CN215939543U - Organic solid waste treatment workshop deodorization integrated equipment - Google Patents
Organic solid waste treatment workshop deodorization integrated equipment Download PDFInfo
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- CN215939543U CN215939543U CN202121867818.5U CN202121867818U CN215939543U CN 215939543 U CN215939543 U CN 215939543U CN 202121867818 U CN202121867818 U CN 202121867818U CN 215939543 U CN215939543 U CN 215939543U
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Abstract
The utility model discloses a complete set of deodorization device for an organic solid waste treatment workshop, which comprises: a main controller; a peristaltic pump; an atomizing pump; the first electromagnetic valve is electrically connected with the main controller; a flow sensor electrically connected to the main controller; the second electromagnetic valve is electrically connected with the main controller; the third electromagnetic valve is electrically connected with the main controller; the fourth electromagnetic valve is electrically connected with the main controller; a first case; a second case; a mixing box; a first pipe body; a second tube body; a stock solution tank; a medicine chest; a third tube; a fourth tube body; a fifth pipe body; a third box body; sixth body and seventh body. Through the mode, the device disclosed by the utility model is used for deodorizing an organic solid waste treatment workshop, can automatically realize allocation of the deodorizing liquid and also can automatically spray the deodorizing liquid, manual operation is not required, the labor cost is low, and meanwhile, the main controller, the medicine box and the atomizing pump of the device are respectively arranged separately, so that the three can not interfere with each other and can not influence each other.
Description
Technical Field
The utility model relates to the technical field of deodorization equipment, in particular to a complete set of deodorization device for an organic solid waste treatment workshop.
Background
With the continuous improvement of living standard of people, the concentration of urban population leads to the great increase of the quantity of garbage, and the problems of environmental pollution and the like caused by the increase gradually attract the wide attention of people. An organic solid waste treatment workshop is a workshop for treating organic solid waste, is convenient for collecting waste and managing the waste.
At present, the deodorization method for the organic solid waste treatment workshop in the market is simple, and the deodorization for the organic solid waste treatment workshop is realized only by manually spraying the deodorization liquid, but the deodorization liquid needs to be manually sprayed in the mode, and meanwhile, the deodorization liquid also needs to be manually prepared, so that the labor cost is high.
SUMMERY OF THE UTILITY MODEL
The utility model mainly solves the technical problem of providing a complete set of deodorization device for an organic solid waste treatment workshop, which is used for carrying out disinfection and deodorization on the organic solid waste treatment workshop, can automatically realize deodorization liquid preparation and can also realize automatic deodorization liquid spraying, does not need manual operation and has low labor cost.
In order to solve the technical problems, the utility model adopts a technical scheme that: the utility model provides an organic solid useless processing workshop deodorization integrated equipment, including main control unit, with peristaltic pump that main control unit electricity is connected, with atomizing pump that main control unit electricity is connected, with first solenoid valve that main control unit electricity is connected, with flow sensor that main control unit electricity is connected, with second solenoid valve that main control unit electricity is connected, with third solenoid valve that main control unit electricity is connected and with fourth solenoid valve that main control unit electricity is connected, its characterized in that still includes: the first box body is provided with a first accommodating space, wherein the main controller is arranged in the first accommodating space; the second box body is provided with a second accommodating space, wherein the first box body is arranged above the second box body; a mixing box; the first pipe body is used for inputting water, one end of the first pipe body is communicated with the inner cavity of the mixing box, and the first electromagnetic valve and the flow sensor are arranged in the first pipe body; the second pipe body is used for inputting carbon dioxide, one end of the second pipe body is communicated with the inner cavity of the mixing box, and the second electromagnetic valve is arranged in the second pipe body; a stock solution tank; a medicine box, wherein the mixing box, the stock solution box and the medicine box are arranged in the second accommodating space at intervals; one end of the third pipe body is communicated with the inner cavity of the mixing box, and the other end of the third pipe body is communicated with the inner cavity of the medicine box; one end of the fourth pipe body is communicated with the inner cavity of the stock solution tank, the other end of the fourth pipe body is communicated with the third pipe body, and the fourth pipe body is connected with the third pipe body through the peristaltic pump; one end of the fifth pipe body is communicated with the inner cavity of the medicine box, and the third electromagnetic valve is arranged in the fifth pipe body; the second box body is arranged above the third box body, and the atomizing pump is arranged in the third accommodating space; one end of the sixth pipe body is communicated with the inner cavity of the medicine box, and the other end of the sixth pipe body is communicated with the input port of the atomizing pump; and one end of the seventh pipe body is communicated with the output port of the atomizing pump, and the fourth electromagnetic valve is arranged in the sixth pipe body.
Furthermore, the first box body is provided with a first opening communicated with the first accommodating space, and the side wall of the first opening of the first box body is rotatably connected with a first door body used for covering the first opening.
Furthermore, a side wall of the first door body is connected with a side wall of the first opening of the first box body through a plurality of first hinges.
Furthermore, the second box body is provided with a second opening communicated with the second accommodating space, and the side wall of the second opening of the second box body is rotatably connected with a second door body used for covering the second opening.
Furthermore, one side wall of the second door body is connected with the side wall of the second opening of the second box body through a plurality of second hinges.
Furthermore, the third box body is provided with a third opening communicated with the third accommodating space, and the side wall of the third opening of the third box body is rotatably connected with a third door body used for covering the third opening.
Furthermore, one side wall of the third door body is connected with the side wall of the third opening of the third box body through a plurality of third hinges.
The utility model has the beneficial effects that: the complete set of device for deodorizing the organic solid waste treatment workshop is used for disinfecting and deodorizing the organic solid waste treatment workshop, can automatically realize allocation of a deodorizing liquid and can also automatically spray the deodorizing liquid, manual operation is not needed, labor cost is low, and meanwhile, a main controller, a medicine box and an atomizing pump of the complete set of device for deodorizing the organic solid waste treatment workshop are respectively and separately arranged in a first box body, a second box body and a third box body, are not connected with one another, cannot interfere with one another and cannot influence one another.
Drawings
FIG. 1 is a schematic perspective view of a complete deodorizing apparatus for organic solid waste treatment plant according to the present invention;
FIG. 2 is a schematic view showing a partial structure of a deodorizing plant of the organic solid waste treating plant of FIG. 1;
FIG. 3 is a schematic view of the deodorizing plant of the organic solid waste treating plant of FIG. 1.
Detailed Description
As shown in fig. 1 to 3, the set of organic solid waste treatment plant deodorization devices includes a first box 11, a second box 12, a third box 13, a main controller 10, a peristaltic pump 101 electrically connected to the main controller 10, an atomizing pump 102 electrically connected to the main controller 10, a first solenoid valve 103 electrically connected to the main controller 10, a flow sensor 104 electrically connected to the main controller 10, a second solenoid valve 105 electrically connected to the main controller 10, a third solenoid valve 106 electrically connected to the main controller 10, a fourth solenoid valve 107 electrically connected to the main controller 10, a mixing box 14, a first pipe 15, a second pipe 16, a raw liquid box 17, a medicine box 18, a third pipe 19, a fourth pipe 20, a fifth pipe 21, a sixth pipe 22, and a seventh pipe 23.
The first casing 11 is provided with a first receiving space 110, wherein the main controller 10 is disposed in the first receiving space 110.
The second casing 12 is provided with a second receiving space 120 in which the first casing 11 is disposed above the second casing 12.
In the present embodiment, the mixing tank 14, the raw liquid tank 17, and the medicine boxes 18 are provided at intervals in the second accommodating space 120. It should be understood that both the mixing tank 14 and the raw liquid tank 17 are disposed above the medicine tank 18.
The third tank 13 is provided with a third housing space 130, wherein the second tank 12 is disposed above the third tank 13, and the atomizing pump 102 is disposed in the third housing space 130.
The first pipe 15 is used for inputting water, wherein one end of the first pipe 15 is communicated with the inner cavity of the mixing box 14, so as to input water for the mixing box 14 through the first pipe 15. It should be understood that the other end of the first tubular body 15 is exposed outside the side wall of the second casing 12.
Preferably, a first solenoid valve 103 and a flow sensor 104 are provided in the first pipe 15 to control the on/off of the first pipe 15 by the first solenoid valve 103, and the flow rate of water flowing through the first pipe 15 is measured by the flow sensor 104. It is to be understood that the first solenoid valve 103 and the flow sensor 104 are housed in the second housing space 120.
The second tube 16 is used for inputting carbon dioxide, wherein one end of the second tube 16 is communicated with the inner cavity of the mixing box 14, so as to input carbon dioxide for the mixing box 14 through the second tube 16. It will be appreciated that the other end of the second tube 16 is exposed outside the side wall of the second housing 12.
Preferably, a second solenoid valve 105 is provided in the second pipe 16 to control the on/off of the second pipe 16 through the second solenoid valve 105. It is understood that the second solenoid valve 105 is also accommodated in the second accommodation space 120.
One end of the third pipe 19 communicates with the inner cavity of the mixing box 14, and the other end of the third pipe 19 communicates with the inner cavity of the medicine box 18, so that the solution in the mixing box 14 is input into the medicine box 18 through the third pipe 19.
One end of the fourth tube 20 is communicated with the inner cavity of the stock solution tank 17, and the other end of the fourth tube 20 is communicated with the third tube 19. It is to be understood that the raw liquid tank 17 contains raw liquid for generating a deodorizing liquid, and the raw liquid can be transported to the third pipe 19 through the fourth pipe 20 and be input into the medicine box 18.
It should be noted that the stock solution output from the stock solution tank 17 and the solution output from the mixing tank 14 react in the medicine tank 18 to generate the deodorant solution, i.e., the stock solution, the carbon dioxide and the water generate the deodorant solution, so that the deodorant solution can be automatically prepared without manual operation, and the labor cost is low.
Preferably, the fourth tube 20 is connected to the third tube 19 by a peristaltic pump 101 to convey the dope in the dope tank 17 into the medicine tank 18 by the peristaltic pump 101.
It should be understood that the third tube 19, the fourth tube 20 and the peristaltic pump 101 of the present embodiment are housed in the second housing space 120.
One end of the fifth tube 21 communicates with the interior of the medicine box 18, it being understood that the other end of the fifth tube 21 is exposed outside the side wall of the second container body 12, and the fifth tube 21 serves as an overflow drain through which excess liquid in the medicine box 18 can drain through the fifth tube 21 when there is a relatively large amount of solution in the medicine box 18.
Preferably, a third electromagnetic valve 106 is provided in the fifth pipe body 21 to control the on/off of the fifth pipe body 21 through the third electromagnetic valve 106. It is understood that the third solenoid valve 106 is housed in the second housing space 120.
One end of the sixth pipe 22 is communicated with the inner cavity of the medicine box 18, and the other end of the sixth pipe 22 is communicated with the input port of the atomizing pump 102, so that the deodorizing liquid output by the medicine box 18 is atomized by the atomizing pump 102. It should be understood that the sixth pipe 22 is inserted into the second case 12 and the third case 13.
One end of the seventh pipe 23 is communicated with the output port of the atomizing pump 102, so that the atomized deodorant liquid generated by the atomizing pump 102 is output from the seventh pipe 23, the deodorant liquid is sprayed through the atomizing pump 102, manual operation is not needed, and labor cost is low.
It should be understood that the other end of the seventh tubular body 23 is exposed outside the side wall of the third casing 13.
Preferably, a fourth solenoid valve 107 is provided in the sixth pipe 23 to control the on/off of the sixth pipe 23 by the fourth solenoid valve 107. It is to be understood that the fourth solenoid valve 107 is housed in the third housing space 130.
It should be understood that the main controller 10 of the present embodiment is electrically connected to the peristaltic pump 101, the atomizing pump 102, the first solenoid valve 103, the flow sensor 104, the second solenoid valve 105, the third solenoid valve 106 and the fourth solenoid valve 107 through wires that are inserted between the first tank 11, the second tank 12 and the third tank 13.
In this embodiment, the first box 11 is provided with a first opening communicating with the first accommodating space 110, wherein a first door 111 for covering the first opening is rotatably connected to a side wall of the first opening of the first box 11.
Preferably, a side wall of the first door 111 is connected to a side wall of the first opening of the first casing 11 by a plurality of first hinges 112.
In this embodiment, the second casing 12 is provided with a second opening communicating with the second receiving space 120, wherein a second door 121 for covering the second opening is rotatably connected to a sidewall of the second opening of the second casing 12.
Preferably, a side wall of the second door 121 is connected to a side wall of the second opening of the second casing 12 by a plurality of second hinges 122.
In this embodiment, the third casing 13 is provided with a third opening communicated with the third accommodating space 130, wherein a third door 131 for covering the third opening is rotatably connected to a side wall of the third opening of the third casing 13.
Preferably, a side wall of the third door 131 is connected to a side wall of the third opening of the third casing 13 through a plurality of third hinges 132.
In conclusion, the complete set of organic solid waste treatment workshop deodorization device disclosed by the utility model is used for deodorizing an organic solid waste treatment workshop, can automatically realize the allocation of deodorization liquid and also can automatically spray the deodorization liquid, does not need manual operation, is low in labor cost, and meanwhile, a main controller, a medicine box and an atomizing pump of the complete set of organic solid waste treatment workshop deodorization device are respectively and separately arranged in a first box body, a second box body and a third box body, are not connected with each other, cannot interfere with each other and cannot influence each other.
The above description is only an embodiment of the present invention, and not intended to limit the scope of the present invention, and all modifications of equivalent structures and equivalent processes performed by the present specification and drawings, or directly or indirectly applied to other related technical fields, are included in the scope of the present invention.
Claims (7)
1. The utility model provides an organic solid useless processing workshop deodorization integrated equipment, including main control unit, with peristaltic pump that the main control unit electricity is connected, with the atomizing pump that the main control unit electricity is connected, with the first solenoid valve that the main control unit electricity is connected, with the flow sensor that the main control unit electricity is connected, with the second solenoid valve that the main control unit electricity is connected, with the third solenoid valve that the main control unit electricity is connected and with the fourth solenoid valve that the main control unit electricity is connected, its characterized in that still includes:
the first box body is provided with a first accommodating space, wherein the main controller is arranged in the first accommodating space;
the second box body is provided with a second accommodating space, wherein the first box body is arranged above the second box body;
a mixing box;
the first pipe body is used for inputting water, one end of the first pipe body is communicated with the inner cavity of the mixing box, and the first electromagnetic valve and the flow sensor are arranged in the first pipe body;
the second pipe body is used for inputting carbon dioxide, one end of the second pipe body is communicated with the inner cavity of the mixing box, and the second electromagnetic valve is arranged in the second pipe body;
a stock solution tank;
a medicine box, wherein the mixing box, the stock solution box and the medicine box are arranged in the second accommodating space at intervals;
one end of the third pipe body is communicated with the inner cavity of the mixing box, and the other end of the third pipe body is communicated with the inner cavity of the medicine box;
one end of the fourth pipe body is communicated with the inner cavity of the stock solution tank, the other end of the fourth pipe body is communicated with the third pipe body, and the fourth pipe body is connected with the third pipe body through the peristaltic pump;
one end of the fifth pipe body is communicated with the inner cavity of the medicine box, and the third electromagnetic valve is arranged in the fifth pipe body;
the second box body is arranged above the third box body, and the atomizing pump is arranged in the third accommodating space;
one end of the sixth pipe body is communicated with the inner cavity of the medicine box, and the other end of the sixth pipe body is communicated with the input port of the atomizing pump;
and one end of the seventh pipe body is communicated with the output port of the atomizing pump, and the fourth electromagnetic valve is arranged in the sixth pipe body.
2. The complete set of organic solid waste treatment plant deodorization device as recited in claim 1, wherein the first box body is provided with a first opening communicated with the first accommodating space, and a first door body for covering the first opening is rotatably connected to a side wall of the first opening of the first box body.
3. The complete set of organic solid waste treatment plant deodorization devices as recited in claim 2, wherein a side wall of the first door body is connected to a side wall of the first opening of the first box body through a plurality of first hinges.
4. The complete set of organic solid waste treatment plant deodorization device as recited in claim 3, wherein the second box body is provided with a second opening communicated with the second accommodating space, and a second door body for covering the second opening is rotatably connected to a side wall of the second opening of the second box body.
5. The complete set of organic solid waste treatment plant deodorization devices as recited in claim 4, wherein a side wall of the second door body is connected with a side wall of the second opening of the second box body through a plurality of second hinges.
6. The complete set of deodorization devices for organic solid waste treatment workshops according to claim 5, wherein the third box body is provided with a third opening communicated with the third accommodating space, and a third door body for covering the third opening is rotatably connected to a side wall of the third opening of the third box body.
7. The complete set of organic solid waste treatment plant deodorization devices as recited in claim 6, wherein a side wall of the third door body is connected with a side wall of the third opening of the third box body through a plurality of third hinges.
Priority Applications (1)
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CN202121867818.5U CN215939543U (en) | 2021-08-11 | 2021-08-11 | Organic solid waste treatment workshop deodorization integrated equipment |
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CN202121867818.5U CN215939543U (en) | 2021-08-11 | 2021-08-11 | Organic solid waste treatment workshop deodorization integrated equipment |
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