A green and intelligent rural domestic sewage treatment equipment
By designing a combination of a primary filter cartridge, a main purification chamber, and a movable block device, the problem of impurities directly entering the purification tank in rural sewage treatment equipment is solved, achieving efficient preliminary filtration of sewage and convenient handling of debris, thus improving sewage treatment efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-16
- Publication Date
- 2026-04-03
AI Technical Summary
The existing rural sewage treatment equipment has a simple primary filtration mechanism, which causes impurities to directly enter the purification tank, increasing the treatment time. Furthermore, the subsequent disposal of debris is inconvenient and can easily cause pipe blockage.
A green and intelligent rural domestic sewage treatment device was designed, comprising a primary filter cartridge, a main purification chamber, a chemical reagent tank, a parameter table, and an outlet pipe. The device achieves independent primary filtration and a sliding structure through the top cover and filter chamber, facilitating the handling of debris. Combined with the movable block device, the inner wall of the filter screen is vibrated and falls off, improving the treatment efficiency.
It achieves efficient preliminary filtration of domestic sewage and convenient disposal of debris, reducing purification time and the risk of pipe blockage, and improving sewage treatment efficiency.
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Figure CN116216803B_ABST
Abstract
Description
Technical Field
[0001] This invention is a green and intelligent rural domestic sewage treatment equipment, belonging to the field of sewage treatment equipment. Background Technology
[0002] Water is an essential commodity for people's daily lives. With the development of water resources and the installation of water pipes in homes, people's consumption of domestic water is increasing, and the amount of wastewater discharged is also increasing. Although water pipe facilities are in place in rural areas, due to the complex and varied terrain, it is difficult to plan reasonable sewage storage and discharge routes. Therefore, most rural sewage is filtered and discharged into fields or nearby waterways. Although domestic water does not contain heavy metals or other wastes that easily damage the environment, it still contains a lot of garbage, impurities, bacteria, and other harmful substances. Direct discharge into farmland or rivers will cause pollution.
[0003] The existing technology has the following shortcomings: domestic sewage inevitably contains some impurities and organic flocs. These impurities directly entering the purification tank will increase the water treatment time. Existing primary filtration mechanisms are generally simple and have limited installation environments. At the same time, the post-filtering treatment of impurities is also more troublesome and can easily cause pipe blockage. Summary of the Invention
[0004] In view of the shortcomings of existing technologies, the purpose of this invention is to provide a green and intelligent rural domestic sewage treatment device to solve the existing problems.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a green and intelligent rural domestic sewage treatment equipment, comprising: a primary filter cartridge device, a main purification chamber, a chemical reagent box, a parameter meter device, an outlet pipe, and a base platform. The outlet pipe is located on the right side of the main purification chamber and is locked to it. A chemical reagent box is located above the main purification chamber and is locked to it. A primary filter cartridge device is located on the left side of the main purification chamber and is fastened to it. A base platform is located below the main purification chamber. A parameter meter device is embedded in the front of the main purification chamber. The primary filter cartridge device includes an upper cover device, a connecting pipe, a fixing plate, a bottom chamber, and a filter chamber device. The upper cover device is located above the filter chamber device and is fastened to it. A bottom chamber is located below the filter chamber device. A connecting pipe is fastened to the right side of the bottom chamber, and a fixing plate is locked to the bottom of the bottom chamber.
[0006] Preferably, the upper cover device includes a water inlet pipe, a sliding strip, an outer cover plate, and a docking cover. The water inlet pipe is embedded in the left side of the outer cover plate, the outer cover plate has a docking cover in the middle and is locked to the docking cover, and the outer cover plate has sliding strips on both sides.
[0007] Preferably, the filter chamber device includes a filter hopper device, an outer shell, a converging inner hopper, a return chamber, and a chute. The filter hopper device is located above the converging inner hopper and is fastened to the converging inner hopper. The outer shell is provided on the outside of the converging inner hopper. The upper sides of the outer shell are fastened with chute. The return chamber is located on the lower right side of the converging inner hopper.
[0008] Preferably, the filter hopper device includes a movable block device, an oscillating cable, a mating block, a limiting ring, a lifting frame, and a filter layer. The lifting frame is located outside the limiting ring and locked to the limiting ring. The filter layer is fastened to the middle of the limiting ring. The movable block device is located below the filter layer and is fastened to the movable block device. The oscillating cable is located on the side of the movable block device. The mating block is located below the limiting ring, and the oscillating cable is fastened to the groove of the mating block.
[0009] Preferably, the movable block device includes a central support pipe, an upper plate, a counterweight sleeve, and a slip ring. The counterweight sleeve is located below the central support pipe and welded to it. A slip ring is fastened to the middle of the central support pipe. An upper plate is located above the central support pipe and is locked to the central support pipe.
[0010] Preferably, the counterweight sleeve side is connected to the oscillating cable, and the lower end of the filter layer is fastened to the slip ring.
[0011] Preferably, the left end of the slide groove is provided with a limiting groove for the slide bar.
[0012] Preferably, the oscillating cable is made of rust-resistant metal material, has its own weight, and is assembled in an arc shape. When reversed, it will exert a squeezing force on the filter layer, causing the attached material to fall off.
[0013] Beneficial effects
[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: the upper cover device allows domestic sewage to have an independent pre-filtration chamber before purification, and the sliding structure facilitates the subsequent treatment of internal filtered materials. The unique filter chamber device effectively filters impurities in the sewage. The liftable structure makes it easier to lift. The movable block device can vibrate and dislodge impurities from the inner wall of the filter screen when it is inverted, making the removal of impurities faster and thus effectively increasing the efficiency of domestic sewage treatment. Attached Figure Description
[0015] Other features, objects, and advantages of the present invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:
[0016] Figure 1 This is a schematic diagram of the external structure of a green and intelligent rural domestic sewage treatment equipment according to the present invention.
[0017] Figure 2 This is a schematic diagram of the primary filter cartridge device of the present invention.
[0018] Figure 3 This is a bottom view of the structure of the upper cover device of the present invention.
[0019] Figure 4 This is a top view of the filter compartment device of the present invention.
[0020] Figure 5 This is a schematic diagram of the filter bucket device of the present invention.
[0021] Figure 6 This is a side view of the movable block device of the present invention.
[0022] In the diagram: Pre-filter cartridge - 1, Main purification chamber - 2, Chemical reagent box - 3, Parameter table device - 4, Water outlet pipe - 5, Base platform - 6, Top cover device - A, Connecting pipe - B, Fixing plate - D, Bottom chamber - E, Filter chamber device - F, Water inlet pipe - 1A, Sliding strip - 3A, Outer cover plate - 5A, Docking cover - 7A, Filter screen hopper device - 1F, Outer shell - 3F, Converging inner hopper - 5F, Return chamber - 7F, Slide groove - 9F, Movable block device - 11, Vibrating cable - 13, Matching block - 15, Limiting ring - 16, Lifting frame - 17, Filter screen layer - 19, Middle support pipe - 12f, Upper plate - 14f, Counterweight sleeve - 16f, Slip ring - 18f. Detailed Implementation
[0023] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.
[0024] First embodiment:
[0025] Please see Figures 1-4 This invention provides a green and intelligent rural domestic sewage treatment equipment technical solution: its structure includes: a primary filter cartridge device 1, a main purification chamber 2, a chemical reagent box 3, a parameter table device 4, an outlet pipe 5, and a base platform 6. The outlet pipe 5 is located on the right side of the main purification chamber 2 and is locked to the main purification chamber 2. The chemical reagent box 3 is located above the main purification chamber 2 and is locked to the main purification chamber 2. The primary filter cartridge device 1 is located on the left side of the main purification chamber 2 and is fastened to the main purification chamber 2. The base platform 6 is located below the main purification chamber 2. The parameter table device 4 is embedded in the front side of the main purification chamber 2. The primary filter cartridge device 1 includes an upper cover device A, a connecting pipe B, a fixing plate D, a bottom chamber E, and a filter chamber device F. The upper cover device A is located above the filter chamber device F and is fastened to the filter chamber device F. The bottom chamber E is located below the filter chamber device F. The connecting pipe B is fastened to the right side of the bottom chamber E, and the fixing plate D is locked to the bottom of the bottom chamber E.
[0026] The upper cover device A includes a water inlet pipe 1A, a sliding strip 3A, an outer cover plate 5A, and a docking cover 7A. The water inlet pipe 1A is embedded in the left side of the outer cover plate 5A. The outer cover plate 5A has a docking cover 7A in the middle and is locked to the docking cover 7A. Sliding strips 3A are provided on both sides of the outer cover plate 5A.
[0027] The filter chamber device F includes a filter hopper device 1F, an outer shell 3F, a converging inner hopper 5F, a return chamber 7F, and a chute 9F. The filter hopper device 1F is located above the converging inner hopper 5F and is fastened to the converging inner hopper 5F. The outer shell 3F is located on the outside of the converging inner hopper 5F. The chute 9F is fastened to the upper sides of both sides of the outer shell 3F. The return chamber 7F is located on the lower right side of the converging inner hopper 5F.
[0028] The main feature of this invention is that by connecting the inlet pipe 1A and the outlet pipe 5 to their respective ports, domestic sewage enters through the inlet pipe 1A and is then preliminarily screened and filtered by the filter bucket device 1F. At this time, impurities and sediments in the domestic sewage are filtered and separated. The water that has undergone preliminary filtration flows down the confluence inner bucket 5F to the return chamber 7F and gradually flows into the main purification chamber 2 through the bottom chamber E and the connecting pipe B for purification treatment. The chemical agent box 3 can add some purification chemicals to facilitate the acceleration of the purification efficiency in the main purification chamber 2. The parameter table device 4 can monitor the internal water quality data in real time. Water that has reached the treatment standard will flow out through the outlet pipe 5. After treatment, when it is necessary to treat the filtered material, with the cooperation of the sliding strip 3A and the sliding groove 9F, the outer cover plate 5A and the docking cover 7A can be pushed to the side to lift out the filter bucket device 1F and quickly and effectively dump the filtered material.
[0029] Second embodiment:
[0030] Please see Figures 5-6 This invention provides a green and intelligent rural domestic sewage treatment equipment technical solution: its structure includes: the filter hopper device 1F includes a movable block device 11, an oscillating cable 13, a mating block 15, a limiting ring 16, a lifting frame 17, and a filter layer 19. The lifting frame 17 is located outside the limiting ring 16 and is locked to the limiting ring 16. The filter layer 19 is fastened to the middle of the limiting ring 16. The movable block device 11 is located below the filter layer 19 and is fastened to the movable block device 11. The oscillating cable 13 is located on the side of the movable block device 11. The mating block 15 is located below the limiting ring 16, and the oscillating cable 13 is fastened to the groove of the mating block 15.
[0031] The movable block device 11 includes a central support pipe 12f, an upper plate 14f, a counterweight sleeve 16f, and a slip ring 18f. The counterweight sleeve 16f is located below the central support pipe 12f and welded to it. The slip ring 18f is fastened to the middle of the central support pipe 12f. The upper plate 14f is located above the central support pipe 12f and is locked to the central support pipe 12f.
[0032] The main feature of this invention is that, through the cooperation of the lifting frame 17 and the limiting ring 16, the filter hopper device 1F can be lifted outward to obtain a suitable collection area. By inverting the filter hopper device 1F, due to the gravity of the counterweight sleeve 16f, the slip ring 18f will slide on the central support tube 12f. The oscillating cable 13, with the cooperation of the cooperating block 15, will squeeze and oscillate the inner wall of the filter layer 19, thereby playing a shaking role, making it easier for the debris collected inside the filter layer 19 to fall off, and making the collection process faster and more convenient.
[0033] This invention, through the combination of the aforementioned components, enables the equipment to avoid the inevitable presence of impurities and organic flocculants in domestic sewage. These impurities directly entering the purification tank would increase the water treatment time. Existing primary filtration mechanisms are generally simple, have limited installation environments, and are cumbersome to handle after filtration, easily leading to pipe blockage. The device, with its upper cover, provides an independent primary filtration chamber for domestic sewage before purification. The sliding structure facilitates the subsequent handling of internal filtered materials. The unique filter chamber effectively filters impurities in the sewage. The pull-out structure makes lifting easier, and the movable block device allows for the vibration and dislodgement of impurities from the inner wall of the filter screen when inverted, making impurity removal faster and effectively increasing the efficiency of domestic sewage treatment.
[0034] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0035] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A green and intelligent rural domestic sewage treatment equipment, the structure of which includes: The device comprises a primary filter cartridge (1), a main purification chamber (2), a chemical reagent box (3), a parameter table device (4), a water outlet pipe (5), and a base platform (6). The water outlet pipe (5) is located on the right side of the main purification chamber (2) and is locked to the main purification chamber (2). The chemical reagent box (3) is located above the main purification chamber (2) and is locked to the main purification chamber (2). The device is characterized by: The main purification chamber (2) is provided with a primary filter cartridge device (1) on the left side. The primary filter cartridge device (1) is fastened to the main purification chamber (2). The main purification chamber (2) is provided with a base platform (6) below it. The main purification chamber (2) is embedded with a parameter table device (4) on the front side. The primary filter cartridge device (1) includes an upper cover device (A), a connecting pipe (B), a fixing plate (D), a bottom chamber (E), and a filter chamber device (F). The upper cover device (A) is located above the filter chamber device (F) and is fastened to the filter chamber device (F). The bottom chamber (E) is located below the filter chamber device (F). The connecting pipe (B) is fastened to the right side of the bottom chamber (E), and the fixing plate (D) is locked below the bottom chamber (E). The upper cover device (A) includes a water inlet pipe (1A), a sliding strip (3A), an outer cover plate (5A), and a docking cover (7A). The water inlet pipe (1A) is embedded in the left side of the outer cover plate (5A). The outer cover plate (5A) has a docking cover (7A) in the middle and is locked to the docking cover (7A). The outer cover plate (5A) has sliding strips (3A) on both sides. The filter chamber device (F) includes a filter hopper device (1F), an outer shell (3F), a converging inner hopper (5F), a return chamber (7F), and a chute (9F). The filter hopper device (1F) is located above the converging inner hopper (5F) and is fastened to the converging inner hopper (5F). The outer shell (3F) is located on the outside of the converging inner hopper (5F). The chute (9F) is fastened to the upper sides of both sides of the outer shell (3F). The return chamber (7F) is located on the lower right side of the converging inner hopper (5F). The filter bucket device (1F) includes a movable block device (11), an oscillating cable (13), a mating block (15), a limiting ring (16), a lifting frame (17), and a filter layer (19). The lifting frame (17) is located outside the limiting ring (16) and is locked to the limiting ring (16). The filter layer (19) is fastened to the middle of the limiting ring (16). The movable block device (11) is located below the filter layer (19) and is fastened to the movable block device (11). The oscillating cable (13) is located on the side of the movable block device (11). The mating block (15) is located below the limiting ring (16). The oscillating cable (13) is fastened to the groove of the mating block (15). The movable block device (11) includes a central support tube (12f), an upper plate (14f), a counterweight sleeve (16f), and a slip ring (18f). The counterweight sleeve (16f) is located below the central support tube (12f) and welded to it. A slip ring (18f) is fastened to the middle of the central support tube (12f). An upper plate (14f) is located above the central support tube (12f). The upper plate (14f) is locked to the central support tube (12f). The side of the counterweight sleeve (16f) is fastened to the vibrating cable (13). The lower end of the filter layer (19) is fastened to the slip ring (18f). The left end of the slide groove (9F) is provided with a limiting groove for the slide bar (3A).
2. The green and intelligent rural domestic sewage treatment equipment according to claim 1, characterized in that: The oscillating cable (13) is made of rust-proof metal material, has its own weight, and is assembled in an arc shape. When reversed, it will exert a squeezing force on the filter layer (19).
Citation Information
Patent Citations
Multiple sewage treatment device for factory
CN115196785A
Wastewater treatment and filtration device
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