CN217516743U - Potential energy biological sewage purifier - Google Patents
Potential energy biological sewage purifier Download PDFInfo
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- CN217516743U CN217516743U CN202221659143.XU CN202221659143U CN217516743U CN 217516743 U CN217516743 U CN 217516743U CN 202221659143 U CN202221659143 U CN 202221659143U CN 217516743 U CN217516743 U CN 217516743U
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- 239000010865 sewage Substances 0.000 title claims abstract description 61
- 238000005381 potential energy Methods 0.000 title claims abstract description 22
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims abstract description 353
- 238000005188 flotation Methods 0.000 claims abstract description 6
- 238000007667 floating Methods 0.000 claims description 94
- 238000007789 sealing Methods 0.000 claims description 38
- 238000007599 discharging Methods 0.000 claims description 25
- 238000005192 partition Methods 0.000 claims description 12
- 238000004891 communication Methods 0.000 claims description 4
- 108010001267 Protein Subunits Proteins 0.000 abstract 1
- 238000009434 installation Methods 0.000 abstract 1
- 238000000746 purification Methods 0.000 abstract 1
- 210000000476 body water Anatomy 0.000 description 8
- 230000000712 assembly Effects 0.000 description 5
- 238000000429 assembly Methods 0.000 description 5
- 238000005265 energy consumption Methods 0.000 description 5
- 238000000034 method Methods 0.000 description 4
- 230000008569 process Effects 0.000 description 3
- 230000009467 reduction Effects 0.000 description 3
- 241000255925 Diptera Species 0.000 description 2
- 230000009471 action Effects 0.000 description 2
- 238000005273 aeration Methods 0.000 description 2
- 230000001580 bacterial effect Effects 0.000 description 2
- 230000008901 benefit Effects 0.000 description 2
- 239000000945 filler Substances 0.000 description 2
- 239000007789 gas Substances 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 230000001133 acceleration Effects 0.000 description 1
- QVGXLLKOCUKJST-UHFFFAOYSA-N atomic oxygen Chemical compound [O] QVGXLLKOCUKJST-UHFFFAOYSA-N 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 238000009395 breeding Methods 0.000 description 1
- 230000001488 breeding effect Effects 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 230000007613 environmental effect Effects 0.000 description 1
- 230000005484 gravity Effects 0.000 description 1
- 239000003673 groundwater Substances 0.000 description 1
- 239000010842 industrial wastewater Substances 0.000 description 1
- 230000014759 maintenance of location Effects 0.000 description 1
- 230000003647 oxidation Effects 0.000 description 1
- 238000007254 oxidation reaction Methods 0.000 description 1
- 239000001301 oxygen Substances 0.000 description 1
- 229910052760 oxygen Inorganic materials 0.000 description 1
- 230000002035 prolonged effect Effects 0.000 description 1
- 239000010802 sludge Substances 0.000 description 1
- 238000006467 substitution reaction Methods 0.000 description 1
- 239000002349 well water Substances 0.000 description 1
- 235000020681 well water Nutrition 0.000 description 1
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- Treatment Of Biological Wastes In General (AREA)
Abstract
The utility model discloses a biological sewage purification ware of potential energy, the standard layer of connecting including last water tank subassembly and last water tank subassembly sub-unit, multistage standard layer is divided into even number standard layer and odd number standard layer, and it includes the upper water tank to go up the water tank subassembly, loops through installation first order water-stop sheet and second level water-stop sheet from a left side and divide into first water tank, second water tank and third water tank with the upper water tank in the upper water tank, the first order water-stop sheet is higher than the second level water-stop sheet, be equipped with first water tank subassembly and the third water tank subassembly of intaking in the second water tank respectively, be equipped with even layer flotation tank subassembly in the first water tank, be equipped with odd number layer flotation tank subassembly in the third water tank. The utility model discloses utilize the potential energy of sewage to realize automatic operation, need not special messenger's management, have simple structure, reoxygenation is efficient, low power consumption, characteristics that the wide adaptability is strong.
Description
Technical Field
The utility model relates to a purifier, in particular to a potential energy biological sewage purifier.
Background
With the acceleration of the urbanization and industrialization speed of China, more and more domestic sewage and industrial wastewater cause serious pollution to the environment. At present, sewage is treated by a deep biological treatment technology combining activated sludge and a biological contact oxidation process at home and abroad, so that the quality of the treated water can reach the standard of reuse water, but a blast aeration method is mostly adopted in an aerobic process, so that the reoxygenation efficiency is low, the energy consumption is high, and the operation cost is high. The Chinese patent 200520071365.X utilizes water potential energy to convert into kinetic energy through siphon to carry out atmospheric reoxygenation and blow-off, and although aeration energy consumption can be reduced, the problems of short retention time of sewage on each ecological bed, poor sewage treatment effect, high energy consumption, easy breeding of mosquitoes and flies around a biological rotating disc and the like exist.
Disclosure of Invention
The utility model provides a biological sewage purifier of potential energy, the problem that exists to prior art utilizes water potential energy to make sewage intermittent type nature carry out big oxygen reoxygenation and blow off through the standard layer, has good economic benefits and environmental benefit.
In order to solve the technical problem, the utility model adopts the following technical scheme:
a potential energy biological sewage purifier, which comprises an upper water tank component and a standard layer connected with the lower part of the upper water tank component, the multi-level standard layer is divided into an even number standard layer and an odd number standard layer, the upper water tank assembly comprises an upper water tank, a first-level water stop plate and a second-level water stop plate are sequentially arranged in the upper water tank from left to right to divide the upper water tank into a first water tank, a second water tank and a third water tank, the first-stage water-stop plate is higher than the second-stage water-stop plate, a first water inlet tank assembly and a third water inlet tank assembly are respectively arranged in the second water tank, used for realizing the communication among the first water tank, the second water tank and the third water tank, an even number layer of floating tank components are arranged in the first water tank, the third water tank is internally provided with an odd layer buoyancy tank assembly for controlling the water discharge of the first water outlet arranged on the odd standard layer.
The first water tank assembly comprises a first water inlet tank and a first floating seal, the first water inlet tank is fixedly connected into the second water tank, the side part of the first water inlet tank is communicated with the first-stage partition plate, a track hole is formed in the upper part of the first water inlet tank, a shaft lever of the first floating seal is movably connected into the track hole, a water inlet of the first water inlet tank is formed in the periphery of the track hole, and the first floating seal is located on the upper part of a water inlet in the first water inlet tank.
The third water inlet tank assembly comprises a third water inlet tank and a third floating seal, the third water inlet tank is fixedly connected into the second water tank, the side part of the third water inlet tank is communicated with the second-stage partition plate, a track hole is formed in the upper part of the third water inlet tank, a shaft rod of the third floating seal is movably connected into the track hole, a water inlet of the third water inlet tank is formed in the periphery of the track hole, and the third floating seal is located on the upper part of the water inlet of the third water inlet tank.
The odd-layer buoyancy tank assembly comprises a third buoyancy tank and pull rods fixedly connected with the bottom of the third buoyancy tank, the pull rods respectively penetrate through the multi-stage standard layers, multi-stage sealing plates are uniformly distributed on the pull rods, and the sealing plates are respectively positioned at first water outlets on the odd-numbered standard layers of each stage;
the bottom of third flotation tank is equipped with inlet tube and the superficial subassembly of third control respectively, and the bottom fixedly connected with landing leg of third flotation tank.
The third floating control assembly comprises a third floating control body and a track hole formed in the bottom of the third floating box, a third floating box water outlet is formed in the periphery of the track hole, and a shaft rod of the third floating control body is movably connected into the third floating box water outlet.
The even-layer buoyancy tank assembly comprises a first tank body and a first floating body arranged in the first tank body, the first floating body is fixedly connected with a pull rod, the pull rod penetrates through the multi-level standard layers respectively, multi-level sealing plates are uniformly distributed on the pull rod, the sealing plate of the first level is positioned above the first water outlet on the first tank, and the rest sealing plates are correspondingly positioned above the first water outlet on the even-level standard layer.
The lower part of the first box body is provided with a first box body water outlet, the periphery of the first box body water outlet is fixedly connected with a bracket, a first sealing ball is arranged in the bracket and is positioned below the first box body water outlet, and the first sealing ball is connected with a water outlet floating body through a connecting rod.
The bottoms of the standard layer and the third water tank are respectively provided with a second water outlet, the second water outlets and the first water outlets are respectively positioned at two ends of the standard layer, and the first water outlets and the second water outlets are arranged in a left-right staggered manner between the even standard layer and the odd standard layer which are adjacent up and down;
and a second water discharging assembly is arranged on the second water discharging port.
The second water discharging assembly comprises a connecting rod, one end of the connecting rod is fixedly connected with a second sealing ball, the second sealing ball is positioned at the upper part of the second water discharging opening, and the other end of the connecting rod is fixedly connected with a second floating body;
the middle part of the connecting rod is hinged with the second-stage partition plate, two ends of the connecting rod are respectively positioned at two sides of the second-stage partition plate, and the second floating body connected with the other end of the connecting rod is positioned in the second water tank;
the even number standard layer and the odd number standard layer are internally and fixedly connected with second boxes with upward openings, the second boxes are respectively positioned below the first water outlets, the lower part of one side of each second box is provided with a water outlet, two sides of each second box are respectively hinged with a connecting rod, a second sealing ball connected with one end of each connecting rod is positioned on the upper part of a second water outlet, and a second floating body connected with the other end of each connecting rod is positioned in a second water outlet assembly and positioned in a second box.
The thickness of the third floating seal is larger than that of the first floating seal.
The utility model discloses the beneficial effect who has does:
the utility model discloses utilize the potential energy of sewage can realize automatic operation, need not special messenger's management, reduced the energy consumption, improved efficiency, have simple structure, reoxygenation efficiency is high, low energy consumption, the strong characteristics of adaptability;
the bottom of the even standard layer, the bottom of the odd standard layer and the bottom of the third water tank are both provided with second water discharging assemblies, the second water discharging assemblies can ensure that the sewage in the even standard layer, the sewage in the odd standard layer and the third water tank can flow into the next stage to the greatest extent, the sewage in the layer can be further prevented from being stored too much, and the problem that the sewage overflows in the next circulation water discharging process is avoided.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a cross-sectional view of C-C of FIG. 1;
FIG. 3 is a cross-sectional view of E-E of FIG. 1;
FIG. 4 is a cross-sectional view taken along line D-D of FIG. 1;
FIG. 5 is an enlarged view of the structure at A in FIG. 4;
fig. 6 is a cross-sectional view of F-F in fig. 1.
Detailed Description
The present invention will be further described with reference to the accompanying drawings.
As shown in figures 1-6, the utility model relates to a potential energy biological sewage purifier, which comprises an upper water tank component and a plurality of standard layers connected with the lower part of the upper water tank component, wherein a filler bacterial bed is arranged in the standard layers and used for purifying sewage, the standard layers can be selected from 6-16 layers according to actual needs, the outlet water can realize the main standard of class III water in the ground water environment quality standard (GB 3838-, the first-stage water-stop plate 1-2-2 is higher than the second-stage water-stop plate 1-6-1, so that sewage in the second water tank can enter the third water tank 1-6 and then enter the first water tank 1-2. And a first water tank component 1-3 is arranged in the second water tank and used for further realizing the communication between the first water tank 1-2 and the second water tank, and a third water tank component 1-4 is arranged in the second water tank and used for further realizing the communication between the second water tank and the third water tank 1-6. An even layer of floating box assemblies are arranged in the first water tank 1-2 and used for controlling the water discharge of the first water tank 1-2 and the first water outlets 1-7-5 arranged on the even standard layer, and an odd layer of floating box assemblies are arranged in the third water tank 1-6 and used for controlling the water discharge of the first water outlets 1-7-5 arranged on the odd standard layer.
The third water tank assembly 1-4 comprises a third water inlet tank 1-3-4 and a third floating seal 1-3-5, the third water inlet tank 1-3-4 is fixedly connected in the second water tank, the side part of the third water inlet tank 1-3-4 is communicated with the second-stage partition plate 1-6-1, and when the third water tank assembly 1-4 is opened, the third water tank 1-6 is communicated with the second water tank. The upper part of the third water inlet tank 1-3-4 is provided with a track hole, a shaft lever of a third floating seal 1-3-5 is movably connected in the track hole, the periphery of the track hole is provided with a water inlet of the third water inlet tank 1-3-4, and the third floating seal 1-3-5 is positioned at the upper part of a water inlet of the third water inlet tank 1-3-4. When the water inlet device works, sewage in the third water tank 1-6 is lower than the upper end surface of the third water inlet tank 1-3-4, and the upper end surface of the third floating seal 1-3-5 is subjected to the pressure of the sewage in the second water tank, so that the third floating seal 1-3-5 seals the water inlet of the third water inlet tank 1-3-4; when sewage flows through the second-stage water stop plate 1-6-1 and enters the third water tank 1-6, the third water inlet tank 1-3-4 is filled with water quickly, at the moment, the lower end face of the third floating seal 1-3-5 is subjected to the water buoyancy from the water inlet of the third water inlet tank 1-3-4, a pressure difference enabling the third floating seal 1-3-5 to float upwards is formed between the third water tank 1-6 and the second water tank, the third floating seal 1-3-5 starts to float upwards, and therefore 1-3-4 is opened, and when the third water tank is communicated with the second water tank, the third water tank is used for controlling the quick water drainage of an odd number standard layer.
The first water tank assembly 1-3 comprises a first water inlet tank 1-3-2 and a first floating seal 1-3-1, the first water inlet tank 1-3-2 is fixedly connected in the second water tank, the side part of the first water inlet tank 1-3-2 is communicated with the first-stage partition plate 1-2-2, and when the first water tank assembly 1-3 is opened, the first water inlet tank 1-3-2 is communicated with the second water tank. The upper part of the first water inlet tank 1-3-2 is provided with a track hole, a shaft lever of a first floating seal 1-3-1 is movably connected in the track hole, the periphery of the track hole is provided with a water inlet of the first water inlet tank 1-3-2, and the first floating seal 1-3-1 is positioned at the upper part of a water inlet of the first water inlet tank 1-3-2. When the water inlet device works, sewage in the first water tank 1-2 is lower than the upper end surface of the first water inlet tank 1-3-2, and the upper end surface of the first floating seal 1-3-1 is subjected to pressure in the second water tank, so that the first floating seal 1-3-1 seals the water inlet on the first water inlet tank 1-3-2; sewage flows through the first-stage water stop plate 1-2-2 to enter the first water tank 1-2, when the first water inlet tank 1-3-2 is filled with water quickly, the lower end face of the first floating seal 1-3-1 is subjected to water buoyancy from the water inlet of the first water inlet tank 1-3-2, a pressure difference enabling the first floating seal 1-3-1 to float upwards is formed between the first water tank 1-2 and the second water tank, and therefore the water inlet of the first water inlet tank 1-3-2 is opened, and the first water tank 1-2 is communicated with the second water tank. Particularly, the water inlet of the first water inlet tank 1-3-2 is larger than the water inlet of the third water inlet tank 1-3-4, so that the third water tank 1-2 and the second water tank can be communicated, and water can be quickly discharged to the odd standard layer of the first stage from the first water outlet 1-7-5 on the first water tank 1-2.
Particularly, the thickness of the third floating seal 1-3-5 is larger than that of the first floating seal 1-3-1, so that the buoyancy force borne by the third floating seal 1-3-5 is larger than that of the first floating seal 1-3-1, the speed of opening the water inlet of the third water inlet tank 1-3-4 by the third floating seal 1-3-5 is larger than that of opening the water inlet of the first water inlet tank 1-3-2 by the first floating seal 1-3-1, the water inlet speed of the third water tank 1-6 is shortened, and the time of opening the first water outlet 1-7-5 on each odd standard layer by the floating tank assembly on each odd layer is shortened. On the contrary, the floating speed of the first floating seal 1-3-1 is relatively slow, and the water inlet time of the first water tank 1-2 is increased, so that the time for opening the first water outlets 1-7-5 on each even standard layer of the floating box assemblies on the even layers is increased, and the time for purifying sewage by the filler bacterial bed is prolonged.
The odd-layer buoyancy tank assembly comprises a third buoyancy tank 1-7 and a pull rod 1-7-3 fixedly connected with the bottom of the third buoyancy tank, the pull rod 1-7-3 penetrates through the multi-stage standard layers respectively, multi-stage sealing plates 1-7-4 are uniformly distributed on the pull rod 1-7-3, and the sealing plates 1-7-4 are located at first water outlets 1-7-5 on the odd-numbered standard layers respectively. When the device works, sewage enters the third water tank 1-6, the third floating tank 1-7 gradually moves upwards under the action of water buoyancy along with the increase of the sewage, so that the first water outlet 1-7-5 on the standard layer is opened, and the sewage in the odd standard layer can be discharged into the next standard layer.
In order to further control the third floating boxes 1-7 to move downwards, the upper parts of the third floating boxes 1-7 are provided with exhaust holes 1-7-1, the bottoms of the third floating boxes 1-7 are respectively provided with water inlet pipes 1-7-2 and third control floating components for controlling the water discharge of the third floating boxes 1-7, and the bottoms of the third floating boxes 1-7 are fixedly connected with supporting legs, so that the movement of the third control floating components is facilitated. When the water tank works, sewage in the third water tank is increased, the sewage enters the third floating tank 1-7 through the water inlet pipe 1-7-2, gas in the third floating tank 1-7 is discharged through the air outlet hole 1-7-1, and when the water in the third floating tank 1-7 reaches a certain water amount, the third floating tank 1-7 starts to move downwards.
The third control float component comprises a third control float 1-7-6 and a track hole arranged at the bottom of the third float tank, a third float tank water outlet 1-7-7 is arranged at the periphery of the track hole, a shaft lever of the third control float 1-7-6 is movably connected in the track hole, and the third control float 1-7-6 can move up and down along the track hole by utilizing the buoyancy of water, so that the third float tank water outlet 1-7-7 is opened and closed.
The buoyancy tank assembly at the even layer comprises a first tank body 1-1 and a first floating body 1-1-2 arranged in the first tank body 1-1, the first floating body is fixedly connected with a pull rod 1-7-3, the pull rod 1-7-3 penetrates through a multi-stage standard layer respectively, multi-stage sealing plates 1-7-4 are uniformly distributed on the pull rod 1-7-3, the sealing plate 1-7-4 at the first stage is positioned above a first water outlet 1-7-5 on the first water tank, and the rest sealing plates 1-7-4 are correspondingly positioned above the first water outlet 1-7-5 on the even standard layer.
The lower part of the first box body 1-1 is provided with a first box body water outlet 1-1-3, the periphery of the first box body water outlet 1-1-3 is fixedly connected with a bracket, a first sealing ball 1-1-6 is arranged in the bracket, the first sealing ball 1-1-6 is positioned below the first box body water outlet 1-1-3, and the first sealing ball 1-1-6 is connected with a water outlet floating body 1-1-7 through a shaft lever. When the device works, sewage rises to a certain height, the water outlet floating body 1-1-7 moves upwards under the buoyancy of water to drive the first sealing ball 1-1-6 to seal the water outlet 1-1-3 of the first box body; when the sewage is lowered to a certain height, the water outlet floating body 1-1-7 moves downwards under the action of self gravity, so that the first sealing ball 1-1-6 is driven to descend, and the sewage in the first box body 1-1 flows into the first water tank 1-2 through the first box body water outlet 1-1-3.
The bottom of the first box body 1-1 is fixedly connected with a connecting frame 1-1-5, and the lower part of the connecting frame 1-1-5 is fixedly connected with a first water tank 1-2.
In order to improve the drainage performance of the standard layer and the upper water tank, the bottoms of the even standard layer 2, the odd standard layer 3 and the third water tank 1-6 are respectively provided with a second drainage outlet 1-6-2 for completely draining sewage at the position. The second water discharge ports 1-6-2 and the first water discharge ports 1-7-5 are respectively positioned at two ends of the standard layer, and the first water discharge ports 1-7-5 and the second water discharge ports 1-6-2 between the upper and lower adjacent even standard layers and odd standard layers are arranged in a left-right staggered manner, specifically, the right end of the odd standard layer is the first water discharge ports 1-7-5, the left end of the odd standard layer is the second water discharge ports 1-6-2, the right end of the even standard layer is the second water discharge ports 1-6-2, and the left end of the even standard layer is the first water discharge ports 1-7-5;
and a second water discharging component is arranged on the second water discharging port 1-6-2.
The second water discharging assembly comprises a connecting rod 1-5-2, one end of the connecting rod 1-5-2 is fixedly connected with a second sealing ball 1-5-4, the second sealing ball 1-5-4 is positioned at the upper part of the second water discharging opening 1-6-2, the other end of the connecting rod 1-5-2 is fixedly connected with a second floating body 1-5-1, the second water discharging assembly utilizes a lever principle, and the middle part of the connecting rod 1-5-2 is a balance supporting point.
Specifically, when the second water discharging assembly is positioned in the upper water tank, the connecting rod 1-5-2 is hinged with the upper edge of the second-stage partition plate 1-6-1, two ends of the connecting rod 1-5-2 are respectively positioned at two sides of the second-stage partition plate 1-6-1, and the second floating body 1-5-1 connected with the other end of the connecting rod 1-5-2 is positioned in the second water tank.
When the water tank works, the second floating body 1-5-1 moves upwards along with the increase of sewage in the second water tank, so that the second sealing ball 1-5-4 is driven to move downwards to seal the second water outlet 1-6-2 in the third water tank; along with the reduction of the sewage in the second water tank, the second floating body 1-5-1 moves downwards, so that the second sealing ball 1-5-4 is driven to move upwards to open a second water outlet 1-6-2 in the third water tank, and the residual sewage in the third water tank is discharged into the first-stage standard layer.
When the second water discharging assembly is positioned in the even standard layer 2 and the odd standard layer 3 and used for controlling a second water outlet, the even standard layer 2 and the odd standard layer 3 are fixedly connected with a second box body 1-5-3 with an upward opening, the inner side surface of the second box body 1-5-3 is provided with a water outlet for discharging sewage in the second box body 1-5-3, the second box body 1-5-3 is respectively positioned right below the first water outlet on the upper-stage standard layer, two sides of the second box body 1-5-3 are respectively hinged with a connecting rod 1-5-2, a second sealing ball 1-5-4 connected with one end of the connecting rod 1-5-2 is positioned at the upper part of the second water discharging opening 1-6-2, and a second floating body 1-5-1 connected with the other end of the connecting rod 1-5-2 is positioned at the second water discharging assembly and positioned in the second box body 1-5-2 -3.
When the water-saving device works, when the first water outlet of the upper stage discharges water downwards, the second box body 1-5-3 is quickly filled with water, so that the second floating body 1-5-1 floats upwards to seal the standard layer; when water is discharged, water is gradually discharged from the water outlet of the second box body 1-5-3 along with the reduction of the water level, so that the second floating body 1-5-1 sinks, the water outlet of the second water discharge port 1-6-2 is opened, and the residual water in the layer is gradually discharged into the standard layer of the next stage.
The working principle is as follows:
sewage in the second water tank flows over the second-stage water-stop sheet 1-6-1, the sewage quickly enters the third water tank 1-6, when the water level of the third water tank 1-6 rises to a set height, the third floating seal 1-3-5 begins to float upwards, the second water tank is communicated with the third water tank 1-6, the third floating seal 1-7 is driven by water buoyancy to drive the sealing plates 1-7-4 of each stage to gradually move upwards, so that the first water outlets 1-7-5 on the odd standard layers 3 are opened, and the sewage in the odd standard layers 3 can be discharged into the adjacent even standard layers 2. When the sewage in the third water tank 1-6 increases, the sewage is discharged into the third floating box 1-7 through the water inlet pipe 1-7-2, the gas in the third floating box 1-7 is discharged through the air outlet hole 1-7-1, and along with the increase of the water amount in the third floating box 1-7, the third floating box 1-7 drives the corresponding sealing plate 1-7-4 to gradually move downwards, so that the first water outlet 1-7-5 is sealed.
Sewage flows through the first-stage water-stop plate 1-2-2, the sewage quickly enters the first water tank 1-2, when the water level of the first water tank 1-2 rises to a set height, the first floating seal 1-3-1 floats upwards, the first water tank 1-2 is communicated with the second water tank and the third water tank 1-6, and along with the sewage in the first water tank 1-2 flowing into the first water tank 1-1 from the upper part of the first tank body 1-1, the first floating body 1-1-2 in the first tank body 1-1 is driven by water buoyancy to drive the sealing plates 1-7-4 of each stage to gradually move upwards, so that the first water outlets 1-7-5 on the even-number standard layers and the first water outlets 1-7-5 on the first water tank 1-2 are opened; along with the reduction of the sewage in the first water tank 1-2, the first tank body 1-1 discharges water into the first water tank 1-2 through the first tank body water outlet 1-1-3, the water level in the first tank body 1-1 is reduced, and the first floating body 1-1-2 moves downwards until the first water outlet 1-7-5 on the even number standard layer is completely sealed.
The water discharging efficiency is improved through the second water discharging ports 1-6-2 of the even standard layer and the odd standard layer, and the second water discharging assembly controls the opening and closing of the second water discharging ports 1-6-2. Before the sewage in the even standard layer or the odd standard layer of the upper stage does not flow into the second box bodies 1-5-3, the sewage in the even standard layer and the odd standard layer can flow into the next stage to the maximum extent.
The utility model discloses all through support fixed connection between well water tank and standard layer and the adjacent standard layer, not further inject to the structure of support and concrete mounted position, do not belong to the utility model discloses a point, only need realize the fixed connection between water tank and standard layer and the adjacent standard layer can.
In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the scope of the present invention.
If the terms "first," "second," etc. are used herein to define parts, those skilled in the art will recognize that: the use of "first" and "second" is merely for convenience in describing the invention and to simplify the description, and the words are not intended to have a special meaning unless otherwise stated.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art will understand that: it is to be understood that modifications may be made to the above-described arrangements in the embodiments or equivalents may be substituted for some of the features of the embodiments, but such modifications or substitutions do not depart from the spirit and scope of the present invention.
Claims (10)
1. A potential energy biological sewage purifier comprises an upper water tank component and a standard layer connected with the lower part of the upper water tank component, wherein the multi-stage standard layer is divided into an even standard layer and an odd standard layer, and the potential energy biological sewage purifier is characterized in that the upper water tank component comprises an upper water tank, a first water-stop plate and a second water-stop plate are sequentially arranged in the upper water tank from left to right to divide the upper water tank into a first water tank, a second water tank and a third water tank, the first water-stop plate is higher than the second water-stop plate, a first water inlet tank component and a third water inlet tank component are respectively arranged in the second water tank and are used for realizing communication among the first water tank, the second water tank and the third water tank, an even layer floating tank component is arranged in the first water tank and is used for controlling the water discharge of a first water outlet on the even standard layer of each stage, and an odd layer floating tank component is arranged in the third water tank, the water outlet control device is used for controlling the water discharge of the first water outlet arranged on the odd standard layer.
2. The potential energy biological sewage purifier of claim 1 wherein the first water tank assembly comprises a first water inlet tank and a first floating seal, the first water inlet tank is fixedly connected to the second water tank, the side portion of the first water inlet tank is communicated with the first stage partition plate, the upper portion of the first water inlet tank is provided with a track hole, a shaft rod of the first floating seal is movably connected to the track hole, the periphery of the track hole is provided with a water inlet of the first water inlet tank, and the first floating seal is positioned above the water inlet of the first water inlet tank.
3. The potential energy biological sewage purifier of claim 2 wherein the third water inlet tank assembly comprises a third water inlet tank and a third floating seal, the third water inlet tank is fixedly connected in the second water tank, the side of the third water inlet tank is communicated with the second stage partition plate, a rail hole is formed in the upper portion of the third water inlet tank, a shaft rod of the third floating seal is movably connected in the rail hole, a water inlet of the third water inlet tank is formed in the periphery of the rail hole, and the third floating seal is positioned above the water inlet of the third water inlet tank.
4. The potential energy biological sewage purifier of claim 3 wherein the odd-numbered buoyancy tank assembly comprises a third buoyancy tank and a pull rod fixedly connected to the bottom of the third buoyancy tank, the pull rod passes through the multi-level standard layers, the pull rod is uniformly distributed with multi-level sealing plates, and the sealing plates are located at the first water outlets on the odd-numbered standard layers of each level;
the bottom of third flotation tank is equipped with inlet tube and the superficial subassembly of third control respectively, and the bottom fixedly connected with landing leg of third flotation tank.
5. The potential energy biological sewage purifier of claim 4 wherein the third control float assembly comprises a third control float and a track hole formed in the bottom of the third float tank, a third float tank drain outlet is formed in the periphery of the track hole, and a shaft lever of the third control float is movably connected in the third float tank drain outlet.
6. The potential energy biological sewage purifier of claim 1 wherein the even number of layers of buoyancy modules comprises a first tank body and a first float arranged in the first tank body, the first float is fixedly connected with a pull rod, the pull rod respectively passes through a plurality of stages of standard layers, a plurality of stages of sealing plates are uniformly distributed on the pull rod, the sealing plate of the first stage is positioned above the first water outlet on the first tank body, and the rest of the sealing plates are correspondingly positioned above the first water outlets belonging to the even number of standard layers.
7. The potential energy biological sewage purifier of claim 6 wherein the lower portion of the first tank is provided with a first tank water outlet, the periphery of the first tank water outlet is fixedly connected with a bracket, a first sealing ball is arranged in the bracket and positioned below the first tank water outlet, and the first sealing ball is connected with a water outlet float through a connecting rod.
8. The potential energy biological sewage purifier of any one of claims 1-7 wherein the standard layer and the third tank are provided at their bottoms with second water discharge ports, the second water discharge ports and the first water discharge ports are respectively located at both ends of the standard layer, and the first water discharge ports and the second water discharge ports are staggered left and right between the even standard layer and the odd standard layer adjacent to each other up and down;
and a second water discharging assembly is arranged on the second water discharging port.
9. The potential energy biological sewage purifier of claim 8 wherein the second water discharging assembly comprises a connecting rod, one end of the connecting rod is fixedly connected with a second sealing ball, the second sealing ball is positioned at the upper part of the second water discharging port, and the other end of the connecting rod is fixedly connected with a second floating body;
the middle part of the connecting rod is hinged with the second-stage partition plate, two ends of the connecting rod are respectively positioned at two sides of the second-stage partition plate, and a second floating body connected with the other end of the connecting rod is positioned in the second water tank;
the even number standard layer and the odd number standard layer are internally and fixedly connected with second boxes with upward openings, the second boxes are respectively positioned below the first water outlets, the lower part of one side of each second box is provided with a water outlet, two sides of each second box are respectively hinged with a connecting rod, a second sealing ball connected with one end of each connecting rod is positioned on the upper part of a second water outlet, and a second floating body connected with the other end of each connecting rod is positioned in a second water outlet assembly and positioned in a second box.
10. The potential energy biological sewage purifier of claim 3 wherein the thickness of the third floating seal is greater than the thickness of the first floating seal.
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| Publication number | Priority date | Publication date | Assignee | Title |
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| CN114873744A (en) * | 2022-06-30 | 2022-08-09 | 郑州碧兴环保科技有限公司 | Potential energy biological sewage purifier |
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| Publication number | Priority date | Publication date | Assignee | Title |
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| CN114873744A (en) * | 2022-06-30 | 2022-08-09 | 郑州碧兴环保科技有限公司 | Potential energy biological sewage purifier |
| CN114873744B (en) * | 2022-06-30 | 2025-05-06 | 郑州碧兴环保科技有限公司 | A potential energy biological sewage purifier |
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