two sets of racks 23 that mesh with adjustment gears 20. The two sets of racks 23 are located on two opposite surfaces of the adjustment frame 18, which facilitates the rotation of adjustment gears 20 in the two mounting parts in different directions.
[0088] In this embodiment, the transmission component 31 includes pulleys and a transmission belt. Two sets of pulleys are provided, and the two sets of pulleys are respectively fixedly installed on the rotating shaft 33 and the output shaft of the motor 30. The transmission belt is used to connect the two sets of pulleys. The tapered part 24 has a frustum-shaped structure.
[0089] The power unit drives the drive column 10 to rotate, which in turn drives the rotating tube 11 to rotate. The rotation of the drive column 10, in conjunction with the transmission action of the tapered part 24 and the connecting shaft 26, and the elastic pressing action of the lifting piston 7, drives the pressing plate 6 to rotate around the ball joint 28. During the rotation, the edge of the pressing plate 6 is in contact with the support plate 27, thereby pushing the two sets of lifting pistons 7 to move in the vertical direction. The lifting piston 7 drives the push rod 13 to move back and forth in the vertical direction, and in conjunction with the meshing action of the adjusting frame 18 and the adjusting gear 20, drives the rotating tube 19 to rotate.
[0090] In one embodiment of the present invention, please refer to Figure 1 and Figure 2 The impact assembly includes an impact plate 14 and a conduit 16. Multiple sets of impact plates 14 are fixedly installed in the processing box 1, and each set of impact plates 14 is provided with a suction port. The conduit 16 is used to connect multiple sets of impact plates 14 with the air cylinder 9.
[0091] In this embodiment, the lifting piston 7 moves back and forth in the air cylinder 9, and with the air guiding effect of the conduit 16, the mixed liquid in the treatment tank 1 (the mixed liquid is the solution after the sewage and chemical agents are mixed) can be circulated into the impact plate 14 and then sprayed out. The mixed liquid sprayed out of the impact plate 14 can form a counter-current with the mixed liquid in the treatment tank 1, thereby improving the mixing effect and further improving the sewage treatment quality.
[0092] In one embodiment of the present invention, please refer to Figure 2 The connector 17 includes two annular plates, one of which is fixedly connected to the push rod 13, and the other is fixedly connected to the adjustment frame 18, and the two annular plates are rotatably coupled.
[0093] In one embodiment of the present invention, please refer to Figure 1 and Figure 2The feed pipe 2 can also be detachably installed with a sealing plug 3, and the sealing plug 3 has multiple sets of through holes. The sealing plug 3 is also fixedly installed with a gas collecting hood 4, and the gas collecting hood 4 is installed with a pipe.
[0094] In this embodiment, the pipe can be used to connect the gas collection hood 4 to an external gas purification device, and the gas purification device is a publicly available technology. While the sealing plug 3 blocks the feed pipe 2, the gas collection hood 4, through its cooperation with the sealing plug 3, can also collect and export the toxic gases in the wastewater in the treatment tank 1, as well as the toxic gases after the wastewater reacts with the chemical agents, which can improve the practicality of the integrated industrial wastewater recycling treatment device.
[0095] In one embodiment of the present invention, please refer to Figure 2 The drain pipe 21 is provided in multiple sets, and each set of drain pipe 21 is equipped with a control valve.
[0096] In this embodiment, the control valve is preferably a solenoid valve, and the model of the solenoid valve is not specifically limited. The solenoid valve facilitates the control of the flow state of the drain pipe 21.
[0097] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.
Claims
1. An integrated industrial wastewater recycling treatment device, comprising a treatment tank (1) on which an inlet pipe (2) and a drain pipe (21) are installed, characterized in that, Also includes: A stirring assembly, located inside the treatment tank (1), is used for mixing wastewater and chemical agents; the stirring assembly includes: Rotary pipe 1 (11) is rotatably installed inside the processing box (1), and its pipe wall is provided with at least two mounting parts; Multiple sets of rotating pipes (19) are rotatably mounted on each of the mounting parts. A stirring plate (15) is fixedly installed on the second rotating pipe (19). The stirring plate (15) is connected to the first rotating pipe (11) through the second rotating pipe (19), and multiple sets of spray holes are opened on the stirring plate (15). The reagent tube (22) is fixedly installed on the treatment box (1) and rotatably connected to the rotating tube (11); The drive assembly, mounted on the processing box (1), is used to drive the first rotating tube (11) to rotate around its own axis and drive the two second rotating tubes (19) in the mounting part to rotate in opposite directions around their respective axes.
2. The integrated industrial wastewater recycling treatment device according to claim 1, characterized in that, The driving component includes: The drive box (5) is fixedly installed on the processing box (1), and has a receiving hole (29) inside. The drive column (10) is rotatably installed in the receiving hole (29) and fixedly connected to the rotating tube (11); The power unit is installed in the drive box (5) and is used to drive the drive column (10) to rotate.
3. The integrated industrial wastewater recycling treatment device according to claim 2, characterized in that, The power unit includes: Motor (30); The drive gear (32) is rotatably mounted in the drive box (5) via the rotating shaft (33), and the output shaft of the motor (30) is connected to the rotating shaft (33) in a transmission connection; The driven gear ring (25) is fixedly fitted onto the drive column (10) and meshes with the drive gear (32).
4. The integrated industrial wastewater recycling treatment device according to claim 2, characterized in that, The drive assembly further includes a reciprocating drive mechanism for driving the second rotating tube (19) to rotate, the reciprocating drive mechanism comprising: An eccentric transmission unit is provided on the drive column (10); The swing plate (6) is mounted on the top of the drive box (5) via a ball joint (28); The connecting shaft (26) is connected at one end to the swing plate (6) and at the other end to the eccentric transmission part, so that the drive column (10) can drive the swing plate (6) to swing back and forth when it rotates. Two sets of lifting pistons (7) have their upper ends abutting against the lower surface of the swing plate (6); The first elastic element (8) and the second elastic element (12) act on the two sets of lifting pistons (7) respectively to provide a reset force; One set of the lifting pistons (7) is connected to a linkage, which is used to convert the reciprocating linear motion of the lifting pistons (7) into the rotation of the rotating tube (19).
5. The integrated industrial wastewater recycling treatment device according to claim 4, characterized in that, The eccentric transmission part is a drive hole (34) opened on the edge of the drive column (10), and one end of the connecting shaft (26) extends into the drive hole (34); The lower surface of the swing plate (6) is fixed with a tapered part (24), and the other end of the connecting shaft (26) is connected to the tapered part (24).
6. The integrated industrial wastewater recycling treatment device according to claim 5, characterized in that, The drive assembly also includes a conical support plate (27) fixed to the top of the drive box (5), a ball joint (28) located at the top center of the support plate (27), and the edge of the swing plate (6) fitting against the conical surface of the support plate (27).
7. The integrated industrial wastewater recycling treatment device according to claim 4, characterized in that, The linkage component includes: Adjusting gear (20) is fixedly installed on the shaft end of the rotating tube two (19); The push rod (13) is fixedly connected to the lifting piston (7); The adjusting frame (18) is connected to the push rod (13) via the connector (17) and can move up and down with it; a rack (23) is fixed on each of the two opposite inner sides of the adjusting frame (18), and the rack (23) meshes with all the adjusting gears (20) on the same mounting part.
8. The integrated industrial wastewater recycling treatment device according to claim 4, characterized in that, It also includes an impact assembly, the impact assembly comprising: The air cylinder (9) is fixedly installed in the receiving hole (29) of the drive box (5) and slides and seals with one of the lifting pistons (7); At least one impact plate (14) is fixedly installed on the inner wall of the processing box (1), with a flow channel inside and a suction port on the plate surface facing the inside of the processing box (1); The conduit (16) connects the air cylinder (9) to the internal flow channel of the impact plate (14).
9. The integrated industrial wastewater recycling treatment device according to claim 1, characterized in that, The feed pipe (2) is detachably fitted with a sealing plug (3) at its inlet end, and the sealing plug (3) has a through hole. The sealing plug (3) is also fixedly installed with a gas collecting hood (4), and the gas collecting hood (4) is provided with an exhaust pipe for connecting to an external gas purification device.
10. The integrated industrial wastewater recycling treatment device according to claim 1, characterized in that, The drain pipe (21) is arranged in multiple sets along the height direction of the treatment box (1), and each set of the drain pipe (21) is equipped with a control valve.