A frame electrophoresis wastewater discharge treatment system

By using an active isolation sedimentation structure and controlled chemical gas transfer, the problem of flocculation was solved, achieving stratified sedimentation and uniform contact of the flocculated material, thus improving the efficiency and effectiveness of vehicle frame electrophoresis wastewater treatment.

CN119977108BActive Publication Date: 2025-12-26HUBEI FUZHI AUTOMOBILE CO LTD
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Patent Information

Application Number
CN202510255525.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2025-12-26
Estimated Expiration
2045-03-05

AI Technical Summary

Technical Problem

In existing technologies, flocculants tend to settle to the bottom during the treatment of wastewater from vehicle frame electrophoresis, causing blockages and making it difficult to effectively separate the purified wastewater from the thickly deposited flocculants.

Method used

The active isolation sedimentation structure includes an outer cylinder, an inner cylinder, and a sandwich isolation plate. Through the cooperation of a liquid level sensing wireless controller and a toothed plate, the stratified sedimentation of flocculated materials is achieved. The addition of reagents is controlled by a liquid and gas transfer structure to prevent flocculation.

Benefits of technology

It effectively prevents clogging by flocculants, achieves stratified sedimentation of flocculants and uniform contact of reagents, and improves the efficiency and effectiveness of wastewater treatment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of electrophoresis wastewater treatment, and particularly relates to a vehicle frame electrophoresis wastewater discharge treatment system, which comprises a wastewater treatment tank and a sediment collection tank, the sediment collection tank is located outside the wastewater treatment tank, a plurality of groups of movable isolation sediment structures are arranged in the wastewater treatment tank, each movable isolation sediment structure comprises two outer cylinders and two inner cylinders, the two inner cylinders are respectively inserted into the two outer cylinders, and the two ends of each outer cylinder are respectively damped and rotated to penetrate the two side inner walls of the wastewater treatment tank. The present application can detect the liquid level in the wastewater treatment tank through a liquid level sensing wireless controller, so that the interlayer isolation plates below the liquid level in the wastewater treatment tank are all in a horizontal state, the space below the liquid level in the wastewater treatment tank is divided into a plurality of spaces, and the flocculation in different spaces is respectively deposited on the upper surfaces of the corresponding interlayer isolation plates during sedimentation, so that the flocculation is deposited in layers, and the flocculation is effectively prevented from being blocked.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electrophoresis wastewater treatment, and in particular to a frame electrophoresis wastewater discharge treatment system. BACKGROUND

[0002] Electrophoresis refers to the phenomenon that charged particles move towards the electrode with opposite electric properties under the action of an electric field. The technology that separates different moving speeds of charged particles in an electric field is called electrophoresis technology. A large amount of wastewater is generated in frame electrophoresis processing. In order to reduce the pollution of wastewater to the environment, the wastewater needs to be purified and treated.

[0003] Chinese patent CN115571960A discloses an electrophoresis wastewater treatment system, which comprises a base and a cover. A main box body is fixed on the upper end face of the base. A sedimentation cavity with an upward opening is arranged in the main box body. The application makes the electrophoresis wastewater and its sediment in the sedimentation cavity enter the distribution cavity in batches, and then enters the filter cavity through the lower connecting cavity. The sediment in the wastewater is filtered out by the U-shaped filter screen. The supernatant is discharged through the liquid discharge port and the liquid discharge cavity. The sediment is rotated to the left side of the spherical brush by the rotation of the filter disc, and is swept into the storage box by the rotation of the spherical brush. The sediment is dried under the heating of the heating pipe for subsequent processing, which avoids the accumulation of sediment on the U-shaped filter screen and ensures the filtering effect of the U-shaped filter screen. The continuous sedimentation of wastewater in the sedimentation cavity improves the treatment efficiency of electrophoresis wastewater. The above-mentioned related technology has the following defects: in the existing technology of adding flocculation agent for sedimentation treatment, the flocculation material generated needs to be deposited to the lowest part for collection. It is inconvenient to separate the purified wastewater from the thick flocculation sediment. More flocculation material is deposited at the bottom, which easily causes blockage of the filter. Therefore, a frame electrophoresis wastewater discharge treatment system is proposed. SUMMARY

[0004] In order to make the flocculation material deposited to the lowest part for collection, it is inconvenient to separate the purified wastewater from the thick flocculation sediment. More flocculation material is deposited at the bottom, which easily causes blockage of the filter. The present application provides a frame electrophoresis wastewater discharge treatment system.

[0005] The frame electrophoresis wastewater discharge treatment system provided by the present application adopts the following technical scheme: a wastewater treatment box and a sediment collection box are arranged. The sediment collection box is located outside the wastewater treatment box. A plurality of movable isolation sediment structures are arranged in the wastewater treatment box.

[0006] The activity isolation and precipitation structure comprises two outer cylinders and two inner cylinders, the two inner cylinders are respectively inserted into the interiors of the two outer cylinders, the two ends of each outer cylinder are respectively dampedly rotated through the inner walls of the two sides of the wastewater treatment box, the sides away from each other of the two outer cylinders are both communicated and installed with a sandwich isolation plate, the one end of the outer cylinder located in the interior of the wastewater treatment box is open-circuited, the one end of the inner cylinder located in the interior of the wastewater treatment box is open-circuited, the sandwich isolation plate is located below the open-circuited structure of the outer cylinder, the upper surface of the sandwich isolation plate is provided with filter holes penetrating up and down and not communicating with the interior of the sandwich isolation plate, the inner wall of the outer cylinder is provided with a liquid cavity and a gas cavity, the one end of the inner cylinder located outside the outer cylinder is communicated and installed with the precipitation collection box, and the one end of the outer cylinder away from the precipitation collection box is fixedly sleeved with a gear.

[0007] The exterior of the wastewater treatment box is installed with a medicine liquid providing box, the medicine liquid providing box is located on the same side of the precipitation collection box in the wastewater treatment box, the exterior of the wastewater treatment box away from the precipitation collection box is installed with a gas providing box, one end of the outer cylinder is communicated and installed with a liquid delivery structure, the other end of the outer cylinder is communicated and installed with a gas delivery structure, the liquid delivery structure is communicated with the liquid cavity, the gas delivery structure is communicated with the gas cavity, the one end of the liquid delivery structure away from the outer cylinder is communicated and installed with the medicine liquid providing box, and the one end of the gas delivery structure away from the outer cylinder is communicated and installed with the gas providing box.

[0008] The interior of the sandwich isolation plate is communicated with the interior of the liquid cavity, the inner top wall of the sandwich isolation plate is provided with a liquid outlet hole, the interior of the liquid outlet hole is slidably inserted with a tapered plug, the tapered plug is elastically connected with the inner wall of the sandwich isolation plate, the upper surface of the sandwich isolation plate is upwardly bent at the two ends, a pushing structure is slidably arranged above the sandwich isolation plate, one end of the pushing structure close to the adjacent outer cylinder is installed with an elastic telescopic soft tube, the other end of the elastic telescopic soft tube is communicated and installed with the adjacent outer cylinder, the elastic telescopic soft tube is communicated with the gas cavity, a liquid level sensing wireless controller is fixedly inserted into the interior of the wastewater treatment box, a toothed plate is arranged on the side of the wastewater treatment box away from the precipitation collection box, a threaded shaft is threadedly penetrated through the upper surface of the toothed plate, a sensing control motor is installed on the upper end of the threaded shaft, the sensing control motor is connected with the gas providing box, the liquid level sensing wireless controller controls the sensing control motor to rotate by a corresponding angle according to the adhered liquid level height, and drives the toothed plate to move to be flush with the liquid level.

[0009] Optionally, the liquid delivery structure comprises a liquid passing pipe, an inner ring blocking plate and an outer ring blocking plate, the outer ring surface of the inner ring blocking plate is slidably contacted with the inner ring surface of the outer ring blocking plate, one end of the liquid passing pipe is fixed with the adjacent outer cylinder, the liquid passing pipe is communicated with the liquid cavity, the inner ring blocking plate is fixedly sleeved on the outer surface of the adjacent liquid passing pipe, the outer ring surface of the outer ring blocking plate is fixedly penetrated with a liquid pipe, the other end of the liquid pipe is communicated and installed with the medicine liquid providing box, and the outer ring blocking plate is fixed with the wastewater treatment box.

[0010] Optionally, the gas delivery structure comprises a gas pipe, an inner ring twist plate and an outer ring fixed plate, the inner ring twist plate is fixedly sleeved on the outer surface of the gas pipe, the other end of the gas pipe is fixed with the adjacent outer cylinder, the gas pipe is communicated with the gas cavity, the outer ring surface of the inner ring twist plate is in sliding contact with the inner ring surface of the outer ring fixed plate, the outer ring fixed plate is fixed with the outer surface of the wastewater treatment box, the outer ring surface of the outer ring fixed plate is fixedly penetrated with a gas pipe, and the other end of the gas pipe is communicated and installed with the gas supply box.

[0011] Optionally, the pushing structure comprises a moving strip and a one-way push plate, the lower end of the moving strip is an L-shaped groove structure, the upper end of the one-way push plate is located inside the L-shaped groove structure of the moving strip, the upper end of the one-way push plate is elastically connected with the moving strip, the moving strip is in sliding fit with the upper surface of the interlayer isolation plate, and the moving strip is fixed with the elastic telescopic soft cylinder.

[0012] Optionally, the one-way push plate is located above the interlayer isolation plate, the one end of the one-way push plate is conical, the lower end of the one-way push plate is cylindrical and matched with the liquid outlet hole, the distance between the lower end of the one-way push plate and the upper end of the adjacent conical plug is greater than the thickness of the inner top wall of the interlayer isolation plate and the upper surface of the interlayer isolation plate, the lower end of the one-way push plate is provided with a plurality of groove structures, and the groove structures of the one-way push plate are arranged in a staggered manner in the transverse position of the conical plug.

[0013] Optionally, the inner cylinder is rotatably inserted with a spiral feeding plate, one end of the spiral feeding plate extending out of the inner cylinder is located in the inside of the sediment collection tank, the lower end of the sediment collection tank is open, and the end of the spiral feeding plate away from the sediment collection tank is rotatably penetrated through the inner wall of the outer cylinder.

[0014] Optionally, one end of the spiral feeding plate located outside the outer cylinder is coaxially installed with a worm wheel, one side of the worm wheel is engaged with a worm, and the wastewater treatment box is provided with a double-shaft power box away from the sediment collection tank, both output ends of the double-shaft power box are fixed with vertical shafts, and the worm is coaxially fixed on the outer surface of the adjacent vertical shaft.

[0015] Optionally, a plug rod is arranged between two adjacent outer cylinders located on the same horizontal plane.

[0016] Optionally, the liquid pipe, the gas pipe and the interlayer isolation plate connected with the same outer cylinder are arranged in parallel, and the two interlayer isolation plates connected with the two outer cylinders located on the same horizontal plane are arranged in a V shape.

[0017] In summary, the present application has the following beneficial technical effects:

[0018] 1. The present application sets up outer cylinder, inner cylinder, sandwich isolation board, liquid level sensing wireless controller and toothed plate, the liquid level sensing wireless controller detects the liquid level height inside the wastewater treatment tank, controls the corresponding angle of the induction control motor driving screw shaft rotation, the toothed plate moves to the liquid level inside the wastewater treatment tank through meshing with the screw shaft, the toothed plate moves up through meshing with the passing gear to drive the corresponding sandwich isolation board to rotate to the horizontal state, so that the sandwich isolation board below the liquid level in the wastewater treatment tank is in the horizontal state, the space below the liquid level in the wastewater treatment tank is divided into multiple spaces, and the coagulation in different spaces is precipitated on the upper surface of the corresponding sandwich isolation board, so that the coagulation is layered and precipitated, and the coagulation is effectively prevented from being blocked.

[0019] 2. The present application sets up tapered plug, moving strip, one-way push plate and elastic expansion soft cylinder, when the sandwich isolation board rotates to the horizontal state, the gas supply tank fills the elastic expansion soft cylinder on the upper side of the sandwich isolation board rotating to the horizontal state with gas, and the liquid medicine supply tank fills the inside of the sandwich isolation board rotating to the horizontal state with liquid medicine, and the elastic expansion soft cylinder inside gradually pushes the moving strip and the one-way push plate away from the adjacent outer cylinder as the gas inside increases, the one-way push plate applies a pushing force to the tapered end of the tapered plug when moving, pushes the tapered plug into the inside of the sandwich isolation board, and the liquid medicine in the sandwich isolation board is added to the inside of the wastewater treatment tank through the liquid outlet hole, so that the corresponding coagulation agent can be added at the corresponding height according to the liquid level height inside the wastewater treatment tank, the coagulation agent is effectively prevented from being excessive, and the wastewater can be uniformly contacted with the added coagulation agent.

[0020] 3. The present application sets up spiral feeding plate, and the double-shaft power tank drives the worm to rotate through two vertical shafts, the worm drives the spiral feeding plate to rotate through meshing with the worm gear, and the precipitate in the inner cylinder is pushed into the precipitation collection tank. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 is the overall structure schematic diagram in the embodiment of the present application;

[0022] Figure 2 is the rear view structure schematic diagram in the embodiment of the present application;

[0023] Figure 3 is the structure schematic diagram of the wastewater treatment tank inside in the embodiment of the present application;

[0024] Figure 4 is the structure schematic diagram of the gas supply tank connected with the wastewater treatment tank in the embodiment of the present application;

[0025] Figure 5 is the structure schematic diagram of the liquid pipe connected with the inner ring stop plate in the embodiment of the present application;

[0026] Figure 6is a structure diagram of the connection between the air pipe and the inner ring twist plate in the embodiment of the present application;

[0027] Figure 7 is a structure diagram of the inside of the outer cylinder in the embodiment of the present application;

[0028] Figure 8 is a structure diagram of the connection between the conical plug and the liquid outlet hole in the embodiment of the present application.

[0029] The figure mark: 1, wastewater treatment box; 2, sediment collection box; 3, liquid medicine providing box; 4, movable isolation sediment structure; 41, outer cylinder; 42, inner cylinder; 421, spiral feeding plate; 422, worm gear; 423, worm; 424, double-shaft power box; 425, vertical shaft; 43, interlayer isolation plate; 44, filter hole; 45, liquid cavity; 46, gas cavity; 47, gear; 5, gas providing box; 6, liquid delivery structure; 61, liquid delivery pipe; 62, inner ring plug plate; 63, outer ring plug plate; 64, liquid pipe; 7, gas delivery structure; 71, air pipe; 72, inner ring twist plate; 73, outer ring fixed plate; 74, gas pipe; 8, liquid outlet hole; 9, conical plug; 10, pushing structure; 101, moving strip; 102, one-way push plate; 11, elastic telescopic soft cylinder; 12, liquid level sensing wireless controller; 13, toothed plate; 14, threaded shaft; 15, induction control motor; 16, plug rod. DETAILED DESCRIPTION

[0030] The following will be combined with the Figures 1-8 The present application is further described in detail.

[0031] The embodiment of the present application discloses a kind of frame electrophoresis wastewater discharge treatment system. As shown in Figures 1-8 Fig. 1, it includes wastewater treatment box 1 and sediment collection box 2, and the sediment collection box 2 is located outside the wastewater treatment box 1, and a plurality of movable isolation sediment structures 4 are arranged in the wastewater treatment box 1.

[0032] The activity isolation and sedimentation structure 4 comprises two outer cylinders 41 and two inner cylinders 42, the two inner cylinders 42 are respectively inserted into the interiors of the two outer cylinders 41, the two ends of each outer cylinder 41 are respectively dampedly rotated through the inner walls of the two sides of the wastewater treatment tank 1, a plug rod 16 is arranged between the two adjacent outer cylinders 41 on the same horizontal plane, the plug rod 16 is fixedly inserted into the interior of the wastewater treatment tank 1, the plug rod 16 fills the arc-shaped space between the two adjacent outer cylinders 41, so as to prevent the sediments from falling into the space between the two outer cylinders 41 and being discharged, the side of the two outer cylinders 41 away from each other is communicated and installed with a sandwich isolation plate 43, the damping connection between the wastewater treatment tank 1 and the outer cylinder 41 can ensure that the outer cylinder 41 will not rotate when it is not subjected to enough torque, the angle of the inner cylinder 42 and the connected sandwich isolation plate 43 can be limited, the circumferential side of the one end of the outer cylinder 41 inside the wastewater treatment tank 1 is open, the circumferential side of the one end of the inner cylinder 42 inside the wastewater treatment tank 1 is open, when the open structure of the outer cylinder 41 and the open structure of the inner cylinder 42 are communicated, the sandwich isolation plate 43 is in an inclined state, the sediments above the sandwich isolation plate 43 can fall into the interior of the inner cylinder 42 through the open structure of the outer cylinder 41 and the open structure of the inner cylinder 42, when the sandwich isolation plate 43 is rotated to a horizontal state, the end of the sandwich isolation plate 43 away from the outer cylinder 41 is in contact with the inner wall of the wastewater treatment tank 1, when the lowermost sandwich isolation plate 43 is rotated to a horizontal state, the bottom surface of the sandwich isolation plate 43 is in contact with the inner bottom wall of the wastewater treatment tank 1, so as to ensure that no wastewater is below the lowermost sandwich isolation plate 43 and ensure that all the generated sediments are above the sandwich isolation plate 43, and the sandwich isolation plate 43 is below the open structure of the outer cylinder 41.

[0033] The upper surface of the sandwich isolation plate 43 is provided with a filtering hole 44 which is vertically through and does not communicate with the interior of the sandwich isolation plate 43, the filtering hole 44 can block the flocculation and sedimentation, the inner wall of the outer cylinder 41 is provided with a liquid cavity 45 and a gas cavity 46, one end of the inner cylinder 42 outside the outer cylinder 41 is communicated and installed with the sediment collection tank 2, the interior of the inner cylinder 42 is rotatably inserted with a spiral feeding plate 421, one end of the spiral feeding plate 421 extending out of the inner cylinder 42 is located in the interior of the sediment collection tank 2, the lower end of the sediment collection tank 2 is open, one end of the spiral feeding plate 421 away from the sediment collection tank 2 is rotatably penetrated through the inner wall of the outer cylinder 41, one end of the spiral feeding plate 421 outside the outer cylinder 41 is coaxially installed with a worm wheel 422, one side of the worm wheel 422 is engaged with a worm 423, the side of the wastewater treatment tank 1 away from the sediment collection tank 2 is installed with a double-shaft power tank 424, two output ends of the double-shaft power tank 424 are fixedly provided with vertical shafts 425, the worm 423 is coaxially fixed on the outer surface of the adjacent vertical shaft 425, when the spiral feeding plate 421 rotates, it can assist in pushing the flocculation and sedimentation in the inner cylinder 42 into the interior of the sediment collection tank 2, one end of the outer cylinder 41 away from the sediment collection tank 2 is fixedly sleeved with a gear 47.

[0034] The wastewater treatment box 1 is externally provided with a liquid providing box 3, the flocculation agent is put into the liquid providing box 3, the liquid providing box 3 is located at the same side of the wastewater treatment box 1 as the sediment collecting box 2, a gas providing box 5 is externally provided on the wastewater treatment box 1 away from the sediment collecting box 2, the gas providing box 5 is provided with a gas pump and a pressure relief valve, a liquid transmission structure 6 is communicated and mounted at one end of the outer cylinder 41, a gas transmission structure 7 is communicated and mounted at the other end of the outer cylinder 41, the liquid transmission structure 6 is communicated with a liquid cavity 45, the gas transmission structure 7 is communicated with a gas cavity 46, the liquid transmission structure 6 is communicated and mounted with the liquid providing box 3 at the end away from the outer cylinder 41, and the gas transmission structure 7 is communicated and mounted with the gas providing box 5 at the end away from the outer cylinder 41.

[0035] The liquid transmission structure 6 comprises a liquid pipe 61, an inner ring blocking plate 62 and an outer ring blocking plate 63, the outer ring surface of the inner ring blocking plate 62 is in sliding contact with the inner ring surface of the outer ring blocking plate 63, one end of the liquid pipe 61 is fixed with the adjacent outer cylinder 41, the liquid pipe 61 is communicated with the liquid cavity 45, the inner ring blocking plate 62 is fixedly sleeved on the outer surface of the adjacent liquid pipe 61, the outer ring surface of the outer ring blocking plate 63 is fixedly penetrated by a liquid pipe 64, the other end of the liquid pipe 64 is communicated and mounted with the liquid providing box 3, the outer ring blocking plate 63 is fixed with the wastewater treatment box 1, the liquid providing box 3 can fill the liquid into the liquid pipe 64, when the sandwiched isolation plate 43 is in a horizontal state, the liquid pipe 61 is communicated with the liquid pipe 64, and the liquid can be added into the liquid cavity 45.

[0036] The gas transmission structure 7 comprises a gas pipe 71, an inner ring torsion plate 72 and an outer ring fixed plate 73, the inner ring torsion plate 72 is fixedly sleeved on the outer surface of the gas pipe 71, the other end of the gas pipe 71 is fixed with the adjacent outer cylinder 41, the gas pipe 71 is communicated with the gas cavity 46, the outer ring surface of the inner ring torsion plate 72 is in sliding contact with the inner ring surface of the outer ring fixed plate 73, the outer ring fixed plate 73 is fixed with the outer surface of the wastewater treatment box 1, the outer ring surface of the outer ring fixed plate 73 is fixedly penetrated by a gas pipe 74, the other end of the gas pipe 74 is communicated and mounted with the gas providing box 5, when the sandwiched isolation plate 43 is rotated to a horizontal state, the gas pipe 71 is rotated to be communicated with the gas pipe 74, and the gas providing box 5 fills gas into the gas cavity 46 through the gas pipe 74 and the gas pipe 71.

[0037] The inner part of the sandwich isolation plate 43 is communicated with the inner part of the liquid cavity 45, the inner top wall of the sandwich isolation plate 43 is provided with a liquid outlet hole 8, the inner part of the liquid outlet hole 8 is slidably connected with a tapered plug 9, the tapered plug 9 is elastically connected with the inner wall of the sandwich isolation plate 43, the tapered plug 9 has a tendency to block the liquid outlet hole 8 when being elastically connected with the sandwich isolation plate 43, the upper surface of the sandwich isolation plate 43 is upwardly bent at both front and rear ends, the upper part of the sandwich isolation plate 43 is slidably connected with a pushing structure 10, one end of the pushing structure 10 close to the adjacent outer cylinder is provided with an elastic telescopic soft tube 11, the other end of the elastic telescopic soft tube 11 is communicated with and installed on the adjacent outer cylinder 41, and the elastic telescopic soft tube 11 is communicated with the gas cavity 46.

[0038] The pushing structure 10 comprises a moving strip 101 and a one-way push plate 102, the lower end of the moving strip 101 is an L-shaped groove structure, the upper end of the one-way push plate 102 is located in the L-shaped groove structure of the moving strip 101, the upper end of the one-way push plate 102 is elastically connected with the moving strip 101, the moving strip 101 is slidably connected with the upper surface of the sandwich isolation plate 43, the moving strip 101 is fixed with the elastic telescopic soft tube 11, one end of the tapered plug 9 located above the sandwich isolation plate 43 is tapered, the lower end of the tapered plug 9 is cylindrical and matched with the liquid outlet hole 8, the distance between the lower end of the one-way push plate 102 and the upper end of the adjacent tapered plug 9 is greater than the thickness of the inner top wall of the sandwich isolation plate 43 and the upper surface of the sandwich isolation plate 43, the lower end of the one-way push plate 102 is provided with a plurality of groove structures, the groove structures of the one-way push plate 102 are arranged in a staggered manner with the transverse position of the tapered plug 9, when the sandwich isolation plate 43 is rotated to a horizontal state, the gas cavity 46 is inflated into the elastic telescopic soft tube 11 connected therewith, the elastic telescopic soft tube 11 gradually expands with the inflation of the gas, the moving strip 101 and the one-way push plate 102 are gradually pushed away from the outer cylinder 41, when the one-way push plate 102 exerts a pushing force on the tapered plug 9 during movement, the tapered plug 9 is retracted into the inner part of the sandwich isolation plate 43, so that the liquid medicine in the sandwich isolation plate 43 can be added into the wastewater from the liquid outlet hole 8, the corresponding flocculation agent can be added according to the height of the liquid level in the wastewater treatment tank 1, the flocculation agent can be effectively prevented from being excessive, and the wastewater can be uniformly contacted with the added flocculation agent, after the sandwich isolation plate 43 is rotated to an inclined state, the air pipe 71 is staggered with the gas pipe 74, and the air pipe 71 is communicated with the external space, so that the elastic telescopic soft tube 11 is contracted under the elasticity thereof, and the moving strip 101 and the one-way push plate 102 are moved downward under the contraction and stretching of the elastic telescopic soft tube 11.

[0039] The inside of the wastewater treatment box 1 is fixedly inserted with a liquid level sensing wireless controller 12, a toothed plate 13 is arranged on the side of the wastewater treatment box 1 away from the sediment collection box 2, a threaded shaft 14 is screwed through the upper surface of the toothed plate 13, an induction control motor 15 is installed on the upper end of the threaded shaft 14, the induction control motor 15 is connected with the gas supply box 5, the liquid level sensing wireless controller 12 controls the induction control motor 15 to rotate by a corresponding angle according to the liquid level height, drives the toothed plate 13 to move to be flush with the liquid level, the liquid passage 61, the air passage 71 and the interlayer isolation plate 43 connected with the same outer cylinder 41 are arranged in parallel, the two interlayer isolation plates 43 connected with the two outer cylinders 41 on the same horizontal plane are arranged in a V shape, the toothed plate 13 is moved upward to drive the corresponding outer cylinder 41 to rotate by a certain angle through meshing with the gear 47, drives the corresponding interlayer isolation plate 43 to rotate to a horizontal state, and the two interlayer isolation plates 43 on the same horizontal plane can be in contact with the inner wall of the wastewater treatment box 1.

[0040] The working principle is as follows: when the wastewater is purified, the lower end of the wastewater treatment box 1 is blocked, wastewater is added into the wastewater treatment box 1, the liquid level sensing wireless controller 12 detects the liquid level height in the wastewater treatment box 1, controls the induction control motor 15 to drive the threaded shaft 14 to rotate by a corresponding angle, the toothed plate 13 is moved to be flush with the liquid level in the wastewater treatment box 1 through meshing with the threaded shaft 14, the toothed plate 13 is moved upward to drive the corresponding interlayer isolation plate 43 to rotate to a horizontal state through meshing with the gear 47, the interlayer isolation plates 43 below the liquid level in the wastewater treatment box 1 are all in a horizontal state, the space below the liquid level in the wastewater treatment box 1 is divided into multiple spaces, the wastewater is mixed with the added flocculation agent to generate flocculation sediment, the flocculation sediments in different spaces are respectively deposited on the upper surfaces of the corresponding interlayer isolation plates 43, the flocculation sediments are layered and deposited, the purified wastewater is discharged from the lower end of the wastewater treatment box 1, the flocculation sediments are blocked above the corresponding interlayer isolation plates 43, as the liquid level decreases, the liquid level sensing wireless controller 12 detects the liquid level decrease, controls the threaded shaft 14 to reverse to drive the toothed plate 13 to move downward, the toothed plate 13 is reset downward to drive the corresponding interlayer isolation plate 43 to restore to an inclined state through meshing with the gear 47, the opening structure of the outer cylinder 41 is overlapped with the opening structure of the inner cylinder 42, and the sediments on the interlayer isolation plate 43 slide downward under the action of gravity and then fall into the inner cylinder 42 through the openings of the outer cylinder 41 and the inner cylinder 42.

[0041] The above are preferred embodiments of the present application, which do not limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape and principle of the present application should be covered within the protection scope of the present application.

Claims

1. A frame electrophoretic wastewater discharge treatment system comprising a wastewater treatment tank (1) and a sediment collection tank (2), characterized in that: The sediment collection box (2) is located outside the wastewater treatment box (1), and the inside of the wastewater treatment box (1) is provided with a plurality of movable isolation and sedimentation structures (4); The movable isolation and sedimentation structure (4) comprises two outer cylinders (41) and two inner cylinders (42), the two inner cylinders (42) are respectively inserted into the interiors of the two outer cylinders (41), the two ends of each outer cylinder (41) are respectively damped and rotated to penetrate the inner walls of the two sides of the wastewater treatment box (1), the sides away from each other of the two outer cylinders (41) are both communicated and installed with a sandwich isolation plate (43), the one end of the outer cylinder (41) located in the interior of the wastewater treatment box (1) is open, the one end of the inner cylinder (42) located in the interior of the wastewater treatment box (1) is open, the sandwich isolation plate (43) is located below the open structure of the outer cylinder (41), the upper surface of the sandwich isolation plate (43) is provided with a filter hole (44) penetrating up and down and not communicating with the interior of the sandwich isolation plate (43), the inner wall of the outer cylinder (41) is provided with a liquid cavity (45) and a gas cavity (46), the one end of the inner cylinder (42) located outside the outer cylinder (41) is communicated and installed with the sediment collection box (2), and the one end of the outer cylinder (41) away from the sediment collection box (2) is fixedly sleeved with a gear (47); The outside of the wastewater treatment box (1) is installed with a liquid medicine providing box (3), the liquid medicine providing box (3) is located on the same side of the sediment collection box (2) in the wastewater treatment box (1), the outside of the wastewater treatment box (1) is installed with a gas providing box (5) away from the sediment collection box (2), one end of the outer cylinder (41) is communicated and installed with a liquid transmission structure (6), the other end of the outer cylinder (41) is communicated and installed with a gas transmission structure (7), the liquid transmission structure (6) is communicated with the liquid cavity (45), the gas transmission structure (7) is communicated with the gas cavity (46), the one end of the liquid transmission structure (6) away from the outer cylinder (41) is communicated and installed with the liquid medicine providing box (3), and the one end of the gas transmission structure (7) away from the outer cylinder (41) is communicated and installed with the gas providing box (5). The inner part of the sandwich isolation plate (43) is communicated with the inner part of the liquid cavity (45), the inner top wall of the sandwich isolation plate (43) is provided with a liquid outlet hole (8), the inner part of the liquid outlet hole (8) is matched with a conical plug (9) which is slidably inserted, the conical plug (9) is elastically connected with the inner wall of the sandwich isolation plate (43), the upper surface of the sandwich isolation plate (43) is bent upwards at both front and rear ends, a pushing structure (10) is slidably matched with the upper part of the sandwich isolation plate (43), an elastic telescopic soft tube (11) is installed at one end of the pushing structure (10) close to the adjacent outer cylinder, the other end of the elastic telescopic soft tube (11) is communicated with and installed on the adjacent outer cylinder (41), the elastic telescopic soft tube (11) is communicated with the gas cavity (46), a liquid level sensing wireless controller (12) is fixedly inserted in the inner part of the wastewater treatment box (1), a toothed plate (13) is arranged on the side of the wastewater treatment box (1) away from the sediment collection box (2), a threaded shaft (14) is threaded through the upper surface of the toothed plate (13), an induction control motor (15) is installed on the upper end of the threaded shaft (14), the induction control motor (15) is connected with the gas supply box (5), the liquid level sensing wireless controller (12) controls the induction control motor (15) to rotate by a corresponding angle according to the liquid level height, and drives the toothed plate (13) to move to be flush with the liquid level.

2. A frame electrophoretic wastewater discharge treatment system according to claim 1, characterized in that: The liquid delivery structure (6) comprises a liquid passing pipe (61), an inner ring blocking plate (62) and an outer ring blocking plate (63), the outer ring surface of the inner ring blocking plate (62) is in sliding contact with the inner ring surface of the outer ring blocking plate (63), one end of the liquid passing pipe (61) is fixed with the adjacent outer cylinder (41), the liquid passing pipe (61) is communicated with the liquid cavity (45), the inner ring blocking plate (62) is fixedly sleeved on the outer surface of the adjacent liquid passing pipe (61), the outer ring surface of the outer ring blocking plate (63) is fixedly penetrated with a liquid pipe (64), the other end of the liquid pipe (64) is communicated with and installed on the chemical liquid supply box (3), and the outer ring blocking plate (63) is fixed with the wastewater treatment box (1).

3. The frame electrophoretic wastewater discharge treatment system of claim 1, wherein: The gas delivery structure (7) comprises a gas passing pipe (71), an inner ring torsion plate (72) and an outer ring fixed plate (73), the inner ring torsion plate (72) is fixedly sleeved on the outer surface of the gas passing pipe (71), the other end of the gas passing pipe (71) is fixed with the adjacent outer cylinder (41), the gas passing pipe (71) is communicated with the gas cavity (46), the outer ring surface of the inner ring torsion plate (72) is in sliding contact with the inner ring surface of the outer ring fixed plate (73), the outer ring fixed plate (73) is fixed with the outer surface of the wastewater treatment box (1), the outer ring surface of the outer ring fixed plate (73) is fixedly penetrated with a gas pipe (74), and the other end of the gas pipe (74) is communicated with and installed on the gas supply box (5).

4. A frame electrophoretic wastewater discharge treatment system according to claim 3, characterized in that: The pushing structure (10) comprises a moving strip (101) and a one-way push plate (102), the lower end of the moving strip (101) is an L-shaped groove structure, the upper end of the one-way push plate (102) is located inside the L-shaped groove structure of the moving strip (101), the upper end of the one-way push plate (102) is elastically connected with the moving strip (101), the moving strip (101) is in sliding fit with the upper surface of the interlayer isolation plate (43), and the moving strip (101) is fixed with the elastic telescopic soft cylinder (11).

5. A frame electrophoretic wastewater discharge treatment system according to claim 4, characterized in that: The one-way push plate (102) is located above the interlayer isolation plate (43), one end of the one-way push plate (102) is a tapered structure, the lower end of the one-way push plate (102) is a cylindrical structure matched with the liquid outlet hole (8), the distance between the lower end of the one-way push plate (102) and the upper end of the adjacent tapered plug (9) is greater than the thickness of the inner top wall of the interlayer isolation plate (43) and the upper surface of the interlayer isolation plate (43), the lower end of the one-way push plate (102) is provided with a plurality of groove structures, and the groove structures of the one-way push plate (102) are arranged in a staggered manner in the transverse direction of the tapered plug (9).

6. The frame electrophoretic wastewater discharge treatment system of claim 1, wherein: The inner cylinder (42) is rotatably connected with a spiral feeding plate (421), one end of the spiral feeding plate (421) extending out of the inner cylinder (42) is located in the inside of the sediment collection box (2), the lower end of the sediment collection box (2) is an open structure, and the end of the spiral feeding plate (421) away from the sediment collection box (2) is rotatably connected with the inner wall of the outer cylinder (41).

7. A frame electrophoretic wastewater discharge treatment system according to claim 6, characterized in that: The end of the spiral feeding plate (421) located outside the outer cylinder (41) is coaxially connected with a worm wheel (422), one side of the worm wheel (422) is engaged with a worm (423), and the wastewater treatment box (1) is provided with a double-shaft power box (424) on the side away from the sediment collection box (2), both output ends of the double-shaft power box (424) are fixedly connected with vertical shafts (425), and the worm (423) is coaxially fixed on the outer surface of the adjacent vertical shaft (425).

8. The frame electrophoretic wastewater discharge treatment system of claim 1, wherein: The blocking rod (16) is fixedly connected in the inside of the wastewater treatment box (1).

9. A frame electrophoretic wastewater discharge treatment system according to claim 4, characterized in that: The liquid passage (61), the air passage (71) and the interlayer isolation plate (43) connected with the same outer cylinder (41) are arranged in parallel, and the two interlayer isolation plates (43) connected with the two outer cylinders (41) located in the same horizontal plane are arranged in a V shape.

Citation Information

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