CN208869384U - A kind of gas operated vertical subsurface flow wetland - Google Patents
A kind of gas operated vertical subsurface flow wetland Download PDFInfo
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- CN208869384U CN208869384U CN201821534435.4U CN201821534435U CN208869384U CN 208869384 U CN208869384 U CN 208869384U CN 201821534435 U CN201821534435 U CN 201821534435U CN 208869384 U CN208869384 U CN 208869384U
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- gas
- guide tube
- water tank
- collector pipe
- water
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02W—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
- Y02W10/00—Technologies for wastewater treatment
- Y02W10/10—Biological treatment of water, waste water, or sewage
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Abstract
The utility model discloses a kind of gas operated vertical subsurface flow wetlands comprising current wetland, gas-guide tube, collector pipe and water tank;The side of current wetland upper surface is equipped with water inlet, and vertical in current wetland to be equipped with several gas-guide tubes, one end that gas-guide tube is located at current wetland is connect with collector pipe;Collector pipe is pierced by one end of current wetland and being flexibly connected for water tank, and water tank has outlet pipe far from what the side of collector pipe connected, is equipped with pressure opening and closing valve in outlet pipe.Gas-guide tube is equipped with ventilative section and changes water section;The ventilative section of gas-guide tube is equipped with several stomatas, and gas-guide tube changes water section equipped with several first inlet openings, and the first inlet opening is located at the side in gas-guide tube equipped with anti-bucket.The tube wall that catchments is equipped with several boss, and boss is equipped with strainer;Dredging block is equipped in collector pipe, one end far from water tank is equipped with pull ring in collector pipe, and dredging block is equipped with the first bracing wire far from one end of pull ring, and dredging block is equipped with the second bracing wire close to one end of pull ring, and second is drawstring through pull ring and dredging block.
Description
Technical field
The utility model relates to a kind of current wetlands, and in particular to a kind of gas operated vertical subsurface flow wetland.
Background technique
According to the mode of waste water runoff, artificial swamp can be divided into Three models: surface-flow, current wetland and vertical wet
Ground.Waste water is in filler surface cross flow in surface-flow, and the degradation of most organic is by being located at the plant being immersed in waste water
Microorganism in the biomembrane of basal part of stem is completed.This wetland mode does not make full use of the absorption of root system of plant and is attached to
The effect of microorganism on root system also has ignored the effect of filler in soil horizon, and summer mosquitos and flies easy to breed;Current wetland
Refer to that the wet pond botanical system of surface bed one of sandy gravel stratum composition, waste water processed are distributed equal from one end of packed bed through water distribution system
It is even gently to flow through packed bed plant root zone, be one mainly by soil, wetland plant and microorganism group at ecological treatment system;
Surface-flow and current wetland feature are combined to vertical wet, but its detailing requiments is high, sanitary condition is also poor.At present both at home and abroad
Widely applied mainly current wetland.
It has now been found that low coefficient of oxygen utilization is the main reason for constitution wetland purification efficiency is lower, under anoxia condition,
Biology not can be carried out normal aerobic respiration, and certain elements of reduction-state and the concentration of organic matter can reach toxic level.Compared with
Low oxygen concentration causes Organic oxidation decomposition rate in wet land system to reduce, and nitration reaction is not thorough, and limits wet land system
The removal of nitrogen, and the blocking of wet land system be mostly delay due to the suspended matter and organic matter in sewage in wet land system,
Caused by accumulation.Therefore sufficiently supplying oxygen and reduce the accumulation of suspended matter and organic matter in wetland is to improve wet land system purification
Ability, the key to prolong the service life.
Utility model content
For above-mentioned deficiency in the prior art, the utility model provides one kind and is capable of providing with polyoxy gas and easy cleaning
The gas operated vertical subsurface flow wetland of pipeline.
In order to achieve the above object of the invention, the technical solution adopted in the utility model are as follows:
There is provided a kind of gas operated vertical subsurface flow wetland, it is characterised in that: including current wetland, gas-guide tube, collector pipe and storage
Water pot;The side of current wetland upper surface is equipped with water inlet, and vertical in current wetland to be equipped with several gas-guide tubes, gas-guide tube is located at
One end of current wetland is connect with collector pipe;Collector pipe is pierced by one end of current wetland and being flexibly connected for water tank, water tank
What the side far from collector pipe connected has outlet pipe, is equipped with pressure opening and closing valve in outlet pipe;
Gas-guide tube is equipped with ventilative section and changes water section;The ventilative section of gas-guide tube is equipped with several stomatas, and gas-guide tube changes water
Section is equipped with several first inlet openings, and the first inlet opening is located at the side in gas-guide tube equipped with anti-bucket;
The tube wall that catchments is equipped with several boss, and boss is equipped with strainer;It is equipped with dredging block in collector pipe, it is remote in collector pipe
One end from water tank is equipped with pull ring, and dredging block is equipped with the first bracing wire far from one end of pull ring, and dredging block is close to one end of pull ring
Pull ring and dredging block are drawstring through equipped with the second bracing wire, second.
Further, the top movable of water tank be equipped with buoy, buoy pass through water tank top and be arranged in water storage
Floating block connection in tank.
Further, pressure opening and closing valve includes fixed valve block, plug and support frame, and fixed valve block and support frame are fixed on out
In water pipe, support frame has connecting column close to what the side of fixed valve block was fixedly connected, and connecting column passes through plug and is flexibly connected with it,
Connecting column is equipped with spring.
Further, the top of gas-guide tube is bent to horizontal direction.
Further, the ventilative section of gas-guide tube is higher than the top of water tank in level height.
Further, the top margin of anti-bucket is higher than the top of the first inlet opening.
It, can be with to squeeze out and sucking air the utility model has the following beneficial effects: by the variation of water level in gas-guide tube
It provides for current wetland with more oxygen.
Detailed description of the invention
Fig. 1 is a kind of structural schematic diagram of gas operated vertical subsurface flow wetland.
Fig. 2 is a kind of structural schematic diagram of gas operated vertical subsurface flow wetland gas-guide tube.
Fig. 3 is a kind of structural schematic diagram of gas operated vertical subsurface flow wetland collector pipe.
Fig. 4 is the structural schematic diagram of a kind of gas operated vertical subsurface flow wetland water tank and outlet pipe.
Wherein, 1, water inlet;2, current wetland;3, gas-guide tube;301, anti-bucket;302, the first inlet opening;303, stomata;
4, collector pipe;401, boss;402, strainer;403, the first bracing wire;404, dredging block;405, pull ring;406, the second bracing wire;5, it stores up
Water pot;501, buoy;502, floating block;6, outlet pipe;601, fixed valve block;602, plug;603, support frame;604, connecting column;
605, spring.
Specific embodiment
Specific embodiment of the present utility model is described below, in order to facilitate understanding by those skilled in the art
The utility model, it should be apparent that the utility model is not limited to the range of specific embodiment, to the common skill of the art
For art personnel, if various change the attached claims limit and determine the utility model spirit and scope in,
These variations are it will be apparent that all utilize the innovation and creation of the utility model design in the column of protection.
As shown in Fig. 1 ~ 4, which includes current wetland 2, gas-guide tube 3, collector pipe 4 and water tank
5;The side of 2 upper surface of current wetland is equipped with water inlet 1, vertical in current wetland 2 to be equipped with several gas-guide tubes 3, and gas-guide tube 3
It is connect in one end of current wetland 2 with collector pipe 4;Collector pipe 4 is pierced by one end of current wetland 2 and being flexibly connected for water tank 5,
Water tank 5 has outlet pipe 6 far from what the side of collector pipe 4 connected, is equipped with pressure opening and closing valve in outlet pipe 6.
In use process, waste water is entered in current wetland 2 by water inlet 1, by the processing of current wetland 2, processing
Water afterwards enters water tank 5 from collector pipe 4.Pressure after the water level in water tank 5 reaches certain position, on outlet pipe 6
Switch valve is opened, and the water in water tank 5 is excluded.Water level during draining in gas-guide tube 3 also reduces together, external sky
Gas is that current wetland 2 provides oxygen by entering gas-guide tube 3.
Gas-guide tube 3 is equipped with ventilative section and changes water section, and the ventilative section of gas-guide tube 3 is equipped with several stomatas 303, stomata sucking
With exclusion air.Gas-guide tube 3 changes water section equipped with several first inlet openings 302, and the first inlet opening 302 is located in gas-guide tube 3
Side be equipped with anti-bucket 301, the top margin of anti-bucket 301 is higher than the top of the first inlet opening 302, soil is avoided to enter directly into
In gas-guide tube 3.The top of gas-guide tube 3 is bent to horizontal direction, and rainwater is avoided to fall directly into gas-guide tube 3.Gas-guide tube 3 is breathed freely
Section is higher than the top of water tank 5 in level height, guarantees that 5 water storage of water tank expires posterior spiracle 303 and also do not influenced 1 by water.
4 tube wall of collector pipe is equipped with several boss 401, and boss 401 has raised the position of water inlet on collector pipe 4, reduces
Pressure near water inlet, has also reserved more activity spaces for dredging block 404.Boss 401 is equipped with strainer 402 can be with
Impurity screening.Dredging block 404 is equipped in collector pipe 4, one end far from water tank 5 is equipped with pull ring 405, dredging block in collector pipe 4
404 one end far from pull ring 405 are equipped with the first bracing wire 403, and dredging block 404 is equipped with the second bracing wire close to one end of pull ring 405
406, the second bracing wire 406 passes through pull ring 405 and dredging block 404.
Before use, disconnecting the connection of water tank 5 and collector pipe 4.In use, pull the first bracing wire 403 make dredging block 404 to
The direction movement for connecting water tank 5, the mud in collector pipe 4 is taken out of.The second bracing wire 406 is pulled on, the second bracing wire 406 exists
The direction of motion is reversed under the action of pull ring 405, and dredging block 404 back moves.
The top movable of water tank 5 is equipped with buoy 501, and buoy 501 passes through the top of water tank 5 and is arranged in water tank
Floating block 502 in 5 connects.It may determine that the water level in water tank 5 by the length that buoy 501 is pierced by the top of water tank 5.
Pressure opening and closing valve includes fixed valve block 601, plug 602 and support frame 603, and fixed valve block 601 and support frame 603 are solid
It is scheduled in outlet pipe 6, support frame 603 has connecting column 604 close to what the side of fixed valve block 601 was fixedly connected, and connecting column 604 is worn
It crosses plug 602 to be flexibly connected with it, connecting column 604 is equipped with spring 605.
Claims (6)
1. a kind of gas operated vertical subsurface flow wetland, it is characterised in that: including current wetland (2), gas-guide tube (3), collector pipe (4) and
Water tank (5);The side of current wetland (2) upper surface is equipped with water inlet (1), vertical in the current wetland (2) to set
Have several gas-guide tubes (3), one end that the gas-guide tube (3) is located at current wetland (2) is connect with collector pipe (4);The collector pipe
(4) be pierced by one end of current wetland (2) and being flexibly connected for water tank (5), the water tank (5) far from collector pipe (4) one
Side connection has outlet pipe (6), and pressure opening and closing valve is equipped in the outlet pipe (6);
The gas-guide tube (3) is equipped with ventilative section and changes water section;The ventilative section of the gas-guide tube (3) is equipped with several stomatas
(303), the water section of changing of the gas-guide tube (3) is equipped with several first inlet openings (302), and first inlet opening (302) is located at
Side in gas-guide tube (3) is equipped with anti-bucket (301);
Collector pipe (4) tube wall is equipped with several boss (401), and the boss (401) is equipped with strainer (402);The collection
Dredging block (404) are equipped in water pipe (4), one end in collector pipe (4) far from water tank (5) is equipped with pull ring (405), the dredging
Block (404) is equipped with the first bracing wire (403) far from the one end of pull ring (405), and the one of the dredging block (404) close pull ring (405)
End is equipped with the second bracing wire (406), and second bracing wire (406) passes through pull ring (405) and dredging block (404).
2. gas operated vertical subsurface flow wetland according to claim 1, it is characterised in that: the top of the water tank (5) is living
Dynamic is equipped with buoy (501), the floating block that the buoy (501) passes through the top of water tank (5) and is arranged in water tank (5)
(502) it connects.
3. gas operated vertical subsurface flow wetland according to claim 1, it is characterised in that: the pressure opening and closing valve includes fixing
Valve block (601), plug (602) and support frame (603), the fixed valve block (601) and support frame (603) are fixed on outlet pipe
(6) in, support frame as described above (603) has connecting column (604), the connection close to what the side of fixed valve block (601) was fixedly connected
Column (604) passes through plug (602) and is flexibly connected with it, and the connecting column (604) is equipped with spring (605).
4. gas operated vertical subsurface flow wetland according to claim 1, it is characterised in that: the top of the gas-guide tube (3) to
Horizontal direction bending.
5. gas operated vertical subsurface flow wetland according to claim 1, it is characterised in that: the ventilative section of the gas-guide tube (3)
It is higher than the top of water tank (5) in level height.
6. gas operated vertical subsurface flow wetland according to claim 1, it is characterised in that: the top margin of the anti-bucket (301)
Higher than the top of the first inlet opening (302).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201821534435.4U CN208869384U (en) | 2018-09-19 | 2018-09-19 | A kind of gas operated vertical subsurface flow wetland |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201821534435.4U CN208869384U (en) | 2018-09-19 | 2018-09-19 | A kind of gas operated vertical subsurface flow wetland |
Publications (1)
Publication Number | Publication Date |
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CN208869384U true CN208869384U (en) | 2019-05-17 |
Family
ID=66468212
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201821534435.4U Active CN208869384U (en) | 2018-09-19 | 2018-09-19 | A kind of gas operated vertical subsurface flow wetland |
Country Status (1)
Country | Link |
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CN (1) | CN208869384U (en) |
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2018
- 2018-09-19 CN CN201821534435.4U patent/CN208869384U/en active Active
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