CN210683537U - Integrated sewage treatment device adopting membrane process - Google Patents

Integrated sewage treatment device adopting membrane process Download PDF

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Publication number
CN210683537U
CN210683537U CN201921719403.6U CN201921719403U CN210683537U CN 210683537 U CN210683537 U CN 210683537U CN 201921719403 U CN201921719403 U CN 201921719403U CN 210683537 U CN210683537 U CN 210683537U
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sedimentation tank
biomembrane
sewage
treatment device
sewage treatment
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CN201921719403.6U
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罗国兵
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Xiamen Kaichengtong Machinery Equipment Co ltd
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Xiamen Kaichengtong Machinery Equipment Co ltd
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Abstract

The utility model discloses an adopt integrated sewage treatment plant of membrane process, including the sewage sedimentation tank, the biomembrane frame is installed to the both sides of sewage sedimentation tank, the biomembrane is installed to the inboard of biomembrane frame, install the intake pump on the inlet tube, the internally mounted of sludge impoundment has the sludge pump, the bottom plate is installed to the bottom of supporting leg, the universal wheel is installed to the bottom both sides of bottom plate. The utility model discloses a biomembrane frame is installed to sewage sedimentation tank's both sides, installs the biomembrane in the inboard of biomembrane frame, and installs the water-locator at the top of biomembrane frame, installs the inlet tube in the one end of water-locator, can carry out preliminary treatment to sewage through it, then carry to sewage sedimentation tank, this kind of external design's biomembrane frame, convenient dismantlement is changed and is washd, facilitates the use, and the integrative structure that cooperates sewage sedimentation tank to form improves sewage treatment effect.

Description

Integrated sewage treatment device adopting membrane process
Technical Field
The utility model relates to a sewage treatment device technical field specifically is an adopt membrane technology's integrated sewage treatment plant.
Background
An integrated sewage treatment device adopting a membrane process is used for filtering and treating sewage through a biological membrane, the biological membrane is one of the latest series of challenges brought to the disinfection and sterilization industry by technological progress, is tightly adhered and difficult to remove, and a complex of a bacterial mass and an extracellular matrix, also called a limiting membrane, forms an initial biological membrane in an original marine environment, and has biological membranes except certain viruses in organisms. The eukaryotic cell has a membrane system for separating various organelles besides a plasma membrane, wherein the membrane system comprises a nuclear membrane, a mitochondrial membrane, an endoplasmic reticulum membrane, an lysosomal membrane, a Golgi apparatus membrane, a chloroplast membrane, a vacuole, a peroxidase membrane and the like, the endomembrane system comprises the nuclear membrane, the endoplasmic reticulum membrane, the lysosomal membrane, the Golgi apparatus membrane and the vacuole, but does not comprise the mitochondrial membrane and the chloroplast membrane, the biomembrane is in a bilayer lamellar structure in morphology, the thickness is about 5-10 nanometers, the components of the biomembrane are mainly lipid and protein, a small amount of saccharides are bonded on the lipid or the protein through covalent bonds, and different biomembranes have different functions.
The current stage sewage treatment devices have various disadvantages, such as poor flexibility, inconvenient movement, poor sewage treatment effect and inconvenient dirt treatment.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an adopt membrane technology's integration sewage treatment plant to the flexibility of proposing in solving above-mentioned background art is poor, and it is inconvenient to remove, and sewage treatment effect is poor, and the inconvenient scheduling problem of processing of dirt.
In order to achieve the above object, the utility model provides a following technical scheme: an integrated sewage treatment device adopting a membrane process comprises a sewage sedimentation tank, wherein two sides of the sewage sedimentation tank are provided with a biomembrane frame, the inner side of the biomembrane frame is provided with a biomembrane, the top end of the biomembrane frame is provided with a water distribution pipe, the bottom of the water distribution pipe is provided with a water discharge head, one end of the water distribution pipe is provided with a water inlet pipe, the water inlet pipe is provided with a water inlet pump, the top of the sewage sedimentation tank is provided with a top plate, the middle part of the top plate is provided with a rotating rod, one side of the top plate is provided with a servo motor, two sides of the rotating rod are provided with swing arms, the bottom of the swing arms is provided with a mud scraping brush, the middle part of the bottom of the sewage sedimentation tank is provided with a sludge tank, the inside of the sludge tank is provided with a, the bottom plate is installed to the bottom of supporting leg, the universal wheel is installed to the bottom both sides of bottom plate.
Preferably, the transmission shaft is installed to servo motor's bottom, and the transmission shaft passes through the drive belt and is connected with the dwang transmission.
Preferably, swing arm and dwang welded connection, and the swing arm is inlayed with the mud scraping brush and is connected.
Preferably, the sewage sedimentation tank is set to be of a conical structure, and the mud scraping brush is attached to and connected with the inner wall of the bottom of the sewage sedimentation tank.
Preferably, the number of the biofilm racks is two, and the two biofilm racks are fixed on two sides of the sewage sedimentation tank through bolts.
Preferably, the shaft sleeve is installed on the rotating rod and is installed in the middle of the bottom end of the top plate through a bolt.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the biological membrane frame is arranged on two sides of the sewage sedimentation tank, the biological membrane is arranged on the inner side of the biological membrane frame, the water distribution pipe is arranged at the top of the biological membrane frame, the water inlet pipe is arranged at one end of the water distribution pipe, sewage can be preliminarily treated through the water inlet pipe and then is conveyed to the sewage sedimentation tank, the biological membrane frame with the external design is convenient to disassemble, replace and clean, is convenient to use, and is matched with an integrated structure formed by the sewage sedimentation tank to improve the sewage treatment effect;
2. the utility model discloses a supporting leg is installed to the bottom both sides of sewage sedimentation tank, install the bottom plate in the bottom of supporting leg, install the universal wheel in the bottom of bottom plate, it removes to make things convenient for controlling means through it, and there is the dwang at the internally mounted of sewage sedimentation tank, install the swing arm in the both sides of dwang, install in the bottom of swing arm and scrape the mud brush, can carry out the automatic mud scraping treatment to the mud of the inner chamber bottom of sewage sedimentation tank through it, increase sludge treatment effect, avoid secondary pollution, improve sewage treatment effect.
Drawings
FIG. 1 is a schematic structural view of an integrated sewage treatment plant using membrane process of the present invention;
fig. 2 is a schematic structural diagram of a transmission mechanism of the servo motor of the present invention;
fig. 3 is a side view of the biofilm carrier of the present invention.
In the figure: 1. a water distribution pipe; 2. a water inlet pipe; 3. a biofilm carrier; 4. a sewage sedimentation tank; 5. a sludge discharge pipe; 6. a universal wheel; 7. supporting legs; 8. a base plate; 9. a top plate; 10. a guardrail; 11. a servo motor; 12. rotating the rod; 13. a mud scraping brush; 14. swinging arms; 15. a sludge pump; 16. a sludge tank; 17. a transmission belt; 18. a shaft sleeve; 19. a drive shaft; 20. a water inlet pump; 21. a drainage head; 22. and (4) a biological membrane.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Referring to fig. 1-3, the present invention provides an embodiment: an integrated sewage treatment device adopting a membrane process comprises a sewage sedimentation tank 4, wherein two sides of the sewage sedimentation tank 4 are provided with a biological membrane frame 3, the biological membrane frame 3 is used for installing a biological membrane 22, the sewage is filtered by the biological membrane 22, the biological membrane 22 is arranged on the inner side of the biological membrane frame 3, the top end of the biological membrane frame 3 is provided with a water distribution pipe 1, the water distribution pipe 1 is used for distributing the sewage into a plurality of water discharge heads 21, the plurality of water discharge heads 21 uniformly discharge the sewage onto the biological membrane 22 to filter the sewage, the bottom of the water distribution pipe 1 is provided with the water discharge heads 21, one end of the water distribution pipe 1 is provided with a water inlet pipe 2, the water inlet pipe 2 is provided with a water inlet pump 20, the top of the sewage sedimentation tank 4 is provided with a top plate 9, the sewage sedimentation tank 4 is used for carrying out sedimentation treatment on the sewage, the middle part of the top plate 9 is provided with a rotating, make swing arm 14 drive scrape mud brush 13 and scrape mud processing to the inner chamber bottom of sewage sedimentation tank 4, servo motor 11 is installed to top one side of roof 9, servo motor 11 is used for driving dwang 12 and rotates, swing arm 14 is installed to the both sides of dwang 12, the bottom of swing arm 14 is installed and is scraped mud brush 13, the bottom mid-mounting of sewage sedimentation tank 4 has sludge tank 16, sludge tank 16 is used for collecting mud, sludge tank 16's internally mounted has sludge pump 15, sludge pump 15 conveniently is discharged mud by sludge discharge pipe 5, sludge discharge pipe 5 is installed to one side of sludge pump 15, supporting leg 7 is installed to the bottom both sides of sewage sedimentation tank 4, bottom plate 8 is installed to the bottom of supporting leg 7, universal wheel 6 is installed to bottom both sides of bottom plate 8, universal wheel 6 makes things convenient for controlling means to remove.
Further, a transmission shaft 19 is installed at the bottom of the servo motor 11, and the transmission shaft 19 is in transmission connection with the rotating rod 12 through a transmission belt 17, so that the servo motor 11 drives the rotating rod 12 to rotate through the transmission mechanism.
Further, swing arm 14 and dwang 12 welded connection, and swing arm 14 with scrape the mud brush 13 and inlay and be connected, drive swing arm 14 through dwang 12 and rotate, make swing arm 14 drive the mud of scraping mud brush 13 and scraping the mud processing to the sedimentation tank inner wall of its bottom.
Further, sewage sedimentation tank 4 sets up to the toper structure, and scrapes the bottom inner wall subsides of mud brush 13 and sewage sedimentation tank 4 and cover and be connected, and the sediment of mud is made things convenient for to this kind of toper structure.
Further, biofilm carrier 3 is provided with two altogether, and two biofilm carriers 3 pass through the bolt fastening in the both sides of sewage sedimentation tank 4, make things convenient for the transport of sewage through two biofilm carriers 3.
Further, install axle sleeve 18 on dwang 12, and axle sleeve 18 passes through the bolt and installs in the bottom middle part of roof 9, conveniently controls dwang 12 through axle sleeve 18 and stably rotates.
The working principle is as follows: this equipment is when using, carry sewage to the water distributor 1 in through inlet tube 2, the drainage head 21 through the bottom of water distributor 1 discharges sewage into in the biomembrane frame 3, biomembrane 22 through the inboard of biomembrane frame 3 carries out filtration treatment to sewage, sewage after the filtration discharges into in the sewage sedimentation tank 4, sewage deposits in sewage sedimentation tank 4, it rotates to control transmission shaft 19 through servo motor 11, it rotates to make transmission shaft 19 drive dwang 12 through drive belt 17, drive swing arm 14 swing through dwang 12, scrape mud to the bottom mud of sewage sedimentation tank 4 through the mud brush 13 of scraping of its bottom of swing arm 14 control, in the mud groove 16 is gone into to the effect of centrifugal force, sludge is discharged by mud discharge pipe 5 through sludge pump 15 in the mud groove 16.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. The utility model provides an adopt integrated sewage treatment plant of membrane process, includes sewage sedimentation tank (4), its characterized in that: the sewage treatment device is characterized in that a biomembrane frame (3) is installed on two sides of the sewage sedimentation tank (4), a biomembrane (22) is installed on the inner side of the biomembrane frame (3), a water distribution pipe (1) is installed on the top end of the biomembrane frame (3), a drainage head (21) is installed at the bottom of the water distribution pipe (1), a water inlet pipe (2) is installed at one end of the water distribution pipe (1), a water inlet pump (20) is installed on the water inlet pipe (2), a top plate (9) is installed at the top of the sewage sedimentation tank (4), a rotating rod (12) is installed at the middle part of the top plate (9), a servo motor (11) is installed on one side of the top part of the top plate (9), swing arms (14) are installed on two sides of the rotating rod (12), mud scraping brushes (13) are installed at the bottom part, the sludge treatment device is characterized in that a sludge pump (15) is arranged inside the sludge tank (16), a sludge discharge pipe (5) is arranged on one side of the sludge pump (15), supporting legs (7) are arranged on two sides of the bottom of the sewage sedimentation tank (4), a bottom plate (8) is arranged at the bottom of the supporting legs (7), and universal wheels (6) are arranged on two sides of the bottom plate (8).
2. The integrated sewage treatment device adopting the membrane process according to claim 1, wherein: transmission shaft (19) are installed to the bottom of servo motor (11), and transmission shaft (19) pass through drive belt (17) and are connected with dwang (12) transmission.
3. The integrated sewage treatment device adopting the membrane process according to claim 1, wherein: swing arm (14) and dwang (12) welded connection, and swing arm (14) are inlayed with mud scraping brush (13) and are connected.
4. The integrated sewage treatment device adopting the membrane process according to claim 1, wherein: the sewage sedimentation tank (4) is of a conical structure, and the mud scraping brush (13) is attached to and connected with the inner wall of the bottom of the sewage sedimentation tank (4).
5. The integrated sewage treatment device adopting the membrane process according to claim 1, wherein: the two biomembrane frames (3) are arranged on the same side, and the two biomembrane frames (3) are fixed on two sides of the sewage sedimentation tank (4) through bolts.
6. The integrated sewage treatment device adopting the membrane process according to claim 1, wherein: install axle sleeve (18) on dwang (12), and axle sleeve (18) pass through the bolt and install the bottom middle part at roof (9).
CN201921719403.6U 2019-10-15 2019-10-15 Integrated sewage treatment device adopting membrane process Active CN210683537U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921719403.6U CN210683537U (en) 2019-10-15 2019-10-15 Integrated sewage treatment device adopting membrane process

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921719403.6U CN210683537U (en) 2019-10-15 2019-10-15 Integrated sewage treatment device adopting membrane process

Publications (1)

Publication Number Publication Date
CN210683537U true CN210683537U (en) 2020-06-05

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ID=70884072

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921719403.6U Active CN210683537U (en) 2019-10-15 2019-10-15 Integrated sewage treatment device adopting membrane process

Country Status (1)

Country Link
CN (1) CN210683537U (en)

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