CN216987548U - Production device of water-soluble nitro-sulfenyl nitrogen-potassium fertilizer - Google Patents

Production device of water-soluble nitro-sulfenyl nitrogen-potassium fertilizer Download PDF

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Publication number
CN216987548U
CN216987548U CN202220368505.3U CN202220368505U CN216987548U CN 216987548 U CN216987548 U CN 216987548U CN 202220368505 U CN202220368505 U CN 202220368505U CN 216987548 U CN216987548 U CN 216987548U
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mixing tank
stage mixing
nitro
potassium fertilizer
nitrogen
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李庆青
李敬礼
李广乾
冯西朋
钱明
支保宁
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Hebei Jiheng Sincerity Chemical Co ltd
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Hebei Jiheng Sincerity Chemical Co ltd
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Abstract

The utility model discloses a production device of a water-soluble nitro-sulfenyl nitrogen-potassium fertilizer, which comprises a plurality of storage tanks, a tower-loading bucket elevator, a mixing mechanism, an emulsifying machine and a granulator, wherein the storage tanks are arranged on the tower; the storage tank is used for storing the nitro-sulfenyl nitrogen potassium fertilizer raw material; the upper tower bucket elevator is arranged on one side of the storage tanks and is used for conveying nitro-sulfenyl nitrogen potassium fertilizer raw materials in the storage tanks; mixing mechanism is connected with the delivery end of last tower bucket lifting machine for nitre sulfenyl nitrogen potash fertilizer raw materials that the machine was carried is carried to last tower bucket mixes, and mixing mechanism includes one-level compounding jar, second grade compounding jar and tertiary compounding jar, all is connected with the connecting pipe between one-level compounding jar and second grade compounding jar, second grade compounding jar and the tertiary compounding jar. The utility model can ensure the nitryl sulfenyl nitrogen potassium fertilizer granulation to be round, full water-soluble and high in particle strength by arranging the corresponding mechanism, meets the production requirements of producers, and can also meet the application of users on crops.

Description

Production device of water-soluble nitro-sulfenyl nitrogen-potassium fertilizer
Technical Field
The utility model belongs to the technical field of fertilizer production devices, and particularly relates to a production device of a water-soluble nitro-sulfenyl nitrogen-potassium fertilizer.
Background
Compared with other traditional compound fertilizers, the nitro-sulfenyl compound fertilizer has the advantages of high nitrogen content, high potassium content, reasonable formula, good solubility, rapid fertilizer effect, favorable absorption of nutrients such as phosphorus, potassium and the like, high fertilizer utilization rate and capability of avoiding or reducing the accumulation of nitrite in plants, and belongs to a novel compound fertilizer with high quality, high efficiency, environmental protection and no public nuisance.
At present, when a high tower is used for producing the nitro-sulfenyl nitrogen-potassium fertilizer, because phosphorus-containing raw materials do not exist in nitro-sulfenyl, the viscosity of nitro-sulfenyl is poor, and finished product particles with round appearance and good water solubility are difficult to prepare.
Therefore, in order to solve the above technical problems, it is necessary to provide a production apparatus for water-soluble nitro-sulfur-based nitrogen-potassium fertilizer.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a production device of a water-soluble nitro-thio nitrogen potassium fertilizer, which solves the problem that the production device of the nitro-thio nitrogen potassium fertilizer is insufficient.
In order to achieve the above object, an embodiment of the present invention provides the following technical solutions:
a production device of a water-soluble nitro-sulfenyl nitrogen-potassium fertilizer comprises a plurality of storage tanks, a bucket elevator on a tower, a mixing mechanism, an emulsifying machine and a granulator;
the storage tank is used for storing a nitro-sulfenyl nitrogen potassium fertilizer raw material;
the upper tower bucket elevator is arranged on one side of the storage tanks and is used for conveying nitro-sulfenyl nitrogen potassium fertilizer raw materials in the storage tanks;
the mixing mechanism is connected with the conveying end of the upper tower bucket elevator and is used for mixing nitro-sulfenyl nitrogen potassium fertilizer raw materials conveyed by the upper tower bucket elevator, the mixing mechanism comprises a first-stage mixing tank, a second-stage mixing tank and a third-stage mixing tank, and connecting pipes are connected between the first-stage mixing tank and the second-stage mixing tank as well as between the second-stage mixing tank and the third-stage mixing tank;
an overflow pipe is connected between the emulsifying machine and the three-stage mixing tank and is used for receiving the slurry mixed by the mixing mechanism and further mixing the slurry;
the granulator is connected with the emulsifying machine and is used for granulating the mixed slurry.
Further, a material discharging pipe is connected to the material storage tank and used for extracting the nitro-sulfenyl nitrogen potassium fertilizer raw material in the material storage tank;
and a transverse pipe is connected between the discharge pipes and is used for connecting the discharge pipes.
Further, the transverse pipe is connected with a material suction pipe for conveying the nitro-sulfenyl nitrogen potassium fertilizer raw material in the material storage tank into the upper tower bucket elevator;
the material suction pipe is provided with a material suction pump for pumping the nitro-sulfur-based nitrogen potassium fertilizer raw material in the material storage tank, and the other end of the material suction pipe is connected with the upper tower bucket elevator.
Further, the discharge end that the machine was carried to the upper tower fill is connected with the conveying pipeline, be connected with a plurality of branch pipes on the conveying pipeline, it is a plurality of the branch pipe respectively with one-level compounding jar, second grade compounding jar and the corresponding setting of tertiary compounding jar, the machine is carried to the upper tower fill and is sent into the fertile raw materials of nitryl sulphur based nitrogen potassium that carry into in the compounding mechanism through conveying pipeline and branch pipe and mix.
Furthermore, a plurality of layers of heating inner coil pipes are arranged in the first-stage mixing tank and the second-stage mixing tank and are used for heating the nitro-sulfenyl nitrogen-potassium fertilizer raw materials in the first-stage mixing tank and the second-stage mixing tank so as to better mix the nitro-sulfenyl nitrogen-potassium fertilizer raw materials;
and a guide cylinder is arranged in the third-stage mixing tank and used for guiding out slurry in the third-stage mixing tank so that the slurry can enter the emulsifying machine to be mixed again.
Further, stirring motors are arranged on the first-stage mixing tank, the second-stage mixing tank and the third-stage mixing tank and are used for stirring and mixing slurry in the first-stage mixing tank, the second-stage mixing tank and the third-stage mixing tank;
one end of an output shaft of the stirring motor, which is positioned in the primary mixing tank, is connected with a plurality of paddle type stirring blades, so that the sufficient stirring effect on the nitro-thio nitrogen potassium fertilizer raw material in the primary mixing tank is ensured;
the one end that agitator motor's output shaft is located second grade compounding jar and tertiary compounding jar all is connected with impulse type stirring leaf and a plurality of thick liquid formula stirring leaf for the better mixture of nitre sulfenyl nitrogen potassium fertilizer raw materials in second grade compounding jar and the tertiary compounding jar guarantees that the granulation is mellow.
Compared with the prior art, the utility model has the following advantages:
the utility model can ensure the nitryl sulfenyl nitrogen potassium fertilizer granulation to be round, full water-soluble and high in particle strength by arranging the corresponding mechanism, meets the production requirements of producers, and can also meet the application of users on crops.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments described in the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
FIG. 1 is a first perspective view of an apparatus for producing a water-soluble nitro-thio-nitrogen-potassium fertilizer according to an embodiment of the present invention;
FIG. 2 is a second perspective view of an apparatus for producing a water-soluble nitro-thio-nitrogen-potassium fertilizer according to an embodiment of the present invention;
FIG. 3 is a schematic view of the structure at A in FIG. 2;
FIG. 4 is a partial sectional view of an apparatus for producing a water-soluble nitro-sulfur-based nitrogen-potassium fertilizer according to an embodiment of the present invention.
In the figure: 1. the device comprises a material storage tank, 101 discharge pipes, 102 horizontal pipes, 103 material suction pipes, 104 material suction pumps, 2 bucket elevators on the tower, 201 material conveying pipes, 202 branch pipes, 3 material mixing mechanisms, 301 first-stage material mixing tanks, 302 second-stage material mixing tanks, 303 third-stage material mixing tanks, 304 connecting pipes, 305 stirring motors, 306 paddle type stirring blades, 307 heating inner coil pipes, 308 propelling type stirring blades, 309 guide cylinders, 4 emulsifying machines, 401 overflow pipes and 5 granulating machines.
Detailed Description
The present invention will be described in detail below with reference to embodiments shown in the drawings. The present invention is not limited to the embodiments, and structural, methodological or functional changes made by those skilled in the art according to the embodiments are included in the scope of the present invention.
The utility model discloses a production device of a water-soluble nitro-sulfenyl nitrogen-potassium fertilizer, which is shown in figures 1-4 and comprises a plurality of storage tanks 1, an upper tower bucket elevator 2, a mixing mechanism 3, an emulsifying machine 4 and a granulator 5.
Wherein, storage tank 1 is used for the fertile raw materials of storage nitro sulfenyl nitrogen potassium, is connected with row material pipe 101 on storage tank 1 for the fertile raw materials of extraction nitro sulfenyl nitrogen potassium in storage tank 1.
Preferably, the storage tanks 1 are five in number and are used for storing ammonium nitrate solution, ammonium sulfate, magnesium nitrate, anhydrous sodium sulfate and potassium sulfate respectively.
In addition, the storage tank 1 for storing the ammonium nitrate solution is metered by a liquid flowmeter, and the storage tanks 1 for storing the ammonium sulfate, the magnesium nitrate, the anhydrous sodium sulfate and the potassium sulfate are respectively metered by metering scales.
Specifically, a horizontal pipe 102 is connected between the plurality of discharge pipes 101 for connecting the plurality of discharge pipes 101.
In addition, a material suction pipe 103 is connected to the horizontal pipe 102 and used for conveying the nitro-sulfenyl nitrogen potassium fertilizer raw material in the material storage tank 1 to the upper tower bucket elevator 2.
Preferably, the material suction pipe 103 is provided with a material suction pump 104 for pumping the nitro-sulfur-based nitrogen potassium fertilizer raw material in the material storage tank 1, and the other end of the material suction pipe 103 is connected with the upper bucket elevator 2.
Referring to fig. 1-2, the upper tower bucket elevator 2 is disposed at one side of the storage tanks 1, and is used for conveying nitro-sulfenyl nitrogen potassium fertilizer raw materials in the storage tanks 1.
Wherein, the discharge end of the machine 2 is carried to the upper tower fill is connected with conveying pipeline 201, is connected with a plurality of branch pipes 202 on the conveying pipeline 201, and a plurality of branch pipes 202 set up with one-level mixing tank 301, second grade mixing tank 302 and tertiary mixing tank 303 respectively correspondingly, and the machine 2 is carried to the upper tower fill and the nitryl sulphur base nitrogen potassium fertilizer raw materials that will carry are sent into in compounding mechanism 3 through conveying pipeline 201 and branch pipe 202 and are mixed, the state that fig. 1 shows promptly.
In addition, the transverse pipe 102, the suction pipe 103 and the delivery pipe 201 are all conveyed in a sealed mode.
Referring to fig. 1-4, the mixing mechanism 3 is connected to the conveying end of the upper bucket elevator 2 for mixing the nitro-thio-nitrogen-potassium fertilizer raw material conveyed by the upper bucket elevator 2, the mixing mechanism 3 includes a first-stage mixing tank 301, a second-stage mixing tank 302 and a third-stage mixing tank 303, the first-stage mixing tank 301 is used for mixing ammonium nitrate solution and ammonium sulfate powder, the second-stage mixing tank 302 is used for mixing magnesium nitrate and anhydrous sodium sulfate powder, and the third-stage mixing tank 303 is used for mixing potassium sulfate powder.
Wherein, all be connected with connecting pipe 304 between one-level mixing bowl 301 and second grade mixing bowl 302, second grade mixing bowl 302 and the tertiary mixing bowl 303 for during the ground paste in the one-level mixing bowl 301 can overflow and enter into second grade mixing bowl 302, during the ground paste in the second grade mixing bowl 302 can overflow and enter into tertiary mixing bowl 303.
In addition, the height of one-level mixing bowl 301, second grade mixing bowl 302 and tertiary mixing bowl 303 reduces in proper order, and all installs agitator motor 305 on one-level mixing bowl 301, second grade mixing bowl 302 and the tertiary mixing bowl 303 for the thick liquids to in one-level mixing bowl 301, second grade mixing bowl 302 and the tertiary mixing bowl 303 stir the mixture, guarantee the mixability of raw materials.
Specifically, one end of the output shaft of the stirring motor 305, which is located in the first-stage mixing tank 301, is connected with a plurality of paddle type stirring blades 306, so that a sufficient stirring effect on the nitro-sulfenyl nitrogen potassium fertilizer raw material in the first-stage mixing tank 301 is ensured.
Preferably, the number of paddle type stirring vanes 306 is three.
In addition, all be equipped with multilayer heating inner coil pipe 307 in one-level compounding jar 301 and the second grade compounding jar 302 for the fertile raw materials of nitryl sulphur base nitrogen potassium in heating one-level compounding jar 301 and the second grade compounding jar 302, so that the better mixing of nitryl sulphur base nitrogen potassium fertilizer raw materials.
Preferably, the heating inner coil 307 in the first-stage mixing tank 301 is three-layered, and the heating inner coil 307 in the second-stage mixing tank 302 is two-layered.
Referring to fig. 2-4, one end of the output shaft of the stirring motor 305, which is located inside the second-stage mixing tank 302 and the third-stage mixing tank 303, is connected to a propeller-type stirring blade 308 and a plurality of paddle-type stirring blades 306, so that the nitro-sulfur-based nitrogen potassium fertilizer raw materials inside the second-stage mixing tank 302 and the third-stage mixing tank 303 are better mixed, and granulation is ensured to be smooth.
Wherein, the number of the paddle type stirring blades 306 is two.
In addition, a guide cylinder 309 is arranged in the third-stage mixing tank 303 and used for guiding out the slurry in the third-stage mixing tank 303 so that the slurry can enter the emulsifying machine 4 for mixing again.
Referring to fig. 1-2, an overflow pipe 401 is connected between the emulsifier 4 and the third mixing bowl 303 for receiving slurry overflowing from the third mixing bowl 303 and for further mixing the slurry.
Wherein, the emulsifying machine 4 adopts a high-speed shearing mixing mode to further and completely mix the slurry uniformly.
The granulator 5 is connected to the emulsifier 4, and is used for granulating the mixed slurry.
When the device is used specifically, raw materials in a plurality of material storage tanks 1 enter an upper tower bucket elevator 2 in a metering or weighing mode, and are conveyed under the action of the upper tower bucket elevator 2, wherein an ammonium nitrate solution and ammonium sulfate powder are added into a first-stage mixing tank 301, magnesium nitrate and anhydrous sodium sulfate powder are added into a second-stage mixing tank 302, potassium sulfate powder is added into a third-stage mixing tank 303, the ammonium nitrate solution and the ammonium sulfate powder in the first-stage mixing tank 301 are stirred and mixed by three layers of paddle stirring blades 306 and are heated by an inner heating coil 307 and an outer heating coil 307, slurry overflows into the second-stage mixing tank 302, the second-stage mixing tank 302 is stirred by two layers of paddle stirring blades 306 and a layer of push stirring blades 308, the inner heating coil 307 is used for heating, the slurry overflows into the third-stage mixing tank 303, the third-stage mixing tank 303 is stirred by two layers of paddle stirring blades 306 and a layer of push stirring blades 308, and a layer of guide cylinder 309, the slurry overflows to the emulsifying machine 4 to further and completely mix the slurry uniformly, and then the slurry is discharged from the emulsifying machine 4 to enter the granulator 5 to be granulated by rotating and spraying.
According to the technical scheme, the utility model has the following beneficial effects:
the utility model can ensure the nitryl sulfenyl nitrogen potassium fertilizer granulation to be round, full water-soluble and high in particle strength by arranging the corresponding mechanism, meets the production requirements of producers, and can also meet the application of users on crops.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (6)

1. The utility model provides a production facility of water-soluble nitryl sulfur-based nitrogen potash fertilizer which characterized in that includes:
the storage tanks (1) are used for storing nitro-sulfenyl nitrogen potassium fertilizer raw materials;
the upper tower bucket elevator (2) is arranged on one side of the storage tanks (1) and is used for conveying nitro-sulfenyl nitrogen potassium fertilizer raw materials in the storage tanks (1);
the mixing mechanism (3) is connected with the conveying end of the upper tower bucket elevator (2) and is used for mixing the nitro-sulfenyl nitrogen-potassium fertilizer raw materials conveyed by the upper tower bucket elevator (2);
the mixing mechanism (3) comprises a first-stage mixing tank (301), a second-stage mixing tank (302) and a third-stage mixing tank (303), and connecting pipes (304) are connected between the first-stage mixing tank (301) and the second-stage mixing tank (302) and between the second-stage mixing tank (302) and the third-stage mixing tank (303);
an overflow pipe (401) is connected between the emulsifying machine (4) and the third-stage mixing tank (303) and is used for receiving the slurry mixed by the mixing mechanism (3) and further mixing the slurry;
and the granulator (5) is connected with the emulsifying machine (4) and is used for granulating the mixed slurry.
2. The production device of the water-soluble nitro-sulfenyl nitrogen-potassium fertilizer as claimed in claim 1, wherein the material storage tank (1) is connected with a material discharge pipe (101), and a plurality of transverse pipes (102) are connected between the material discharge pipes (101).
3. The production device of the water-soluble nitro-sulfur-based nitrogen-potassium fertilizer as claimed in claim 2, wherein the horizontal pipe (102) is connected with a material suction pipe (103), the material suction pipe (103) is provided with a material suction pump (104), and the other end of the material suction pipe (103) is connected with the upper tower bucket elevator (2).
4. The production device of water-soluble nitro-sulfur-based nitrogen-potassium fertilizer as claimed in claim 1, wherein the discharge end of the upper tower bucket elevator (2) is connected with a material conveying pipe (201), the material conveying pipe (201) is connected with a plurality of branch pipes (202), and the plurality of branch pipes (202) are respectively arranged corresponding to the first-stage mixing tank (301), the second-stage mixing tank (302) and the third-stage mixing tank (303).
5. The device for producing the water-soluble nitro-sulfur-based nitrogen-potassium fertilizer as claimed in claim 1, wherein the first-stage mixing tank (301) and the second-stage mixing tank (302) are both provided with multiple layers of heating inner coils (307), and the third-stage mixing tank (303) is provided with a guide cylinder (309).
6. The production device of the water-soluble nitro-sulfur-based nitrogen-potassium fertilizer as claimed in claim 5, wherein the first-stage mixing tank (301), the second-stage mixing tank (302) and the third-stage mixing tank (303) are all provided with a stirring motor (305), one end of an output shaft of the stirring motor (305) positioned in the first-stage mixing tank (301) is connected with a plurality of paddle type stirring blades (306), and one end of an output shaft of the stirring motor (305) positioned in the second-stage mixing tank (302) and the third-stage mixing tank (303) is connected with a push type stirring blade (308) and a plurality of paddle type stirring blades (306).
CN202220368505.3U 2022-02-23 2022-02-23 Production device of water-soluble nitro-sulfenyl nitrogen-potassium fertilizer Active CN216987548U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220368505.3U CN216987548U (en) 2022-02-23 2022-02-23 Production device of water-soluble nitro-sulfenyl nitrogen-potassium fertilizer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220368505.3U CN216987548U (en) 2022-02-23 2022-02-23 Production device of water-soluble nitro-sulfenyl nitrogen-potassium fertilizer

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CN216987548U true CN216987548U (en) 2022-07-19

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