CN219961753U - Mosquito egg disinfection equipment - Google Patents

Mosquito egg disinfection equipment Download PDF

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Publication number
CN219961753U
CN219961753U CN202321562093.8U CN202321562093U CN219961753U CN 219961753 U CN219961753 U CN 219961753U CN 202321562093 U CN202321562093 U CN 202321562093U CN 219961753 U CN219961753 U CN 219961753U
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Prior art keywords
container
liquid
mosquito
eggs
timing switch
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CN202321562093.8U
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Chinese (zh)
Inventor
何建良
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Shenzhen City Beikang Technology Co ltd
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Shenzhen City Beikang Technology Co ltd
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Priority to CN202321562093.8U priority Critical patent/CN219961753U/en
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Abstract

The utility model discloses mosquito egg sterilizing equipment, which comprises a box body, wherein a first container and a second container are arranged on the box body; the liquid flow branch is arranged between the first container and the second container, the branch is provided with a first timing switch used for controlling the liquid in the first container to periodically flow to the second container, and a filtering device positioned at the downstream of the first timing switch, when the first timing switch is opened, the liquid in the first container enters the second container after passing through the filtering device. Before the mosquito eggs in the first container grow into mosquitoes, the liquid carrying the mosquito eggs is discharged to the filtering device through the liquid flow branch, so that the mosquito eggs are separated from the liquid; after the mosquito eggs are separated from the liquid, the mosquito eggs are dried and killed in an anhydrous environment, and the mosquito eggs are killed from the mosquito reproduction source by the mosquito egg killing device provided by the utility model, so that the problem of environmental pollution caused by spraying medicaments to kill mosquitoes is avoided.

Description

Mosquito egg disinfection equipment
Technical Field
The utility model relates to the technical field of mosquito egg collecting and killing equipment, in particular to full-automatic solar equipment for killing mosquito eggs.
Background
At present, as the climate is warmed up, the ecological environment is changed continuously, so that the frequency of virus and disease outbreaks is higher and higher worldwide, the prevention and control tasks for global infectious diseases are gradually aggravated, and particularly, the prevention and control work for hosts is more important for pathogens for transmitting diseases, wherein the prevention and control work for mosquitoes is particularly difficult due to the huge quantity of the mosquitoes.
The huge quantity of mosquitoes has close relation with the super-strong reproductive capacity of mosquitoes, one female mosquito can produce mosquito eggs for 6-8 times, 200-300 grains each time, the mosquito eggs hatch into mosquito larvae, namely wigglers after two days, the wigglers feed on microorganisms and algae in water, pupate after 4 molting, the pupae shell breaks after about 2 days, and the mosquitoes are born and fly out of the water.
In the prior art, the mosquitoes are killed in a mode of spraying medicines generally, the environment is polluted, natural ecological balance is destroyed, the environment is irreversibly damaged for a long time, once the mosquitoes leaking from the net are propagated in water when the medicines are sprayed, the number of the mosquitoes can be exponentially increased, and a safe and environment-friendly mosquito killing device capable of killing the mosquitoes from the source is needed in the market.
Disclosure of Invention
In view of the above, the present utility model provides a mosquito egg sterilizing apparatus which does not require spraying with a drug and can sterilize mosquitoes from the source of mosquito reproduction.
The utility model provides mosquito egg killing equipment, which comprises a box body and is characterized in that a first container for containing liquid and allowing mosquitoes to enter the liquid and spawn in the liquid and a second container for receiving the liquid led out from the first container are arranged on the box body;
the liquid flow branch is arranged between the first container and the second container, the branch is provided with a first timing switch used for controlling the liquid in the first container to periodically flow to the second container, and a filtering device positioned at the downstream of the first timing switch, when the first timing switch is opened, the liquid in the first container enters the second container after passing through the filtering device.
The first container and the second container are arranged oppositely in the up-down direction.
Further, the mosquito egg killing device further comprises a water pumping device, one end of the water pumping device is connected with the second container, and the other end of the water pumping device is connected with the first container and used for conveying liquid filtered by the filtering device in the second container to the first container.
Further, the water pumping device comprises a water pump, a water pumping pipe and a second timing switch, one end of the water pump is connected with the second container, and the other end of the water pump is connected with the first container through the water pumping pipe; the second timing switch is electrically connected with the power supply of the disinfection equipment and the water pump respectively and is used for controlling the on-off time of the water pump when the liquid in the second container is conveyed to the first container, so that the first container can keep a certain water level.
Further, the liquid flow branch comprises an electromagnetic valve and a drain pipe, wherein the electromagnetic valve is electrically connected with the first timing switch, one end of the electromagnetic valve is connected with the first container, and the other end of the electromagnetic valve is connected with the filter device through the drain pipe and is used for discharging liquid carrying mosquito eggs in the first container to the filter device according to the set period of the first timing switch.
Further, the second container is provided with a cover plate with a middle opening, the filtering device is arranged at the middle opening of the cover plate, and the upper surface of the filtering device is lower than the upper surface of the cover plate.
Further, the liquid flow branch further comprises an overflow pipe, one end of the overflow pipe is connected with the upper side wall of the first container, and the other end of the overflow pipe is connected with the drain pipe.
Further, the disinfection equipment further comprises a solar power supply device, and the solar power supply device is electrically connected with a power supply of the disinfection equipment.
Further, the filter device is filter cotton.
Further, a rainwater collecting tank is further arranged on the box body of the disinfection equipment, a draining hole is formed in the bottom of the rainwater collecting tank, and the draining hole of the rainwater collecting tank is arranged opposite to the first container and used for collecting rainwater.
The beneficial effects of the utility model are as follows: according to the mosquito egg killing device provided by the utility model, before the mosquito eggs in the first container grow into mosquitoes, the liquid carrying the mosquito eggs is discharged to the filtering device through the liquid flow branch, so that the mosquito eggs are separated from the liquid; after the mosquito eggs are separated from the liquid, the mosquito eggs are dried and killed in an anhydrous environment, and the mosquito eggs are killed from the mosquito breeding source.
Drawings
Fig. 1 is a schematic perspective view of a mosquito egg sterilizing apparatus (door panel 15 is removed) according to the present utility model;
fig. 2 is a schematic perspective exploded view of the mosquito egg killing device provided by the utility model.
Reference numerals illustrate:
1-a box body; 2-a storage battery; 3-a first timer switch; 4-a second time switch; 6-a solar panel and 7-a rainwater collecting tank; 8-a first container; 9-an electromagnetic valve; 10-a filtration device; 11-a second container; 12-a water pump; 13-a water suction pipe; 14-a drain pipe; 15-a door panel; 16-overflow pipe.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to fig. 1 to 2, and it is obvious that the described embodiments are only some embodiments of the present utility model, not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
It should be noted that, if the directions related to the embodiment of the present utility model are as shown in fig. 1, the front and rear are as shown in fig. 1, specifically, the left side of fig. 1 is the front, and the right side of fig. 1 is the rear; meanwhile, as shown in fig. 2, the horizontal direction is approximately the horizontal direction, and the vertical direction is the vertical direction as shown in the figure. If a particular gesture changes, the directional indication changes accordingly.
The utility model provides mosquito egg killing equipment, which comprises a box body 1, wherein a first container 8 for containing liquid and allowing mosquitoes to enter the liquid and spawn in the liquid and a second container 11 for receiving the liquid led out from the first container are arranged on the box body 1; a liquid flow branch is arranged between the first container 8 and the second container 11, a first timing switch 3 for controlling the liquid in the first container to periodically flow to the second container, and a filtering device 10 positioned downstream of the first timing switch 3 are arranged on the branch, and when the first timing switch 3 is opened, the liquid in the first container 8 passes through the filtering device 10 and enters the second container 11.
In general, mosquitoes enter the first containing cavity 8 and spawn in the first container 8, and the killing device provided by the scheme can be opened at regular time through the first time switch 3, so that water flow in the first container passes through the filtering device 10 and enters the second container 11, eggs in the water in the first container 8 are filtered out by the filtering device 10 and remain at the filtering device 10, and the eggs are killed at the filtering device 10, so that the killing of the eggs of the mosquitoes is realized.
Specifically, in this embodiment, the first container 8 is a square basin with an open upper end, the second container 11 is a square body with a cover plate, the first container 8 and the second container 11 are oppositely arranged in the up-down direction, the first container 8 is located at the upper part of the inner side of the box body, the second container 11 is located on the bottom plate of the bottom of the box body, and both containers are detachably installed in the box body 1; when in use, the disinfection equipment is firstly placed outdoors, and a proper amount of liquid which is suitable for mosquito breeding is added into the first container 8; the liquid can be mixed liquid with specific substances such as lactic acid, acetone and dimethyl disulfide, and the mixed liquid is a main constituent of human sweat and can effectively attract mosquitoes; the liquid can also be clear water, after the clear water is put into the first container 8, mosquitoes fly into the first container 8 from the round holes on the side wall of the box body 1 successively, eggs are laid in the first container 8, the eggs laid by the mosquitoes grow into larvae in about 48 hours, and the larvae grow into mature mosquitoes capable of flying out of the water, which takes about 48 hours, so the set time of the first timing switch 3 is preferably not longer than 96 hours; in this embodiment, the first timer switch 3 is set to be activated every 72 hours, that is, the time between when the clean water is placed and when the water with the eggs and the larvae is discharged is set to 72 hours, during which a part of the clean water is the eggs of the mosquitoes produced during the period, and the other part is the larvae of the mosquitoes, and before the eggs and the larvae grow to mature mosquitoes, the water carrying the eggs and the larvae in the first container 8 is discharged onto the filter 10 by the liquid flow branch, and the eggs and the larvae are filtered and remain on the filter 10, and die due to the dry environment of the filter 10.
Before the mosquito eggs in the first container 8 grow into mosquitoes, the mosquito eggs killing equipment discharges the liquid carrying the mosquito eggs to the filtering device 10 through the liquid flow branch so as to separate the mosquito eggs from the liquid; after the mosquito eggs are separated from the liquid, the mosquito eggs are dried and killed in an anhydrous environment, so that the mosquito eggs are killed from the mosquito reproduction source, and the problem of environmental pollution caused by spraying the medicine to kill mosquitoes is avoided.
In order to reuse the water filtered by the filtering device 10, so as to avoid the tedious caused by frequent water change, the mosquito egg sterilizing equipment is provided with a water pumping device, one end of the water pumping device is connected with the second container 11, and the other end of the water pumping device is connected with the first container 8, and is used for conveying the liquid filtered by the filtering device 10 in the second container 11 to the first container 8.
Specifically, the pumping device comprises a water pump 12, a water pumping pipe 13 and a second timing switch 4, wherein one end of the water pump 12 is connected with a second container 11, and the other end of the water pump is connected with a first container 8 through the water pumping pipe 13; the second timing switch 4 is electrically connected to the power supply of the disinfecting device and the water pump 12, respectively, and is used for keeping the first container 8 at a certain water level when the liquid in the second container 11 is conveyed to the first container 8.
The water pumping device pumps the liquid in the second container 11 into the first container 8 through the water pump 12, the water pump 12 is electrically connected with the second timing switch 4, and the first container 8 can keep a proper water level through controlling the opening time of the second timing switch 4; for example, the second timer switch 4 may be set to be turned on for one minute and then stopped, and the water level in the first container 8 does not exceed the overflow pipe orifice water level of the overflow pipe 16, thereby precisely controlling the water level of the first container 8.
The liquid flow branch circuit further comprises an electromagnetic valve 9 and a drain pipe 14, wherein the first timing switch 3 is electrically connected with a power supply of the disinfection equipment and the electromagnetic valve 9 respectively, one end of the electromagnetic valve 9 is connected with the first container 8, the other end of the electromagnetic valve is connected with the filtering device 10 through the drain pipe 14, after the first container 8 with clean water is placed in the box body 1, the first timing switch 3 starts timing, after 72 hours, the first timing switch 3 is electrified, the corresponding electromagnetic valve 9 is electrified, a discharge port of the electromagnetic valve 9 is opened at the moment, liquid carrying mosquito eggs and larvae is discharged to the filtering device 10 through the drain pipe 14, and preparation is made for separation of the mosquito eggs, the larvae and the liquid.
In order to make the filter device 10 have a certain space for storing eggs and larvae of mosquitoes, the second container 11 is covered with a cover plate with a middle opening, the filter device 10 is arranged at the middle opening of the cover plate, the upper surface of the filter device 10 is lower than that of the cover plate, a groove is formed between the side wall of the cover plate and the upper surface of the filter device 10, and the filtered eggs and larvae are kept in the groove and cannot be washed to a wet place by the water flow of the drain pipe 14 to survive.
In addition, the liquid flow branch also comprises an overflow pipe 16, wherein the overflow pipe 16 is positioned at the side edges of the electromagnetic valve 9 and the drain pipe 14, one end of the overflow pipe 16 is communicated with the side wall of the upper part of the first container 8 to form an overflow pipe orifice, and the other end of the overflow pipe 16 is connected with the drain pipe 14; if the water level in the first container 8 exceeds the water level of the overflow pipe opening of the overflow pipe 16, the water in the first container 8, the mosquito eggs and the larvae can be discharged to the filtering device 10 through the overflow pipe 16, so that the mosquito eggs and the larvae are prevented from overflowing from the first container 8 and fall to the wet place to survive.
It can be understood that, since the mosquito egg killing device provided by the utility model is mainly used outdoors, the power supply source of the power supply is relatively inconvenient, the killing device provided by the utility model is also provided with a solar power supply device, the solar power supply device comprises a solar panel 6, and the solar panel 6 is arranged on the upper panel of the box body 1 so as to receive solar radiation and convert the solar radiation into electric energy; meanwhile, the storage battery 2 is arranged in the box body 1, the solar power supply device is electrically connected with the storage battery 2, and heat energy collected by the solar cell panel 6 is converted into electric energy, so that the problem that a power source of the disinfection equipment is inconvenient is solved.
Further, the filter device 10 is made of filter cotton, the filter cotton is a common filter material, the filter cotton is not easy to absorb water, the filter efficiency is high, and meanwhile, the cost is low, so that the overall cost of the disinfection equipment can be effectively reduced.
In addition, still be provided with rainwater collecting vat 7 on the box of equipment of killing, rainwater collecting vat 7 is the high low V type in centre in both sides, and rainwater is assembled to the centre by the both sides of rainwater collecting vat 7 during convenient rainy, and the waterlogging caused by excessive rainfall hole has been seted up to the tank bottom part in centre, rainwater collecting vat 7 is relative rather than the first container 8 that is located the below, during rainy, and rainwater can flow to first container 8 along the waterlogging caused by excessive rainfall hole, and the water level in first container 8 is not enough, then fills first container 8 with water, if the water level is in full state in the first container 8, then discharges water to the second container through overflow pipe 16 to this water level that keeps two containers.
According to the mosquito egg sterilizing equipment provided by the utility model, the solar cell panel 6, the storage battery 2, the first timing switch 3, the second timing switch 4, the electromagnetic valve 9 and the water pump 12 are connected through wires to form a full-automatic loop, the liquid flow branch is used for discharging water carrying mosquito eggs and larvae in the first container 8, after the mosquito eggs and larvae are reserved on the filtering device 10, the water pump 12 is used for pumping the filtered water in the second container 11 to the first container 8 again, and the water level of the first container 8 is ensured through the second timing switch 4. Thus, by controlling the timer switch, the killing apparatus discharges water from the first container 8 once every 72 hours, and then pumps water from the second container 11 to the first container 8, thereby ensuring that enough water is provided in the first container 8 to the mosquitoes to lay eggs, and filtering out the eggs and larvae of the mosquitoes in the first container 8 to cause the mosquitoes to die in a dry environment without water, thereby controlling the density of the mosquitoes around the killing apparatus.
In summary, in the mosquito egg killing apparatus provided by the present utility model, before the mosquito eggs in the first container grow into mosquitoes, the liquid carrying the mosquito eggs is discharged to the filtering device 10 through the liquid flow branch, so that the mosquito eggs are separated from the liquid; the mosquito egg sterilizing equipment kills mosquito eggs from the mosquito reproduction source after the mosquito eggs are separated from the liquid and dried in an anhydrous environment, and meanwhile, the mosquito egg sterilizing equipment kills the mosquito eggs by filtering the mosquito eggs out of a container and then drying, correcting and sterilizing the mosquito eggs, so that the problem of environmental pollution caused by spraying medicines to kill mosquitoes is avoided.
Variations and modifications to the above would be obvious to persons skilled in the art to which the utility model pertains from the foregoing description and teachings. Therefore, the utility model is not limited to the specific embodiments disclosed and described above, but some modifications and changes of the utility model should be also included in the scope of the claims of the utility model. In addition, although specific terms are used in the present specification, these terms are for convenience of description only and do not limit the present utility model in any way.

Claims (10)

1. The mosquito egg killing device comprises a box body, and is characterized in that a first container for containing liquid and allowing mosquitoes to enter the liquid and spawn in the liquid and a second container for receiving the liquid led out from the first container are arranged on the box body;
the liquid flow branch is arranged between the first container and the second container, the branch is provided with a first timing switch used for controlling the liquid in the first container to periodically flow to the second container, and a filtering device positioned at the downstream of the first timing switch, when the first timing switch is opened, the liquid in the first container enters the second container after passing through the filtering device.
2. A mosquito egg sanitizing apparatus as claimed in claim 1, wherein said first container and said second container are disposed in a vertically opposed relationship.
3. The mosquito egg sanitizing apparatus of claim 1, further comprising a water pumping device connected at one end to the first container and at the other end to the second container for delivering the liquid filtered by the filter device in the second container to the first container.
4. A mosquito egg disinfection apparatus according to claim 3, wherein the water pumping device comprises a water pump, a water pumping pipe and a second timing switch, wherein one end of the water pump is connected with the second container, and the other end of the water pump is connected with the first container through the water pumping pipe; the second timing switch is electrically connected with the power supply of the disinfection equipment and the water pump respectively and is used for controlling the on-off time of the water pump when the liquid in the second container is conveyed to the first container, so that the first container can keep a certain water level.
5. The mosquito egg sterilizing apparatus according to claim 1, wherein the liquid flow branch includes a solenoid valve and a drain pipe, the solenoid valve is electrically connected to the first timer switch, and one end of the solenoid valve is connected to the first container, and the other end of the solenoid valve is connected to the filter device through the drain pipe, for discharging the liquid carrying the mosquito eggs in the first container to the filter device in a cycle set by the first timer switch.
6. A mosquito egg sanitizing apparatus as claimed in claim 1, wherein the second container has a cover plate with a central opening, the filter means is disposed at the central opening of the cover plate, and the upper surface of the filter means is lower than the upper surface of the cover plate.
7. A mosquito egg sanitizing apparatus as set forth in claim 5 wherein the liquid flow path further comprises an overflow tube having one end connected to the upper side wall of the first container and the other end connected to a drain tube.
8. A mosquito egg disinfection apparatus as claimed in claim 4, further comprising a solar power supply means electrically connected to a power supply of the disinfection apparatus.
9. A mosquito egg sanitizing apparatus as claimed in claim 1, wherein the filter means is filter cotton.
10. The mosquito egg disinfection and sterilization equipment according to claim 1, wherein a rainwater collecting tank is further arranged on the box body of the disinfection and sterilization equipment, a draining hole is formed in the bottom of the rainwater collecting tank, and the draining hole of the rainwater collecting tank is arranged opposite to the first container and is used for collecting rainwater.
CN202321562093.8U 2023-06-19 2023-06-19 Mosquito egg disinfection equipment Active CN219961753U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321562093.8U CN219961753U (en) 2023-06-19 2023-06-19 Mosquito egg disinfection equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321562093.8U CN219961753U (en) 2023-06-19 2023-06-19 Mosquito egg disinfection equipment

Publications (1)

Publication Number Publication Date
CN219961753U true CN219961753U (en) 2023-11-07

Family

ID=88576821

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321562093.8U Active CN219961753U (en) 2023-06-19 2023-06-19 Mosquito egg disinfection equipment

Country Status (1)

Country Link
CN (1) CN219961753U (en)

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