Integrated water treatment device
By designing the agitating components and filtering structure of the integrated water treatment device, the problem of large particles suspended in the sewage blocking the pipeline is solved, efficient sewage treatment is achieved, equipment maintenance costs are reduced and work efficiency is improved.
Patent Information
- Application Number
- CN202422029891.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-21
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-08-21
AI Technical Summary
During sewage treatment, due to the large amount of large-particle suspensions in the sewage, if filtering is not carried out in time, the large-particle suspensions will block the connecting pipes, resulting in the sewage treatment being unable to be completed and subsequent equipment is damaged, increasing equipment maintenance costs and reducing work efficiency.
An integrated water treatment device is designed, including a water inlet channel, a water outlet channel and an internal water treatment assembly. The assembly is equipped with a stirring assembly, an adsorption assembly and a filter structure. The push plate is driven by an electric push rod to clear large particles of suspensions, and the sewage treatment efficiency is improved through the stirring assembly and adsorption assembly.
It effectively avoids large particles of suspended materials blocking the filter net, reduces equipment maintenance costs, improves sewage treatment efficiency, saves human resources, and enhances sewage treatment effect.
Smart Images

Figure CN223082353U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of water treatment devices, in particular to an integrated water treatment device. Background Art
[0002] An integrated water treatment device is an automated and integrated water treatment solution that can integrate multiple water treatment processes and equipment in a single unit. It consists of many components, including a pretreatment unit, a membrane filter, a reverse osmosis unit, and a control unit, etc. The integrated water treatment device is mainly used for sewage treatment. During the sewage treatment process, the integrated water treatment device can effectively remove harmful substances such as suspended substances, soluble ions, microorganisms, organic matter, and heavy metals in the water. At the same time, the integrated water treatment device can also improve the transparency of the water, reduce water pollution, as well as increase the hardness and safety of the water.
[0003] During the sewage treatment process, due to the presence of a large amount of large particle suspended matter in the sewage, if not filtered and cleaned in time, the large particle suspended matter will block the connecting pipes, making the sewage treatment unable to be completed. At the same time, it will also damage the subsequent sewage equipment, increase the equipment maintenance cost, and greatly reduce the work efficiency. Summary of the Utility Model
[0004] In view of the above problems existing in the current sewage treatment process, that is, due to the presence of a large amount of large particle suspended matter in the sewage, if not filtered and cleaned in time, the large particle suspended matter will block the connecting pipes, making the sewage treatment unable to be completed. At the same time, it will also damage the subsequent sewage equipment, increase the equipment maintenance cost, and greatly reduce the work efficiency, the present utility model is proposed.
[0005] Therefore, the purpose of the present utility model is to provide an integrated water treatment device, and its purpose is to solve the problems existing in the current sewage treatment process, that is, due to the presence of a large amount of large particle suspended matter in the sewage, if not filtered and cleaned in time, the large particle suspended matter will block the connecting pipes, making the sewage treatment unable to be completed. At the same time, it will also damage the subsequent sewage equipment, increase the equipment maintenance cost, and greatly reduce the work efficiency.
[0006] To solve the above technical problems, the present utility model provides the following technical solution: an integrated water treatment device, including an inlet channel and an outlet channel, a water treatment component is provided between the inlet channel and the outlet channel, a stirring component is provided inside the water treatment component, and an adsorption component is provided inside the water treatment component;
[0007] The water treatment component includes a first treatment chamber, which is provided at the bottom end of the water inlet channel. One side of the first treatment chamber is provided with a first connecting pipe, and one end of the first connecting pipe is provided with a first water pump. The output end of the first water pump is provided with a second treatment chamber. One side of the second treatment chamber is provided with a second connecting pipe, and one end of the second connecting pipe is provided with a second water pump. The output end of the second water pump is provided with a third treatment chamber. One side of the third treatment chamber is provided with the water outlet channel, and a filtering structure is arranged inside the first treatment chamber.
[0008] As a preferred embodiment of the integrated water treatment device of the present invention, wherein: the filtering structure includes a filter screen, which is arranged inside the first treatment chamber. One end of the first treatment chamber is provided with an electric push rod, and the output end of the electric push rod is drivingly connected to a telescopic shaft. One end of the telescopic shaft is provided with a push plate. The other end of the first treatment chamber is provided with a collection chamber, and the first treatment chamber communicates with the collection chamber. A cleaning frame is arranged inside the collection chamber, a water filtering net is arranged at the bottom of the cleaning frame, a handle is arranged at the top of the cleaning frame, and a third connecting pipe is arranged between the collection chamber and the first treatment chamber.
[0009] As a preferred embodiment of the integrated water treatment device of the present invention, wherein: sliding grooves are symmetrically arranged on the inner side of the first treatment chamber, and sliders are respectively arranged at both ends of the push plate, and the sliders are slidably connected to the sliding grooves.
[0010] As a preferred embodiment of the integrated water treatment device of the present invention, wherein: the stirring component includes a funnel. The top of the second treatment chamber is symmetrically provided with funnels. A fixing plate is arranged between the two funnels, and a motor is arranged on the top of the fixing plate. The output end of the motor is provided with a main stirring shaft, which extends into the second treatment chamber. A plurality of main stirring blades are arranged on the main stirring shaft. A cross plate is arranged on the main stirring shaft, and auxiliary stirring shafts are symmetrically arranged at the bottom of the cross plate. A plurality of auxiliary stirring blades are arranged on the auxiliary stirring shafts. A feeding structure is arranged inside the funnel, and a sewage discharge channel is arranged at the bottom of the second treatment chamber.
[0011] As a preferred embodiment of the integrated water treatment device of the present invention, wherein: the feeding structure includes a sliding plate. The sliding plates are symmetrically arranged inside the funnel. One side of the sliding plate is provided with a sliding rod, which penetrates to the outside of the funnel. One end of the sliding rod is provided with a long plate, and a first spring is sleeved on the outer surface of the sliding rod, and the first spring is arranged between the funnel and the long plate. One side of the long plate is provided with a pushing plate, and a cam is arranged on the main stirring shaft, and the cam is arranged between the fixing plate and the second treatment chamber.
[0012] As a preferred solution of the integrated water treatment device described in the present utility model, wherein: the adsorption component includes an installation groove, the installation groove is arranged inside the third treatment chamber, a filter plate is arranged inside the installation groove, activated carbon is arranged inside the filter plate, a U-shaped plate is arranged on the top of the filter plate, a pulling plate is arranged on the top of the U-shaped plate, and locking structures are respectively arranged at both ends of the third treatment chamber.
[0013] As a preferred solution of the integrated water treatment device described in the present utility model, wherein: the locking structure includes U-shaped mounting plates, the two U-shaped mounting plates are respectively arranged at both ends of the third treatment chamber, sliding holes are formed in the U-shaped mounting plates, the sliding holes are slidably connected with insertion pin shafts, one end of the insertion pin shaft is provided with a round plate, a second spring is sleeved on the outer surface of the insertion pin shaft, the second spring is arranged between the round plate and the U-shaped mounting plate, pin holes are symmetrically formed in the U-shaped plate, limiting holes are respectively formed at both ends of the third treatment chamber, and the insertion pin shaft passes through the pin holes and is inserted into the limiting holes.
[0014] The beneficial effects of the present utility model:
[0015] 1. In the present utility model, sewage enters the first treatment chamber through the water inlet channel. After the first treatment, the sewage reaches the second treatment chamber through the first water pump and the first connecting pipe for the second treatment. Then, the sewage reaches the third treatment chamber through the second water pump and the second connecting pipe for the third treatment. Finally, it is discharged through the water outlet channel. After entering the first treatment chamber, it is filtered by the filter screen. Then, the electric push rod drives the telescopic shaft to move, and the telescopic shaft pushes the push plate to move along the filter screen, avoiding large particle suspensions from blocking the filter screen. At the same time, the large particle suspensions are pushed into the cleaning frame. After the suspensions fall into the cleaning frame, water is filtered through the water filter screen. Then, the filtered water is discharged into the first treatment chamber through the third connecting pipe. The cleaning frame is pulled out through the handle to clean the collected suspensions, avoiding the suspensions from blocking the connecting pipes, preventing the sewage treatment from being unable to be completed, and also avoiding damaging the subsequent sewage equipment, reducing the equipment maintenance cost, and greatly improving the working efficiency.
[0016] 2. In the present utility model, several main stirring blades on the main stirring shaft are driven to rotate by a motor. Meanwhile, the main stirring shaft drives several auxiliary stirring blades on the auxiliary stirring shaft to rotate through a cross plate. The sewage is stirred by the main stirring blades and the auxiliary stirring blades, enabling the medicine to be fully mixed with the sewage, making the sediment in the sewage generated faster and with better effect. The main stirring shaft intermittently pushes two top plates through a cam. The top plates drive two sliding rods to move through a long plate. The two sliding rods drive two sliding plates to move in opposite directions respectively. As a result, a gap is generated between the two sliding plates, causing the medicine to fall into the treatment chamber II. The tension of the first spring drives the sliding plates back to the initial position, thereby realizing intermittent addition of medicine to the treatment chamber II. There is no need for manual long-term manual addition of medicine, saving human resources and also accelerating the formation of sewage sediment for further treatment of the sewage.
[0017] 3. In the present utility model, the activated carbon inside the filter plate is used to perform secondary adsorption treatment on the sewage. Then, the round plate drives the insertion pin shaft to disengage from the limit hole and the pin hole. Subsequently, the pulling plate drives the filter plate at the bottom of the U-shaped plate to be withdrawn from the treatment chamber III, facilitating the replacement and cleaning of the activated carbon in the filter plate and making the adsorption effect on the sewage better. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the following will briefly introduce the drawings required for use in the description of the embodiments. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings. Among them:
[0019] Figure 1 It is a schematic diagram of the overall structure of an integrated water treatment device of the present utility model.
[0020] Figure 2 It is a schematic diagram of the sectional view of the treatment chamber I of an integrated water treatment device of the present utility model.
[0021] Figure 3 It is a schematic diagram of the sectional view of the treatment chamber II of an integrated water treatment device of the present utility model.
[0022] Figure 4 It is a schematic diagram of the sectional view of the treatment chamber III of an integrated water treatment device of the present utility model.
[0023] Figure 5 It is a schematic diagram of another sectional view of the treatment chamber III of an integrated water treatment device of the present utility model.
[0024] DESCRIPTION OF THE REFERENCE NUMERALS:
[0025] 1. Water inlet channel; 2. Water treatment component; 21. First treatment chamber; 22. First connecting pipe; 23. First water pump; 24. Second treatment chamber; 25. Second connecting pipe; 26. Second water pump; 27. Third treatment chamber; 28. Filter structure; 281. Filter net; 282. Electric push rod; 283. Telescopic shaft; 284. Push plate; 285. Collection chamber; 286. Cleaning frame; 287. Water filtering net; 288. Handle; 289. Third connecting pipe; 2810. Slide groove; 2811. Slide block; 3. Water outlet channel; 4. Stirring component; 41. Funnel; 42. Fixed plate; 43. Motor; 44. Main stirring shaft; 45. Main stirring blade; 46. Cross plate; 47. Sub-stirring shaft; 48. Sub-stirring blade; 49. Feeding structure; 491. Slide plate; 492. Slide rod; 493. Long plate; 494. First spring; 495. Pushing plate; 496. Cam; 410. Sewage discharge channel; 5. Adsorption component; 51. Installation groove; 52. Filter plate; 53. Activated carbon; 54. U-shaped plate; 55. Pulling plate; 56. Locking structure; 561. U-shaped mounting plate; 562. Slide hole; 563. Insert pin shaft; 564. Circular plate; 565. Second spring; 566. Pin hole; 567. Limit hole. Detailed implementation mode
[0026] In order to make the above-mentioned objects, features and advantages of the present utility model more obvious and understandable, the following will make a detailed description of the specific implementation mode of the present utility model in conjunction with the accompanying drawings of the specification.
[0027] Embodiment 1
[0028] Refer to Figure 1-2 , which is the first embodiment of the present utility model, and provides an integrated water treatment device. Such an integrated water treatment device includes a water inlet channel 1 and a water outlet channel 3. A water treatment component 2 is provided between the water inlet channel 1 and the water outlet channel 3. A stirring component 4 is arranged inside the water treatment component 2, and an adsorption component 5 is arranged inside the water treatment component 2;
[0029] The water treatment component 2 includes a first treatment chamber 21. The first treatment chamber 21 is arranged at the bottom end of the water inlet channel 1. A first connecting pipe 22 is arranged on one side of the first treatment chamber 21. One end of the first connecting pipe 22 is provided with a first water pump 23. The output end of the first water pump 23 is provided with a second treatment chamber 24. A second connecting pipe 25 is arranged on one side of the second treatment chamber 24. One end of the second connecting pipe 25 is provided with a second water pump 26. The output end of the second water pump 26 is provided with a third treatment chamber 27. A water outlet channel 3 is arranged on one side of the third treatment chamber 27. A filter structure 28 is arranged inside the first treatment chamber 21.
[0030] Sewage enters the first treatment chamber 21 through the water inlet channel 1. After being first treated by the filtering structure 28, the sewage is pumped by the first water pump 23 through the first connecting pipe 22 to the second treatment chamber 24 for the second treatment. Then, it is pumped by the second water pump 26 through the second connecting pipe 25 to the third treatment chamber 27 for the third treatment. Finally, it is discharged through the water outlet channel 3, thereby realizing the integrated treatment of sewage.
[0031] The filtering structure 28 includes a filter net 281 which is arranged inside the first treatment chamber 21. One end of the first treatment chamber 21 is provided with an electric push rod 282. The output end of the electric push rod 282 is drivingly connected to a telescopic shaft 283. One end of the telescopic shaft 283 is provided with a push plate 284. The other end of the first treatment chamber 21 is provided with a collection chamber 285. The first treatment chamber 21 and the collection chamber 285 communicate with each other. Inside the collection chamber 285, there is a cleaning frame 286. And there are steps inside the collection chamber 285. The cleaning frame 286 is arranged on the steps. The bottom of the cleaning frame 286 is provided with a water filtering net 287. The top of the cleaning frame 286 is provided with a handle 288. A third connecting pipe 289 is arranged between the collection chamber 285 and the first treatment chamber 21.
[0032] After the sewage enters the first treatment chamber 21, it is filtered by the filter net 281. Then, the electric push rod 282 drives the telescopic shaft 283 to move. The telescopic shaft 283 pushes the push plate 284 to move along the filter net 281, preventing large particle suspensions from blocking the filter net 281. At the same time, the large particle suspensions are pushed into the cleaning frame 286. After the suspensions fall into the cleaning frame 286, the water is filtered through the water filtering net 287. Then, the filtered water is discharged into the first treatment chamber 21 through the third connecting pipe 289. The cleaning frame 286 is pulled out through the handle 288 to clean the collected suspensions, avoiding the blockage of the connecting pipes by the suspensions, ensuring the completion of sewage treatment, preventing damage to subsequent sewage equipment, reducing the equipment maintenance cost, and greatly improving the working efficiency.
[0033] Chutes 2810 are symmetrically arranged on the inner side of the first treatment chamber 21. Sliders 2811 are respectively arranged at both ends of the push plate 284. The sliders 2811 are slidably connected to the chutes 2810, and the chutes 2810 play a guiding and limiting role for the sliders 2811 at both ends of the push plate 284.
[0034] During use, sewage enters the first treatment chamber 21 through the water inlet channel 1. After being first treated by the filtering structure 28, the water pump 23 is started. The water pump 23 pumps the sewage through the connecting pipe 22 into the second treatment chamber 24 for the second treatment. Then, the water pump 26 is started. The water pump 26 pumps the sewage through the connecting pipe 25 into the third treatment chamber 27 for the third treatment. Finally, it is discharged through the water outlet channel 3. After the sewage enters the first treatment chamber 21, it is filtered by the filter screen 281. Then, the electric push rod 282 is started. The electric push rod 282 drives the telescopic shaft 283 to move. The telescopic shaft 283 pushes the push plate 284 to move along the sliding groove 2810 on the top of the filter screen 281 through the slider 2811, preventing large particle suspensions from blocking the filter screen 281. At the same time, the large particle suspensions are pushed into the cleaning frame 286. After the suspensions fall into the cleaning frame 286, the water is filtered through the water filter net 287. Then, the filtered water is discharged into the first treatment chamber 21 through the connecting pipe three 289. The cleaning frame 286 is pulled out through the handle 288 to clean the collected suspensions, preventing the suspensions from blocking the connecting pipes, enabling the sewage treatment to be completed, avoiding damage to subsequent sewage equipment, reducing the equipment maintenance cost, and greatly improving the work efficiency.
[0035] Embodiment 2
[0036] Referring to Figure 1-3 , which is the second embodiment of the present utility model. The difference between this embodiment and the first embodiment is that the stirring assembly 4 includes a funnel 41. The funnels 41 are symmetrically arranged at the top of the second treatment chamber 24. A fixing plate 42 is arranged between the two funnels 41. A motor 43 is arranged at the top of the fixing plate 42. The output end of the motor 43 is provided with a main stirring shaft 44. The main stirring shaft 44 extends into the second treatment chamber 24. The main stirring shaft 44 is rotationally connected to the second treatment chamber 24. A plurality of main stirring blades 45 are arranged on the main stirring shaft 44. A cross plate 46 is arranged on the main stirring shaft 44. The bottom of the cross plate 46 is symmetrically provided with auxiliary stirring shafts 47. A plurality of auxiliary stirring blades 48 are arranged on the auxiliary stirring shafts 47. A feeding structure 49 is arranged inside the funnel 41. A sewage discharge channel 410 is arranged at the bottom of the second treatment chamber 24.
[0037] The motor 43 drives a plurality of main stirring blades 45 on the main stirring shaft 44 to rotate. At the same time, the main stirring shaft 44 drives a plurality of auxiliary stirring blades 48 on the auxiliary stirring shafts 47 to rotate through the cross plate 46. The sewage is stirred by the main stirring blades 45 and the auxiliary stirring blades 48, enabling the medicine to be fully mixed with the sewage, and making the sediment in the sewage generated faster and with better effect.
[0038] The blanking structure 49 includes a sliding plate 491. The sliding plates 491 are symmetrically arranged inside the funnel 41. The sliding plate 491 is slidably connected to the funnel 41. A sliding rod 492 is provided on one side of the sliding plate 491. The sliding rod 492 penetrates to the outside of the funnel 41. The sliding rod 492 is slidably connected to the funnel 41. A long plate 493 is provided at one end of the sliding rod 492. A first spring 494 is sleeved on the outer surface of the sliding rod 492. The first spring 494 is arranged between the funnel 41 and the long plate 493. A pushing plate 495 is provided on one side of the long plate 493. A cam 496 is provided on the main stirring shaft 44. The cam 496 is arranged between the fixed plate 42 and the second treatment chamber 24.
[0039] The main stirring shaft 44 intermittently pushes the two pushing plates 495 through the cam 496. The pushing plate 495 drives the two sliding rods 492 to move through the long plate 493. The two sliding rods 492 respectively drive the two sliding plates 491 to move in opposite directions. Thus, a distance is generated between the two sliding plates 491, so that the medicine falls into the second treatment chamber 24. The tension of the first spring 494 drives the sliding plate 491 back to the initial position. Thus, the medicine is intermittently added into the second treatment chamber, without the need for manual long-term manual addition of medicine, saving human resources.
[0040] During the use process, the staff starts the motor 43. The motor 43 drives a plurality of main stirring blades 45 on the main stirring shaft 44 to rotate. At the same time, the main stirring shaft 44 drives a plurality of auxiliary stirring blades 48 on the auxiliary stirring shaft 47 to rotate through the cross plate 46. The sewage is stirred by the main stirring blades 45 and the auxiliary stirring blades 48, so that the medicine and the sewage are fully mixed, making the sediment in the sewage generate faster and with better effect. The main stirring shaft 44 drives the cam 496 to rotate. The cam 496 intermittently pushes the two pushing plates 495. The pushing plate 495 drives the two sliding rods 492 to move through the long plate 493. The two sliding rods 492 respectively drive the two sliding plates 491 to move in opposite directions. Thus, a distance is generated between the two sliding plates 491, so that the medicine falls into the second treatment chamber 24. The tension of the first spring 494 drives the sliding plate 491 back to the initial position. Thus, the medicine is intermittently added into the second treatment chamber, without the need for manual long-term manual addition of medicine, saving human resources and also accelerating the formation of sewage sediment, further treating the sewage.
[0041] The remaining structure is the same as that of Embodiment 1.
[0042] Embodiment 3
[0043] Refer to Figure 1-5, which is the third embodiment of the present utility model. The difference between this embodiment and the second embodiment is that the adsorption assembly 5 includes an installation groove 51 provided inside the third processing chamber 27. A filter plate 52 is provided inside the installation groove 51, activated carbon 53 is provided inside the filter plate 52, a U-shaped plate 54 is provided at the top of the filter plate 52, a pulling plate 55 is provided at the top of the U-shaped plate 54, and locking structures 56 are respectively provided at both ends of the third processing chamber 27. By driving the U-shaped plate 54 to move through the pulling plate 55, the U-shaped plate 54 pulls out the activated carbon 53 from the third processing chamber 27 through the filter plate 52, facilitating the disassembly and replacement of the filter plate 52. The sewage is adsorbed and treated by the activated carbon 53 inside the filter plate 52.
[0044] The locking structure 56 includes U-shaped mounting plates 561. The two U-shaped mounting plates 561 are respectively provided at both ends of the third processing chamber 27. A sliding hole 562 is formed on the U-shaped mounting plate 561. The sliding hole 562 is slidably connected to a plug pin shaft 563. One end of the plug pin shaft 563 is provided with a round plate 564. A second spring 565 is sleeved on the outer surface of the plug pin shaft 563. The second spring 565 is provided between the round plate 564 and the U-shaped mounting plate 561. Pin holes 566 are symmetrically formed on the U-shaped plate 54, and limit holes 567 are respectively formed at both ends of the third processing chamber 27. The plug pin shaft 563 passes through the pin hole 566 and is inserted into the limit hole 567.
[0045] By driving the round plate 564 to disengage the plug pin shaft 563 from the pin hole 566 and the limit hole 567, it is convenient to disassemble the U-shaped plate 54. At the same time, the round plate 564 will stretch the second spring 565, causing the second spring 565 to generate tension. The tension of the second spring 565 will drive the plug pin shaft 563 back to its initial position, thereby facilitating the disassembly of the filter plate 52 and also locking the U-shaped plate 54.
[0046] During use, the sewage is adsorbed and treated again by the activated carbon 53 inside the filter plate 52. Then, the round plate 564 is pulled to drive the plug pin shaft 563 to disengage from the limit hole 566 and the pin hole 567. Then, the filter plate 52 at the bottom of the U-shaped plate 54 is pulled out of the third processing chamber 27 through the pulling plate 55, so as to facilitate the replacement and cleaning of the activated carbon 53 in the filter plate 52, making the adsorption effect on sewage better.
[0047] The remaining structures are the same as those in Embodiment 2.
[0048] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present utility model and are not restrictive. Although the present utility model has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present utility model can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present utility model, and they should all be covered within the scope of the claims of the present utility model.
Claims
1. An integrated water treatment device, comprising an inlet channel (1) and an outlet channel (3), characterized in that: A water treatment component (2) is provided between the water inlet channel (1) and the water outlet channel (3). A stirring component (4) is arranged inside the water treatment component (2), and an adsorption component (5) is arranged inside the water treatment component (2). The water treatment component (2) includes a first treatment chamber (21). The first treatment chamber (21) is arranged at the bottom end of the water inlet channel (1). A first connecting pipe (22) is arranged on one side of the first treatment chamber (21). One end of the first connecting pipe (22) is provided with a first water pump (23). The output end of the first water pump (23) is provided with a second treatment chamber (24). A second connecting pipe (25) is arranged on one side of the second treatment chamber (24). One end of the second connecting pipe (25) is provided with a second water pump (26). The output end of the second water pump (26) is provided with a third treatment chamber (27). The water outlet channel (3) is arranged on one side of the third treatment chamber (27). A filtering structure (28) is arranged inside the first treatment chamber (21).
2. The integrated water treatment device according to claim 1, characterized in that: The filtering structure (28) includes a filter screen (281). The filter screen (281) is arranged inside the first treatment chamber (21). An electric push rod (282) is arranged at one end of the first treatment chamber (21). The output end of the electric push rod (282) is drivingly connected to a telescopic shaft (283). One end of the telescopic shaft (283) is provided with a push plate (284). A collection chamber (285) is arranged at the other end of the first treatment chamber (21). The first treatment chamber (21) and the collection chamber (285) communicate with each other. A cleaning frame (286) is arranged inside the collection chamber (285). A water filtering net (287) is arranged at the bottom of the cleaning frame (286). A handle (288) is arranged at the top of the cleaning frame (286). A third connecting pipe (289) is arranged between the collection chamber (285) and the first treatment chamber (21).
3. An integrated water treatment device according to claim 2, characterized in that: Chute grooves (2810) are symmetrically arranged on the inner side of the first treatment chamber (21). Sliders (2811) are respectively arranged at both ends of the push plate (284). The sliders (2811) are slidably connected to the chute grooves (2810).
4. An integrated water treatment device according to claim 1, characterized in that: The stirring component (4) includes a funnel (41). Funnels (41) are symmetrically arranged at the top of the second treatment chamber (24). A fixing plate (42) is arranged between the two funnels (41). A motor (43) is arranged at the top of the fixing plate (42). The output end of the motor (43) is provided with a main stirring shaft (44). The main stirring shaft (44) extends into the second treatment chamber (24). A number of main stirring blades (45) are arranged on the main stirring shaft (44). A cross plate (46) is arranged on the main stirring shaft (44). Secondary stirring shafts (47) are symmetrically arranged at the bottom of the cross plate (46). A number of secondary stirring blades (48) are arranged on the secondary stirring shafts (47). A blanking structure (49) is arranged inside the funnel (41). A sewage discharge channel (410) is arranged at the bottom of the second treatment chamber (24).
5. An integrated water treatment device according to claim 4, characterized in that: The blanking structure (49) includes a slide plate (491). The slide plate (491) is symmetrically arranged inside the funnel (41). A slide rod (492) is arranged on one side of the slide plate (491). The slide rod (492) penetrates to the outside of the funnel (41). A long plate (493) is arranged at one end of the slide rod (492). A first spring (494) is sleeved on the outer surface of the slide rod (492). The first spring (494) is arranged between the funnel (41) and the long plate (493). A pushing plate (495) is arranged on one side of the long plate (493). A cam (496) is arranged on the main stirring shaft (44). The cam (496) is arranged between the fixed plate (42) and the second processing chamber (24).
6. The integrated water treatment device according to claim 5, wherein: The adsorption assembly (5) includes an installation groove (51). The installation groove (51) is arranged inside the third processing chamber (27). A filter plate (52) is arranged inside the installation groove (51). Activated carbon (53) is arranged inside the filter plate (52). A U-shaped plate (54) is arranged on the top of the filter plate (52). A pulling plate (55) is arranged on the top of the U-shaped plate (54). Locking structures (56) are respectively arranged at both ends of the third processing chamber (27).
7. An integrated water treatment device according to claim 6, characterized in that: The locking structure (56) includes a U-shaped mounting plate (561). The two U-shaped mounting plates (561) are respectively arranged at both ends of the third processing chamber (27). A sliding hole (562) is formed on the U-shaped mounting plate (561). The sliding hole (562) is slidably connected with a plug pin shaft (563). A round plate (564) is arranged at one end of the plug pin shaft (563). A second spring (565) is sleeved on the outer surface of the plug pin shaft (563). The second spring (565) is arranged between the round plate (564) and the U-shaped mounting plate (561). Pin holes (566) are symmetrically formed on the U-shaped plate (54). Limit holes (567) are respectively formed at both ends of the third processing chamber (27). The plug pin shaft (563) penetrates through the pin hole (566) and is inserted into the limit hole (567).