CN114790040A - Strain throwing device with algae blocking enclosure - Google Patents

Strain throwing device with algae blocking enclosure Download PDF

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Publication number
CN114790040A
CN114790040A CN202210591647.0A CN202210591647A CN114790040A CN 114790040 A CN114790040 A CN 114790040A CN 202210591647 A CN202210591647 A CN 202210591647A CN 114790040 A CN114790040 A CN 114790040A
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China
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algae
baffle
component
floating body
rod
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CN202210591647.0A
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CN114790040B (en
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刘益和
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Zhongshi Xingchen Jiangsu High Tech Co ltd
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Zhongshi Xingchen Jiangsu High Tech Co ltd
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    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F3/00Biological treatment of water, waste water, or sewage
    • C02F3/34Biological treatment of water, waste water, or sewage characterised by the microorganisms used

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  • Life Sciences & Earth Sciences (AREA)
  • Microbiology (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Hydrology & Water Resources (AREA)
  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Water Supply & Treatment (AREA)
  • Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
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Abstract

The invention relates to the technical field of environmental management, in particular to a strain throwing device with an algae blocking enclosure, which comprises a base floating body, a strain throwing component and an algae blocking component, wherein the strain throwing component comprises a strain throwing plate and a strain blocking plate; keep off the algae subassembly including enclosing fender component and connecting element, it includes the baffle to enclose to keep off the component, keep off the algae body, the tyre cord cloth, counter weight rod and gasbag layer, the baffle is located the outside of base body, keep off algae body and baffle fixed connection, tyre cord cloth and baffle fixed connection, counter weight rod and tyre cord cloth fixed connection, gasbag layer and fender algae body fixed connection, connecting element is with a plurality of baffles that encircle the setting, keep off algae body and tyre cord cloth and connect, make its combination enclose the fender and put in the subassembly around the fungus, make things convenient for the fungus to put in the subassembly and spray the fungus, make the fungus can contact the contaminated water, better combine with the contaminated water, be favorable to improving the contaminated water treatment effect.

Description

Strain feeding device with algae blocking enclosure
Technical Field
The invention relates to the technical field of environmental management, in particular to a strain throwing device with an algae blocking enclosure.
Background
At present, the eutrophication problem of water areas is more and more serious, a large number of harmful algae plants are continuously propagated to cause water pollution, strain treatment is a means for treating water pollution, strains are put into the polluted water areas to be diffused and propagated in the polluted water areas, and therefore the purposes of treating water pollution and improving the environment are achieved.
The utility model provides a current long-range intelligent microorganism puts in device, including the base body and the box on the base body, be equipped with the intake pump that leads to pipe connects gradually in the box, the microbial srain incubator, microorganism gathers case and play water pump, utilize the intake pump to send the water pump in with the river course in the microbial srain incubator, make river water and the microbial srain in the microbial srain incubator mix, then flow to microorganism through the water pipe and gather incasement, send the mixed water pump of microorganism gathering incasement to the outlet pipe by going out the water pump, and spray to in the river course through the sprinkler head, can regularly carry out the microorganism and put in automatically, and the automation is high, put in efficiently.
However, the above remote intelligent microorganism throwing device floats on the water surface by using the base floating body, a large number of algae plants are wound around the base floating body, and at this time, the sprinkler head is used for spraying microorganism strains which may fall on the algae plants and cannot be well combined with polluted water, so that the treatment effect is reduced.
Disclosure of Invention
The invention aims to provide a strain throwing device with an algae blocking enclosure, which solves the problem that the treatment effect is reduced because a base floating body floats on the water surface, a large number of algae plants are wound around the base floating body, and a sprinkler is used for spraying microbial strains which can fall on the algae plants and cannot be well combined with polluted water.
In order to achieve the purpose, the invention provides a strain putting device with an algae blocking enclosure, which comprises a base floating body, a strain putting component and an algae blocking component, wherein the strain putting component is arranged on the base floating body;
the utility model discloses a bacterial throwing assembly, including base body, keep off algae subassembly, keep off the component, the bacterial throwing assembly with the base body is connected, keep off the algae subassembly including enclosing fender component and connecting element, the quantity that encloses the fender component is a plurality of, connecting element will be a plurality of enclose the fender component and connect, it includes the baffle, keeps off algae body, cord fabric, weight lever and gasbag layer to enclose the fender component, the baffle is located the outside of base body, keep off the algae body with baffle fixed connection, and be located one side of baffle, cord fabric with baffle fixed connection, and be located the below of baffle, the weight lever with cord fabric fixed connection, and be located cord fabric keeps away from one side of baffle, gasbag layer with keep off algae body fixed connection, and be located keep off the algae body and keep away from one side of baffle.
The connecting component comprises a connecting rod, a connecting sleeve, a bonding part and a reinforcing part, wherein the connecting rod is in threaded connection with the baffle and is positioned on one side of the baffle, which is far away from the algae blocking floating body; the connecting sleeve is fixedly connected with the baffle and is positioned on one side of the baffle, which is far away from the connecting rod; the adhesive component is connected with the cord fabric; the reinforcing component is connected with the algae blocking floating body.
The adhesive component comprises a hook and loop fastening surface and a hook and loop fastening rough surface, and the hook and loop fastening surface is fixedly connected with the cord fabric and is positioned between the baffle and the counterweight rod; the magic tape matt surface is fixedly connected with the cord fabric and is positioned on one side of the cord fabric, which is far away from the magic tape hook surface.
Wherein the reinforcing component comprises a steel cable and a locking ring, and the steel cable penetrates through the algae blocking floating body; the lock ring is fixedly connected with the steel cable and is positioned at one end of the steel cable far away from the algae blocking floating body.
The reinforcing part further comprises a locking hook, and the locking hook is fixedly connected with the steel cable and is positioned on one side, far away from the locking ring, of the steel cable.
The strain throwing device with the algae blocking enclosure further comprises a mounting assembly, wherein the mounting assembly comprises a first rod and a second rod, the first rod is fixedly connected with the base floating body and is positioned on one side, close to the baffle, of the base floating body; the second rod is fixedly connected with the baffle and is connected with the first rod in a sliding mode.
The mounting assembly further comprises a connecting spring, and two ends of the connecting spring are fixedly connected with the first rod and the second rod respectively and are located on the inner side of the first rod.
The strain casting assembly comprises a protective box, a storage component and a mixing component, wherein the protective box is fixedly connected with the base floating body and is positioned at the top of the base floating body; the storage member is located inside the protective case; the mixing member is connected with the storage member.
The invention relates to a strain putting device with an algae blocking enclosure, strains are automatically put in by a strain putting component, the strain putting component is arranged at the top of a base floating body, the base floating body supports the strain putting component and enables the strain putting component to float on the water surface, a plurality of baffles are respectively arranged around the outer periphery of the base floating body, the outer side of each baffle is fixedly connected with the algae blocking floating body, so that the baffles can float on the water surface to block algae around the strain putting component, the bottom of each baffle is fixedly connected with curtain cloth, the bottom of the curtain cloth is fixedly connected with a weight lever, the curtain cloth is sunk under the water to block the algae under the water, the outer side of each algae blocking floating body is fixedly provided with an air sac layer which is buffered by air pressure, the connecting elements will be a plurality of around setting the baffle keep off the algae body with the tyre cord cloth is connected, makes its combination enclose to keep off around the subassembly is put in to the bacterial, and is convenient the bacterial is put in the subassembly and is sprayed the bacterial for the bacterial can contact the contaminated water, better combines with the contaminated water, is favorable to improving the contaminated water treatment effect.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below.
Fig. 1 is a schematic diagram of an overall structure of a spawn running device with an algae-blocking enclosure according to a first embodiment of the present invention.
Fig. 2 is an enlarged view of fig. 1 at a.
Fig. 3 is a schematic view of the overall structure of a spawn running device with an algae-blocking enclosure according to a second embodiment of the present invention.
FIG. 4 is a sectional view of a seed culture placement device with an algae containment according to a second embodiment of the present invention.
Fig. 5 is a schematic view of the overall structure of a spawn running device with an algae-blocking enclosure according to a third embodiment of the present invention.
Fig. 6 is a schematic structural view of a storage box of a third embodiment of the present invention.
Fig. 7 is a sectional view of a storage case according to a third embodiment of the present invention.
Fig. 8 is a schematic view of the overall structure of a spawn running device with an algae-sheltering enclosure according to a fourth embodiment of the present invention.
In the figure: 101-base floating body, 102-baffle plate, 103-algae-blocking floating body, 104-cord fabric, 105-weight rod, 106-air bag layer, 107-connecting rod, 108-connecting sleeve, 109-hook-and-loop fastening surface, 110-hook-and-loop fastening surface, 111-steel cable, 112-locking ring, 113-locking hook, 201-first rod, 202-second rod, 203-connecting spring, 301-protective box, 302-storage box, 303-transverse clapboard, 304-vertical clapboard, 305-funnel, 306-expansion piece, 307-opening and closing door, 308-sealing layer, 309-guide rod, 310-piston, 311-water inlet pump, 312-water outlet pump, 313-stirring rod, 314-stirring blade, 315-turbine, 316-worm, 317-power piece, 401-adjusting screw rod, 402-mounting seat and 403-spray head.
Detailed Description
Reference will now be made in detail to the embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein the embodiments described below with reference to the accompanying drawings are exemplary and intended to be illustrative of the present invention and are not to be construed as limiting the present invention.
The first embodiment of the present application is:
referring to fig. 1 and 2, fig. 1 is a schematic view of an overall structure of a spawn running device with an algae-blocking enclosure according to a first embodiment of the present invention. Fig. 2 is an enlarged view of the invention at a in fig. 1. This embodiment have and keep off the bacterial of algae barricade and put in device: including base body 101, bacterial throw in subassembly and fender algae subassembly, it keeps off the algae subassembly including enclosing fender component and connecting element, it includes baffle 102, keeps off algae body 103, drapery 104, counter weight pole 105 and gasbag layer 106 to enclose to keep off the component, the connecting element includes connecting rod 107, connecting sleeve 108, bonding means and strengthening part, bonding means includes magic subsides hook face 109 and magic subsides matte 110, strengthening part includes cable wire 111, lock circle 112 and latch hook 113.
For this embodiment, the base float 101 may float on the water surface for supporting the strain feeding assembly.
The strain throwing assembly is connected with the base floating body 101, the number of the enclosure members is multiple, the connection members connect the multiple enclosure members, the baffle plate 102 is located on the outer side of the base floating body 101, the algae blocking floating body 103 is fixedly connected with the baffle plate 102 and located on one side of the baffle plate 102, the drapery cloth 104 is fixedly connected with the baffle plate 102 and located below the baffle plate 102, the weight rod 105 is fixedly connected with the drapery cloth 104 and located on one side of the drapery cloth 104 far away from the baffle plate 102, and the air sac layer 106 is fixedly connected with the algae blocking floating body 103 and located on one side of the algae blocking floating body 103 far away from the baffle plate 102. The strain throwing component is used for automatically throwing strains, is arranged at the top of the base floating body 101 and can float on the water surface along with the base floating body 101, the baffle plates 102 are multiple in number, the baffle plates 102 surround the base floating body 101 respectively, the algae blocking floating body 103 can float on the water surface, each baffle plate 102 is connected with the algae blocking floating body 103 respectively, the algae blocking floating body 103 drives the baffle plates 102 to float on the water surface to block aquatic algae plants around the strain throwing component, the bottom of each baffle plate 102 is fixed with the cord fabric 104 respectively, the bottom of each cord fabric 104 is fixed with the counterweight rod 105, the counterweight rod 105 enables the cord fabric 104 to sink into the water bottom, the cord fabric 104 is used for blocking the aquatic algae plants, the air sac layer 106 is used for punching air and is arranged on the algae blocking floating body 103, when the algae blocking floating body 103 collides with a hard object, the algae blocking floating body 103 is buffered by air pressure to ensure the stability of the baffle plate 102 and the algae blocking floating body 103, and the connecting members connect the baffle plates 102, the algae blocking floating body 103 and the connecting cloth which are arranged in a surrounding manner to form a frame shape, so that the surrounding of the strain throwing assembly is blocked.
Secondly, the connecting rod 107 is in threaded connection with the baffle plate 102 and is positioned on one side of the baffle plate 102 far away from the algae blocking floating body 103; the connecting sleeve 108 is fixedly connected with the baffle plate 102 and is positioned on one side of the baffle plate 102 away from the connecting rod 107; the adhesive member is attached to the shade fabric 104; the reinforcing member is connected to the algae blocking float 103. The magic tape hook surface 109 is fixedly connected with the cord fabric 104 and is positioned between the baffle plate 102 and the weight lever 105; the hook and loop fastener rough surface 110 is fixedly connected with the cord fabric 104 and is located on one side of the cord fabric 104 far away from the hook and loop fastener hook surface 109. The steel cable 111 penetrates through the algae blocking floating body 103; the locking ring 112 is fixedly connected with the steel cable 111 and is positioned at one end of the steel cable 111 far away from the algae-blocking floating body 103. The latch hook 113 is fixedly connected to the steel cable 111 and is located on a side of the steel cable 111 away from the latch loop 112. One end of each baffle plate 102 is connected with the connecting rod 107 in a threaded manner, the other end of each baffle plate 102 is fixedly connected with the connecting sleeve 108, different ends of the two baffle plates 102 are close to each other, the connecting rod 107 penetrates through the connecting sleeve 108 on one of the baffle plates 102 and then is connected with the other baffle plate 102 in a threaded manner, so that the two baffle plates 102 are connected, the two baffle plates 102 can rotate mutually by taking the connecting rod 107 as an axis, so that various surrounding shapes can be formed, one side of the cord fabric 104 is fixedly provided with the magic tape hook surface 109 in a sewing manner, the other side of the cord fabric 104 is fixedly provided with the magic tape matt surface 110 in a sewing manner, two adjacent cord fabrics 104 are bonded by using the adhesion of the magic tape hook surface 109 and the magic tape matt surface 110, each algae blocking floating body 103 is provided with the steel cable 111 in a penetrating manner, one end of the steel cable 111 is fixedly provided with the locking ring 112, the other end of the steel cable 111 is fixed with the locking hook 113, when the algae blocking floating body 103 is arranged in a surrounding manner, the locking hook 113 of one of the steel cables 111 is used for hooking the locking ring 112 of the other steel cable 111, so that the adjacent algae blocking floating bodies 103 are connected, and the connection stability and the wind resistance of the baffle plate 102 and the algae blocking floating body 103 are enhanced.
When the strain throwing device with the algae blocking enclosure of the embodiment is used, the base floating body 101 drives the strain throwing assembly to float on the water surface, algae plants around the base floating body 101 are cleaned in advance, the algae blocking assembly is used for blocking around the base floating body 101 to prevent the algae plants from approaching the base floating body 101, wherein the connecting rod 107 penetrates through the connecting sleeve 108 on one baffle plate 102, then is fixed on the other baffle plate 102 in a threaded manner to connect the two baffle plates 102, the baffle plates 102 are connected in such a way to surround around the base floating body 101, the algae blocking floating body 103 is fixedly connected to each baffle plate 102, and the algae blocking floating body 103 enables the baffle plates 102 to float on the water surface to block the algae plants on the water surface around the base floating body 101, the steel cable 111 and two adjacent steel cables 111 are arranged on each algae blocking floating body 103 in a penetrating manner, the lock hook 113 of one steel cable 111 hooks the lock ring 112 of the other steel cable 111, so that the plurality of algae blocking floating bodies 103 are connected, the stability of connection between the algae blocking floating bodies 103 arranged in a surrounding manner and the baffle plates 102 is enhanced, the wind resistance of the algae blocking floating bodies is enhanced, the curtain cloth 104 is arranged below each baffle plate 102, the weight rods 105 enable the curtain cloth 104 to sink into water to block algae plants below the base floating body 101, the curtain cloth 104 arranged in a surrounding manner is bonded by the magic tape hook surfaces 109 and the magic tape wool surfaces 110 to enable the curtain cloth to be connected in a surrounding manner, the algae plants below the base floating body 101 are better blocked, and the air sac layer 106 is further arranged on each algae blocking floating body 103, when the algae blocking floating body 103 is impacted, the buffering effect is achieved, the surrounding arrangement is guaranteed, the stability of the algae blocking floating body 103 is guaranteed, and then the base floating body 101 is better surrounded and blocked, so that the strain throwing assembly is surrounded and blocked, when the strain throwing assembly sprays strains, the strains can be in contact with polluted water, the better propagation and diffusion are achieved, and the polluted water treatment effect is better.
The second embodiment of the present application is:
on the basis of the first embodiment, please refer to fig. 3 and fig. 4, wherein fig. 3 is a schematic overall structure diagram of a spawn running device with an algae-sheltering enclosure according to a second embodiment of the present invention. Fig. 4 is a cross-sectional view of a seed application device with an algae containment according to a second embodiment of the present invention. The strain throwing device with the algae-blocking enclosure further comprises a mounting assembly, wherein the mounting assembly comprises a first rod 201, a second rod 202 and a connecting spring 203.
For the specific embodiment, the baffle plate 102 is mounted on the base floating body 101 by the mounting assembly, so that the baffle plate 102 can move along with the base floating body 101, and the baffle plate 102 and the base floating body 101 always keep a certain distance to enclose and separate algae, thereby facilitating the spawn spraying of the spawn feeding assembly.
The first rod 201 is fixedly connected with the base floating body 101 and is positioned on one side of the base floating body 101 close to the baffle plate 102; the second rod 202 is fixedly connected with the baffle plate 102 and is slidably connected with the first rod 201. The two ends of the connecting spring 203 are respectively fixedly connected with the first rod 201 and the second rod 202 and are positioned at the inner side of the first rod 201. The first rods 201 are fixed on the base floating body 101, the number of the first rods 201 is multiple, the first rods are respectively distributed around the base floating body 101 in a surrounding mode, the second rod 202 is arranged on the inner side of each first rod 201 in a sliding mode, the second rod 202 is fixedly connected with the baffle plate 102, the connecting spring 203 is arranged on the inner side of each first rod 201, the other end of the connecting spring 203 is fixedly connected with the second rod 202, and therefore the baffle plate 102 keeps a certain distance from the base floating body 101 all the time and keeps algae.
When the strain throwing device with the algae blocking enclosure of the embodiment is used, the baffle plate 102 is always kept at a certain distance from the base floating body 101 by the first rod 201 and the second rod 202, algae plants are enclosed and isolated, strain spraying of the strain throwing component above the base floating body 101 is facilitated, meanwhile, in the floating process of the base floating body 101, when the baffle plate 102 is impacted, the second rod 202 is stressed to move towards the connecting spring 203, the elastic force of the connecting spring 203 buffers the baffle plate, the baffle plate 102 can be kept stable, the base floating body 101 is protected, collision to the base floating body 101 is avoided, the strain throwing component is kept stable, strain spraying is better, and the polluted water treatment effect is better.
The third embodiment of the present application is:
on the basis of the second embodiment, please refer to fig. 5, fig. 6 and fig. 7, wherein fig. 5 is a schematic overall structure diagram of a spawn running device with an algae-sheltering enclosure according to a third embodiment of the present invention. Fig. 6 is a schematic structural diagram of a storage box 302 according to a third embodiment of the present invention. Fig. 7 is a sectional view of a storage tank 302 according to a third embodiment of the present invention. The strain casting device with the algae-blocking enclosure comprises a protective box 301, a storage component and a mixing component, wherein the storage component comprises a storage box 302, a transverse partition plate 303, a vertical partition plate 304, a funnel 305 and a switch component, the switch component comprises a telescopic piece 306, a switch door 307, a sealing layer 308, a guide rod 309 and a piston 310, the mixing component comprises a water inlet pump 311, a stirring component and a water outlet pump 312, and the stirring component comprises a stirring rod 313, a stirring blade 314, a turbine 315, a worm 316 and a power component 317.
Aiming at the specific implementation mode, the strain putting component carries out automatic strain putting, and the working efficiency is improved.
The protective box 301 is fixedly connected with the base floating body 101 and is positioned at the top of the base floating body 101; the storage member is located inside the protective case 301; the mixing member is connected with the storage member. The storage component is used for storing strains, the mixing component is used for mixing the strains and discharging the mixed strains for spraying, and the protective box 301 is covered on the base floating body 101 and used for protecting the storage component and the mixing component.
Secondly, the storage tank 302 is fixedly connected with the base floating body 101 and is positioned inside the protective tank 301; the diaphragm 303 is fixedly connected with the storage tank 302 and is positioned inside the storage tank 302; the number of the vertical partition plates 304 is multiple, and the multiple vertical partition plates 304 are respectively fixedly connected with the transverse partition plate 303 and are respectively positioned above the transverse partition plate 303; the number of the funnels 305 is multiple, and the funnels 305 are respectively fixedly connected with the diaphragm 303 and are respectively positioned below the diaphragm 303; the switch part is connected to the storage box 302. The telescopic piece 306 is fixedly connected with the storage box 302 and is positioned outside the storage box 302; the switch door 307 is fixedly connected with the output end of the telescopic piece 306 and is positioned at the top of the storage box 302; the sealing layer 308 is fixedly connected with the switch door 307 and is positioned between the switch door 307 and the storage box 302; the guide rod 309 is fixedly connected with the switch door 307 and is positioned inside the storage box 302; the piston 310 is fixedly connected to the guide rod 309 and is located on a side of the guide rod 309 away from the switch door 307. The storage box 302 is fixed on the base floating body 101, the transverse partition plate 303 is fixed inside the storage box 302 to divide the interior of the storage box 302 into an upper storage cavity and a lower mixing cavity, the vertical partition plates 304 are fixed above the transverse partition plate 303 and are divided into a plurality of small storage cavities for storing different strains, the plurality of funnels 305 are respectively fixed below the transverse partition plate 303 and are arranged corresponding to the small storage cavities and are respectively communicated with the small storage cavities to allow the strains to enter the mixing cavities, the telescopic members 306 are electric push rods of model PYT120 and are fixed outside the storage box 302, each small storage cavity is correspondingly provided with two telescopic members 306, the output ends of the two correspondingly arranged telescopic members 306 are connected with the switch door 307 to drive the switch door 307 to move up and down on the top of the storage box 302, the number of the switch doors 307 is multiple, the switch doors correspond to the small storage cavities, the upper portions of the small storage cavities are opened and closed under the driving of the telescopic pieces 306, the sealing layers 308 are fixed at the bottoms of the switch doors 307, the sealing layers 308 are made of rubber materials and extend into the small storage cavities, the small storage cavities are sealed, each switch door 307 is fixed with the guide rod 309, the other end of the guide rod 309 is fixed with the piston 310, the piston 310 is matched with the opening of the funnel 305, the opening of the funnel 305 is sealed, the throwing of electric control strains is achieved, a weight sensor is arranged in each small storage cavity, and then the throwing amount of the strains can be controlled.
Meanwhile, the water inlet pump 311 is communicated with the storage tank 302 through a pipeline and is positioned inside the protective box 301; the stirring component is connected with the storage box 302; the water outlet pump 312 is communicated with the storage tank 302 through a pipeline and is positioned inside the protective box 301. The stirring rod 313 is rotatably connected with the storage box 302 and is positioned below the diaphragm 303; the stirring blade 314 is fixedly connected with the stirring rod 313 and is positioned inside the storage box 302; the turbine 315 is fixedly connected with the stirring rod 313 and is positioned outside the storage tank 302; the worm 316 is meshed with the worm wheel 315 and is positioned outside the storage box 302; the power member 317 is connected to the worm 316. The water inlet pump 311, model number DL12-40, is communicated with a mixing cavity at the lower part of the storage tank 302 through a pipeline, the water inlet pump 311 is also communicated with river water outside the protective box 301 through a pipeline, the water outlet pump 312 is FL-2202, is communicated with the mixing cavity of the storage tank 302 through a pipeline and also extends out of the protective tank 301 through a pipeline, the stirring rod 313 is rotatably connected in the storage tank 302, and is positioned in the mixing cavity, the stirring blade 314 is fixed on the stirring rod 313, the turbine 315 is fixed on the stirring rod 313, and is positioned at the outer side of the storage tank 302, the worm 316 is meshed with the worm wheel 315, the power part 317 is a motor and drives the worm 316 to rotate, and then drive turbine 315 rotates, drives puddler 313 rotates, stirring leaf 314 follows the rotation, stirs the mixing to the intracavity bacterial.
When the strain throwing device with the algae retaining enclosure is used, the output end of the telescopic part 306 is controlled to extend out to drive the switch door 307 to ascend to drive the guide rod 309 to ascend, the piston 310 ascends to open the opening of the funnel 305, so that strains placed in small storage cavities formed between the vertical partition plates 304 fall down through the funnel 305 to enter a mixing cavity below the transverse partition plate 303, the throwing amount of the strains can be controlled through a weight sensor arranged in each small storage cavity, then river water is introduced into the water inlet pump 311 and enters the mixing cavity, the power part 317 drives the worm 316 to rotate to drive the turbine 315 to rotate, then the stirring rod 313 and the stirring blades 314 rotate to mix the strains with the river water and then the water outlet pump 312 is utilized to discharge the strains to spray, and automatic spraying is realized, greatly improving the working efficiency.
The fourth embodiment of the present application is:
on the basis of the third embodiment, please refer to fig. 8, wherein fig. 8 is a schematic view of an overall structure of a spawn running device with an algae-blocking enclosure according to a fourth embodiment of the present invention. The strain throwing device with the algae-blocking enclosure further comprises a spraying assembly, wherein the spraying assembly comprises an adjusting screw 401, a mounting base 402 and a spraying head 403.
Aiming at the specific implementation mode, the spraying assembly is used for spraying the mixed strains.
The adjusting screw 401 is rotatably connected with the protective box 301 and is located outside the protective box 301; the mounting seat 402 is connected with the adjusting screw 401; the spray nozzle 403 is fixedly connected with the mounting seat 402 and is communicated with the water outlet pump 312 through a pipeline. The adjusting screw 401 is a ball screw, is installed on the outer side of the protective box 301, and is driven to rotate by a motor arranged on the protective box 301, the installation base 402 is installed on the adjusting screw 401, moves left and right on the adjusting screw 401 along with the forward rotation and the reverse rotation of the adjusting screw 401, and the spray head 403 is used for spraying strains, is installed on the installation base 402, and moves left and right along with the installation base 402.
When the strain throwing device with the algae blocking enclosure is used, after strains are mixed, the water outlet pump 312 conveys the strains to the spray nozzle 403, the spray nozzle 403 sprays the strains, in the spraying process, the adjusting screw 401 moves to drive the mounting seat 402 to move left and right, the spray nozzle 403 moves left and right, the spraying range is expanded, algae plants are enclosed around the spray nozzle 403 by the baffle plate 102, the strains can enter the polluted water and can be better contacted with the polluted water, and better propagation and diffusion are realized, so that the polluted water treatment effect is favorably improved.
While the above disclosure describes one or more preferred embodiments of the present invention, it should be understood that there is no intent to limit the scope of the claims, and it is intended that all or a portion of the process flow of the above embodiments be practiced and equivalents thereof within the scope of the claims.

Claims (8)

1. A strain putting device with an algae blocking enclosure comprises a base floating body and is characterized in that,
the device also comprises a strain putting component and an algae blocking component;
the utility model discloses a bacterial throwing assembly, including base body, keep off algae subassembly, keep off the component, the bacterial throwing assembly with the base body is connected, keep off the algae subassembly including enclosing fender component and connecting element, the quantity that encloses the fender component is a plurality of, connecting element will be a plurality of enclose the fender component and connect, it includes the baffle, keeps off algae body, cord fabric, weight lever and gasbag layer to enclose the fender component, the baffle is located the outside of base body, keep off the algae body with baffle fixed connection, and be located one side of baffle, cord fabric with baffle fixed connection, and be located the below of baffle, the weight lever with cord fabric fixed connection, and be located cord fabric keeps away from one side of baffle, gasbag layer with keep off algae body fixed connection, and be located keep off the algae body and keep away from one side of baffle.
2. The spawn running device with an algae-blocking enclosure according to claim 1,
the connecting component comprises a connecting rod, a connecting sleeve, a bonding part and a reinforcing part, and the connecting rod is in threaded connection with the baffle and is positioned on one side of the baffle, which is far away from the algae blocking floating body; the connecting sleeve is fixedly connected with the baffle and is positioned on one side of the baffle, which is far away from the connecting rod; the adhesive component is connected with the cord fabric; the reinforcing component is connected with the algae blocking floating body.
3. The spawn running device with an algae containment according to claim 2,
the adhesive component comprises a hook and loop fastening surface and a hook and loop fastening rough surface, and the hook and loop fastening surface is fixedly connected with the cord fabric and is positioned between the baffle and the counterweight rod; the magic tape matt surface is fixedly connected with the cord fabric and is positioned on one side of the cord fabric, which is far away from the magic tape hook surface.
4. The spawn running device with an algae-blocking enclosure according to claim 2,
the reinforcing component comprises a steel cable and a lock ring, and the steel cable penetrates through the algae blocking floating body; the lock ring is fixedly connected with the steel cable and is positioned at one end of the steel cable far away from the algae blocking floating body.
5. The spawn running device with an algae containment barrier of claim 4,
the reinforcing part further comprises a locking hook, and the locking hook is fixedly connected with the steel cable and is positioned on one side, far away from the locking ring, of the steel cable.
6. The spawn running device with an algae-blocking enclosure according to claim 1,
the strain throwing device with the algae blocking enclosure further comprises a mounting assembly, wherein the mounting assembly comprises a first rod and a second rod, and the first rod is fixedly connected with the base floating body and is positioned on one side, close to the baffle, of the base floating body; the second rod is fixedly connected with the baffle and is connected with the first rod in a sliding mode.
7. The spawn running device with an algae containment barrier of claim 6,
the mounting assembly further comprises a connecting spring, and two ends of the connecting spring are fixedly connected with the first rod and the second rod respectively and are located on the inner side of the first rod.
8. The spawn running device with an algae-blocking enclosure according to claim 1,
the strain feeding assembly comprises a protective box, a storage component and a mixing component, wherein the protective box is fixedly connected with the base floating body and is positioned at the top of the base floating body; the storage member is located inside the protective case; the mixing member is connected with the storage member.
CN202210591647.0A 2022-05-27 2022-05-27 Strain throwing device with algae blocking enclosure Active CN114790040B (en)

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CN107098480A (en) * 2017-03-23 2017-08-29 西安建筑科技大学 A kind of method for aiding in the molten molten algae of phycomycete and the molten algae device of original position mixing
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CN111533366A (en) * 2020-04-16 2020-08-14 张秀敏 A microorganism input device for aquatic attitude is administered
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JP6792757B1 (en) * 2020-06-15 2020-12-02 華南理工大学 A device for purifying fermented manure slurry by combining multiple ecological floating beds
CN212425603U (en) * 2020-04-07 2021-01-29 宁波新颜环境科技有限公司 Automatic device of puting in of biological bacterial
CN112726534A (en) * 2021-02-08 2021-04-30 江苏金山环保科技有限公司 Blue algae collecting floating dam enclosure device
CN214695500U (en) * 2021-03-29 2021-11-12 江苏中鲁环境工程有限公司 Float type algae-blocking enclosure

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107098480A (en) * 2017-03-23 2017-08-29 西安建筑科技大学 A kind of method for aiding in the molten molten algae of phycomycete and the molten algae device of original position mixing
CN210480989U (en) * 2019-08-20 2020-05-08 无锡生量环境工程有限公司 Ecological purification floating island
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