CN214399957U - Micro-power water body purifying equipment - Google Patents

Micro-power water body purifying equipment Download PDF

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Publication number
CN214399957U
CN214399957U CN202022767690.7U CN202022767690U CN214399957U CN 214399957 U CN214399957 U CN 214399957U CN 202022767690 U CN202022767690 U CN 202022767690U CN 214399957 U CN214399957 U CN 214399957U
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bubble
net
limiting
thick bamboo
air pump
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陈斌
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Zhejiang Hongyu Environmental Protection Technology Co ltd
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Zhejiang Hongyu Environmental Protection Technology Co ltd
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    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W10/00Technologies for wastewater treatment
    • Y02W10/10Biological treatment of water, waste water, or sewage

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Abstract

The utility model discloses a micro-power water clarification plant, it includes a net section of thick bamboo and air pump, be equipped with a plurality of microbial carrier in the net section of thick bamboo, be equipped with the feed inlet on the lateral wall of a net section of thick bamboo, be equipped with the door plant on the feed inlet, one side and the net section of thick bamboo of door plant are articulated, the opposite side and the net section of thick bamboo of door plant can be dismantled and be connected, be equipped with the conveyer pipe on the output of air pump, the one end and the air pump of conveyer pipe can be dismantled and be connected, the bottom of a net section of thick bamboo is equipped with aeration equipment, the other end and the aeration equipment of conveyer pipe can be dismantled and be connected, the conveyer pipe is linked together through aeration equipment and the inside of a net section of thick bamboo. The utility model has the advantages that: the purification effect is good.

Description

Micro-power water body purifying equipment
Technical Field
The utility model relates to a water purifies relevant technical field, especially indicates a little power water clarification plant.
Background
Under the conditions that national economy is rapidly increased and the living standard of the people is remarkably improved, environmental protection work is greatly improved through continuous efforts, but the situation of severe water environment is not fundamentally changed on the whole. The method mainly has the advantages that the pollutant discharge amount exceeds the bearing capacity of water environment, the river water pollution, the lake eutrophication, the ecological damage is serious, the biodiversity is reduced, the function of an ecological system is degraded, the economic and social development is restricted, the health of people is harmed, and the social and environmental safety is influenced. The ecological restoration of the water body is not slow at all.
The water body restoration is to restore and restore a degraded or damaged water ecosystem by a series of measures, basically reaches or exceeds the original level, and keeps the water ecosystem stable for a long time.
The water body restoration technology can be generally divided into a physical restoration technology, a chemical restoration technology and an aquatic plant restoration technology. At present, the research and application generally take a water body biological remediation technology as a main part and take a water body physical remediation technology and a water body chemical remediation technology as an auxiliary part.
Firstly, repairing by a physical method: water dilution and sediment dredging.
The diversion dilution is to dilute the polluted water body by engineering water diversion. The method can activate water flow, increase flow rate, increase DO in the water body, and correspondingly increase the number and types of aquatic microorganisms and plants, thereby achieving the purpose of purifying water quality. The sediment dredging refers to dredging and dredging the whole or local seriously-deposited river reach and lake to recover the normal functions of the river and the lake. The physical repair technology has the defects of temporality, instability, temporary solution, permanent solution and the like.
Second, chemical method
A method for removing the pollutants from water body by chemical method includes such steps as adding calcium lime to treat lake, and adding algicide to inhibit the mass reproduction of algae. Iron salt can be added for phosphorus removal, and the chemical purification method is mainly used for treating acidified lakes, and has the disadvantages of high treatment cost and easy secondary pollution due to the addition of chemical agents. The chemical repairing technology has the defects of high cost, easy secondary pollution and the like
Third, aquatic plant restoration
The technology is a technology for purifying water bodies by enriching, converting, absorbing and degrading pollutants in water bodies by utilizing life metabolic activities of cultured higher plants or cultured and inoculated microorganisms.
The aquatic plants are limited by weather conditions and need to be salvaged for a long time, and the like, and the later-period labor investment is large. If the operation and maintenance are improper in the later period, the aquatic plants die and decay, a new pollution source of the water body can be formed, and secondary pollution is caused.
SUMMERY OF THE UTILITY MODEL
The utility model provides a micro-power water body purification equipment with obvious water body purification and restoration effects, aiming at overcoming the defect that the water body purification and restoration effects are not obvious in the prior art.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a micro-power water clarification plant, it includes a net section of thick bamboo and air pump, be equipped with a plurality of microbial carrier in the net section of thick bamboo, be equipped with the feed inlet on the lateral wall of a net section of thick bamboo, be equipped with the door plant on the feed inlet, one side of door plant is articulated with a net section of thick bamboo, the opposite side and the net section of thick bamboo of door plant can be dismantled and be connected, be equipped with the conveyer pipe on the output of air pump, the one end and the air pump of conveyer pipe can be dismantled and be connected, the bottom of a net section of thick bamboo is equipped with aeration equipment, the other end and the aeration equipment of conveyer pipe can be dismantled and be connected, the conveyer pipe is linked together through aeration equipment and the inside of a net section of thick bamboo.
The novel air pump is characterized in that a plurality of microorganism carriers are arranged in the net barrel, a feed inlet is formed in the side wall of the net barrel, a door plate is arranged on the feed inlet, one side of the door plate is hinged to the net barrel, the other side of the door plate is detachably connected with the net barrel, a conveying pipe is arranged at the output end of the air pump, one end of the conveying pipe is detachably connected with the air pump, an aeration device is arranged at the bottom end of the net barrel, the other end of the conveying pipe is detachably connected with the aeration device, and the conveying pipe is communicated with the inside of the net barrel through the aeration device. The shape of the net barrel can be a cylinder, a cube, a cuboid or other irregular solid shapes; the air pump produces the aerobic bubble, the aerobic bubble passes through aeration equipment and constantly upwards emits from the bottom of a net section of thick bamboo, can disperse a plurality of microorganism carrier on the one hand, make the microorganism can be quick, long-term, effectual degradation aquatic pollutant, on the other hand can change the anaerobic environment of water into aerobic environment, and eliminate anaerobic microorganism gradually, the use of this device does not receive the influence of external environment such as seasonal change simultaneously, can use for a long time, water purification has been reached, the obvious purpose of repairing effect.
Preferably, the top of a net section of thick bamboo is equipped with the backup pad, the air pump is installed in the backup pad, be equipped with a plurality of solar panel, battery and dc-to-ac converter in the backup pad, the battery passes through the dc-to-ac converter and is connected with solar panel and air pump electricity respectively, solar panel's shape is triangle-shaped, the last mounting bracket that is equipped with of solar panel, solar panel passes through the mounting bracket and can dismantle with the backup pad and be connected, solar panel's base is close to the backup pad, and the backup pad is kept away from on a plurality of solar panel's top and draw close each other and constitute the spatial structure of a pyramid type, air pump, battery and dc-to-ac converter all are located the pyramid type structure that a plurality of solar panel constitute. When the density of the supporting plate is smaller than that of water, the supporting plate can enable the whole device to float on the water surface, when a plurality of purifying devices are placed in one water pool, under the influence of the external environment, the purifying devices are likely to be converged together to cause unbalanced purification of the water pool, and at the moment, the purifying devices can be uniformly distributed in the water pool in a mode of fixing the purifying devices by two connecting rods; or the bottom of the net cylinder is provided with a plurality of uniformly distributed upright posts which are fixed at the bottom of the water pool, so that the plurality of purifying devices are prevented from being gathered together due to position deviation caused by the influence of the external environment, and at the moment, the supporting plate is ensured to be exposed out of the water surface, so that the safety performance of the solar panel, the air pump, the storage battery and the inverter is ensured; the air pump can be directly connected with an external circuit through a power line for electrifying, and can also absorb solar energy through the solar panel, store the solar energy on the storage battery through the inverter, and then convert the storage battery into voltage which can be used by the air pump through the inverter, thereby achieving the effect of energy conservation; because the sun revolves around the earth all the time, the design is favorable for the solar panel to absorb solar energy from morning to evening, and the absorption efficiency of the solar panel is improved.
As another preferred, be equipped with the motor in the backup pad, the output of motor and solar panel's bottom surface fixed connection, solar panel's top surface is equipped with solar sensor, solar panel's bottom surface and backup pad constitute the acute angle. Based on the above principle, the utility model also provides another kind of scheme, when the sun rotated a position, if sunshine received and sheltered from, solar sensor on the solar panel can not accept shining of sunshine, solar sensor gives control system with signal transmission this moment, it is rotatory to make solar sensor can accept shining of sunshine once more to drive the solar panel by control system control motor, and transmission signal is in control system, stop rotatory by control system control motor, so that solar panel can trail the sun constantly with this relapse, solar panel's absorption efficiency has been improved.
Preferably, be equipped with a plurality of stirrups on the bottom lateral wall of a net section of thick bamboo, the left and right sides of stirrup all is equipped with otic placode one, be equipped with the through-hole on the otic placode one, the left and right sides of net section of thick bamboo bottom all is equipped with otic placode two corresponding with otic placode position, be equipped with on the otic placode two with the spacing pipe of through-hole assorted, be equipped with stop gear on the spacing pipe. The design is favorable for adjusting the length of the net cylinder according to the depth of the water pool, improves the purification effect of the water pool, and has wide application range; when folding bottom the net section of thick bamboo, the through-hole on the otic placode is spacing through stop gear with spacing pipe phase-match on the otic placode two, reasonable in design.
Preferably, the side wall of the net barrel between two adjacent stirrups is of a net structure formed by weaving soft ropes. When the net barrel is adjusted in the length direction, the folding or the extension of the bottom of the net barrel is facilitated, and meanwhile, the through hole in the first lug plate is matched with the limiting pipe in the second lug plate in the folding process, so that the design is reasonable.
Preferably, one end of the limiting pipe is fixedly connected with the second lug plate, the other end of the limiting pipe is provided with two U-shaped grooves, one U-shaped groove is positioned on one side of the limiting pipe, the other U-shaped groove is positioned on the other side corresponding to the limiting pipe, the limiting mechanism is positioned in the limiting pipe and comprises a first cylinder body, a second cylinder body, a shaft body and a limiting rod, one end of the first cylinder body is fixedly connected with the second lug plate, the other end of the first cylinder body is connected with one end of the second cylinder body in a vertical sliding mode, the other end of the second cylinder body is provided with a positioning lug and is rotatably connected with one end of the shaft body, a spring is arranged on the positioning lug, the first cylinder body and the second cylinder body are both positioned in the spring, one end of the spring is connected with the positioning lug, the other end of the spring is connected with the second lug plate, the other end of the shaft body is rotatably connected with the side wall of the limiting rod, and one end of the limiting rod is positioned outside the limiting pipe, and a limiting plate is arranged on the inner side wall of the limiting pipe, the limiting plate is positioned on the side surface of the U-shaped groove, and the other end of the limiting rod is positioned on the limiting plate. When the bottom of a net section of thick bamboo is in under the expansion state, the one end of gag lever post is located spacing outside of tubes, the other end of gag lever post is located spacing intraductal limiting plate, when this kind of slope design of gag lever post does benefit to folding, the otic placode can be through the through-hole from last down the cover on spacing pipe, the folding back operator hand of accomplishing of being convenient for simultaneously gets the gag lever post and pull it up, then make its both ends down along U type groove and down through spring chucking otic placode one with the certain angle of gag lever post rotation under the drive of axis body, realize spacing after the folding of net section of thick bamboo bottom, and reasonable design, and is easy to operate.
Preferably, the width of the U-shaped groove is larger than the outer diameter of the limiting rod. The design is convenient for the gag lever post can slide from top to bottom along U type groove, reasonable in design.
Preferably, the aeration device is positioned in the net barrel, the aeration device is provided with a pull rod, and the length direction of the pull rod is parallel to the height direction of the net barrel. The design is convenient for an operator to directly take out the aeration device from the net barrel through the pull rod, and the maintenance of the aeration device is convenient.
Preferably, the aeration device comprises a bubble box, a plurality of bubble holes are formed in the top of the bubble box, the conveying pipe penetrates through the bottom center of the bubble box and is communicated with the inside of the net cylinder through the bubble holes, and the air pump is detachably connected with the bottom center of the bubble box through the conveying pipe. The air pump produces the aerobic bubble, carries to the bubble chamber in through the conveyer pipe to scurry upwards from the bottom of net section of thick bamboo through the bubble hole, so that the microorganism carrier dispersion in the net section of thick bamboo is in aqueous and adsorb nitrogen phosphorus more high-efficiently, improves purifying effect.
Preferably, the top center of the bubble box is sealed, a plurality of bubble holes are uniformly distributed in a radial shape by taking the top center of the bubble box as the center, one end of each bubble hole is close to the center of the bubble box, the other end of each bubble hole is far away from the center of the bubble box, the width of one end, close to the center of the bubble box, of each bubble hole is smaller than that of the other end of each bubble hole, and an isolation net covers each bubble hole. The design is favorable for preventing the aerobic bubbles from directly jumping from the top center of the bubble box to the net drum, and simultaneously, the aerobic bubbles are favorably and uniformly dispersed, thereby improving the dispersion degree of the microorganism carrier; the separation net is favorable for preventing the microorganism carrier from entering the bubble box through the bubble holes.
As another preference, the distribution density of the plurality of bubble holes increases from the top center of the bubble box to the top edge of the bubble box. The utility model also provides another kind of scheme, make the aerobic bubble can the homodisperse to the net section of thick bamboo in through the distribution of the tiny bleb hole of a plurality of to improve the dispersion degree of microorganism carrier.
The utility model has the advantages that: the microorganism carrier adsorbs nitrogen and phosphorus elements to reduce black and odorous water and gradually eliminate anaerobic microorganisms, and meanwhile, the device is not influenced by external environments such as seasonal variation and the like, can be used for a long time and has good purification effect; the energy-saving effect is achieved; the net barrel can adjust the length according to the depth of the water pool, so that the purifying effect of the water pool is improved, and the application range is wide.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a schematic view of the bottom of the net drum in an unfolded state;
figure 3 is a diagram of another embodiment of a solar panel;
FIG. 4 is an enlarged view at A of FIG. 1;
FIG. 5 is an enlarged view at B in FIG. 2;
FIG. 6 is a top view of the spacing mechanism of FIG. 5;
FIG. 7 is a view showing an embodiment in which a plurality of purification apparatuses are fixed to each other by connecting rods;
FIG. 8 is a view showing an embodiment in which a column is provided at the bottom of the bubble box;
fig. 9 is a view showing an embodiment in which an air pump, a storage battery, and an inverter are installed in a waterproof case;
fig. 10 is a view showing an embodiment in which the aeration apparatus is installed in a mesh cylinder.
In the figure: 1. the solar water heater comprises a net cylinder, 2. a microorganism carrier, 3. a motor, 4. a door plate, 5. a supporting plate, 6. a solar panel, 7. a conveying pipe, 8. a solar sensor, 9. a waterproof box, 10. an upright post, 11. a connecting rod, 12. a stirrup, 13. a first lug plate, 14. a through hole, 15. a second lug plate, 16. a limiting pipe, 17. a limiting mechanism, 18. a U-shaped groove, 19. a first column body, 20. a second column body, 21. a shaft body, 22. a limiting rod, 23. a positioning lug, 24. a spring, 25. a limiting plate, 26. a bubble box, 27. a bubble hole and 28. a pull rod.
Detailed Description
The invention is further described with reference to the accompanying drawings and the detailed description.
In the embodiment shown in fig. 1 and 2, a micro-power water body purification device comprises a net barrel 1 and an air pump, a plurality of microorganism carriers 2 are arranged in the net barrel 1, a feed inlet is formed in the side wall of the net barrel 1, a door plate 4 is arranged on the feed inlet, one side of the door plate 4 is hinged to the net barrel 1, the other side of the door plate 4 is detachably connected with the net barrel 1, a delivery pipe 7 is arranged at the output end of the air pump, one end of the delivery pipe 7 is detachably connected with the air pump, an aeration device is arranged at the bottom end of the net barrel 1, the other end of the delivery pipe 7 is detachably connected with the aeration device, and the delivery pipe 7 is communicated with the inside of the net barrel 1 through the aeration device.
As shown in fig. 1 and 2, the top of a net section of thick bamboo 1 is equipped with backup pad 5, the air pump is installed in backup pad 6, be equipped with a plurality of solar panel 6 on backup pad 5, battery and dc-to-ac converter, the battery passes through the dc-to-ac converter and is connected with solar panel 6 and air pump electricity respectively, solar panel 6's shape is triangle-shaped, be equipped with the mounting bracket on solar panel 6, solar panel 6 can dismantle with backup pad 5 through the mounting bracket and be connected, solar panel 6's base is close to backup pad 5, backup pad 5 is kept away from and the spatial structure of a pyramid type is formed by drawing close each other in a plurality of solar panel 6's top, the air pump, battery and inverter all are located the pyramid type structure that a plurality of solar panel 6 constitute.
As shown in fig. 3, to solar panel 6, the utility model discloses still provide another kind of embodiment, be equipped with motor 3 in the backup pad 5, motor 3's output and solar panel 6's bottom surface fixed connection, solar panel 6's top surface is equipped with solar sensor 8, and solar panel 6's bottom surface and backup pad 5 constitute the acute angle.
As shown in fig. 1, 2, 3 and 4, a plurality of stirrups 12 are arranged on the side wall of the bottom end of the net barrel 1, first lug plates 13 are arranged on the left and right sides of the stirrups 12, through holes 14 are formed in the first lug plates 13, second lug plates 15 corresponding to the first lug plates 13 are arranged on the left and right sides of the bottom end of the net barrel 1, limiting pipes 16 matched with the through holes 14 are arranged on the second lug plates 15, and limiting mechanisms 17 are arranged on the limiting pipes 16. The side wall of the net barrel 1 between two adjacent stirrups 12 is of a net structure formed by weaving soft ropes.
As shown in fig. 5 and 6, one end of the limiting tube 16 is fixedly connected with the second ear plate 15, the other end of the limiting tube 16 is provided with two U-shaped grooves 18, one U-shaped groove 18 is located on one side of the limiting tube 16, the other U-shaped groove 18 is located on the other side corresponding to the limiting tube 16, the limiting mechanism 17 is located in the limiting tube 16, the limiting mechanism 17 comprises a first cylinder 19, a second cylinder 20, a shaft body 21 and a limiting rod 22, one end of the first cylinder 19 is fixedly connected with the second ear plate 15, the other end of the first cylinder 19 is connected with one end of the second cylinder 20 in a vertical sliding manner, the other end of the second cylinder 20 is provided with a positioning lug 23 and is rotatably connected with one end of the shaft body 21, the positioning lug 23 is provided with a spring 24, the first cylinder 19 and the second cylinder 20 are both located in the spring 24, one end of the spring 24 is connected with the positioning lug 23, the other end of the spring 24 is connected with the second ear plate 15, the other end of the shaft body 21 is rotatably connected with the side wall of the limiting rod 22, one end of the limiting rod 22 is located outside the limiting pipe 16, a limiting plate 25 is arranged on the inner side wall of the limiting pipe 16, the limiting plate 25 is located on the side face of the U-shaped groove 18, and the other end of the limiting rod 22 is located on the limiting plate 25. The width of the U-shaped groove 18 is greater than the outer diameter of the stop bar 22.
As shown in figure 10, the aeration device is positioned in the net barrel 1, the aeration device is provided with a pull rod 28, and the length direction of the pull rod 28 is parallel to the height direction of the net barrel 1.
As shown in fig. 1, 2 and 3, to aeration equipment, the utility model discloses still provide another kind of scheme, aeration equipment includes bubble chamber 26, and the top of bubble chamber 26 is equipped with a plurality of bubble hole 27, and conveyer pipe 7 runs through the bottom center of bubble chamber 26 and is linked together through bubble hole 27 and the inside of net section of thick bamboo 1, and the air pump passes through conveyer pipe 7 and can dismantle with the bottom center of bubble chamber 26 and be connected.
As shown in fig. 1, 2 and 3, the top center of the bubble box 26 is sealed, a plurality of bubble holes 27 are radially and uniformly distributed by taking the top center of the bubble box 26 as the center, one end of each bubble hole 27 is close to the center of the bubble box 26, the other end of each bubble hole 27 is far away from the center of the bubble box 26, the width of one end of each bubble hole 27 close to the center of the bubble box 26 is smaller than that of the other end, and the bubble holes 27 are covered with an isolation net.
To the bubble hole 27, the utility model discloses still provide another kind of embodiment, the distribution density of a plurality of bubble hole 27 is from the top center of bubble chamber 26 to the top edge of bubble chamber 26 crescent.
The purification device is also called a fluidized bed, and the shape of the net cylinder 1 can be a cylinder, a cube, a cuboid or other irregular three-dimensional shapes.
When the density of the supporting plate 5 is smaller than that of water, the supporting plate 5 can enable the whole device to float on the water surface, as shown in fig. 7, when a plurality of purifying devices are placed in a water pool, under the influence of the external environment, the purifying devices are likely to be converged together to cause unbalanced purification of the water pool, and at the moment, the purifying devices can be uniformly distributed in the water pool in a mode of fixing the purifying devices by two connecting rods 11; in addition, as shown in fig. 8, the utility model also provides another kind of installation scheme of this device, set up a plurality of evenly distributed's stand 10 in the bottom of bubble chamber 26, be fixed in the pond bottom through stand 10 to prevent that a plurality of purifier from producing offset and gathering together by external environment's influence, should guarantee this moment that backup pad 28 exposes the surface of water, in order to ensure the safety of solar panel 6, air pump, battery and dc-to-ac converter.
As shown in fig. 9, besides the installation of the air pump, the storage battery and the inverter on the support plate 5, the waterproof box 9 is provided at the bottom of the bubble box 26, the air pump, the storage battery and the inverter can also be installed in the waterproof box 9, and the air pump can also be installed at other places; the air pump can be directly connected with an external circuit through a power line for electrifying, solar energy can be absorbed through the solar panel 6 and stored on the storage battery through the inverter, and then the storage battery is converted into voltage which can be used by the air pump through the inverter, so that the energy-saving effect is achieved; the air pump produces the aerobic bubble, the aerobic bubble passes through aeration equipment and constantly upwards emits from the bottom of net section of thick bamboo 1, can disperse a plurality of microbial carrier 2 on the one hand, make microbial carrier 2 can adsorb nitrogen phosphorus element better in order to alleviate the black smelly of water, on the other hand can change the anaerobic environment of water into the aerobic environment, and eliminate anaerobic microorganism gradually, the use of this device does not receive the influence of external environment such as seasonal change simultaneously, can use for a long time, the purpose that purifying effect is good has been reached.
Because the sun revolves around the earth all the time, the pyramid-shaped design formed by the plurality of solar panels 6 is beneficial to the solar panels 6 to absorb solar energy from morning to evening, and the absorption efficiency of the solar panels 6 is improved.
Based on the above principle, to solar panel 6, the utility model discloses still provide another kind of embodiment, when the sun rotated a position, if sunshine receives sheltering from, solar sensor 8 on solar panel 6 can not accept shining of sunshine, solar sensor 8 gives control system with signal transmission this moment, it makes solar sensor 8 can accept shining of sunshine once more to drive solar panel 6 rotation by control system control motor 3, and transmit signal in control system, by control system control motor 3 stop rotatory, so that solar panel 6 can trail the sun constantly with this relapse, solar panel 6's absorption efficiency has been improved.
The net barrel 1 can adjust the length according to the depth of the water pool, so that the purifying effect of the water pool is improved, and the application range is wide. When the bottom of a net section of thick bamboo 1 is in the state of expanding down, the one end of gag lever post 22 is located outside spacing pipe 16, the other end of gag lever post 22 is located limiting plate 25 in spacing pipe 16, when this kind of slope design of gag lever post 22 does benefit to folding, otic placode 13 can be through 14 from last down overlap in spacing pipe 16 of through-hole, the gag lever post 22 is got to the folding back operator hand of accomplishing of being convenient for simultaneously and is pulled on it, then make its both ends go down along U type groove 18 and through spring 24 chucking otic placode 13 with gag lever post 22 rotatory certain angle under the drive of axis body 21, it is spacing to realize the folding back in 11 bottoms of a net section of thick bamboo.
The top center of the bubble box 26 is sealed, which is beneficial to preventing the aerobic bubbles from directly jumping into the net cylinder 1 from the top center of the bubble box 26, and meanwhile, the width of one end of the bubble hole 27 close to the center of the bubble box 26 is smaller than that of the other end, which is beneficial to the uniform dispersion of the aerobic bubbles, thereby improving the dispersion degree of the microorganism carrier 2; the spacer mesh helps to prevent the microbial carriers 2 from entering the bubble box 26 through the bubble holes 27.
To the design of bleb hole 27, the utility model discloses still provide another kind of embodiment, the distribution density of a plurality of bleb hole 27 is crescent from the top center of bubble chamber 26 to the top edge of bubble chamber 26, makes in the aerobic bubble can the homodisperse net section of thick bamboo 1 through the distribution of the tiny bleb hole 27 of a plurality of to improve the dispersity of microorganism carrier 2.

Claims (11)

1. The utility model provides a micro-power water clarification plant, characterized by, includes net section of thick bamboo (1) and air pump, be equipped with a plurality of microorganism carrier (2) in net section of thick bamboo (1), be equipped with the feed inlet on the lateral wall of net section of thick bamboo (1), be equipped with door plant (4) on the feed inlet, one side and net section of thick bamboo (1) of door plant (4) are articulated, the opposite side and the net section of thick bamboo (1) of door plant (4) can be dismantled and be connected, be equipped with conveyer pipe (7) on the output of air pump, the one end and the air pump of conveyer pipe (7) can be dismantled and be connected, the bottom of net section of thick bamboo (1) is equipped with aeration equipment, the other end and the aeration equipment of conveyer pipe (7) can be dismantled and be connected, conveyer pipe (7) are linked together through the inside of aeration equipment and net section of thick bamboo (1).
2. The micropower water body purifying equipment as claimed in claim 1, wherein a supporting plate (5) is arranged at the top end of the net cylinder (1), the air pump is arranged on the support plate (5), the support plate (5) is provided with a plurality of solar panels (6), a storage battery and an inverter, the storage battery is respectively and electrically connected with the solar panel (6) and the air pump through the inverter, the solar panel (6) is triangular, the solar panel (6) is provided with a mounting rack, the solar panel (6) is detachably connected with the support plate (5) through the mounting rack, the bottom edges of the solar panels (6) are close to the support plate (5), the top ends of the plurality of solar panels (6) are far away from the support plate (5) and mutually close to form a pyramid-shaped three-dimensional structure, the air pump, the storage battery and the inverter are all positioned in a pyramid structure formed by a plurality of solar panels (6).
3. The micropower water body purification equipment as claimed in claim 2, wherein a motor (3) is arranged on the support plate (5), the output end of the motor (3) is fixedly connected with the bottom surface of the solar panel (6), a solar sensor (8) is arranged on the top surface of the solar panel (6), and an acute angle is formed between the bottom surface of the solar panel (6) and the support plate (5).
4. The micropower water body purification equipment as claimed in claim 2 or 3, wherein a plurality of stirrups (12) are arranged on the side wall of the bottom end of the net barrel (1), first ear plates (13) are arranged on the left and right sides of each stirrup (12), through holes (14) are formed in the first ear plates (13), second ear plates (15) corresponding to the first ear plates (13) are arranged on the left and right sides of the bottom end of the net barrel (1), limiting pipes (16) matched with the through holes (14) are arranged on the second ear plates (15), and limiting mechanisms (17) are arranged on the limiting pipes (16).
5. The micropower water body purifying equipment as claimed in claim 4, wherein the side wall of the net barrel (1) between two adjacent stirrups (12) is of a net structure formed by weaving soft ropes.
6. The micropower water body purification equipment as recited in claim 5, wherein one end of the limiting pipe (16) is fixedly connected with the second lug plate (15), the other end of the limiting pipe (16) is provided with two U-shaped grooves (18), one U-shaped groove (18) is positioned on one side of the limiting pipe (16), the other U-shaped groove (18) is positioned on the other side corresponding to the limiting pipe (16), the limiting mechanism (17) is positioned in the limiting pipe (16), the limiting mechanism (17) comprises a first column body (19), a second column body (20), a shaft body (21) and a limiting rod (22), one end of the first column body (19) is fixedly connected with the second lug plate (15), the other end of the first column body (19) is connected with one end of the second column body (20) in an up-down sliding manner, the other end of the second column body (20) is provided with a positioning bump (23) and is rotatably connected with one end of the shaft body (21), be equipped with spring (24) on locating lug (23), cylinder (19) and cylinder two (20) all are located spring (24), the one end and the locating lug (23) of spring (24) are connected, the other end and the otic placode two (15) of spring (24) are connected, the other end of axis body (21) rotates with the lateral wall of gag lever post (22) to be connected, the one end of gag lever post (22) is located outside spacing pipe (16), be equipped with limiting plate (25) on the inside wall of spacing pipe (16), limiting plate (25) are located the side of U type groove (18), the other end of gag lever post (22) is located limiting plate (25).
7. The micropower water body purification equipment as claimed in claim 6, wherein the width of the U-shaped groove (18) is larger than the outer diameter of the limiting rod (22).
8. A micro-power water body purification device as claimed in claim 7, wherein the aeration device is positioned in the net cylinder (1), the aeration device is provided with a pull rod (28), and the length direction of the pull rod (28) is parallel to the height direction of the net cylinder (1).
9. The micropower water body purification device as claimed in claim 7, wherein the aeration device comprises a bubble box (26), a plurality of bubble holes (27) are formed in the top of the bubble box (26), the conveying pipe (7) penetrates through the bottom center of the bubble box (26) and is communicated with the inside of the net barrel (1) through the bubble holes (27), and the air pump is detachably connected with the bottom center of the bubble box (26) through the conveying pipe (7).
10. The micropower water body purification device as claimed in claim 9, wherein the top center of the bubble box (26) is sealed, a plurality of bubble holes (27) are uniformly distributed in a radial shape by taking the top center of the bubble box (26) as a center, one end of each bubble hole (27) is close to the center of the bubble box (26), the other end of each bubble hole (27) is far away from the center of the bubble box (26), the width of one end, close to the center of the bubble box (26), of each bubble hole (27) is smaller than that of the other end of each bubble hole, and an isolation net covers the bubble holes (27).
11. The micropower water body purification device as claimed in claim 9, wherein the distribution density of the plurality of bubble holes (27) is gradually increased from the top center of the bubble box (26) to the top edge of the bubble box (26).
CN202022767690.7U 2020-11-25 2020-11-25 Micro-power water body purifying equipment Active CN214399957U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022767690.7U CN214399957U (en) 2020-11-25 2020-11-25 Micro-power water body purifying equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022767690.7U CN214399957U (en) 2020-11-25 2020-11-25 Micro-power water body purifying equipment

Publications (1)

Publication Number Publication Date
CN214399957U true CN214399957U (en) 2021-10-15

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022767690.7U Active CN214399957U (en) 2020-11-25 2020-11-25 Micro-power water body purifying equipment

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Country Link
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