CN119663940A - Recharging bin - Google Patents
Recharging bin Download PDFInfo
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- CN119663940A CN119663940A CN202510188444.0A CN202510188444A CN119663940A CN 119663940 A CN119663940 A CN 119663940A CN 202510188444 A CN202510188444 A CN 202510188444A CN 119663940 A CN119663940 A CN 119663940A
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- water
- tank body
- recharging
- filtering
- pipe
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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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- Aeration Devices For Treatment Of Activated Polluted Sludge (AREA)
Abstract
The invention relates to the technical field of groundwater treatment and provides a recharging bin, which comprises a filtering and exhausting mechanism, a secondary filtering mechanism, an aeration mechanism and a partition baffle plate, wherein the filtering and exhausting mechanism is arranged on the top of a recharging tank body, water is introduced into the recharging tank body after passing through the filtering and exhausting mechanism, the filtering and exhausting mechanism is used for filtering water and exhausting the water, the secondary filtering mechanism is fixedly arranged in the recharging tank body, the secondary filtering mechanism is used for filtering the water entering the recharging tank body, the aeration mechanism is fixedly arranged in the recharging tank body, the aeration mechanism is arranged below the secondary filtering mechanism, the aeration mechanism is used for aerating the water, the partition baffle plate is fixedly connected in the recharging tank body, and the partition baffle plate is arranged between the secondary filtering mechanism and the aeration mechanism.
Description
Technical Field
The invention relates to the technical field of groundwater treatment, in particular to a recharging bin.
Background
The recharging bin is a facility for recharging groundwater, and is generally used for controlling groundwater level, preventing ground subsidence, improving groundwater quality, etc., and can be realized by recharging surface water or treated water into the ground in the form of recharging well, recharging device, etc., to supplement groundwater reserve or improve groundwater quality, more importantly, during recharging water, the recharging bin can treat water, and the water quality of the recharging water source is optimized, the type of the recharging water source is increased through a water quality treatment technology, the quality of the recharging water is optimized for groundwater with too high salt content or other harmful substances, the quality of the groundwater can be gradually improved through recharging high-quality water, and the recharging bin can reinject the used geothermal water into the ground in the process of utilizing geothermal resources, so that the sustainable utilization of the geothermal resources is realized.
After the underground water is used daily, the water quantity of the underground water is reduced, a clean water source is injected into the underground water through a water pump during recharging, so that the water level of the underground water is increased, equipment matched with a recharging bin is needed to filter the water in a traditional recharging mode, the dissolved oxygen content of the water needs to be increased after the water is filtered so as to promote the growth and metabolism of aerobic microorganisms in the water, the decomposition and degradation of ammonia nitrogen and nitrate in sewage are accelerated, and an aeration device is used for injecting gas into the water so as to increase the dissolved oxygen quantity of the water.
Disclosure of Invention
The invention provides a recharging bin, which solves the problem that the filtering effect of the recharging bin on water can be affected when the existing recharging bin is inflated in water in the prior art.
The technical scheme of the invention is as follows:
the utility model provides a recharge storehouse, includes the recharging jar body, be provided with stabilizer blade and lug on the recharging jar body, stabilizer blade fixed connection is in the below of recharging jar body, lug fixed connection is in the upper portion of recharging jar body, still including filtering exhaust mechanism, secondary filter mechanism, aeration mechanism and subregion baffle, it is in to filter exhaust mechanism sets up on the top of recharging jar body, water passes through behind the filtration exhaust mechanism let in the recharging jar body, it is used for filtering water and filters to filter exhaust mechanism, secondary filter mechanism is fixed to be set up in the recharging jar body, secondary filter mechanism is used for entering into the water in the recharging jar body filters, aeration mechanism is fixed to be set up in the recharging jar body, aeration mechanism sets up secondary filter mechanism's below, aeration mechanism is used for inflating in the water, subregion baffle fixed connection is in the recharging jar body, subregion baffle sets up secondary filter mechanism with aeration mechanism is between.
The recharging tank body is provided with a tank body upper portion, a tank body lower portion, an inlet and a liquid outlet, a liquid inlet is formed in the tank body upper portion, the filtering and exhausting mechanism is fixedly connected with the liquid inlet, the secondary filtering mechanism is arranged in the tank body upper portion, the tank body lower portion is arranged below the tank body upper portion, the partition plate and the aeration mechanism are arranged in the tank body lower portion, the partition plate is arranged on one side, close to the tank body upper portion, of the tank body lower portion, the inlet is formed in the tank body upper portion and the tank body lower portion, and the liquid outlet is formed in the bottom of the tank body lower portion.
The filtering and exhausting mechanism comprises a conical barrel, a primary filtering component and an exhaust valve I, wherein the conical barrel is fixedly connected with the liquid inlet, the primary filtering component is arranged on the side of the conical barrel and used for filtering water for the first time, the exhaust valve I is fixedly arranged at the top of the conical barrel, the exhaust valve I is arranged at the center of the conical barrel and comprises a water supply pipe, a filtering barrel, a replacement opening and a replacement plug, the water supply pipe is connected with the conical barrel, the water supply pipe is fixedly connected with the side of the conical barrel, the water supply pipe is connected with an external water pipe, the filtering barrel is detachably arranged in the water supply pipe, the side of the filtering barrel is arranged in the conical barrel, the replacement opening is arranged on the water supply pipe, the replacement plug is detachably arranged in the replacement opening, and the replacement plug is detachably arranged on the filter barrel.
The secondary filtering mechanism comprises a fixing plate, a filtering tank body and a filtering material layer, wherein the fixing plate is fixedly connected to the upper portion of the tank body, the filtering tank body is detachably connected to the fixing plate, the filtering material layer is provided with a plurality of filtering material layers, and the filtering material layers are detachably connected to the filtering tank body.
The partition baffle sets up to the toper, partition baffle's central authorities are provided with the water pipe, the water pipe is in on the partition baffle to jar body upper portion direction is protruding, the water pipe stretches into fixedly connected with water diversion pipe on the one end of jar body lower part, a plurality of through-holes have been seted up to the side of water diversion pipe, fixedly connected with blast pipe on the partition baffle, the blast pipe sets up partition baffle's top, the blast pipe is in the side of water pipe is linked together, keep away from on the blast pipe the one end of partition baffle runs through jar body upper portion, the blast pipe stretches out be provided with discharge valve two on the one end of jar body upper portion.
The aeration mechanism comprises an aeration plate, water holes and an air injection component, wherein the aeration plate is fixedly connected to the lower portion of the tank body, the aeration plate is arranged between the partition plate and the liquid outlet, the water holes are formed in a plurality of positions, water is introduced Kong Kaishe to the aeration plate, the air injection component is arranged on the aeration plate and used for injecting air into water, the air injection component comprises a water cap, an air injection port, an air introducing ring and an air injection pipe, the water cap is arranged in an annular shape, the water cap is provided with a plurality of water caps which are respectively and fixedly connected to the water holes, the air injection port is formed in a plurality of positions, the air introducing ring is arranged on the water cap, the air introducing ring is respectively communicated with the water caps, the air injection pipe is communicated with the air introducing ring, and the air injection pipe penetrates through the lower portion of the tank body.
The upper part of the tank body is provided with a first backflushing inlet and a first backflushing outlet, the first backflushing inlet is arranged below the first backflushing outlet, the lower part of the tank body is provided with a second backflushing inlet and a second backflushing outlet, and the second backflushing inlet is arranged below the second backflushing outlet.
The working principle and the beneficial effects of the invention are as follows:
1. According to the invention, through the arrangement of the conical barrel and the filter barrel, water is introduced into the conical barrel through the water supply pipe outside, the water is impacted into the filter barrel, the water enters the conical barrel through the filter barrel, large-particle impurities are filtered by the filter barrel, the filter barrel is arranged at the side of the conical barrel, the water rotates in the conical barrel by means of potential energy of movement after passing through the filter barrel, a vortex is formed to enter the upper part of the tank body through the liquid inlet, at the moment, gas in the water is separated from water when the water rotates along the inner wall of the conical barrel and is positioned in the center of the conical barrel, the pressure inside is gradually increased due to the fact that the water is continuously introduced into the recharging tank body, and the gas can leave the conical barrel through the exhaust valve when the air pressure is high, so that the gas can leave the conical barrel only after reaching a certain pressure, the gas can be kept in the conical barrel, and the water cannot be contacted with the exhaust valve;
2. According to the invention, the partition plate is arranged, water flows onto the partition plate after being filtered, the water moves to the lower part of the tank body through the water pipe with the raised center and enters the lower part of the tank body through the split pipe, redundant bubbles can float to the center of the partition plate to surround the water pipe when the aeration mechanism injects air into the water, and the bubbles can be prevented from entering the upper part of the tank body through the water pipe due to the arrangement of the through holes of the water pipe at the side, and gas gathered in the center of the partition plate can be discharged through the exhaust pipe and the exhaust valve II;
3. According to the invention, the water cap and the water through hole are arranged, when water passes through the water through hole, the air is injected into the water through the air injection hole on the water cap, so that the water with air moves towards the liquid outlet, the air in the water is separated for improving the filtering effect and protecting the filtering equipment when the water is filtered, and then the air is injected for increasing the content of dissolved oxygen in the water, and meanwhile, the air injection does not influence the filtering;
4. According to the invention, the filtering and exhausting mechanism is arranged, so that the water can be primarily filtered and the gas in the water can be removed under the condition of keeping the water flow rate, the aeration mechanism is arranged, the water can be fully injected, the gas needs to pass through the water through holes, but the gas needs to be contacted with the air bubble when passing through the water through holes, and the filtering at the upper part of the tank body and the gas injection at the lower part of the tank body can be prevented from being influenced mutually by the partition plate.
Drawings
The invention will be described in further detail with reference to the drawings and the detailed description.
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of another view angle structure of the whole of the present invention;
FIG. 3 is a schematic view of the internal cross-sectional structure of the cone-shaped cartridge of the present invention;
FIG. 4 is a schematic view of the upper part of the tank in the present invention, partially in section;
FIG. 5 is a schematic view of the structure of the lower part of the tank body in the present invention, partially cut away;
FIG. 6 is a schematic view of a partial structure of an aeration mechanism according to the present invention;
FIG. 7 is a schematic cross-sectional view of a recharging tank in accordance with the present invention.
The device comprises a supporting leg 1, a lifting lug 2, a partition baffle 3, a tank body upper part, a liquid inlet 5, a tank body lower part 6, a 7, an inlet, a 8, a liquid outlet 9, a conical cylinder 10, an exhaust valve I, a water supply pipe 11, a filter barrel 12, a filter barrel 13, a replacement port 14, a replacement plug 15, a fixing plate 16, a filter tank body 17, a filter material layer 18, a water supply pipe 19, a water distribution pipe 20, an exhaust pipe 21, an exhaust valve II, a 22, an aeration plate 23, a water supply hole 24, a water cap 25, a gas injection port 26, a ventilation ring 27, a gas injection pipe 28, a backflushing inlet I, a backflushing outlet 29, a backflushing outlet I, a backflushing inlet II, a backflushing outlet 31 and a backflushing outlet II.
Detailed Description
The technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the embodiments of the present invention, and it is apparent that the described embodiments are only some embodiments of the present invention, not all embodiments. All other embodiments, which can be made by one of ordinary skill in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Examples
As shown in fig. 1-7, this embodiment provides a recharging storehouse, including recharging jar body, be provided with stabilizer blade 1 and lug 2 on the recharging jar body, stabilizer blade 1 fixed connection is in the below of recharging jar body, lug 2 fixed connection is in the upper portion of recharging jar body, still including filtering exhaust mechanism, secondary filter mechanism, aeration mechanism and partition baffle 3, it sets up on the top of recharging jar body to filter exhaust mechanism, water lets in the recharging jar body after passing through filtering exhaust mechanism, it is used for filtering water and exhausting to filter exhaust mechanism, secondary filter mechanism is fixed to be set up in recharging jar body, secondary filter mechanism is used for filtering the water that enters into in the recharging jar body, aeration mechanism is fixed to be set up in recharging jar body, aeration mechanism is used for aerifing in the water, partition baffle 3 fixed connection is in recharging jar body, partition baffle 3 sets up between secondary filter mechanism and aeration mechanism, it is divided into two parts by partition baffle 3 to recharge jar body inside, water is filtered in the filtering mechanism's upper portion and filtering mechanism is carried out the filtering impurity in the filtering mechanism is more tiny when filtering the filtering mechanism is carried out to the filtering impurity in the filtering mechanism under the filtering portion of recharging jar body.
As shown in fig. 1-5, the recharging tank body is provided with a tank body upper portion 4, a tank body lower portion 6, an inlet 7 and a liquid outlet 8, the tank body upper portion 4 is provided with a liquid inlet 5, a filtering and exhausting mechanism is fixedly connected with the liquid inlet 5, a secondary filtering mechanism is arranged in the tank body upper portion 4, the tank body lower portion 6 is arranged below the tank body upper portion 4, the partition plate 3 and the aeration mechanism are arranged in the tank body lower portion 6, the partition plate 3 is arranged on one side, close to the tank body upper portion 4, of the tank body lower portion 6, the inlet 7 is formed in the tank body upper portion 4 and the tank body lower portion 6, the liquid outlet 8 is formed in the bottom of the tank body lower portion 6, the inlet 7 is large, the interior of the recharging tank body needs to be cleaned and maintained through the inlet 7, the tank body upper portion 4 and the tank body lower portion 6 are integrated, the interior is divided into two parts through the partition plate 3, the partition plate 3 is separated, the water in the tank body upper portion 4 moves towards the tank body lower portion 6 through the partition plate 3, the tank body lower portion 6 can not be replaced through the inlet 7, and the filter material can be filled into the tank body lower portion 17, and the other people can not need to be maintained, and the people can be in the position of the recharging tank body can be kept through the inlet 17.
As shown in fig. 1-4, the filtering and exhausting mechanism comprises a conical cylinder 9, a primary filtering component and an exhaust valve I10, wherein the conical cylinder 9 is fixedly connected with the liquid inlet 5, the primary filtering component is arranged at the side of the conical cylinder 9, the primary filtering component is used for filtering water for the first time, the exhaust valve I10 is fixedly arranged at the top of the conical cylinder 9, the exhaust valve I10 is arranged at the center of the conical cylinder 9, the primary filtering component comprises a water supply pipe 11, a filtering barrel 12, a replacement opening 13 and a replacement plug 14, the water supply pipe 11 is connected with the conical cylinder 9, the water supply pipe 11 is fixedly connected at the side of the conical cylinder 9, the water supply pipe 11 is connected with an external water pipe, the filtering barrel 12 is detachably arranged in the water supply pipe 11, the side of the filtering barrel 12 is positioned in the conical cylinder 9, the replacement opening 13 is arranged on the water supply pipe 11, the replacement plug 14 is detachably arranged in the replacement opening 13, the filter barrel 12 can be disassembled after the replacement plug 14 is disassembled, water is introduced into the conical barrel 9 through the water supply pipe 11 outside, the water is impacted into the filter barrel 12, the water enters the conical barrel 9 through the filter barrel 12, large-particle impurities are filtered by the filter barrel 12, the filter barrel 12 is arranged at the side of the conical barrel 9, the water rotates in the conical barrel 9 by means of the potential energy of movement after passing through the filter barrel 12, a vortex is formed to enter the upper part 4 of the tank body through the liquid inlet 5, at the moment, gas in the water can be separated from water when the water rotates along the inner wall of the conical barrel 9 and is positioned in the center of the conical barrel 9, the pressure inside is gradually increased due to the fact that the water is continuously introduced into the recharging tank body, the gas can leave the conical barrel 9 through the exhaust valve 10 when the pressure is high, the gas can leave the conical barrel to ensure that the gas can leave the conical barrel after reaching a certain pressure, the water does not contact the first exhaust valve 10.
As shown in fig. 4 and 7, the secondary filtering mechanism includes a fixed plate 15, a filtering tank 16 and a filtering material layer 17, the fixed plate 15 is fixedly connected in the upper tank portion 4, the filtering tank 16 is fixedly connected on the fixed plate 15, a detachable through hole plate is arranged at the bottom of the filtering tank 16, the filtering material layer 17 inside the filtering tank is convenient to replace after the through hole plate is detached, the filtering material layer 17 is provided with a plurality of filtering material layers 17, the filtering material layer 17 is detachably connected in the filtering tank 16, natural material filtering materials are arranged in the filtering material layer 17, water is filtered through the filtering material layer, water enters the upper tank portion 4 after passing through the conical cylinder 9, the water is filtered through the filtering material layer 17, the filtered water flows downwards, natural materials such as activated carbon and quartz sand are used in a matching manner through the water pipe 18, and different combinations can play different roles, on one hand, the cleaning degree of the water which is recycled underground is ensured, on the other hand, the natural filtering material can simulate the filtering mode of the underground is more suitable for the recycling of underground water.
As shown in fig. 4-7, the partition plate 3 is tapered, the water pipe 18 is arranged in the center of the partition plate 3 and protrudes towards the upper part 4 of the tank body, the water pipe 18 is fixedly connected with the water diversion pipe 19 at one end of the partition plate 3, the water diversion pipe 19 is provided with a plurality of through holes at the side, the partition plate 3 is fixedly connected with the exhaust pipe 20, the exhaust pipe 20 is arranged above the partition plate 3, the exhaust pipe 20 is communicated with the water diversion pipe 18 at the side, one end of the exhaust pipe 20, which is far away from the partition plate 3, penetrates through the upper part 4 of the tank body, the exhaust pipe 20 is provided with the exhaust valve two 21 at one end, which protrudes out of the upper part 4 of the tank body, water flows onto the partition plate 3 after being filtered, the water moves towards the lower part 6 of the tank body through the water pipe 18 protruding in the center, and enters the lower part 6 of the tank body through the water diversion pipe, redundant bubbles can go up to the center of the partition plate 3 when the aeration mechanism is used for injecting air, and the water can be prevented from entering the upper part of the water diversion pipe 18 around the center of the partition plate 3, and the water diversion pipe 20 is arranged at the side, the end of the water diversion pipe 20 is communicated with the side, the end of the exhaust pipe 20 is prevented from entering the upper part of the partition plate 4 through the water diversion pipe 20, and the exhaust pipe 21 can be floated through the exhaust valve 21.
As shown in fig. 5-7, the aeration mechanism comprises an aeration plate 22, water holes 23 and an air injection component, the aeration plate 22 is fixedly connected in the lower part 6 of the tank body, the aeration plate 22 is arranged between the partition plate 3 and the liquid outlet 8, the water holes 23 are formed in a plurality of, the air injection component is arranged on the aeration plate 22, the air injection component is used for injecting air into water, the air injection component comprises a water cap 24, an air injection port 25, an air ring 26 and an air injection pipe 27, the water cap 24 is annular, the water cap 24 is provided with a plurality of water caps 24, the water caps 24 are respectively and fixedly connected in the water holes 23, the air injection port 25 is provided with a plurality of air injection rings 26, the air injection rings 26 are respectively communicated with the water caps 24, the air injection pipes 27 are communicated with the air injection rings 26, the air injection pipes 27 penetrate through the lower part 6 of the tank body, and the air injection rings 27 are fed into the air injection rings 26 through the air injection pipes 27, and the air injection rings 24 are enabled to be filtered by the air injection rings, and the air rings 24 are enabled to be not to be dissolved in the water through the water caps 24, and the air injection rings 24 are enabled to be filtered when the air is filtered, and the water is not filtered, and the water is enabled to pass through the air holes 24, and the water caps are enabled to be filtered, and the water is enabled to be filtered to be in the water and the water is not to be dissolved.
As shown in figure 2, a first backflushing inlet 28 and a first backflushing outlet 29 are formed in the upper part 4 of the tank body, the first backflushing inlet 28 is arranged below the first backflushing outlet 29, a second backflushing inlet 30 and a second backflushing outlet 31 are formed in the lower part 6 of the tank body, the second backflushing inlet 30 is arranged below the second backflushing outlet 31, backflushing equipment is arranged in matched equipment of the recharging bin, a water outlet pipe on the backflushing equipment is connected with the first backflushing inlet and the second backflushing inlet, a water return pipe on the backflushing equipment is connected with the first backflushing outlet 29 and the second backflushing outlet 31, when the recharging bin needs to be cleaned in the tank body after the service time, the backflushing equipment firstly passes through the second backflushing inlet 30 to the lower part 6 of the tank body, water reversely passes through the water through the through holes 23 to clean the aeration plate 22 and the water through holes 23, water flows upwards in the lower part of the tank body, after the cleaning of the lower part of the tank body is filled with water through the first backflushing inlet 28 to the upper part 4, and after the water is flushed layer 17 flows into the lower part of the tank body 17, and the filter material layer 17 is not backflushed to flow out of the lower part of the tank body, and the filter material layer 17 is cleaned.
When in actual use, the plurality of recharging cabins can be connected in series, the liquid outlet 8 on the recharging tank bodies connected in series is communicated with the water supply pipe 11, different effects can be achieved in the water filtering process by matching filter materials in the plurality of recharging tank bodies, organic matters in water can be removed in the water quality treatment process by using a aerobic nitrification mode, and the anaerobic denitrification process can be carried out by adjusting the recharging tank bodies connected in series subsequently to remove ammonia nitrogen and nitrate in the water.
In this embodiment, water is impacted into the filter barrel 12 through the water supply pipe 11, the water rotates in the conical barrel 9 after being filtered, gas in the water is discharged through the first exhaust valve 10, the water enters the upper part 4 of the tank body through the liquid inlet 5, the filtered water passing through the filter material layer 17 enters the lower part 6 of the tank body through the water supply pipe 18 and the water distribution pipe 19, the gas is injected into the ventilation ring 26 through the gas injection pipe 27, the gas is injected into the water cap 24, when the water passes through the water supply hole 23, the gas in the water cap 24 is injected into the water through the gas injection port 25, the water containing bubbles moves to the liquid outlet 8 through the water supply hole 23 for recharging, the redundant gas flowing out of the gas injection port 25 moves upwards and is collected in the center of the partition plate 3, and the exhaust pipe 20 and the second exhaust valve are discharged after the water passes through the water supply hole 23.
Examples
The upper part of the recharging tank body can be sequentially provided with the secondary filtering mechanism and the aeration mechanism from top to bottom, then the upper side of the upper part of the tank body is provided with the exhaust pipe 20, the lower part of the tank body is sequentially provided with the secondary filtering mechanism and the aeration mechanism from top to bottom, water passing through the upper part 4 of the tank body is sequentially filtered and aerated, the upper part 4 of the tank body, the lower part 6 of the tank body and the partition plate 3 are separated, different filtering materials can be arranged in the filtering material layers 17 of the upper secondary filtering mechanism and the lower secondary filtering mechanism to achieve different sequential filtering effects, and then the filtering is performed for multiple times and pertinently according to the water.
The foregoing description of the preferred embodiments of the invention is not intended to be limiting, but rather is intended to cover all modifications, equivalents, alternatives, and improvements that fall within the spirit and scope of the invention.
Claims (9)
1. The utility model provides a recharge storehouse, includes the recharging jar body, be provided with stabilizer blade (1) and lug (2) on the recharging jar body, stabilizer blade (1) fixed connection is in the below of recharging jar body, lug (2) fixed connection is in the upper portion of recharging jar body, its characterized in that still includes:
The filtering and exhausting mechanism is arranged on the top of the recharging tank body, water is introduced into the recharging tank body after passing through the filtering and exhausting mechanism, and the filtering and exhausting mechanism is used for filtering and exhausting the water;
The secondary filtering mechanism is fixedly arranged in the recharging tank body and is used for filtering water entering the recharging tank body;
the aeration mechanism is fixedly arranged in the recharging tank body, is arranged below the secondary filtering mechanism and is used for aerating water;
The partition plate (3), partition plate (3) fixed connection is in the recharging jar body, partition plate (3) set up secondary filtering mechanism with between the aeration mechanism.
2. The recharging bin of claim 1, wherein the recharging tank body is provided with:
The upper part (4) of the tank body, the upper part (4) of the tank body is provided with a liquid inlet (5), the filtering and exhausting mechanism is fixedly connected with the liquid inlet (5), and the secondary filtering mechanism is arranged in the upper part (4) of the tank body;
The tank body lower part (6), the tank body lower part (6) is arranged below the tank body upper part (4), the partition baffle plate (3) and the aeration mechanism are arranged in the tank body lower part (6), and the partition baffle plate (3) is arranged on one side, close to the tank body upper part (4), of the tank body lower part (6);
an inlet (7), wherein the inlet (7) is formed in both the upper part (4) of the tank body and the lower part (6) of the tank body;
the liquid outlet (8), the liquid outlet (8) is arranged at the bottom of the lower part (6) of the tank body.
3. A recharging cartridge according to claim 2, wherein the filter exhaust mechanism comprises:
the conical cylinder (9), the conical cylinder (9) is fixedly connected with the liquid inlet (5);
A primary filter assembly arranged laterally of the cone (9) for a first filtering of the water;
the first exhaust valve (10) is fixedly arranged at the top of the conical cylinder (9), and the first exhaust valve (10) is arranged in the center of the conical cylinder (9).
4. A recharging cartridge according to claim 3, wherein the primary filter assembly comprises:
The water supply pipe (11), the water supply pipe (11) is connected with the conical cylinder (9), the water supply pipe (11) is fixedly connected to the side of the conical cylinder (9), and the water supply pipe (11) is connected with an external water pipe;
the filter vat (12) is detachably arranged in the water supply pipe (11), and the side of the filter vat (12) is positioned in the conical barrel (9);
A replacement port (13), wherein the replacement port (13) is arranged on the water supply pipe (11);
The replacement plug (14), the replacement plug (14) is detachably installed in the replacement port (13), and the filter vat (12) can be detached from the replacement plug (14) detachment port.
5. The recharging cartridge of claim 4, wherein the secondary filtering mechanism comprises:
the fixed plate (15), the fixed plate (15) is fixedly connected in the upper part (4) of the tank body;
The filtering tank body (16), the filtering tank body (16) is detachably connected to the fixed plate (15);
The filter material layers (17), the filter material layers (17) are provided with a plurality of, a plurality of the filter material layers (17) are detachably connected in the filter tank body (16), and natural material filter materials are arranged in the filter material layers (17).
6. The recharging bin according to claim 5, wherein the partition plate (3) is provided with a conical shape, a water pipe (18) is arranged in the center of the partition plate (3), the water pipe (18) is arranged on the partition plate (3) and protrudes towards the upper part (4) of the tank body, a water diversion pipe (19) is fixedly connected to one end of the lower part (6) of the tank body, a plurality of through holes are formed in the side of the water diversion pipe (19), an exhaust pipe (20) is fixedly connected to the partition plate (3), the exhaust pipe (20) is arranged above the partition plate (3), the exhaust pipe (20) is communicated with the side of the water pipe (18), one end, far away from the partition plate (3), of the exhaust pipe (20) penetrates through the upper part (4) of the tank body, and an exhaust valve (21) is arranged at one end, extending out of the upper part (4) of the tank body, of the exhaust pipe (20).
7. A recharging cartridge according to claim 6, wherein the aeration mechanism comprises:
The aeration plate (22) is fixedly connected to the lower part (6) of the tank body, and the aeration plate (22) is arranged between the partition plate (3) and the liquid outlet (8);
The water through holes (23) are formed in a plurality of mode, and the water through holes (23) are formed in the aeration plate (22);
and the air injection assembly is arranged on the aeration plate (22) and is used for injecting air into water.
8. The recharging cartridge of claim 7, wherein the gas injection assembly comprises:
the water caps (24) are arranged in a ring shape, a plurality of water caps (24) are arranged, and the water caps (24) are respectively and fixedly connected to the water through holes (23);
the air injection ports (25) are arranged, the plurality of air injection ports (25) are formed in the water cap (24) in a circumferential manner;
a plurality of ventilation rings (26), wherein the ventilation rings (26) are arranged, and the ventilation rings (26) are respectively communicated with the water caps (24);
And the air injection pipe (27) is communicated with a plurality of ventilation rings (26), and the air injection pipe (27) penetrates through the lower part (6) of the tank body.
9. The recharging bin according to claim 8, wherein a first backflushing inlet (28) and a first backflushing outlet (29) are formed in the upper portion (4) of the tank body, the first backflushing inlet (28) is arranged below the first backflushing outlet (29), a second backflushing inlet (30) and a second backflushing outlet (31) are formed in the lower portion (6) of the tank body, and the second backflushing inlet (30) is arranged below the second backflushing outlet (31).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202510188444.0A CN119663940B (en) | 2025-02-20 | 2025-02-20 | A refilling tank |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202510188444.0A CN119663940B (en) | 2025-02-20 | 2025-02-20 | A refilling tank |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| CN119663940A true CN119663940A (en) | 2025-03-21 |
| CN119663940B CN119663940B (en) | 2025-05-27 |
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| CN213141534U (en) * | 2020-08-28 | 2021-05-07 | 中科佳洁(北京)水处理设备有限公司 | Energy-saving aeration filter equipment |
| CN213596102U (en) * | 2020-07-15 | 2021-07-02 | 长沙工研院环保有限公司 | Leachate treatment tank for anaerobic coupling ozone microbubbles |
| CN116139558A (en) * | 2023-01-30 | 2023-05-23 | 济南山源环保科技有限公司 | Wastewater treatment system with uniform water distribution and filtering speed |
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| US20080264840A1 (en) * | 2004-06-15 | 2008-10-30 | Ecodays Co., Ltd. | Fluids Fluxion Method and Plant for Wastewater Treatment |
| CN203558933U (en) * | 2013-11-08 | 2014-04-23 | 山东建筑大学 | Water algae removal device |
| CN108905476A (en) * | 2018-08-20 | 2018-11-30 | 通用空气(深圳)有限公司 | A kind of industrial premises gas filtration purification system |
| CN109481985A (en) * | 2018-11-15 | 2019-03-19 | 贵州万峰湖智慧水产科技有限公司 | A kind of mechanical filter |
| CN212491733U (en) * | 2020-05-11 | 2021-02-09 | 四川悦承环保节能科技有限公司 | Multi-medium filtering equipment |
| CN213596102U (en) * | 2020-07-15 | 2021-07-02 | 长沙工研院环保有限公司 | Leachate treatment tank for anaerobic coupling ozone microbubbles |
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| CN119663940B (en) | 2025-05-27 |
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