CN213012215U - Movable automatic flow adds microbial inoculum device - Google Patents
Movable automatic flow adds microbial inoculum device Download PDFInfo
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- CN213012215U CN213012215U CN202020703452.7U CN202020703452U CN213012215U CN 213012215 U CN213012215 U CN 213012215U CN 202020703452 U CN202020703452 U CN 202020703452U CN 213012215 U CN213012215 U CN 213012215U
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Abstract
The utility model relates to an environment improvement technical field discloses an automatic flow of movable adds microbial inoculum device, including device body (1), device body (1) is including storing up fungus ware (2), water receiver (3) and blender (4), be equipped with on blender (4) and store up fungus ware (2) and water receiver (3), be equipped with feed inlet (201) on storing up fungus ware (2), store up fungus ware (2) inside upper end and be equipped with agitator (202), store up fungus ware (2) bottom and be equipped with discharge gate (203) and micropore aeration dish (204), be equipped with water inlet (301) on water receiver (3), water receiver (3) bottom is equipped with delivery port (302), blender (4) bottom is equipped with inductor (403) and bin outlet (404). The utility model discloses a close water receiver, storage fungus ware and blender as an organic whole, make device simple structure, convenient operation can remove along with the ship and more do benefit to the throwing in of river course microbial inoculum.
Description
Technical Field
The utility model relates to an environmental management technical field has especially related to an automatic flow of movable adds microbial inoculum device.
Background
At present, the traditional automatic flow microbial inoculum adding device respectively and independently comprises water storage equipment and microbial inoculum storage equipment, can meet the requirements of automatic dosing and fixed-point spraying of microbial inoculum, but has large occupied area and can only be fixedly installed to cause great inconvenience to river treatment. A microbial installation for in situ remediation and treatment of a body of water in a river as set forth in application No. CN201520679281.8, comprising: the device comprises a fan, a floating platform, a support assembly, an aeration device and at least one microbial agent column; the floating platform has a fixing member for fixing the floating platform at a designated position in a river; the fan is fixed on the floating platform; the bracket assembly is fixedly connected with the floating platform; the aeration device and the at least one microbial inoculum column are arranged at the position of the bracket assembly, which is immersed in water; the microbial inoculum column is positioned below the aeration device; the air inlet of the aeration device is connected with the air outlet of the fan through a pipeline; the solid microbial inoculum is filled in the microbial inoculum column, and the outer wall of the microbial inoculum column is provided with a through hole so that the solid microbial inoculum is released into water through the through hole. Above-mentioned patent is through the microbial inoculum post and the aeration equipment that will adorn and have added the microbial inoculum and floating platform relatively fixed, floating platform is fixed in the river both sides again for the microbial inoculum post can be at appointed river flow point sustained release microbial inoculum, and because aeration equipment's aeration action, has solved the problem of water oxygen deficiency, has improved the survival rate of microbial inoculum, consequently, need not artifically throw with microbial inoculum repeatedly to appointed river flow point, and the cost of labor is low. But its area is big, and can only fixed mounting equipment spout again and throw, and is not convenient enough in efficiency and operation, and this patent optimizes on traditional automatic flow adds the bacterial agent equipment, and water storage equipment and storage bacterial equipment combine as an organic whole, and convenient operation can remove along with the ship and more do benefit to the river course microbial agent and put in.
SUMMERY OF THE UTILITY MODEL
The utility model discloses to automatic flow adds microbial inoculum device fixed mounting among the prior art, water storage equipment and the detached shortcoming of storage bacterial equipment provide a movable automatic flow adds microbial inoculum device.
In order to solve the technical problem, the utility model discloses a following technical scheme can solve:
the utility model provides an automatic flow of movable adds microbial inoculum device, includes the device body, and the device body includes stores up fungus ware, water receiver and blender, is equipped with fungus ware and water receiver on the blender, is equipped with the feed inlet on the fungus ware, stores up the inside upper end of fungus ware and is equipped with the agitator, stores up fungus ware bottom and is equipped with discharge gate and micropore aeration dish, is equipped with the water inlet on the water receiver, and the water receiver bottom is equipped with the delivery port, and the blender bottom is equipped with inductor and bin outlet. The microbial liquid is cultured and stored in the microbial storage device, the water storage device is filled with water, the microbial liquid and the water are mixed by the microbial storage device and the water storage device through the mixer, the culture is continued, and the mixed microbial liquid is added into the lake through the discharge hole at the bottom, so that the effect of purifying the river water body is achieved.
Preferably, the stirrer comprises a stirring shaft and a stirring blade, wherein the stirring shaft is connected with the stirring blade, and the bacterial liquid is stirred and then mixed.
Preferably, the mixer is provided with a feed inlet and a water inlet, the feed inlet is connected with the discharge port, the water inlet is connected with the water outlet,
preferably, the device further comprises a discharge pipe, the discharge pipe is connected with the discharge opening, and the mixed bacteria liquid is discharged into the water body from the discharge pipe.
Preferably, the sensor comprises a floating ball and a pressure sensor, the floating ball is connected with the pressure sensor and used for sensing the height of the bacterial liquid in the mixer, when the height of the bacterial liquid rises, the floating ball floats upwards under the action of the bacterial liquid, and the pressure sensor feeds back data to further control the discharge of the bacterial liquid.
Preferably, the bottom of the mixer is provided with a cover plate, the cover plate is hinged with the discharge port, and the cover plate is electrically connected with the pressure sensor.
Preferably, the device body is provided with a control box, the control box is electrically connected with the pressure sensor and the cover plate, when the mixed bacteria liquid reaches a certain height, the pressure sensor transmits height data of the mixed bacteria liquid, the control box is operated to control the cover plate to be opened, and the mixed bacteria liquid is discharged.
The utility model discloses owing to adopted above technical scheme, have apparent technological effect: store up and cultivate and save microbial inoculum in the fungus ware, adorn water in the water receiver, store up fungus ware and water receiver and pass through the blender and mix microbial inoculum and water, continue to cultivate, after mixed fungus liquid reaches a take the altitude, the altitude data of the mixed fungus liquid of pressure sensor transmission, operation control box control cover plate is opened, and mixed fungus liquid discharges into the water, plays the effect in purifying the river course. The utility model discloses a close water receiver, storage fungus ware and blender as an organic whole, make device simple structure, convenient operation can remove along with the ship and more do benefit to the throwing in of river course microbial inoculum.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural view of a discharge port and a feed port.
Fig. 3 is a schematic view of the structure of the water outlet and the water inlet.
Fig. 4 is a partially enlarged view of a in fig. 1.
The names of the parts indicated by the numerical references in the above figures are as follows: the device comprises a device body 1, a bacteria storage device 2, a feed inlet 201, a stirrer 202, a stirring shaft 2021, a stirring blade 2022, a discharge outlet 203, a micropore aeration disc 204, a water storage device 3, a water inlet 301, a water outlet 302, a mixer 4, a feed inlet 401, a water inlet 402, an inductor 403, a floating ball 4031, a pressure sensor 4032, a discharge outlet 404, a cover plate 405, a discharge pipe 5 and a control box 6.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and examples.
Example 1
A movable automatic flow microbial inoculum device is shown in figures 1-4 and comprises a device body 1, wherein the device body 1 comprises a bacteria storage device 2, a water storage device 3 and a mixer 4, the mixer 4 is provided with the bacteria storage device 2 and the water storage device 3, the bacteria storage device 2 is provided with a feed inlet 201, the upper end inside the bacteria storage device 2 is provided with a stirrer 202, the bottom of the bacteria storage device 2 is provided with a discharge hole 203 and a micropore aeration disc 204, the water storage device 3 is provided with a water inlet 301, the bottom of the water storage device 3 is provided with a water outlet 302, and the bottom of the mixer 4 is provided with an inductor 403 and a discharge hole 404. The microbial liquid is cultured and stored in the bacterium storage device 2, the water storage device 3 is filled with water, the bacterium storage device 2 and the water storage device 3 mix the microbial liquid with the water through the mixer 4, the culture is continued, and the mixed microbial liquid is added into the lake through the discharge hole 404 at the bottom, so that the effect of purifying the river water body is achieved.
The stirrer 202 includes a stirring shaft 2021 and a stirring blade 2022, the stirring shaft 2021 is connected to the stirring blade 2022, and the bacterial solution is stirred and then mixed.
The mixer 4 is provided with a feeding port 401 and a water inlet 402, the feeding port 401 is connected with the discharging port 203, the water inlet 402 is connected with the water outlet 302,
the device also comprises a discharge pipe 5, wherein the discharge pipe 5 is connected with the discharge port 404, and the mixed bacteria liquid is discharged into a water body from the discharge pipe.
The inductor 403 includes a floating ball 4031 and a pressure sensor 4032, the floating ball 4031 is connected to the pressure sensor 4032 and is used for sensing the bacteria liquid height in the mixer 4, when the bacteria liquid height rises, the floating ball 4031 floats upwards under the action of the bacteria liquid, and the pressure sensor 4032 feeds back data to control the bacteria liquid to be discharged.
The bottom of the mixer 4 is provided with a cover plate 405, the cover plate 405 is hinged with the discharge port 404, and the cover plate 405 is electrically connected with the pressure sensor 4032.
The apparatus body 1 is provided with a control box 6, and the control box 6 is electrically connected to the pressure sensor 4032 and the cover plate 405. When the mixed bacteria liquid reaches a certain height, the pressure sensor 4032 transmits the height data of the mixed bacteria liquid, the operation control box 6 controls the cover plate to be opened, and the mixed bacteria liquid is discharged.
The working principle is as follows: store up and cultivate and save microbial bacterial liquid in the fungus ware 2, adorn water in the water receiver 3, store up fungus ware 2 and water receiver 3 and pass through blender 4 and mix microbial bacterial liquid and water, continue to cultivate, after mixed fungus liquid reaches a take the altitude, pressure sensor 4032 transmits the height data of mixed fungus liquid, and operation control box 6 control cover plate 405 is opened, and mixed fungus liquid row goes into the water, plays the effect in purification river course. The utility model discloses a close water receiver 3, storage fungus ware 2 and blender 4 as an organic whole, make device simple structure, convenient operation can remove along with the ship and more do benefit to the river course microbial inoculum and put in.
Example 2
The utility model provides an automatic flow of movable adds microbial inoculum device, as shown in fig. 1, including device body 1, device body 1 includes fungus ware 2, water receiver 3 and blender 4, be equipped with fungus ware 2 and water receiver 3 on the blender 4, be equipped with feed inlet 201 on the fungus ware 2, the inside upper end of fungus ware 2 is equipped with agitator 202, 2 bottoms of fungus ware are equipped with discharge gate 203 and micropore aeration dish 204, be equipped with water inlet 301 on the water receiver 3, 3 bottoms of water receiver are equipped with delivery port 302, 4 bottoms of blender are equipped with inductor 403 and bin outlet 404. The microbial liquid is cultured and stored in the bacterium storage device 2, the water storage device 3 is filled with water, the bacterium storage device 2 and the water storage device 3 mix the microbial liquid with the water through the mixer 4, the culture is continued, and the mixed microbial liquid is added into the lake through the discharge hole 404 at the bottom, so that the effect of purifying the river water body is achieved.
Example 3
A movable automatic flow microbial inoculum device is shown in figures 1-4 and comprises a device body 1, wherein the device body 1 comprises a bacteria storage device 2, a water storage device 3 and a mixer 4, the mixer 4 is provided with the bacteria storage device 2 and the water storage device 3, the bacteria storage device 2 is provided with a feed inlet 201, the upper end inside the bacteria storage device 2 is provided with a stirrer 202, the bottom of the bacteria storage device 2 is provided with a discharge hole 203 and a micropore aeration disc 204, the water storage device 3 is provided with a water inlet 301, the bottom of the water storage device 3 is provided with a water outlet 302, and the bottom of the mixer 4 is provided with an inductor 403 and a discharge hole 404. The microbial liquid is cultured and stored in the bacterium storage device 2, the water storage device 3 is filled with water, the bacterium storage device 2 and the water storage device 3 mix the microbial liquid with the water through the mixer 4, the culture is continued, and the mixed microbial liquid is added into the lake through the discharge hole 404 at the bottom, so that the effect of purifying the river water body is achieved.
The stirrer 202 includes a stirring shaft 2021 and a stirring blade 2022, the stirring shaft 2021 is connected to the stirring blade 2022, and the bacterial solution is stirred and then mixed.
The mixer 4 is provided with a feeding port 401 and a water inlet 402, the feeding port 401 is connected with the discharging port 203, the water inlet 402 is connected with the water outlet 302,
the device also comprises a discharge pipe 5, wherein the discharge pipe 5 is connected with the discharge port 404, and the mixed bacteria liquid is discharged into a water body from the discharge pipe.
The inductor 403 includes a floating ball 4031 and a pressure sensor 4032, the floating ball 4031 is connected to the pressure sensor 4032 and is used for sensing the bacteria liquid height in the mixer 4, when the bacteria liquid height rises, the floating ball 4031 floats upwards under the action of the bacteria liquid, and the pressure sensor 4032 feeds back data to control the bacteria liquid to be discharged.
The bottom of the mixer 4 is provided with a cover plate 405, the cover plate 405 is hinged with the discharge port 404, and the cover plate 405 is electrically connected with the pressure sensor 4032.
In short, the above description is only a preferred embodiment of the present invention, and all the equivalent changes and modifications made in accordance with the claims of the present invention should be covered by the scope of the present invention.
Claims (7)
1. The utility model provides an automatic flow of movable adds microbial inoculum device, includes device body (1), and device body (1) is equipped with on blender (4) and stores up fungus ware (2) and water receiver (3) including storing up fungus ware (2), water receiver (3) and blender (4), its characterized in that: be equipped with feed inlet (201) on storing up fungus ware (2), store up the inside upper end of fungus ware (2) and be equipped with agitator (202), store up fungus ware (2) bottom and be equipped with discharge gate (203) and micropore aeration dish (204), be equipped with water inlet (301) on water receiver (3), water receiver (3) bottom is equipped with delivery port (302), blender (4) bottom is equipped with inductor (403) and bin outlet (404).
2. The movable automatic flow-adding microbial inoculum device of claim 1, which is characterized in that: the stirrer (202) comprises a stirring shaft (2021) and a stirring blade (2022), and the stirring shaft (2021) is connected with the stirring blade (2022).
3. The movable automatic flow-adding microbial inoculum device of claim 1, which is characterized in that: the mixer (4) is provided with a feeding port (401) and a water inlet (402), the feeding port (401) is connected with the discharge port (203), and the water inlet (402) is connected with the water outlet (302).
4. The movable automatic flow-adding microbial inoculum device of claim 1, which is characterized in that: the device also comprises a discharge pipe (5), and the discharge pipe (5) is connected with the discharge opening (404).
5. The movable automatic flow-adding microbial inoculum device of claim 1, which is characterized in that: the sensor (403) comprises a floating ball (4031) and a pressure sensor (4032), wherein the floating ball (4031) is connected with the pressure sensor (4032).
6. The movable automatic flow-adding microbial inoculum device of claim 5, which is characterized in that: the bottom of the mixer (4) is provided with a cover plate (405), the cover plate (405) is hinged with the discharge port (404), and the cover plate (405) is electrically connected with the pressure sensor (4032).
7. The movable automatic flow-adding microbial inoculum device of claim 6, which is characterized in that: the device body (1) is provided with a control box (6), and the control box (6) is electrically connected with the pressure sensor (4032) and the cover plate (405).
Priority Applications (1)
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CN202020703452.7U CN213012215U (en) | 2020-04-30 | 2020-04-30 | Movable automatic flow adds microbial inoculum device |
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CN202020703452.7U CN213012215U (en) | 2020-04-30 | 2020-04-30 | Movable automatic flow adds microbial inoculum device |
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CN213012215U true CN213012215U (en) | 2021-04-20 |
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