Ammonia water processing equipment

By designing the exhaust gas treatment mechanism and the ammonia water production mechanism, the problem of unreacted ammonia gas in the ammonia water processing equipment was solved, achieving efficient ammonia water production and reducing production costs.

CN223915360UActive Publication Date: 2026-02-17KEER (TIANJIN) ENERGY TECH CO LTD
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Patent Information

Application Number
CN202520519107.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2026-02-17
Estimated Expiration
2035-03-24

AI Technical Summary

Technical Problem

Existing ammonia processing equipment emits a large amount of unreacted ammonia gas during production, which increases production costs and requires special collection and treatment, adding extra workload.

Method used

An ammonia water processing device was designed, comprising a tail gas treatment mechanism and an ammonia water production mechanism. Through the cooperation of a sealing frame and an air pump, the ammonia tail gas is repeatedly circulated and mixed with water. The contact time between ammonia gas and water is increased by using a diffuser plate and a perforated plate. Combined with a balancing mechanism to adjust the balance of the device, the production efficiency is improved.

Benefits of technology

It enables rapid processing of ammonia tail gas, improves the production efficiency and cost-effectiveness of ammonia water, and ensures full contact between ammonia gas and water, thereby increasing the production efficiency of ammonia water.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides ammonia water processing equipment and relates to the technical field of ammonia water processing. The ammonia water processing equipment comprises a tail gas treatment mechanism, wherein the tail gas treatment mechanism comprises a sealing frame. According to the ammonia water processing equipment, ammonia tail gas of the equipment is conveyed into a sealing frame through a first connecting pipe, so that a pressing plate slowly moves upwards, and when a sealing plate ascends to the maximum height, the pressing plate presses an opening switch; thus, an air pump installed on a second connecting pipe is started to convey ammonia tail gas in the sealing cavity to the bottom of the sealing frame to be fused with water again, the non-fused tail gas enters the sealing cavity again, all the ammonia tail gas can be treated through multiple times of circulation, and after the ammonia tail gas is treated, the sealing plate can descend to the lowest position. And the pressing plate presses the closing switch, so that the air pump mounted on the second connecting pipe is closed, and then the electronic control valve mounted on the second connecting pipe is closed, so that the aim of quickly treating the ammonia tail gas by the device is fulfilled.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of ammonia water processing equipment, specifically a kind of ammonia water processing equipment, belong to ammonia water processing technical field. BACKGROUND

[0002] Ammonia water, main component is NH3·H2O, is the aqueous solution of ammonia, colorless transparent and has pungent smell.Ammonia gas melting point-77 ℃, boiling point 36 ℃, density 0.91g / cm3.Ammonia gas is easily dissolved in water, ethanol.Easy volatile.Ammonia water is also called amonia water, colorless transparent and has pungent smell, has the commonness of part alkali, ammonia water is prepared by ammonia gas into water, it is mainly used in experiment, agriculture, industry etc.Ammonia water as a raw material and reagent commonly used in chemical production exists widely, especially in recent years with the development of environmental protection industry, ammonia water as reducing agent is applied more and more in desulfurization and denitrification field, so the preparation of ammonia water is more and more important.

[0003] After searching, a kind of ammonia water processing equipment of Chinese patent publication No.CN220940634U, including tank body, processing assembly and discharge assembly, the processing assembly includes annular pipe and exhaust hole, the annular pipe is installed in tank body interior, the exhaust hole is opened on annular pipe upper surface, the tank body side wall is installed with inlet pipe, the inlet pipe top is installed with ammonia gas tank, the inlet pipe middle part is installed with pressure pump, the inlet pipe lower side wall is installed with valve, the annular pipe one end is installed with adapter, the inlet pipe other end is connected with adapter, the tank body top is installed with inlet pipe, the tank body top is installed with drain pipe, the tank body top is installed with exhaust pipe.

[0004] The above device can disperse ammonia gas in ammonia gas tank, make ammonia gas more uniformly react with water, install drain tank at tank body bottom, facilitate quantitative discharge of ammonia water, install cooling pipe in tank body interior, facilitate cooling of tank body interior, slidingly connect piston in inlet pipe, facilitate sealing of inlet pipe, but the above device can discharge a large amount of unreacted ammonia gas, which needs special collection and treatment, increase the production cost of ammonia water, therefore, we provide a kind of ammonia water processing equipment to solve the above problems. UTILITY MODEL CONTENT

[0005] To solve the above problems, the utility model provides a kind of ammonia water processing equipment to solve the above problems, and the specific technical scheme is:

[0006] An ammonia water processing equipment, including tail gas treatment mechanism, the tail gas treatment mechanism includes sealing frame, the sealing frame is equipped with sealing cavity, the sealing cavity is connected with sealing plate, the sealing plate is fixedly connected with a plurality of elastic pieces, a plurality of the elastic pieces are fixedly connected with fixed plate, the sealing plate is connected with first connecting pipe, the sealing frame is fixedly connected with fixed frame, the fixed frame is fixedly installed with opening switch, the fixed frame is fixedly installed with closing switch, the sealing plate is fixedly connected with pressing plate, the sealing frame is connected with second connecting pipe.

[0007] Preferably, the fixed plate is fixedly connected with the sealing cavity, the second connecting pipe is provided with an air pump, the second connecting pipe is provided with an electronic control valve, and the air pump installed on the second connecting pipe is above the electronic control valve installed on the second connecting pipe.

[0008] Preferably, the tail gas treatment mechanism is provided with an ammonia water manufacturing mechanism, the ammonia water manufacturing mechanism includes a tank body, the tank body is fixedly connected with the sealing frame, the tank body is connected with the second connecting pipe, and the tank body is connected with a water inlet pipe.

[0009] Preferably, the water inlet pipe is fixedly installed with a first valve, the tank body is connected with a drain pipe, the drain pipe is fixedly installed with a second valve, the tank body is provided with a first through hole, and the first through hole is fixedly connected with a gas inlet pipe.

[0010] Preferably, the gas inlet pipe is connected with the first connecting pipe, the gas inlet pipe is connected with a gas distribution disc, the gas distribution disc is densely provided with air holes, the gas inlet pipe is fixedly connected with a plurality of perforated plates, and the plurality of perforated plates are fixedly connected with the tank body.

[0011] Preferably, the ammonia water manufacturing mechanism is provided with a plurality of balancing mechanisms, the balancing mechanism includes a threaded cylinder, the threaded cylinder is fixedly connected with the tank body, and the threaded cylinder is provided with a threaded cavity.

[0012] Preferably, the threaded cavity is threadedly connected with a threaded column, the threaded column is fixedly connected with a rotating disc, and the rotating disc is rotatably connected with a support.

[0013] Compared with the prior art, the utility model has the following beneficial effects:

[0014] 1, the ammonia water processing equipment through the first connecting pipe the ammonia gas tail gas of the device is transported to the inside of the sealed frame, in turn, the pressing plate slowly moves up, when the sealing plate rises to the maximum height, the pressing plate will press the switch, so as to start the air pump installed in the second connecting pipe to transport the ammonia gas tail gas in the sealed cavity to the bottom of the sealed frame and recombine with water, the tail gas that has not been combined enters the inside of the sealed cavity again, after several cycles, the ammonia gas tail gas can be completely treated, after the ammonia gas tail gas is treated, the sealing plate will drop to the lowest position, and the pressing plate will press the closed switch, so that the air pump installed in the second connecting pipe is closed, then the electronic control valve installed in the second connecting pipe is closed, the purpose of quickly treating ammonia gas tail gas of the device is realized.

[0015] 2, the ammonia water processing equipment by filling water into the inside of the tank through the water inlet pipe, the excess water is discharged from the drain pipe, then the first valve and the second valve are closed at the same time, the gas conveying pipe is connected with the ammonia gas conveying pipe, the external equipment is controlled to convey ammonia gas to the gas conveying pipe, then the ammonia gas is conveyed to the inside of the gas distribution disc, the ammonia gas can be uniformly discharged through the gas holes of the gas distribution disc, then the ammonia gas is slowed down by the multiple perforated plates during the floating process, the contact time of ammonia gas and water is increased, the purpose of high efficiency production of ammonia water of the device is realized; the rotating disc is rotated left and right, in turn, the threaded column is rotated left and right in the threaded cavity, at the same time, the threaded cylinder is moved up and down, at the same time, the corner of the device is moved up and down, through the cooperation of multiple balance mechanisms, the balance degree of the device can be quickly adjusted, the purpose of convenient adjustment of balance degree of the device is realized. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a perspective view structure schematic diagram of the utility model;

[0017] Figure 2 It is a perspective structure split diagram of the ammonia water manufacturing mechanism of the utility model;

[0018] Figure 3 It is a perspective structure split diagram of the tail gas treatment mechanism of the utility model;

[0019] Figure 4 It is a perspective structure split diagram of the balance mechanism of the utility model;

[0020] Figure 5 It is a perspective view structure schematic diagram of the utility model Figure 3 It is an enlarged structure schematic diagram of A in the utility model.

[0021] Figure Descriptions: 1. Exhaust Gas Treatment Mechanism; 101. Sealing Frame; 102. Sealing Cavity; 103. Sealing Plate; 104. Elastic Component; 105. Fixing Plate; 106. First Connecting Pipe; 107. Fixing Frame; 108. Opening Switch; 109. Closing Switch; 110. Pressing Plate; 111. Second Connecting Pipe; 2. Ammonia Water Manufacturing Mechanism; 201. Tank; 202. Water Inlet Pipe; 203. First Valve; 204. Drain Pipe; 205. Second Valve; 206. First Through Hole; 207. Gas Transmission Pipe; 208. Gas Dispersing Plate; 209. Perforated Plate; 3. Balancing Mechanism; 301. Threaded Cylinder; 302. Threaded Cavity; 303. Threaded Column; 304. Rotating Disc; 305. Support. Detailed Implementation

[0022] The present invention will now be further described with reference to the accompanying drawings.

[0023] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 The system includes an exhaust gas treatment mechanism 1, which includes a sealing frame 101. The sealing frame 101 has a sealing cavity 102. The sealing cavity 102 is slidably connected to a sealing plate 103. The sealing plate 103 is fixedly connected to multiple elastic elements 104. Each of the multiple elastic elements 104 is fixedly connected to a fixing plate 105. The sealing plate 103 is connected to a first connecting pipe 106. The sealing frame 101 is fixedly connected to a fixing bracket 107. The fixing bracket 107 is fixedly installed with an on switch 108 and an off switch 109. The sealing plate 103 is fixedly connected to a pressing plate 110. The sealing frame 101 is connected to a second connecting pipe 111. The fixing plate 105 is fixedly connected to the sealing cavity 102. The second connecting pipe 111 is equipped with an air pump and an electronic control valve. The air pump installed on the second connecting pipe 111 is located above the electronic control valve installed on the second connecting pipe 111.

[0024] In this application, the fixing frame 107, the on / off switch 108, and the air pump and electronic control valve installed on the second connecting pipe 111 are common electrical devices in the prior art. This application will not elaborate further on their models or internal structures, and they can be replaced by other power sources. The material of the first connecting pipe 106 is preferably a high-pressure plastic hose, and the material of the elastic element 104 is preferably a spring. The fixing frame 107 and the on / off switch 108 are electrically connected to the air pump installed on the second connecting pipe 111. The ammonia exhaust gas of this device is transported to the interior of the sealing frame 101 through the first connecting pipe 106, thereby causing the sealing plate 103 to slide upwards inside the sealing cavity 102, and applying a compressive force to the elastic element 104. Simultaneously, this causes the pressing plate 110 to move slowly upwards. When the sealing plate 103 rises to its maximum height, the pressing plate 110 presses the opening switch 108, thereby starting the air pump installed in the second connecting pipe 111. The air pump installed in the second connecting pipe 111 transports the ammonia tail gas inside the sealing cavity 102 to the bottom of the sealing frame 101, where it mixes with water again. The unmixed tail gas re-enters the interior of the sealing cavity 102. After multiple cycles, the ammonia tail gas can be completely mixed with water to generate ammonia water. After the ammonia tail gas is treated, the sealing plate 103 is lowered to its lowest position inside the sealing cavity 102. At the same time, the pressing plate 110 presses the closing switch 109, which shuts off the air pump installed in the second connecting pipe 111. Then, the electronic control valve installed in the second connecting pipe 111 is closed, thus achieving the purpose of this device to quickly treat ammonia tail gas.

[0025] Please refer to it again. Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 The exhaust gas treatment unit 1 is equipped with an ammonia water production unit 2. The ammonia water production unit 2 includes a tank 201, which is fixedly connected to a sealing frame 101. The tank 201 is connected to a second connecting pipe 111. The tank 201 is connected to a water inlet pipe 202, which is fixedly equipped with a first valve 203. The tank 201 is connected to a drain pipe 204, which is fixedly equipped with a second valve 205. The tank 201 has a first through hole 206, which is fixedly connected to a gas supply pipe 207. The gas supply pipe 207 is connected to the first connecting pipe 106. The gas supply pipe 207 is connected to a gas diffuser plate 208, which is densely covered with vent holes. The gas supply pipe 207 is fixedly connected to multiple perforated plates 209, which are all fixedly connected to the tank 201.

[0026] Water is poured into the tank 201 through the inlet pipe 202, and excess water is discharged through the drain pipe 204. Then, the first valve 203 and the second valve 205 are closed simultaneously, and the gas supply pipe 207 is connected to the ammonia supply pipe. External equipment is controlled to supply ammonia through the gas supply pipe 207, which then delivers the ammonia to the interior of the diffuser plate 208. The ammonia is evenly discharged through the densely distributed vent holes of the diffuser plate 208. During the upward movement of the ammonia, the upward speed of the ammonia is slowed down by multiple perforated plates 209, increasing the contact time between the ammonia and water, thus achieving the goal of efficient ammonia water production in this device.

[0027] Please refer to it again. Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 The ammonia water manufacturing mechanism 2 is equipped with multiple balancing mechanisms 3. The balancing mechanism 3 includes a threaded cylinder 301, which is fixedly connected to the tank body 201. The threaded cylinder 301 has a threaded cavity 302, which is threadedly connected to a threaded column 303. The threaded column 303 is fixedly connected to a rotating disk 304, and the rotating disk 304 is rotatably connected to a support 305.

[0028] The bottom of the support 305 is equipped with an anti-slip pad. By rotating the rotating disk 304 left and right, the threaded column 303 is driven to rotate left and right inside the threaded cavity 302, while the threaded cylinder 301 moves up and down. At the same time, one corner of the device moves up and down. With the cooperation of multiple balancing mechanisms 3, the balance of the device can be quickly adjusted, thus achieving the purpose of conveniently adjusting the balance of the device.

[0029] In use, this invention works as follows: water is poured into the tank 201 through the inlet pipe 202, and excess water is discharged through the drain pipe 204. Then, the first valve 203 and the second valve 205 are simultaneously closed. The gas delivery pipe 207 is connected to the ammonia delivery pipe, and external equipment is controlled to deliver ammonia through the gas delivery pipe 207. The ammonia is then delivered to the interior of the diffuser plate 208, where its numerous ventilation holes allow for even discharge. During the ammonia's ascent, multiple perforated plates 209 slow its upward velocity, increasing the contact time between the ammonia and water, thus achieving efficient ammonia production. The ammonia tail gas is then delivered to the interior of the sealing frame 101 through the first connecting pipe 106, causing the sealing plate 103 to slide upward within the sealing cavity 102 and applying compressive force to the elastic element 104. Simultaneously, the pressing plate 110 slowly moves upward. When the sealing plate 103 reaches its maximum height, the pressing plate 110 presses the start switch 108, thereby activating the device. The air pump installed in the second connecting pipe 111 transports the ammonia tail gas inside the sealing cavity 102 to the bottom of the sealing frame 101, where it mixes with water again. The unmixed tail gas re-enters the sealing cavity 102. After multiple cycles, the ammonia tail gas can be completely mixed with water to generate ammonia water. After the ammonia tail gas is treated, the sealing plate 103 is lowered to the lowest position inside the sealing cavity 102. At the same time, the pressing plate 110 presses the closing switch 109, shutting off the air pump installed in the second connecting pipe 111. Then, the electronic control valve installed in the second connecting pipe 111 is closed, achieving the purpose of the device to quickly treat the ammonia tail gas. By rotating the rotating disk 304 left and right, the threaded column 303 is driven to rotate left and right inside the threaded cavity 302, while the threaded cylinder 301 moves up and down, and one corner of the device moves up and down. Through the cooperation of multiple balancing mechanisms 3, the balance of the device can be quickly adjusted, achieving the purpose of convenient balance adjustment of the device.

[0030] The technical principles of this utility model have been described above with reference to specific embodiments. These descriptions are merely for explaining the principles of this utility model and should not be construed as limiting the scope of protection of this utility model in any way. Based on this explanation, those skilled in the art can readily conceive of other specific embodiments of this utility model without inventive effort, and these embodiments will all fall within the protection scope of the claims of this utility model.

Claims

1. An ammonia processing device, comprising a tail gas treatment mechanism (1), characterized in that: The exhaust gas treatment mechanism (1) includes a sealing frame (101), the sealing frame (101) having a sealing cavity (102), the sealing cavity (102) being slidably connected to a sealing plate (103), the sealing plate (103) being fixedly connected to a plurality of elastic elements (104), each of the plurality of elastic elements (104) being fixedly connected to a fixing plate (105), the sealing plate (103) being connected to a first connecting pipe (106), the sealing frame (101) being fixedly connected to a fixing bracket (107), the fixing bracket (107) being fixedly installed with an on switch (108), the fixing bracket (107) being fixedly installed with an off switch (109), the sealing plate (103) being fixedly connected to a pressing plate (110), and the sealing frame (101) being connected to a second connecting pipe (111).

2. The ammonia processing equipment according to claim 1, characterized in that: The fixing plate (105) is fixedly connected to the sealing cavity (102). An air pump is installed on the second connecting pipe (111). An electronic control valve is installed on the second connecting pipe (111). The air pump installed on the second connecting pipe (111) is located above the electronic control valve installed on the second connecting pipe (111).

3. The ammonia processing equipment according to claim 1, characterized in that: The exhaust gas treatment mechanism (1) is equipped with an ammonia water manufacturing mechanism (2), which includes a tank (201), the tank (201) is fixedly connected to a sealing frame (101), the tank (201) is connected to a second connecting pipe (111), and the tank (201) is connected to a water inlet pipe (202).

4. The ammonia processing equipment according to claim 3, characterized in that: The water inlet pipe (202) is fixedly equipped with a first valve (203), the tank body (201) is connected to a drain pipe (204), the drain pipe (204) is fixedly equipped with a second valve (205), the tank body (201) has a first through hole (206), and the first through hole (206) is fixedly connected to a gas supply pipe (207).

5. The ammonia processing equipment according to claim 4, characterized in that: The gas supply pipe (207) is connected to the first connecting pipe (106). The gas supply pipe (207) is connected to a gas distribution plate (208). The gas distribution plate (208) is densely covered with ventilation holes. The gas supply pipe (207) is fixedly connected to a plurality of perforated plates (209). The plurality of perforated plates (209) are all fixedly connected to the tank body (201).

6. The ammonia processing equipment according to claim 3, characterized in that: The ammonia water manufacturing mechanism (2) is provided with multiple balancing mechanisms (3). The balancing mechanism (3) includes a threaded cylinder (301), which is fixedly connected to the tank body (201). The threaded cylinder (301) has a threaded cavity (302).

7. The ammonia processing equipment according to claim 6, characterized in that: The threaded cavity (302) is threadedly connected to a threaded post (303), the threaded post (303) is fixedly connected to a rotating disk (304), and the rotating disk (304) is rotatably connected to a support (305).

Citation Information

Patent Citations

  • Ammonia processing equipment

    CN220940634U