CN218834237U - Organic water soluble fertilizer pH value mediation device - Google Patents
Organic water soluble fertilizer pH value mediation device Download PDFInfo
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- CN218834237U CN218834237U CN202223338831.9U CN202223338831U CN218834237U CN 218834237 U CN218834237 U CN 218834237U CN 202223338831 U CN202223338831 U CN 202223338831U CN 218834237 U CN218834237 U CN 218834237U
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Abstract
The utility model relates to a water-soluble fertilizer technical field specifically is a water-soluble fertilizer pH valve mediation device of organic. The utility model provides an organic water soluble fertilizer pH value mediation device, includes the storage portion that is used for the storage dissolved material, still includes: a support frame; a blending tank which is arranged on the supporting frame and is internally provided with materials to be dissolved; the transfer device is located one side of blending tank and sets up on the support frame to release liquid and be used for dissolving the material in the blending tank and will dissolve the material transfer of completion to storage portion storage in the blending tank. The beneficial effects of the utility model are that: the device pours into the dissolved in-process of liquid into again, makes the power of stirring portion production stirring, can dissolve while stirring and mix, after dissolving the completion, recycles the transfer device and will dissolve the automatic storage portion that rolls out of material and save, and then effectual promotion dissolves material efficiency, reduces the process step, makes it also more convenient to operate.
Description
Technical Field
The utility model relates to a water-soluble fertilizer technical field specifically is a water-soluble fertilizer pH valve mediation device of organic.
Background
The water-soluble organic fertilizer is produced by adopting pure natural fine food-grade raw materials, and is a fine powdery full-water-soluble high-content organic fertilizer. The fertilizer is prepared by treating organic wastes (such as molasses, alcohol tail liquid and the like) to a certain degree.
The water-soluble fertilizer is a quick-acting fertilizer, so that nutrients are easily absorbed by crops, the absorption utilization rate is relatively high, the water-soluble fertilizer takes effect very quickly after being applied, and the water-soluble fertilizer can be combined with facility agriculture such as sprinkling irrigation, drip irrigation, foliage spraying and the like to realize water-fertilizer integration, achieve the effects of saving water, fertilizer and labor, and save manpower and material resources.
SUMMERY OF THE UTILITY MODEL
The utility model discloses to the technical problem who exists among the prior art, provide an organic water soluble fertilizer pH valve mediation device and solve the in-process that dissolves fertilizer at present, need artifical water injection earlier and stir again to loaded down with trivial details as for the step, degree of automation is not high, dissolves inefficiency, stirs in addition and dissolves the instrument and still need outside agitator to mix, the higher problem of cost of labor and energy consumption that consumes.
The utility model provides an above-mentioned technical problem's technical scheme as follows: the utility model provides an organic water-soluble fertilizer pH value mediation device, includes the storage portion that is used for storing the material that has dissolved, still includes:
a support frame;
a blending tank which is arranged on the supporting frame and is internally provided with materials to be dissolved;
the transfer device is positioned on one side of the blending tank and arranged on the supporting frame so as to release liquid into the blending tank to dissolve the materials in the blending tank and transfer the dissolved materials to the material storage part for storage;
the stirring part is respectively arranged in the blending tank and the material storage part, and the liquid is released by the transfer device to provide stirring power so as to mix the liquid and the material to be dissolved;
and the pH value detection device is arranged in the blending tank, is electrically connected with the transfer part and is used for detecting the pH value of the dissolved material.
The utility model has the advantages that:
1) The device injects dissolving liquid into through transfer device and puts the blending tank that remains to dissolve the material, lets inside wait to dissolve the material and dissolve, in addition at the in-process that injects liquid and dissolve, makes the power that stirring portion produced the stirring, can dissolve while stirring and mix, after dissolving the completion, recycles transfer device and will dissolve the automatic storage portion that changes out of material and save, and then effectual promotion dissolves material efficiency, the reduction process step, it is also more convenient to make it operate.
On the basis of the technical scheme, the utility model discloses can also do following improvement.
Further, stirring portion includes (mixing) shaft, first stirring leaf, second stirring leaf and filter screen, storage portion includes holding vessel and connecting pipe, first stirring leaf is fixed respectively in the top and the bottom of (mixing) shaft with second stirring leaf, the filter screen is fixed in blending tank and holding vessel and on being close to the both sides inner wall of bottom, and with form between the bottom for the rotatory movable cavity of second stirring leaf, the (mixing) shaft passes through the bearing and rotates the central department of connection at the filter screen, connecting pipe one end runs through and communicates the movable cavity of holding vessel, and runs through the skew (mixing) shaft of direction and establish the position and correspond with second stirring leaf.
Further, the transfer device includes central catheter, to pouring into the clear water supply portion of clear water and will dissolve the material of accomplishing in the tempering tank and transfer the portion of transferring to storage portion storage, central catheter one end runs through and communicates the activity cavity of tempering tank, and runs through the skew (mixing) shaft position of establishing of direction and correspond with second stirring leaf, clear water supply portion sets up the other end at central catheter with transfer portion respectively.
Further, the clean water supply part comprises a first supply pipe, a supply pump, an electromagnetic valve and a second supply pipe, wherein one end of the first supply pipe is communicated with the central guide pipe, the output end of the supply pump is fixed at the other end of the first supply pipe, the electromagnetic valve is fixed between the first supply pipe and the supply pump, one end of the second supply pipe is fixed at the input end of the supply pump, and the other end of the second supply pipe is communicated with the external water tank.
Further, the transit portion includes transfer pump, first transfer line and second transfer line, first transfer line one end intercommunication is on central catheter, the other end at first transfer line is fixed to the input of transfer pump, the output at the transfer pump is fixed to the one end of second transfer line, and the other end and the connecting duct of second transfer line are linked together.
Further, the pH detection device is a pH sensor, and the pH sensor is electrically connected to the electromagnetic valve, the supply pump, and the transfer pump.
The beneficial effects of adopting the above further scheme are that, clear water in the external water tank is pumped to the second supply pipe by the supply pump and is injected into the movable cavity through the first supply pipe and the central guide pipe, the second stirring blade can be driven to do circumferential rotation motion under the action of impact force on the second stirring blade due to the liquid blown out by the central guide pipe, the second stirring blade is connected with the first stirring blade through the stirring shaft, so that the second stirring blade synchronously rotates along with the first stirring blade, the filtering net permeates and is mutually fused with the materials along with the injected liquid in the movable cavity, the first stirring blade stirs the mutually fused materials to accelerate the dissolution speed, when the pH value sensor detects that the dissolved mixed liquid reaches the set pH value, corresponding inductive electric signals are transmitted to the electromagnetic valve, the supply pump and the transfer pump, the electromagnetic valve and the supply pump respectively close the first supply pipe and stop the supply pump to operate after receiving electric signals, the transfer pump blows negative pressure into the central guide pipe through the first transfer pipe after receiving electric signals again, so as to suck the dissolved mixed liquid in the movable cavity, the first transfer pump, the mixed liquid is further mixed liquid can be injected into the storage tank through the first transfer pipe, the first stirring pipe and the storage tank, the mixed liquid can be uniformly stirred and is further injected into the storage tank through the storage tank, and the first stirring device, the mixed liquid can be uniformly stirred, and is further, and is uniformly injected into the storage tank.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
fig. 2 is a rear view structure diagram of the present invention.
In the drawings, the components represented by the respective reference numerals are listed below:
10. a support frame; 20. a blending tank; 30. a pH value detection device; 40. a transfer device; 401. a central catheter; 402. a clear water supply part; 4021. a first supply pipe; 4022. a supply pump; 4023. an electromagnetic valve; 4024. a second supply pipe; 403. a transfer section; 4031. a transfer pump; 4032. a first transition pipe; 4033. a second diversion pipe; 50. a stirring device; 501. a stirring shaft; 502. a first stirring blade; 503. filtering with a screen; 504. a second stirring blade; 60. a material storage part; 601. a storage tank; 602. a connecting conduit.
Detailed Description
The principles and features of the present invention are described below in conjunction with the following drawings, the examples given are only intended to illustrate the present invention and are not intended to limit the scope of the present invention.
The water-soluble organic fertilizer is produced by adopting pure natural fine food-grade raw materials, and is a fine powdery full-water-soluble high-content organic fertilizer. The fertilizer is prepared by treating organic wastes (such as molasses, alcohol tail liquid and the like) for a certain time.
The water-soluble fertilizer is a quick-acting fertilizer, nutrients are easily absorbed by crops, the absorption utilization rate is relatively high, the water-soluble fertilizer takes effect very quickly after being applied, and the water-soluble fertilizer can be combined with facility agriculture such as sprinkling irrigation, drip irrigation, foliage spraying and the like to realize water and fertilizer integration, so that the effects of saving water, fertilizer and labor are achieved, manpower and material resources are saved, therefore, before the water-soluble fertilizer is used, water is injected into the water-soluble fertilizer to dissolve the fertilizer so as to realize irrigation, in the process of dissolving the fertilizer at present, manual water injection is needed firstly and then stirring is needed, so that the steps are complicated, the automation degree is not high, the dissolving efficiency is low, in addition, a stirring and dissolving tool is needed to be mixed by an external stirrer, the consumed labor cost and the energy consumption are high, and the utility model provides an organic water-soluble fertilizer acid-base blending device to solve the problems.
The present invention provides the following preferred embodiments
As shown in fig. 1 and fig. 2, an organic water soluble fertilizer ph adjusting device includes a storage portion 60 for storing dissolved materials, and further includes:
a support frame 10;
a mixing tank 20 which is arranged on the support frame 10 and is internally provided with materials to be dissolved;
the transfer device 40 is positioned at one side of the blending tank 20 and arranged on the support frame 10 so as to release liquid into the blending tank 20 for dissolving the materials in the blending tank 20 and transfer the dissolved materials to the material storage part 60 for storage;
the stirring parts are respectively arranged in the blending tank 20 and the material storage part 60, and the liquid released by the transfer device 40 provides stirring power to mix the liquid and the material to be dissolved;
pH value detection device 30, set up in blending tank 20 and with transfer portion 403 electrical connection, a pH value for detecting the dissolved material, through transfer device 40 with the solution injection put in the blending tank 20 that remains the dissolved material, let inside wait to dissolve the material and dissolve, in addition at the in-process that the injected liquid dissolves, make the power of stirring portion production stirring, can dissolve while stirring and mix, after dissolving the completion, reuse transfer device 40 with the dissolved material automatic transfer out storage portion 60 store, and then effectual promotion dissolves material efficiency, reduce the process step, it is also more convenient to make it operate.
In this embodiment, as shown in fig. 1 and fig. 2, the stirring portion includes a stirring shaft 501, a first stirring blade 502, a second stirring blade 504, and a filter screen 503, the storage portion 60 includes a storage tank 601 and a connecting conduit 602, the first stirring blade 502 and the second stirring blade 504 are respectively fixed at the top and the bottom of the stirring shaft 501, the filter screen 503 is fixed in the mixing tank 20 and the storage tank 601 and near the inner walls of the two sides of the bottom, and a movable chamber for the second stirring blade 504 to rotate is formed between the filter screen and the bottom, the stirring shaft 501 is rotatably connected to the center of the filter screen 503 through a bearing, one end of the connecting conduit 602 penetrates and communicates with the movable chamber of the storage tank 601, and the penetration direction deviates from the position of the stirring shaft 501 and corresponds to the second stirring blade 504, the transfer device 40 includes a central conduit 401, a clean water supply portion 402 for injecting clean water into the mixing tank 20, and a transfer portion 403 for transferring the dissolved material to the storage portion 60, one end of the central conduit 401 penetrates and communicates with the movable chamber of the mixing tank 20, the penetrating direction is deviated from the position where the stirring shaft 501 is arranged and corresponds to the second stirring blade 504, the clean water supply part 402 and the transit part 403 are respectively arranged at the other end of the central conduit 401, the clean water supply part 402 comprises a first supply pipe 4021, a supply pump 4022, an electromagnetic valve 4023 and a second supply pipe 4024, one end of the first supply pipe 4021 communicates with the central conduit 401, the output end of the supply pump 4022 is fixed at the other end of the first supply pipe 4021, the electromagnetic valve 4023 is fixed between the first supply pipe 4021 and the supply pump 4022, one end of the second supply pipe 4024 is fixed at the input end of the supply pump 4022, the other end of the second supply pipe 4024 communicates with the external water tank, the transit part 403 comprises a transit pump 4031, a pump 403, and a mixing device 501, A first turning-out pipe 4032 and a second turning-out pipe 4033, one end of the first turning-out pipe 4032 is communicated with the central conduit 401, an input end of the transfer pump 4031 is fixed at the other end of the first turning-out pipe 4032, one end of the second turning-out pipe 4033 is fixed at the output end of the transfer pump 4031, the other end of the second turning-out pipe 4033 is communicated with the connecting conduit 602, the pH detection device 30 is set as a pH sensor, the pH sensor is electrically connected with the electromagnetic valve 4023, the supply pump 4022 and the transfer pump 4031, clean water in the external water tank is pumped out to the second supply pipe 4024 by the supply pump 4022 and is injected into the movable chamber through the first supply pipe 4021 and the central conduit 401, due to the effect of impact force on the second stirring blade 504 from the central conduit 401, the second stirring blade 504 can be driven to perform circumferential rotation, and the second stirring blade 504 is connected with the first stirring blade 502 through the stirring shaft 501, therefore, the second stirring blade 504 also rotates synchronously with the first stirring blade 502, as the injected liquid in the movable chamber infiltrates the filter screen 503 and fuses with the material, while the first stirring blade 502 stirs the material that fuses with each other, so as to accelerate the rate of dissolution, when the pH sensor detects that the dissolved mixed liquid reaches the set pH value, the corresponding induced electrical signal is transmitted to the electromagnetic valve 4023, the feed pump 4022 and the relay pump 4031, and the electromagnetic valve 4023 and the feed pump 4022 receive the electrical signal, respectively close the first feed pipe 4021 and stop the operation of the feed pump 4022, the relay pump 4031 receives the electrical signal again, and then blows a negative pressure into the central conduit 401 through the first exit pipe 4032, so as to suck the mixed liquid that has completed dissolution in the movable chamber into the central conduit 401, and then the first exit pipe 4032, the second exit pipe 4033 and the movable chamber in the storage tank 601 through the connection conduit 602, because the stirring device 50 is disposed inside the storage tank 601 and the blending tank 20, the injected mixed solution that has completed dissolution impacts the first stirring vane 502 inside the storage tank 601, and also drives the first stirring vane 502 and the second stirring vane 504 to rotate circumferentially, and in the process of storing the mixed solution, the mixed solution can be further stirred, so that the mixed solution can be stirred more uniformly.
The utility model discloses a concrete working process as follows:
(1) Injecting clear water
Firstly, water-soluble organic fertilizer is put into the blending tank 20, and then clear water in the external water tank is pumped out to the second supply pipe 4024 by the supply pump 4022 and is injected into the movable chamber through the first supply pipe 4021 and the central catheter 401.
(2) The mixture in the blending tank 20 is stirred
After the preparation, the central conduit 401 blows out liquid to the second stirring blade 504 under the action of impact force, so that the second stirring blade 504 can be driven to perform circumferential rotation motion, and the second stirring blade 504 is connected with the first stirring blade 502 through the stirring shaft 501, so that the second stirring blade 504 also rotates synchronously with the first stirring blade 502, and the filter screen 503 is infiltrated and fused with the material along with the injected liquid in the movable chamber, and the first stirring blade 502 stirs the mutually fused material.
(3) The mixed liquid in the blending tank 20 is transferred out of the storage tank 601 for storage
After the mixtures in the blending tank 20 are mutually blended, when a pH sensor (pH 8010 type pH sensor) detects that the dissolved mixed solution reaches a set pH value, corresponding induced electrical signals are transmitted to the electromagnetic valve 4023, the feed pump 4022, and the transfer pump 4031, the electromagnetic valve 4023 and the feed pump 4022 receive electrical signals, respectively close the first feed pipe 4021 and stop the operation of the feed pump 4022, the transfer pump 4031 receives electrical signals again, and then blows a negative pressure into the central catheter 401 through the first diversion pipe 4032, so as to suck the mixed solution in the active chamber, which is completely dissolved, into the central catheter 401, and then the mixed solution is injected into the active chamber in the storage tank 601 through the first diversion pipe 4032, the second diversion pipe 4033, and the connection catheter 602.
(4) Further stirring the mixed solution
After the mixed liquid enters the storage tank 601, because the storage tank 601 and the blending tank 20 are internally provided with the stirring devices 50, the injected mixed liquid which is dissolved completely impacts the first stirring blade 502 in the storage tank 601, and can also drive the first stirring blade 502 and the second stirring blade 504 to rotate circumferentially, and in the process of storing the mixed liquid, the mixed liquid can be further stirred, so that the mixed liquid is stirred more uniformly.
The above description is only for the preferred embodiment of the present invention, and is not intended to limit the present invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included within the protection scope of the present invention.
Claims (6)
1. The utility model provides an organic water-soluble fertilizer pH value mediation device, is including the storage portion that is used for saving the material that has dissolved, its characterized in that still includes:
a support frame;
a blending tank which is arranged on the supporting frame and is internally provided with materials to be dissolved;
the transfer device is positioned on one side of the blending tank and arranged on the supporting frame so as to release liquid into the blending tank to dissolve the materials in the blending tank and transfer the dissolved materials to the material storage part for storage;
the stirring part is respectively arranged in the blending tank and the material storage part, and the liquid is released by the transfer device to provide stirring power so as to mix the liquid and the material to be dissolved;
and the pH value detection device is arranged in the blending tank, is electrically connected with the transfer part and is used for detecting the pH value of the dissolved material.
2. The organic water soluble fertilizer pH value blending device according to claim 1, wherein the stirring part comprises a stirring shaft, a first stirring blade, a second stirring blade and a filter screen, the storage part comprises a storage tank and a connecting pipe, the first stirring blade and the second stirring blade are respectively fixed at the top and the bottom of the stirring shaft, the filter screen is fixed on the inner walls of the two sides of the bottom in the blending tank and the storage tank, and a movable cavity for the second stirring blade to rotate is formed between the filter screen and the bottom, the stirring shaft is rotatably connected to the center of the filter screen through a bearing, one end of the connecting pipe penetrates through and communicates with the movable cavity of the storage tank, and the penetrating direction deviates from the position of the stirring shaft and corresponds to the second stirring blade.
3. The organic water soluble fertilizer pH value blending device according to claim 1, wherein the transfer device comprises a central conduit, a clear water supply part for injecting clear water into the blending tank, and a transfer part for transferring the dissolved material to the storage part for storage, one end of the central conduit penetrates through and is communicated with the movable cavity of the blending tank, the penetration direction of the central conduit deviates from the position of the stirring shaft and corresponds to the second stirring blade, and the clear water supply part and the transfer part are respectively arranged at the other end of the central conduit.
4. The organic water soluble fertilizer pH value adjusting device as defined in claim 3, wherein said clean water supply part comprises a first supply pipe, a supply pump, a solenoid valve and a second supply pipe, wherein one end of said first supply pipe is connected to said central conduit, the output end of said supply pump is connected to the other end of said first supply pipe, said solenoid valve is connected between said first supply pipe and said supply pump, one end of said second supply pipe is connected to the input end of said supply pump, and the other end of said second supply pipe is connected to the external water tank.
5. The organic water soluble fertilizer pH value blending device according to claim 4, wherein the transfer part comprises a transfer pump, a first transfer pipe and a second transfer pipe, one end of the first transfer pipe is connected to the central conduit, an input end of the transfer pump is fixed to the other end of the first transfer pipe, one end of the second transfer pipe is fixed to an output end of the transfer pump, and the other end of the second transfer pipe is connected to the connecting conduit.
6. The pH adjusting apparatus of claim 5, wherein the pH detecting device is a pH sensor, and the pH sensor is electrically connected to the solenoid valve, the supply pump and the transfer pump.
Priority Applications (1)
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CN202223338831.9U CN218834237U (en) | 2022-12-12 | 2022-12-12 | Organic water soluble fertilizer pH value mediation device |
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CN202223338831.9U CN218834237U (en) | 2022-12-12 | 2022-12-12 | Organic water soluble fertilizer pH value mediation device |
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CN202223338831.9U Active CN218834237U (en) | 2022-12-12 | 2022-12-12 | Organic water soluble fertilizer pH value mediation device |
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