CN222445937U - Waste gas filtering device for producing Mannheim potassium sulfate - Google Patents

Waste gas filtering device for producing Mannheim potassium sulfate Download PDF

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Publication number
CN222445937U
CN222445937U CN202420482208.0U CN202420482208U CN222445937U CN 222445937 U CN222445937 U CN 222445937U CN 202420482208 U CN202420482208 U CN 202420482208U CN 222445937 U CN222445937 U CN 222445937U
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base
waste gas
potassium sulfate
shell
producing
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CN202420482208.0U
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Chinese (zh)
Inventor
李航
栾雪峰
孙巍
罗世勤
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Qiqihar Maoer Agriculture Co ltd
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Qiqihar Maoer Agriculture Co ltd
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Abstract

The utility model discloses an exhaust gas filtering device for producing mannheim potassium sulfate, which relates to the technical field of mannheim potassium sulfate production, is suitable for filtering exhaust gas produced by the mannheim potassium sulfate and comprises a base; the device comprises a base, an absorption unit arranged on the upper surface of the base, a filtering component arranged on the upper surface of the base and used for filtering, and a photolysis component arranged on the upper surface of the base and used for photolysis, wherein the upper surface of the base is provided with a collecting tank, and the absorption unit comprises a mounting component arranged on the upper surface of the base. The utility model can conveniently remove the hydrogen chloride gas in the waste gas by adopting the mutual coordination of the absorption tower, the water tank, the liquid pump, the first connecting pipe, the second connecting pipe, the support frame and the atomizing nozzle, thereby increasing the functionality of the waste gas filtering device, and can conveniently filter larger particles in the waste gas by adopting the mutual coordination of the first shell, the clamping groove body and the filter plate, thereby being beneficial to removing the chloride in the waste gas.

Description

Waste gas filtering device for producing Mannheim potassium sulfate
Technical Field
The utility model relates to the technical field of production of Mannheim potassium sulfate, in particular to an exhaust gas filtering device for Mannheim potassium sulfate production.
Background
The production of mannham potassium sulfate is a factory in the chemical industry, and the gas produced in the production process of mannham potassium sulfate contains a large amount of solid particles of chemical raw materials and organic waste gas, and the gas needs to be filtered and safely treated before being discharged, so that a device for filtering and safely treating the chemical waste gas is needed.
Among the prior art, in the patent document of bulletin number CN217247554U, propose a be used for chemical industry waste gas filtration safety treatment device, including body, filter screen oxidation device and cleaning device, this internal filter screen that is provided with, and the top of filter screen is catalytic oxidation room, and the below of filter screen is the settling chamber, evenly be provided with the oxidation device that can rotate in the catalytic oxidation room, be provided with in the settling chamber and can gliding cleaning device, the top of body is provided with the gas outlet, and the lower extreme of body is provided with the discharge gate. This a cleaning device for chemical industry waste gas filters safety processing device drives the brush hair clear up the dust on filter screen surface can, can clear up the filter screen surface, can prevent effectively that the filter screen from blockking up, can not influence subsequent filtration efficiency, and oxidation unit can the pivot rotate further drive photocatalyst board and rotate, further makes photocatalyst board and waste gas carry out abundant reaction, can make the reaction more abundant, improves treatment effeciency.
In order to solve the problem that the treatment device usually filters through the filter screen when filtering, after long-time use, the filter screen surface can accumulate more dust, the prior art adopts the filter screen that mutually supports through setting up, brush hair and second motor to carry out the mode of filtering to the particulate matter in the waste gas and handles, but the device still can appear and get rid of the condition of harmful substance in the waste gas in the use, and then lead to reducing waste gas filter equipment's practicality problem.
Disclosure of utility model
The utility model aims to provide an exhaust gas filtering device for producing Mannheim potassium sulfate, which solves the problems in the prior art.
In order to solve the technical problems, the utility model adopts the following technical scheme:
the waste gas filtering device for the production of the Mannheim potassium sulfate comprises a base, an absorption unit arranged on the upper surface of the base, a filtering component arranged on the upper surface of the base and used for filtering, and a photolysis component arranged on the upper surface of the base and used for photolysis, wherein the upper surface of the base is provided with a collecting tank, the absorption unit comprises an installation component arranged on the upper surface of the base and a purification component arranged on the outer surface of the installation component, and the photolysis component comprises an air extraction component arranged on the outer surface of the absorption unit and a photolysis component arranged on the upper surface of the base.
The technical scheme of the utility model is further improved in that the installation component comprises an absorption tower, a base of the absorption tower is fixedly connected with the upper surface of the base, a water tank is fixedly connected with the outer surface of the absorption tower, and an external water pipe is arranged on one side of the water tank.
The purification assembly comprises a liquid pump, wherein a base of the liquid pump is detachably connected with the upper surface of the water tank, an input end of the liquid pump extends into the water tank, an output end of the liquid pump is detachably connected with a first connecting pipe, and one end of the first connecting pipe extends into the absorption tower.
The technical scheme of the utility model is further improved in that a second connecting pipe is fixedly connected to the inner wall of the absorption tower, one end of the second connecting pipe is communicated with one end of the first connecting pipe, a supporting frame is detachably connected to the outer surface of the second connecting pipe, and an atomizing nozzle communicated with the inside of the second connecting pipe is detachably connected to the outer surface of the supporting frame.
By adopting the technical scheme, the hydrogen chloride gas in the waste gas can be conveniently removed by adopting the mutual matching of the absorption tower, the water tank, the liquid pump, the first connecting pipe, the second connecting pipe, the supporting frame and the atomizing nozzle, so that the functionality of the waste gas filtering device is improved.
The technical scheme of the utility model is further improved in that the filter assembly comprises a first shell, the bottom surface of the first shell is fixedly connected with the upper surface of the base, the inner wall of the first shell is fixedly connected with a clamping groove body, the inner wall of the clamping groove body is detachably connected with a filter plate, and the upper surface of the first shell is communicated with the inner wall of the absorption tower through a pipeline.
By adopting the technical scheme, the large particles in the waste gas can be filtered conveniently by adopting the mutual matching of the first shell, the clamping groove body and the filter plate, so that the chloride in the waste gas can be removed.
The technical scheme of the utility model is further improved in that the air extraction assembly comprises an air extraction pump, the output end of the air extraction pump is detachably connected with an air pipe, and the output end of the air extraction pump extends to the inside of the absorption tower.
The technical scheme of the utility model is further improved in that the photolysis component comprises a second shell, the inner wall of the second shell is detachably connected with UV photolyzers and isolating plates, the UV photolyzers and the isolating plates are alternately distributed, and the upper surface of the second shell is communicated with one end of the gas pipe.
By adopting the technical scheme, the shell II, the air pump, the air pipe, the UV photolyzer and the isolation plate are matched with each other, so that harmful substances in waste gas can be subjected to photolyzing conveniently, and the functionality of the waste gas filtering device for producing Mannheim potassium sulfate is improved.
By adopting the technical scheme, compared with the prior art, the utility model has the following technical progress:
1. The utility model provides an exhaust gas filtering device for producing Mannheim potassium sulfate, which adopts an absorption tower, a water tank, a liquid pump, a first connecting pipe, a second connecting pipe, a supporting frame and an atomization nozzle to be matched with each other, so that hydrogen chloride gas in the exhaust gas can be conveniently removed, and the functionality of the exhaust gas filtering device is improved.
2. The utility model provides an exhaust gas filtering device for producing Mannheim potassium sulfate, which adopts the mutual coordination of a shell I, a clamping groove body and a filtering plate to conveniently filter larger particles in exhaust gas, thereby being beneficial to removing chloride in the exhaust gas.
3. The utility model provides an exhaust gas filtering device for producing Mannheim potassium sulfate, which adopts the mutual coordination of a second shell, an air pump, an air pipe, a UV photolyzer and a separation plate to facilitate the photolyzing of harmful substances in the exhaust gas, thereby increasing the functionality of the exhaust gas filtering device for producing Mannheim potassium sulfate.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic diagram of the front structure of the present utility model;
FIG. 3 is a schematic view of a partial structure of an absorbent sheet according to the present utility model;
FIG. 4 is a schematic view of a filter assembly according to the present utility model;
fig. 5 is a schematic structural diagram of a photolytic component according to the present utility model.
1, A base, 2, an absorption unit, 21, an absorption tower, 22, a water tank, 23, a liquid pump, 24, a first connecting pipe, 25, a second connecting pipe, 26, a support frame, 27, an atomizing nozzle, 3, a filtering component, 31, a first shell, 32, a clamping groove body, 33, a filter plate, 4, a photolysis component, 41, a second shell, 42, an air pump, 43, an air pipe, 44, a UV photolyzer and 45, and a separation plate.
Detailed Description
The utility model is further illustrated by the following examples:
Example 1
As shown in figures 1-5, the utility model provides an exhaust gas filtering device for producing Mannheim potassium sulfate, which comprises a base 1, an absorption unit 2 arranged on the upper surface of the base 1, a filtering component 3 arranged on the upper surface of the base 1 and used for filtering, and a photodecomposition component 4 arranged on the upper surface of the base 1 and used for photodecomposition, wherein the upper surface of the base 1 is provided with a collecting tank, the absorption unit 2 comprises an installation component arranged on the upper surface of the base 1 and a purification component arranged on the outer surface of the installation component, the photodecomposition component 4 comprises an air suction component arranged on the outer surface of the absorption unit 2 and a photodecomposition component arranged on the upper surface of the base 1, the installation component comprises an absorption tower 21, the base of the absorption tower 21 is fixedly connected with the upper surface of the base 1, a water tank 22 is fixedly connected with the outer surface of the absorption tower 21, one side of the water tank 22 is provided with an external water pipe, the purification component comprises a liquid pump 23, the base of the liquid pump 23 is detachably connected with the upper surface of the water tank 22, the input end of the liquid pump 23 is detachably connected with the inside of the water tank 22, one end 24 of the liquid pump 23 is detachably connected with a connecting pipe 24, one end 21 of the water pump 24 is detachably connected with the inner wall 21 of the water pump 21, one end 25 of the water pump is connected with the other end 25 of the water pump 25 is connected with the other end 25 of the water tank 25 through the two water tank 25, the two end 25 is fixedly connected with the other end 25 of the water tank 25, the water tank 25 is connected with the other end 25 of the water tank 25, and the other end 25 is connected with the other end 25 of the water tank 25 is connected with the water tank 25, and the other end 25 is connected with the other end 25 through the water tank 25, and the other end 25 is connected with the water tank 25, finally, the hydrogen chloride gas is atomized and sprayed out by the atomization nozzle 27, so that the hydrogen chloride gas is dissolved in the water, the water dissolved with the hydrogen chloride is collected in the absorption tower 21, and finally, the water is discharged from a liquid discharge pipe arranged at the bottom of the absorption tower 21 and enters a collecting tank.
Example 2
As shown in fig. 1-5, on the basis of embodiment 1, the utility model provides a technical scheme that, preferably, the filter assembly 3 comprises a first shell 31, the bottom surface of the first shell 31 is fixedly connected with the upper surface of the base 1, the inner wall of the first shell 31 is fixedly connected with a clamping groove body 32, the inner wall of the clamping groove body 32 is detachably connected with a filter plate 33, the upper surface of the first shell 31 is communicated with the inner wall of the absorption tower 21 through a pipeline, and when the waste gas filter device produced by mannheim potassium sulfate is used, waste gas is firstly injected into the first shell 31, and then is conveyed into the absorption tower 21 through the filtering action of the filter plate 33.
Example 3
On the basis of embodiment 1, as shown in fig. 1-5, the utility model provides a technical scheme that, preferably, the air extraction assembly comprises an air extraction pump 42, the output end of the air extraction pump 42 is detachably connected with an air delivery pipe 43, the output end of the air extraction pump 42 extends to the inside of the absorption tower 21, the photolysis assembly comprises a second shell 41, the inner wall of the second shell 41 is detachably connected with a UV photolyzer 44 and a separation plate 45, the UV photolyzer 44 and the separation plate 45 are alternately distributed, the upper surface of the second shell 41 is communicated with one end of the air delivery pipe 43, when hydrogen chloride in the waste gas is filtered and removed by the absorption unit 2, the waste gas is finally pumped into the second shell 41 through the cooperation of the air extraction pump 42 and the air delivery pipe 43, harmful substances in the waste gas can be assisted to be decomposed through the photolyzing action of the UV photolyzer 44, and finally the purified waste gas is discharged from one side of the second shell 41.
The working principle of the exhaust gas filtering device for producing Mannheim potassium sulfate is described below.
As shown in fig. 1 to 5, when the waste gas filtering device for producing mannheim potassium sulfate is used, waste gas is firstly injected into the first shell 31, the waste gas is conveyed into the second shell 41 through the filtering action of the filtering plate 33, the waste gas is conveyed into the absorption tower 21, water in the water tank 22 is pumped into the second shell 25 by matching with the first connecting pipe 24 through the starting of the liquid pump 23, finally, atomized and sprayed out by the atomizing nozzle 27, so that hydrogen chloride gas is dissolved in the water, the water dissolved with hydrogen chloride is collected in the absorption tower 21, finally, discharged from the liquid discharge pipe arranged at the bottom of the absorption tower 21, and enters the collecting tank, and when the hydrogen chloride in the waste gas is filtered and removed by the absorption unit 2, the waste gas is finally pumped into the second shell 41 through the matching of the air pump 42 and the air conveying pipe 43, harmful substances in the waste gas can be assisted to be decomposed through the photolysis action of the UV photolyzer 44, and finally, the purified waste gas is discharged from one side of the second shell 41.
The foregoing utility model has been generally described in great detail, but it will be apparent to those skilled in the art that modifications and improvements can be made thereto. Accordingly, it is intended to cover modifications or improvements within the spirit of the inventive concepts.

Claims (7)

1. An exhaust gas filtering device for producing Mannheim potassium sulfate is suitable for filtering the exhaust gas produced by the Mannheim potassium sulfate, and comprises a base (1);
an absorption unit (2) arranged on the upper surface of the base (1);
The filtering component (3) is arranged on the upper surface of the base (1) and used for filtering;
The device is characterized in that a collecting tank is arranged on the upper surface of the base (1), the absorption unit (2) comprises an installation component arranged on the upper surface of the base (1) and a purification component arranged on the outer surface of the installation component, and the photolysis component (4) comprises an air extraction component arranged on the outer surface of the absorption unit (2) and a photolysis component arranged on the upper surface of the base (1).
2. The waste gas filtering device for producing the Mannheim potassium sulfate according to claim 1, wherein the installation component comprises an absorption tower (21), a base of the absorption tower (21) is fixedly connected with the upper surface of the base (1), a water tank (22) is fixedly connected with the outer surface of the absorption tower (21), and an external water pipe is arranged on one side of the water tank (22).
3. The waste gas filtering device for producing the Mannheim potassium sulfate according to claim 2, wherein the purifying component comprises a liquid extracting pump (23), a base of the liquid extracting pump (23) is detachably connected with the upper surface of the water tank (22), an input end of the liquid extracting pump (23) extends to the inside of the water tank (22), an output end of the liquid extracting pump (23) is detachably connected with a first connecting pipe (24), and one end of the first connecting pipe (24) extends to the inside of the absorption tower (21).
4. The waste gas filtering device for producing the Mannheim potassium sulfate according to claim 3, wherein a second connecting pipe (25) is fixedly connected to the inner wall of the absorption tower (21), one end of the second connecting pipe (25) is communicated with one end of a first connecting pipe (24), a supporting frame (26) is detachably connected to the outer surface of the second connecting pipe (25), and an atomizing nozzle (27) communicated with the inner part of the second connecting pipe (25) is detachably connected to the outer surface of the supporting frame (26).
5. The waste gas filtering device for producing the Mannheim potassium sulfate according to claim 1, wherein the filtering component (3) comprises a first shell (31), the bottom surface of the first shell (31) is fixedly connected with the upper surface of the base (1), the inner wall of the first shell (31) is fixedly connected with a clamping groove body (32), the inner wall of the clamping groove body (32) is detachably connected with a filter plate (33), and the upper surface of the first shell (31) is communicated with the inner wall of the absorption tower (21) through a pipeline.
6. The waste gas filtering device for producing the Mannheim potassium sulfate according to claim 1, wherein the air extraction assembly comprises an air extraction pump (42), an output end of the air extraction pump (42) is detachably connected with a gas pipe (43), and an output end of the air extraction pump (42) extends to the inside of the absorption tower (21).
7. The waste gas filtering device for producing the Mannheim potassium sulfate according to claim 6, wherein the photolysis assembly comprises a second shell (41), a UV photolyzer (44) and a separation plate (45) are detachably connected to the inner wall of the second shell (41), the UV photolyzer (44) and the separation plate (45) are alternately distributed, and the upper surface of the second shell (41) is communicated with one end of the gas pipe (43).
CN202420482208.0U 2024-03-13 2024-03-13 Waste gas filtering device for producing Mannheim potassium sulfate Active CN222445937U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202420482208.0U CN222445937U (en) 2024-03-13 2024-03-13 Waste gas filtering device for producing Mannheim potassium sulfate

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202420482208.0U CN222445937U (en) 2024-03-13 2024-03-13 Waste gas filtering device for producing Mannheim potassium sulfate

Publications (1)

Publication Number Publication Date
CN222445937U true CN222445937U (en) 2025-02-11

Family

ID=94444364

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202420482208.0U Active CN222445937U (en) 2024-03-13 2024-03-13 Waste gas filtering device for producing Mannheim potassium sulfate

Country Status (1)

Country Link
CN (1) CN222445937U (en)

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