Ammonium persulfate cooling device
By introducing stirring and cooling components into the ammonium persulfate cooling device, and utilizing annular cooling pipes and a vacuum pump to circulate cold air, the problems of low efficiency and poor quality of ammonium persulfate freezing crystallization were solved, achieving an efficient and convenient cooling crystallization process.
Patent Information
- Application Number
- CN202422655290.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-10-31
AI Technical Summary
Existing ammonium persulfate cryogenic crystallization devices have low cooling efficiency and poor crystal quality at room temperature, and natural cooling can easily lead to precipitation, affecting quality.
A cooling chamber comprising a stirring and cooling component and a cooling component was designed. The stirring blades are used to stir and cool the ammonium persulfate evenly, and the circulating cold air through an annular cooling pipe and a vacuum pump is used for efficient cooling. The combination of the cooling chamber and the cooling box enables the rapid crystallization of ammonium persulfate.
It improves the cooling crystallization efficiency of ammonium persulfate, avoids quality degradation, has a simple structure and is easy to operate, saves manpower and resources, and improves work efficiency.
Smart Images

Figure CN223596594U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of ammonium persulfate crystallization technology, and in particular to an ammonium persulfate cooling device. Background Technology
[0002] Ammonium persulfate has a wide range of applications. It is widely used in the battery industry as an oxidant and bleaching agent. It is also used as a polymerization initiator, a desizing agent in the fiber industry, a surface treatment agent for metal and semiconductor materials, an etching agent for printed circuits, and is widely used in oil fracturing in oil extraction, flour and starch processing, oil and fat industry, and also in the photography industry to remove sodium thiosulfate.
[0003] The existing technology has the following defects or problems:
[0004] 1. Existing cooling ammonium persulfate freeze crystallization devices are either placed directly at room temperature for cooling and crystallization or use a freezer chamber for cooling and crystallization, resulting in low efficiency or poor quality.
[0005] 2. Existing cooling ammonium persulfate freezing crystallization devices all use natural cooling crystallization, but this will cause some precipitation, which will degrade the quality. Summary of the Invention
[0006] In view of this, the purpose of this utility model is to provide a cooling device for ammonium persulfate to achieve purification and crystallization of ammonium persulfate.
[0007] This utility model is achieved by the following method: an ammonium persulfate cooling device, including a cooling chamber, wherein a stirring and cooling component is provided inside the cooling chamber; a feed inlet is provided in the middle of the upper surface of the cooling chamber; the stirring and cooling component includes a drive motor, which is located in the middle of the left side of the cooling chamber; the output end of the drive motor is connected to a rotating shaft, and the end of the rotating shaft is rotatably fixed to the right side of the cooling chamber via a bearing; multiple stirring blades are evenly arranged on the rotating shaft; a cooling component for cooling the cooling chamber is provided on the rear surface of the cooling chamber.
[0008] Furthermore, an air outlet pipe is connected to the upper part of the left side of the cooling chamber.
[0009] Furthermore, the cooling component includes a cooling box, the rear surface of the cooling chamber is connected to the cooling box, a cooling housing is disposed inside the cooling box, an annular cooling pipe is disposed inside the cooling housing, a first air pump is connected to the left side of the cooling housing, the first air pump is connected to the air outlet pipe, a second air pump is connected to the upper surface of the cooling housing, the second air pump is connected to an air extraction pipe, the air extraction pipe is connected to a main air outlet pipe, multiple air inlet pipes are connected to the main air outlet pipe, the air inlet pipes are connected to the cooling chamber, and an exhaust pipe is connected to the upper right side of the cooling housing.
[0010] The beneficial effects of this utility model are as follows: Through the addition of a stirring and cooling component, a cooling chamber, and a temperature-reducing chamber, ammonium persulfate can be gradually cooled and de-temperatured, absorbing and dissipating the internal temperature of the ammonium persulfate. The freezing chamber further facilitates the freezing and crystallization of the ammonium persulfate, avoiding poor crystallization quality or slow efficiency. It also prevents the quality of ammonium persulfate from deteriorating during crystallization. Furthermore, this utility model has a simple structure, is easy to operate, and effectively saves manpower and resources, improving work efficiency. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of the structure of this utility model.
[0012] Figure 2 This is a schematic diagram of the cooling component. Detailed Implementation
[0013] The present invention will be further described below with reference to the accompanying drawings.
[0014] Please see Figure 1 and Figure 2 As shown, this utility model provides an embodiment: an ammonium persulfate cooling device, including a cooling chamber 1, and a stirring and cooling component 2 disposed inside the cooling chamber 1; a feed inlet 11 is disposed in the middle of the upper surface of the cooling chamber 1; the stirring and cooling component 2 includes a drive motor 21, which is disposed in the middle of the left side of the cooling chamber 1; the output end of the drive motor 21 is connected to a rotating shaft 22, and the end of the rotating shaft 22 is rotatably fixed to the right side of the cooling chamber 1 via a bearing; multiple stirring blades 23 are evenly arranged on the rotating shaft 22; a cooling component 3 is disposed on the rear surface of the cooling chamber 1 for cooling the cooling chamber 1. This allows ammonium persulfate to be first introduced into the cooling chamber 1, cooled by the cooling component 3, and then stirred and cooled uniformly by the stirring and cooling component 2 to begin crystallization, thereby achieving the cooling operation of ammonium persulfate.
[0015] Please continue reading. Figure 1As shown in one embodiment of this utility model, an air outlet pipe 12 is connected to the upper end of the left side of the cooling chamber 1. This enables the cooling chamber 1 to release air.
[0016] Please continue reading. Figure 1 and Figure 2 As shown, in one embodiment of this utility model, the cooling component 3 includes a cooling box 31, the rear surface of the cooling chamber 1 is connected to the cooling box 31, a cooling box 32 is provided inside the cooling box 31, an annular cooling pipe 33 is provided inside the cooling box 32, a first air pump 34 is connected to the left side of the cooling box 32, the first air pump 34 is connected to the air outlet pipe 12, a second air pump 35 is connected to the upper surface of the cooling box 32, the second air pump 35 is connected to an air extraction pipe 36, the air extraction pipe 36 is connected to an air outlet main pipe 37, multiple air inlet pipes 38 are connected to the air outlet main pipe 37, the air inlet pipes 38 are connected to the cooling chamber 1, and an exhaust pipe 39 is connected to the upper side of the right side of the cooling box 32. This allows cold air to be drawn into the cooling chamber 1 via the second suction pump 35 through the air inlet pipe 38, and then cooled in the cooling chamber 1. After cooling, excess gas is drawn into the cooling box 32 via the first suction pump 34 through the air outlet pipe 12, and then cooled by the annular cooling pipe 33 before being recycled.
[0017] In this invention, the annular cooling pipe, the air pump, and the drive motor are all existing technologies, which are already well understood by those skilled in the art, and will not be described in detail here. The model of the drive motor can be Y2-160M1–8Y, but is not limited to this.
[0018] The above description is only a preferred embodiment of the present utility model. All equivalent changes and modifications made within the scope of the patent application of the present utility model shall be covered by the present utility model.
Claims
1. An ammonium persulfate cooling device, characterized by: Including cooling warehouse, be provided with stirring cooling spare in the cooling warehouse;The upper surface of the cooling warehouse middle part is provided with a feeding port, the stirring cooling spare includes a drive motor, the drive motor is arranged in the left side surface middle part in the cooling warehouse, the output end of the drive motor is connected with a rotating shaft, the rotating shaft tail end is rotatably fixed in the right side surface in the cooling warehouse through a bearing, a plurality of stirring blades are arranged on the rotating shaft at equal distance;The rear surface of the cooling warehouse is provided with a cooling part for realizing the cooling of the cooling warehouse;The left side surface upper end of the cooling warehouse is connected with an air outlet pipe;The cooling part includes a cooling box, the cooling box is connected with the rear surface of the cooling warehouse, the cooling box is provided with a cooling box body, the cooling box body is provided with an annular cooling pipe, the left side surface of the cooling box body is connected with a first air pump, the first air pump is connected with the air outlet pipe, the upper surface of the cooling box body is connected with a second air pump, the second air pump is connected with an air exhaust pipe, the air exhaust pipe is connected with an air outlet main pipe, a plurality of air inlet pipes are connected on the air outlet main pipe, the air inlet pipes are connected with the cooling warehouse, and the right side surface upper end of the cooling box body is connected with an exhaust pipe.