Ozone treatment system for reclaimed water
By employing a bevel gear meshing design to drive the reciprocating motion of the filter element in the reclaimed water ozone treatment system, the contact area between ozone and wastewater is increased. Furthermore, the layered structure of the filter element is used to deposit impurities and large solid particles, thus solving the problem of incomplete filtration in existing technologies and achieving highly efficient reclaimed water treatment.
Patent Information
- Application Number
- CN202311533945.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-17
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2043-11-17
AI Technical Summary
There is a lack of equipment in the current technology that can effectively remove impurities and large particulate solids while achieving filter filtration during ozone treatment of reclaimed water.
The reclaimed water ozone treatment system includes a frame assembly, a power assembly, an atomizing assembly, and a filter assembly. The filter cartridge is driven to reciprocate through bevel gear meshing, which increases the contact area between ozone and wastewater. The layered structure of the filter cartridge is used to deposit impurities and large solid particles.
It achieves uniform distribution of ozone in water, enhances the treatment effect on wastewater, effectively removes impurities and large solid particles, prevents water overflow, and improves treatment efficiency.
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Figure CN117303532B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of environmental protection equipment, in particular to a regenerated water ozone treatment system. BACKGROUND
[0002] The ozone regenerated water treatment process has many advantages compared with other regenerated water treatment methods, the equipment pipeline occupies small area, the degradation speed is relatively fast, the degree of automation is higher, there is no secondary pollution, a large amount of sludge or dregs cannot be produced, especially for the treatment effect of biologically refractory substances is particularly obvious, in addition, the regenerated water treatment method also has the effects of scale prevention, decolorization, sterilization and the like. Usually, iron, manganese, suspended colloids, particulate matter and dissolved organic matter in water cause the water source to be treated to produce color. Fulvic acid and humic acid are representatives of organic matter causing water to be colored. The unsaturated functional groups in the organic matter and ozone undergo chemical reactions, and the unsaturated double bonds in the molecule are destroyed, thereby completing the decolorization treatment. In the regenerated water treatment process, ozone also produces a micro-flocculation effect, which can help to coagulate suspended particulate matter and organic colloids, and then remove the colored substances by filtering out the particulate matter.
[0003] At present, there is still a lack of an equipment that can remove impurities and large particles of solid while realizing filter core filtration during raw water ozone treatment. SUMMARY
[0004] The technical problem to be solved by the present application is to provide a regenerated water ozone treatment system, which is convenient for regenerated water treatment.
[0005] The present application achieves the purpose of the application by adopting the following technical solutions:
[0006] A kind of reclaimed water ozone treatment system, including rack assembly, it is characterized in that: the rack assembly includes support plate, the support plate is fixedly connected vertical pole, the vertical pole is fixedly connected T frame, the vertical pole is fixedly connected ladder barrel, the ladder barrel is provided with four uniform distribution notches along the circumferential direction;The support plate is fixedly connected frame, the frame is fixedly connected four uniform distribution support blocks, each support block is fixedly connected sealing round plate respectively, each support block is fixedly connected the ladder barrel respectively, the sealing round plate is fixedly connected the ladder barrel;It further includes power assembly, the power assembly includes motor, the T frame is fixedly connected the motor, the output shaft of the motor is fixedly connected circular shaft, the circular shaft passes through the T frame, the circular shaft bearing connects the sealing round plate, the circular shaft passes through the support plate and the frame;It further includes jetting assembly, the jetting assembly includes fixed bevel gear, the T frame is fixedly connected the fixed bevel gear, the circular shaft passes through the fixed bevel gear, the circular shaft bearing connects symmetrical horizontal shaft, symmetrical the horizontal shaft is fixedly connected bevel gear respectively, symmetrical the bevel gear is engaged the fixed bevel gear respectively;Symmetrical the horizontal shaft is fixedly connected air pipe respectively, symmetrical the air pipe is fixedly connected with a group of evenly distributed spray head respectively, symmetrical the air pipe is fixedly connected with connector respectively.
[0007] As further limitation of the technical solution, it further includes filter core assembly, the filter core assembly includes four filter cores, each filter core is arranged in corresponding notch respectively, the upper part of each filter core is fixedly connected water jet connector respectively, each filter core is fixedly connected water suction pipe respectively, each water suction pipe is fixedly connected L rod respectively, each L rod is fixedly connected moving round block respectively, each moving round block is arranged in guide cylinder respectively, each guide cylinder is fixedly connected corresponding support block respectively, each guide cylinder is fixedly connected the ladder barrel respectively, each moving round block passes through the ladder barrel respectively.
[0008] As further limitation of the technical solution, the frame is fixedly connected connecting frame, the connecting frame is fixedly connected bearing seat, the circular shaft is fixedly connected driving gear, the circular shaft bearing connects the bearing seat.
[0009] As further limitation of the technical solution, the frame bearing connects four evenly distributed driven gears, each driven gear is engaged the driving gear respectively, the edge of each driven gear is rotatably connected swing plate respectively, each swing plate is rotatably connected corresponding L rod respectively.
[0010] As further limitation of the technical solution, the filter core is replaceable layered filter core, and is ladder-shaped.
[0011] As further limitation of the technical solution, two side surfaces and bottom surface of the filter core are in close contact with the ladder barrel respectively.
[0012] As a further limitation of the technical solution, the circular shaft is fixedly connected with the weight circular block.
[0013] A treatment method of a regenerated water ozone treatment system, characterized in that:
[0014] S1: connecting the water source to the water spraying connector through a hose, connecting the ozone source to the connector through a hose, and installing a water valve on the water pumping pipe;
[0015] S2: controlling the motor to rotate in a certain number of turns in the forward direction and then rotate in a certain number of turns in the reverse direction, and controlling the water source to supply water and the ozone source to supply ozone;
[0016] S3: the water spraying connector sprays water, the nozzle sprays ozone, and the filter core moving forward and backward brings an impact force to the water flow, which is impacted and mixed and broken under the driving of the filter core, and then contacts the ozone in front, and the filter core opposite to the filter core moves towards the middle at the same time, at this time, the other two filter cores opposite to the filter core move outward, keeping the total space basically unchanged, preventing water from overflowing when moving towards the middle at the same time;
[0017] S4: when the amount of treated water in the stepped barrel is relatively large, one end of a hose is connected to the water pumping pipe, the other end of the hose is connected to a collecting system, the water valve of the water pumping pipe is opened, and the treated water enters the collecting system;
[0018] S5: replacing the filter core after a fixed time.
[0019] As a further limitation of the technical solution, the layered structure of the filter core combines the front baffle to realize the deposition, blocking and limitation of sundries and large particles in the interlayer of the layered structure.
[0020] As a further limitation of the technical solution, the surface material of the moving circular block is rubber, which realizes sealing with the guide cylinder.
[0021] Compared with the prior art, the advantages and positive effects of the present application are:
[0022] 1. The device adopts bevel gears meshing with fixed bevel gears, which rotate in the meshing process with the fixed bevel gears under the driving of the circular shaft, the connector revolves around the circular shaft and revolves around the horizontal shaft at the same time, ozone is input into the stepped barrel and contacts with sewage, the contact area of ozone and sewage is increased, ozone is uniformly distributed in water, and regenerated water treatment is realized.
[0023] 2, the device is realized by adopting gear engagement, the filter core reciprocating movement, reciprocating movement of the filter core to water flow brings an impact force, water flow under its drive impact mixed broken contact front ozone, the filter core is opposite to the middle at the same time, at this time, the other two opposite filter core moves to the outside, keep the total space basically unchanged, prevent the water from overflowing when moving to the middle at the same time. The layered structure of the filter core combines the front baffle, realizes the deposition, block, limit in the interlayer of layered structure of sundries and large particle solid. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 is the schematic diagram of the three-dimensional structure of the present application Figure One .
[0025] Figure 2 is the schematic diagram of the partial three-dimensional structure of the present application Figure One .
[0026] Figure 3 is the schematic diagram of the partial three-dimensional structure of the present application Figure Two .
[0027] Figure 4 is the schematic diagram of the partial three-dimensional structure of the present application Figure Three .
[0028] Figure 5 is the schematic diagram of the partial three-dimensional structure of the present application Figure Four .
[0029] Figure 6 is the schematic diagram of the partial three-dimensional structure of the present application Figure Five .
[0030] Figure 7 is the schematic diagram of the three-dimensional structure of the present application Figure Two .
[0031] Figure 8 is the schematic diagram of the three-dimensional structure of the present application Figure Three .
[0032] In the figure:
[0033] 1, rack assembly, 11, vertical rod, 12, T frame, 13, ladder barrel, 14, support plate, 15, sealing round plate, 16, notch, 17, support block, 18, frame, 19, connecting frame;
[0034] 2, power assembly, 21, motor, 22, round shaft, 23, counterweight round block, 24, driving gear, 25, bearing seat;
[0035] 3, air jet assembly, 31, nozzle, 32, air pipe, 33, joint, 34, horizontal shaft, 35, bevel gear, 36, fixed bevel gear;
[0036] 4, filter core assembly, 41, water jet connector, 42, filter core, 43, water suction pipe, 44, guide cylinder, 45, moving round block, 46, L rod, 47, swing plate, 48, driven gear. DETAILED DESCRIPTION
[0037] One specific embodiment of the present application is described in detail below with reference to the accompanying drawings, but it should be understood that the scope of protection of the present application is not limited by the specific embodiment.
[0038] The present application comprises a rack assembly 1, which comprises a support plate 14, the support plate 14 is fixedly connected with a vertical rod 11, the vertical rod 11 is fixedly connected with a T-shaped frame 12, the vertical rod 11 is fixedly connected with a stepped cylinder 13, the stepped cylinder 13 is provided with four evenly distributed notches 16 in the circumferential direction; the support plate 14 is fixedly connected with a frame 18, the frame 18 is fixedly connected with four evenly distributed support blocks 17, each of the support blocks 17 is respectively fixedly connected with a sealing circular plate 15, each of the support blocks 17 is respectively fixedly connected with the stepped cylinder 13, and the sealing circular plate 15 is fixedly connected with the stepped cylinder 13; further comprising a power assembly 2, the power assembly 2 comprises a motor 21, the T-shaped frame 12 is fixedly connected with the motor 21, the output shaft of the motor 21 is fixedly connected with a circular shaft 22, the circular shaft 22 penetrates through the T-shaped frame 12, the circular shaft 22 is bearing-connected with the sealing circular plate 15, and the circular shaft 22 penetrates through the support plate 14 and the frame 18; further comprising a jet assembly 3, the jet assembly 3 comprises a fixed bevel gear 36, the T-shaped frame 12 is fixedly connected with the fixed bevel gear 36, the circular shaft 22 penetrates through the fixed bevel gear 36, the circular shaft 22 is bearing-connected with symmetrical horizontal shafts 34, the symmetrical horizontal shafts 34 are respectively fixedly connected with bevel gears 35, and the symmetrical bevel gears 35 are respectively engaged with the fixed bevel gear 36; the symmetrical horizontal shafts 34 are respectively fixedly connected with air pipes 32, the symmetrical air pipes 32 are respectively fixedly connected with a group of evenly distributed water jets 31, and the symmetrical air pipes 32 are respectively fixedly connected with connectors 33.
[0039] Further comprising a filter core assembly 4, the filter core assembly 4 comprises four filter cores 42, each of the filter cores 42 is respectively arranged in a corresponding notch 16, an upper part of each of the filter cores 42 is respectively fixedly connected with a water jet connector 41, each of the filter cores 42 is respectively fixedly connected with a water suction pipe 43, each of the water suction pipes 43 is respectively fixedly connected with an L rod 46, each of the L rods 46 is respectively fixedly connected with a moving round block 45, each of the moving round blocks 45 is respectively arranged in a guide cylinder 44, each of the guide cylinders 44 is respectively fixedly connected with a corresponding support block 17, each of the guide cylinders 44 is respectively fixedly connected with the stepped cylinder 13, and each of the moving round blocks 45 penetrates through the stepped cylinder 13.
[0040] The frame 18 is fixedly connected with a connecting frame 19, the connecting frame 19 is fixedly connected with a bearing seat 25, the circular shaft 22 is fixedly connected with a driving gear 24, and the circular shaft 22 is bearing-connected with the bearing seat 25.
[0041] The frame 18 is bearing-connected with four uniformly distributed driven gears 48, each of which is engaged with the driving gear 24, and the edge of each of the driven gears 48 is rotatably connected with a swing plate 47, and each of the swing plates 47 is rotatably connected with a corresponding L-shaped rod 46.
[0042] The filter element 42 is a replaceable layered filter element and is in a stepped shape.
[0043] The two side surfaces and the bottom surface of the filter element 42 are in close contact with the stepped barrel 13.
[0044] The circular shaft 22 is fixedly connected with a counterweight circular block 23.
[0045] A treatment method of a regenerated water ozone treatment system, characterized in that:
[0046] S1: connecting a water source to the water spraying connector 41 through a hose and connecting an ozone source to the connector 33 through a hose, and installing a water valve on the water pumping pipe 43;
[0047] S2: controlling the motor 21 to rotate forward for a certain number of turns and then rotate in the opposite direction for a certain number of turns, and controlling the water source to supply water and the ozone source to supply ozone;
[0048] When the motor 21 rotates, the circular shaft 22 rotates, the circular shaft 22 drives the horizontal shaft 34, the bevel gear 35, the air pipe 32 and the connector 33 to revolve around the circular shaft 22, the bevel gear 35 meshes with the fixed bevel gear 36 to rotate in the revolving process, the bevel gear 35 drives the horizontal shaft 34 to rotate, the horizontal shaft 34 drives the air pipe 32 and the connector 33 to revolve around the horizontal shaft 34. The circular shaft 22 drives the driving gear 24 to rotate, the driving gear 24 drives the driven gear 48 to rotate, the driven gear 48 drives the swing plate 47 to swing, the swing plate 47 drives the L-shaped rod 46 to reciprocate, the L-shaped rod 46 drives the water pumping pipe 43, the filter element 42 and the water spraying connector 41 to reciprocate, and the L-shaped rod 46 drives the moving circular block 45 to reciprocate along the guide cylinder 44.
[0049] S3: the water spraying connector 41 sprays water, the nozzle 31 sprays ozone, the reciprocating filter element 42 brings an impact force to the water flow, the water flow impacts and breaks after mixing and then contacts the ozone in front, and the filter element 42 on the opposite side moves to the middle at the same time, at this time, the other two filter elements 42 on the opposite sides move to the outside, so that the total space remains basically unchanged, preventing water from overflowing when moving to the middle at the same time.
[0050] S4: When the amount of treated water in the stepped barrel 13 is large, one end of a hose is connected to the water pumping pipe 43, the other end of the hose is connected to a collecting system, the water valve of the water pumping pipe 43 is opened, and the treated water is introduced into the collecting system.
[0051] S5: The filter core 42 is replaced after a fixed time.
[0052] The layered structure of the filter core 42 combines with the front baffle to realize the deposition, blocking and limitation of sundries and large particles in the interlayer of the layered structure.
[0053] The surface material of the moving circular block 45 is rubber to realize the sealing with the guide cylinder 44.
[0054] The device realizes the input of ozone into the stepped barrel 13 to contact with the sewage, increases the contact area of ozone and sewage, makes the ozone uniformly distributed in the water, and realizes the treatment of regenerated water by adopting the meshing of bevel gears 35 and fixed bevel gears 36, driving by the circular shaft 22, rotating of the bevel gears 35 in the revolution process, and revolution of the joint 33 around the circular shaft 22 and the horizontal shaft 34.
[0055] The device realizes the reciprocating movement of the filter core 42 by adopting the meshing of gears, the filter core 42 brings an impact force to the water flow, the water flow is impacted and mixed under the driving of the filter core 42, and contacts with the front ozone, the filter core 42 moves to the middle at the same time, at this time, the other two filter cores 42 move to the outside, the total space is basically unchanged, and the overflow of water is prevented when moving to the middle at the same time. The layered structure of the filter core 42 combines with the front baffle to realize the deposition, blocking and limitation of sundries and large particles in the interlayer of the layered structure.
[0056] The above only discloses the specific embodiments of the present application, but the present application is not limited to this, any changes that can be thought by any person skilled in the art should fall into the protection scope of the present application.
Claims
1. A regenerated water ozone treatment system, comprising a rack assembly (1), characterized in that: the rack assembly (1) comprises a support plate (14), the support plate (14) is fixedly connected with a vertical rod (11), the vertical rod (11) is fixedly connected with a T-shaped frame (12), the vertical rod (11) is fixedly connected with a stepped barrel (13), and the stepped barrel (13) is provided with four uniformly distributed notches (16) in the circumferential direction; the support plate (14) is fixedly connected with a frame (18), the frame (18) is fixedly connected with four uniformly distributed support blocks (17), each of the support blocks (17) is fixedly connected with a sealing circular plate (15), each of the support blocks (17) is fixedly connected with the stepped barrel (13), and the sealing circular plate (15) is fixedly connected with the stepped barrel (13); further comprising a power assembly (2), the power assembly (2) comprises a motor (21), the T-shaped frame (12) is fixedly connected with the motor (21), an output shaft of the motor (21) is fixedly connected with a circular shaft (22), the circular shaft (22) penetrates through the T-shaped frame (12), the circular shaft (22) is bearing-connected with the sealing circular plate (15), and the circular shaft (22) penetrates through the support plate (14) and the frame (18); further comprising a jetting assembly (3), the jetting assembly (3) comprises a fixed bevel gear (36), the T-shaped frame (12) is fixedly connected with the fixed bevel gear (36), the circular shaft (22) penetrates through the fixed bevel gear (36), the circular shaft (22) is bearing-connected with symmetrical horizontal shafts (34), the symmetrical horizontal shafts (34) are respectively fixedly connected with bevel gears (35), and the symmetrical bevel gears (35) are respectively engaged with the fixed bevel gear (36); the bevel gears (35) drive the horizontal shafts (34) to rotate, and the horizontal shafts (34) drive air pipes (32) and joints (33) to revolve around the horizontal shafts (34); the symmetrical horizontal shafts (34) are respectively fixedly connected with the air pipes (32), the symmetrical air pipes (32) are respectively fixedly connected with a group of uniformly distributed nozzles (31), and the symmetrical air pipes (32) are respectively fixedly connected with the joints (33); further comprising a filter element assembly (4), the filter element assembly (4) comprises four filter elements (42), each of the filter elements (42) is arranged in a corresponding notch (16), an upper portion of each of the filter elements (42) is fixedly connected with a water spraying joint (41), each of the filter elements (42) is fixedly connected with a water pumping pipe (43), each of the water pumping pipes (43) is fixedly connected with an L-shaped rod (46), each of the L-shaped rods (46) is fixedly connected with a moving circular block (45), each of the moving circular blocks (45) is arranged in a guide cylinder (44), each of the guide cylinders (44) is fixedly connected with a corresponding support block (17), each of the guide cylinders (44) is fixedly connected with the stepped barrel (13), and each of the moving circular blocks (45) penetrates through the stepped barrel (13). The frame (18) is fixedly connected with a connecting frame (19), the connecting frame (19) is fixedly connected with a bearing seat (25), the circular shaft (22) is fixedly connected with a driving gear (24), and the circular shaft (22) is bearing-connected with the bearing seat (25); The frame (18) is bearing-connected with four driven gears (48) which are uniformly distributed, each of the driven gears (48) is engaged with the driving gear (24), the edge of each of the driven gears (48) is rotatably connected with a swing plate (47), and each of the swing plates (47) is rotatably connected with a corresponding L-shaped rod (46); the filter elements (42) which are opposite to each other move towards the middle at the same time, and meanwhile, the other two filter elements (42) which are opposite to each other move towards the outside.
2. The ozone treatment system for reclaimed water according to claim 1, characterized by: The filter elements (42) are replaceable layered filter elements and are in a stepped shape.
3. The ozone treatment system for reclaimed water according to claim 1, characterized by: The two side surfaces and the bottom surface of the filter elements (42) are in close contact with the stepped barrel (13) respectively.
4. The reclaimed water ozone treatment system of claim 1, wherein: The circular shaft (22) is fixedly connected with a counterweight circular block (23).
5. The treatment method of the regenerated water ozone treatment system according to claim 1, characterized in that: S1: connecting a water source to the water spraying connector (41) through a hose and connecting an ozone source to the connector (33) through a hose, and installing a water valve on the water pumping pipe (43); S2: controlling the motor (21) to rotate forward for a certain number of turns and then rotate reversely for a certain number of turns, and controlling the water source to supply water and the ozone source to supply ozone; S3: the water spraying connector (41) sprays water, the nozzle (31) sprays ozone, the filter elements (42) which move forward and backward bring an impact force to the water flow, the water flow is impacted and mixed and broken under the driving of the filter elements (42), and the broken water flow contacts the ozone in front, the filter elements (42) which are opposite to each other move towards the middle at the same time, meanwhile, the other two filter elements (42) which are opposite to each other move towards the outside, the total space remains basically unchanged, and water is prevented from overflowing when moving towards the middle at the same time; S4: when the amount of water treated in the stepped barrel (13) is large, one end of a hose is connected to the water pumping pipe (43) and the other end of the hose is connected to a collecting system, the water valve of the water pumping pipe (43) is opened, and the water treated is introduced into the collecting system; S5: the filter elements (42) are replaced after a fixed time.
6. The treatment method of claim 5, wherein: The layered structure of the filter elements (42) and the front baffle realize that sundries and large-particle solids are deposited, blocked and limited in the interlayer of the layered structure.
7. The treatment method of claim 5, wherein: The surface material of the moving circular block (45) is rubber, and the moving circular block (45) realizes sealing with the guide cylinder (44).
Citation Information
Patent Citations
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