Vortex type gas-solid separator of cytokine spray drying tower
By using the detachable flow guide component and cooling system of the vortex gas-solid separator, the cleaning problems and heat sensitivity issues of traditional cytokine spray drying towers are solved, enabling convenient cleaning and low-temperature separation, thus improving the safety and efficacy of facial mask products.
Patent Information
- Application Number
- CN202520962690.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-16
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-05-16
AI Technical Summary
The gas-solid separator in traditional cytokine spray drying towers is difficult to disassemble and clean, and lacks cooling measures, leading to contamination of the guide plate by residual materials and loss of cytokine activity, which affects the safety and efficacy of the mask products.
Employing a vortex-type gas-solid separator, which includes a detachable flow guide assembly, an electromagnet, and a positioning groove, combined with a hollow flow guide plate and a cold air inlet pipe, it achieves convenient cleaning and low-temperature separation, avoiding the loss of activity of heat-sensitive cytokines.
This technology enables rapid cleaning of the deflector plate and efficient separation of cytokines, ensuring product safety and stability and preventing activity reduction due to heat sensitivity.
Smart Images

Figure CN223901439U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of scroll type gas-solid separator, especially relates to a scroll type gas-solid separator of cytokine spray drying tower. BACKGROUND
[0002] With the continuous improvement of people's pursuit of skin care efficacy, the functional mask with cytokine as the core component gradually becomes the new darling of the beauty market, cytokine has the efficacy of promoting cell repair, regeneration and regulating skin immunity, can effectively improve the skin state, and improve the skin care effect of mask product, in the production process of cytokine mask, cytokine spray drying tower is the key equipment, and the gas-solid separation link directly affects the quality of cytokine and the efficacy of mask product, the traditional cytokine spray drying tower gas-solid separator has many problems, on the one hand, the detachable flow guide assembly structure in it is fixed, it is difficult to disassemble, after long-term use, a large amount of residual material will be attached to the flow guide plate, the cleaning work is complex and time-consuming, not only affects the production efficiency, but also easily breeds bacteria, pollutes the subsequent production of cytokine, and further affects the safety and stability of mask product, on the other hand, cytokine is heat sensitive, and is easily inactivated under high temperature environment, and the traditional gas-solid separator lacks effective cooling measures, and the heat generated in the separation process will cause the cytokine activity to decrease, so that the efficacy of cytokine added to the mask is greatly reduced. CONTENT OF THE UTILITY MODEL
[0003] In order to overcome the technical defects existing in the prior art, the utility model provides a scroll type gas-solid separator of cytokine spray drying tower, which has the effect of facilitating the cleaning of the flow guide plate and avoiding the loss of activity of heat-sensitive cytokine in the separation process.
[0004] The technical solution adopted by the utility model is: including scroll type gas-solid separator body, the scroll type gas-solid separator body is composed of separator cylinder and separator conical cylinder, the separator cylinder is connected with the separator conical cylinder through flange, the inside of the separator cylinder is equipped with detachable flow guide assembly with cooling effect.
[0005] Preferably, in order to facilitate the installation of the mounting sleeve, the separator cylinder top wall is embedded with an electromagnet, and a positioning groove is formed in the separator cylinder.
[0006] Preferably, in order to facilitate the disassembly of the mounting sleeve, the detachable flow guide assembly comprises a mounting sleeve, the mounting sleeve is connected with the positioning groove, and a connecting magnet is embedded on the upper end of the mounting sleeve, and the connecting magnet is connected with the electromagnet by adsorption.
[0007] Preferably, in order to improve the separation efficiency, the inner wall of the mounting sleeve is provided with guide plates arranged in an array, the mounting sleeve is a hollow structure, the guide plates are hollow structures and are in communication with the mounting sleeve, and the surfaces of the guide plates are provided with micro-groove structures arranged in an array.
[0008] Preferably, in order to achieve the cooling effect, the upper and lower ends of the mounting sleeve are respectively provided with exhaust pipes and cold air input pipes, the exhaust pipes and the cold air input pipes are in sealing connection with the mounting sleeve, and sealing sleeves are arranged on the exhaust pipes and the cold air input pipes in sealing connection.
[0009] Preferably, in order to facilitate discharging, the separator cylinder is provided with an air inlet and an air outlet, and the lower end of the separator conical cylinder is provided with a discharge port.
[0010] Preferably, in order to reduce the accumulation of materials on the inner wall of the separator conical cylinder, a vibration motor is arranged on one side of the lower end of the separator conical cylinder.
[0011] Preferably, in order to facilitate material collection, a collection box is threadedly connected to the discharge port.
[0012] The beneficial effects of the present application are as follows:
[0013] Through the detachable guide assembly, the electromagnet and the positioning groove, the electromagnet adsorbs the mounting sleeve, and the mounting sleeve is quickly connected with the positioning groove, the detachable guide assembly can be quickly disassembled and installed, the guide plates can be conveniently cleaned, the cytokines can be separated under low temperature, and the loss of activity of heat-sensitive cytokines in the separation process is effectively avoided. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is a structure schematic view of a left side view of the present application.
[0015] Figure 2 It is a structure schematic view of a right side view of the present application.
[0016] Figure 3 It is a structure schematic view of a bottom view of the present application.
[0017] Figure 4 It is a structure schematic view of a separator cylinder of the present application.
[0018] Figure 5 It is a structure schematic view of a detachable guide assembly of the present application.
[0019] Explanation of reference signs: In the figure: 1, vortex gas-solid separator body; 101, separator cylinder; 102, separator conical cylinder; 2, detachable flow guide assembly; 201, mounting sleeve; 202, connecting magnet; 203, flow guide plate; 204, discharge pipe; 205, cold gas input pipe; 206, sealing sleeve; 3, electromagnet; 4, positioning groove; 5, air inlet; 6, air outlet; 7, discharge port; 8, vibration motor; 9, collection box. DETAILED DESCRIPTION
[0020] The utility model will be further described in connection with the drawings:
[0021] As Figures 1-5 shown, the embodiment provides a vortex gas-solid separator of a cytokine spray drying tower, comprising a vortex gas-solid separator body 1, the vortex gas-solid separator body 1 is formed by a separator cylinder 101 and a separator conical cylinder 102, the separator cylinder 101 is connected with the separator conical cylinder 102 through flange, the separator cylinder 101 and the separator conical cylinder 102 are separated easily, the detachable flow guide assembly 2 with cooling effect is arranged in the separator cylinder 101, and the active loss of heat-sensitive cytokine in the separation process is avoided.
[0022] As a technical optimization scheme of the utility model, specifically Figure 5As shown in the figure, the top wall of the separator cylinder 101 is embedded with an electromagnet 3, and a positioning groove 4 is formed on the separator cylinder 101. The detachable flow guide assembly 2 comprises a mounting sleeve 201, the mounting sleeve 201 is clamped with the positioning groove 4, and the upper end of the mounting sleeve 201 is embedded with a connecting magnet 202, which is adsorbed and connected with the electromagnet 3. The connecting magnet 202 embedded on the upper end of the mounting sleeve 201 is adsorbed with the electromagnet 3 embedded on the top wall of the separator cylinder 101, which ensures the stability of the mounting sleeve 201 during work, and also facilitates subsequent disassembly and maintenance. The inner wall of the mounting sleeve 201 is provided with arrayed flow guide plates 203, the mounting sleeve 201 is of hollow structure, the flow guide plates 203 are of hollow structure and are communicated with the mounting sleeve 201, the surface of the flow guide plates 203 is provided with arrayed micro-groove structures, which can greatly change the airflow direction and speed of the gas-solid mixed material, so that the solid particles are quickly thrown to the inner wall of the separator cylinder 101 under the action of centrifugal force. With the continuation of the vortex motion, the solid particles will gradually slide down along the inner wall of the separator cylinder 101 and finally reach the separator conical cylinder 102. The upper and lower ends of the mounting sleeve 201 are respectively provided with a discharge pipe 204 and a cold gas input pipe 205. The discharge pipe 204 and the cold gas input pipe 205 are sealingly connected with the mounting sleeve 201. The discharge pipe 204 and the cold gas input pipe 205 are sealingly connected with the mounting sleeve 201. The discharge pipe 204 and the cold gas input pipe 205 are both threaded pipes. The cold gas enters the inside of the mounting sleeve 201 from the cold gas input pipe 205. Since the inside of the mounting sleeve 201 is hollow structure, and the inside of the flow guide plates 203 is also hollow structure, and the flow guide plates 203 are communicated with the mounting sleeve 201, the cold gas can circulate in the whole detachable flow guide assembly 2, so as to cool the gas-solid mixed material, avoiding the influence of heat generated in the gas-solid separation process on heat-sensitive cytokines.
[0023] As a technical optimization scheme of the utility model, specifically as Figure 1 As shown in the figure, the top wall of the separator cylinder 101 is embedded with an electromagnet 3, and a positioning groove 4 is formed on the separator cylinder 101. The detachable flow guide assembly 2 comprises a mounting sleeve 201, the mounting sleeve 201 is clamped with the positioning groove 4, and the upper end of the mounting sleeve 201 is embedded with a connecting magnet 202, which is adsorbed and connected with the electromagnet 3. The connecting magnet 202 embedded on the upper end of the mounting sleeve 201 is adsorbed with the electromagnet 3 embedded on the top wall of the separator cylinder 101, which ensures the stability of the mounting sleeve 201 during work, and also facilitates subsequent disassembly and maintenance. The inner wall of the mounting sleeve 201 is provided with arrayed flow guide plates 203, the mounting sleeve 201 is of hollow structure, the flow guide plates 203 are of hollow structure and are communicated with the mounting sleeve 201, the surface of the flow guide plates 203 is provided with arrayed micro-groove structures, which can greatly change the airflow direction and speed of the gas-solid mixed material, so that the solid particles are quickly thrown to the inner wall of the separator cylinder 101 under the action of centrifugal force. With the continuation of the vortex motion, the solid particles will gradually slide down along the inner wall of the separator cylinder 101 and finally reach the separator conical cylinder 102. The upper and lower ends of the mounting sleeve 201 are respectively provided with a discharge pipe 204 and a cold gas input pipe 205. The discharge pipe 204 and the cold gas input pipe 205 are sealingly connected with the mounting sleeve 201. The discharge pipe 204 and the cold gas input pipe 205 are sealingly connected with the mounting sleeve 201. The discharge pipe 204 and the cold gas input pipe 205 are both threaded pipes. The cold gas enters the inside of the mounting sleeve 201 from the cold gas input pipe 205. Since the inside of the mounting sleeve 201 is hollow structure, and the inside of the flow guide plates 203 is also hollow structure, and the flow guide plates 203 are communicated with the mounting sleeve 201, the cold gas can circulate in the whole detachable flow guide assembly 2, so as to cool the gas-solid mixed material, avoiding the influence of heat generated in the gas-solid separation process on heat-sensitive cytokines.
[0024] The utility model discloses a detachable guide flow component 2, which is arranged on the top wall of the separator cylinder 101, and is connected with the separator cylinder 101 through the mounting sleeve 201, wherein the mounting sleeve 201 is arranged on the top wall of the separator cylinder 101, and the mounting sleeve 201 is connected with the separator cylinder 101 through the positioning groove 4 and the electromagnet 3, the mounting sleeve 201 is connected with the separator cylinder 101 through the positioning groove 4 and the electromagnet 3, the mounting sleeve 201 is connected with the separator cylinder 101 through the positioning groove 4 and the electromagnet 3, and the mounting sleeve 201 is connected with the separator cylinder 101 through the positioning groove 4 and the electromagnet 3.
[0025] The basic principle, main features and advantages of the present application are shown and described above, and those skilled in the art should understand that the present application is not limited to the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principle of the present application, and various changes and improvements can be made to the present application without departing from the spirit and scope of the present application, and these changes and improvements all fall within the scope of the present application, and the scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A cyclonic gas-solids separator for a cytokine spray-drying tower, comprising a cyclonic gas-solids separator body (1), characterised in that: The vortex gas-solid separator body (1) is composed of a separator cylinder (101) and a separator conical cylinder (102), the separator cylinder (101) is connected with the separator conical cylinder (102) through a flange, and the separator cylinder (101) is internally provided with a detachable flow guide assembly (2) with a cooling effect.
2. The cyclonic gas-solids separator of a cytokine spray-drying column according to claim 1, characterized in that: The separator cylinder (101) is inlaid with an electromagnet (3) on the top wall, and a positioning groove (4) is formed in the separator cylinder (101).
3. The cyclonic gas-solids separator for a cytokine spray-drying tower of claim 2, wherein: The detachable flow guide assembly (2) comprises a mounting sleeve (201), the mounting sleeve (201) is clamped with the positioning groove (4), and a connecting magnet (202) is inlaid on the upper end of the mounting sleeve (201), and the connecting magnet (202) is connected with the electromagnet (3) by adsorption.
4. The cyclonic gas-solids separator of a cytokine spray-drying column according to claim 3, characterized in that: The inner wall of the mounting sleeve (201) is provided with flow guide plates (203) arranged in an array, the mounting sleeve (201) is of a hollow structure, the flow guide plates (203) are of a hollow structure, the flow guide plates (203) are communicated with the mounting sleeve (201), and the surfaces of the flow guide plates (203) are provided with micro-groove structures arranged in an array.
5. The cyclonic gas-solids separator of a cytokine spray-drying column according to claim 4, characterized in that: The upper and lower ends of the mounting sleeve (201) are respectively provided with a discharge pipe (204) and a cold air input pipe (205), the discharge pipe (204) and the cold air input pipe (205) are sealingly connected with the mounting sleeve (201), sealing sleeves (206) are sealingly connected with the discharge pipe (204) and the cold air input pipe (205), and the sealing sleeves (206) are sealingly connected with the mounting sleeve (201).
6. The cyclonic gas-solids separator for a cytokine spray-drying column of claim 1, wherein: The separator cylinder (101) is provided with an air inlet (5) and an air outlet (6), and the lower end of the separator conical cylinder (102) is provided with a discharge port (7).
7. The cyclonic gas-solids separator for a cytokine spray-drying column of claim 1, wherein: The lower end of the separator conical cylinder (102) is provided with a vibration motor (8) on one side.
8. The cyclonic gas-solids separator of a cytokine spray-drying column according to claim 6, characterized in that: The discharge port (7) is threadedly connected with a collecting box (9).