Filtering device for preparing arginine hydrochloride

By designing a filter device containing a rotating motor and a mesh plate, the problem of incoherent filtration of activated carbon during the preparation of arginine hydrochloride is solved, and the rapid decolorization and coherent filtration of arginine solution are achieved, thereby improving the operation efficiency.

CN222841556UActive Publication Date: 2025-05-09NUTRAGREENLIFE BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421850015.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-05-09
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

During the preparation of arginine hydrochloride, after adding activated carbon to the arginine solution for decolorization, the activated carbon needs to be filtered out separately, resulting in inconsistent operations.

Method used

A filter device is designed, including a coverless container barrel, a mesh cover, a rotating electric machine and multiple mesh plates. The mesh plate is filled with an activated carbon layer. The rotating electric machine drives the mesh plate to fully contact the activated carbon layer with the arginine solution, and achieves rapid decolorization.

Benefits of technology

This device makes the decolorization and filtration process of the arginine solution coherently, with good use effect, and the replacement of activated carbon layer and the adjustment of the number of mesh plates are relatively convenient.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a filtering device for preparing arginine hydrochloride, which belongs to the technical field of filtering devices, and comprises a containing barrel, a filtering device and a filtering device, the barrel cover is connected to the containing barrel in a clamped mode, and a feeding opening is formed in the barrel cover; the net cover is arranged in the containing barrel, and the net cover is connected to the barrel cover; the upper end of the connecting shaft is hinged to the can cover; according to the device, an arginine solution is poured into the containing barrel from the feeding opening, the mesh enclosure can isolate large impurities, the rotating motor rotates to drive the connecting shaft to rotate, and the connecting shaft rotates to drive the multiple mesh plates to rotate, so that activated carbon layers in the mesh plates are in full contact with the arginine solution, and then rapid decoloration is facilitated; after decolorization is completed, only the barrel cover needs to be taken out of the containing barrel, the rotating motor, the mesh enclosure and the multiple mesh plates can be taken out together, impurities are left in the mesh enclosure, no impurity is left in the containing barrel, decolorization and filtration of the arginine solution are coherent, and the use effect is good.
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Description

Technical Field

[0001] The utility model belongs to the technical field of filtering devices, and in particular relates to a filtering device used for preparing arginine hydrochloride. Background Art

[0002] The active ingredient of L-arginine hydrochloride is L-arginine, which can be used in medicine to help wound healing, stimulate the development of the immune system, increase hormone secretion, promote urine circulation, reduce ammonia content in the blood, and treat blood ammonia poisoning.

[0003] Currently, in the preparation process of arginine hydrochloride, after adding activated carbon to the arginine solution for decolorization, the activated carbon needs to be filtered out, which makes the operation process incoherent. Utility Model Content

[0004] The purpose of the utility model is to solve the above-mentioned problems and to provide a filtering device for preparing arginine hydrochloride.

[0005] In order to achieve the above object, the utility model adopts the following technical solution: a filtering device for preparing arginine hydrochloride, comprising:

[0006] A holding bucket, which is a lidless container;

[0007] A barrel cover, which is clamped on the containing barrel, and a feed inlet is provided on the barrel cover;

[0008] A mesh cover is arranged in the containing barrel and connected to the barrel cover;

[0009] A connecting shaft, the upper end of which is hinged on the barrel cover, and the connecting shaft extends into the mesh cover;

[0010] A plurality of mesh plates are arranged in the mesh cover, and the plurality of mesh plates are clamped on the connecting shaft, and the mesh plates are filled with an activated carbon layer;

[0011] A rotating motor is fixedly connected to the barrel cover, and the rotating motor is connected to and drives the connecting shaft.

[0012] As a further description of the above technical solution:

[0013] The mesh plate is provided with a mounting groove, and the activated carbon layer is inserted into the mounting groove.

[0014] As a further description of the above technical solution:

[0015] The plurality of mesh plates are arranged in a circular array along the axis of the connecting shaft, a plurality of T-shaped slots are provided on the side of the connecting shaft, and T-shaped strips are provided on the edges of the mesh plates, and the T-shaped strips are inserted into the T-shaped slots.

[0016] As a further description of the above technical solution:

[0017] The T-shaped slot extends to the lower end of the connecting shaft, and the lower end of the connecting shaft is threadedly connected with a limiting nut, and the limiting nut abuts against the plurality of mesh plates.

[0018] In summary, due to the adoption of the above technical solution, the beneficial effects of the utility model are:

[0019] In the utility model, the arginine solution is poured into the containing barrel from the feed port, the mesh cover can isolate larger impurities, the rotation of the rotating motor drives the connecting shaft to rotate, and the rotation of the connecting shaft drives the multiple mesh plates to rotate, so that the activated carbon layer in the mesh plate is fully in contact with the arginine solution, thereby facilitating rapid decolorization. After the decolorization is completed, only the barrel cover needs to be taken out from the containing barrel, and the rotating motor, the mesh cover and the multiple mesh plates will also be taken out together, the impurities are left in the mesh cover, and the containing barrel has no impurities remaining, so that the decolorization and filtration of the arginine solution are continuous, and the use effect is good. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 The figure is a schematic diagram of the overall structure of a filtering device for preparing arginine hydrochloride.

[0021] Figure 2 An exploded view of a filtration device for preparing arginine hydrochloride.

[0022] Figure 3 A cross-sectional view of a filtration device for preparing arginine hydrochloride Figure 1 .

[0023] Figure 4 A cross-sectional view of a filtration device for preparing arginine hydrochloride Figure 2 .

[0024] Figure 5 for Figure 4 A partial enlarged view of part A.

[0025] Legend:

[0026] 1. Containing barrel; 2. Barrel cover; 3. Feed port; 4. Mesh cover; 5. Connecting shaft; 6. Mesh plate; 7. Activated carbon layer; 8. Rotating motor; 9. Mounting slot; 10. T-shaped slot; 11. T-shaped clip strip; 12. Limiting nut. DETAILED DESCRIPTION

[0027] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0028] See also Figure 1-5 The utility model provides a technical solution: a filtering device for preparing arginine hydrochloride, comprising:

[0029] A containing barrel 1, which is a container without a cover;

[0030] A barrel cover 2, which is clamped on the containing barrel 1, and a feed inlet 3 is provided on the barrel cover 2;

[0031] A mesh cover 4 is disposed in the container 1 and connected to the container cover 2;

[0032] A connecting shaft 5, the upper end of which is hinged on the barrel cover 2, and the connecting shaft 5 extends into the mesh cover 4;

[0033] A plurality of mesh plates 6 are arranged in the mesh cover 4, and the plurality of mesh plates 6 are clamped on the connecting shaft 5, and the mesh plates 6 are filled with an activated carbon layer 7;

[0034] A rotating motor 8, which is fixedly connected to the barrel cover 2, and the rotating motor 8 is connected to and drives the connecting shaft 5;

[0035] The mesh plate 6 is provided with a mounting groove 9, and the activated carbon layer 7 is inserted into the mounting groove 9, so as to facilitate the replacement of the activated carbon layer 7;

[0036] The plurality of mesh plates 6 are arranged in a circular array along the axis of the connecting shaft 5. A plurality of T-shaped slots 10 are provided on the side of the connecting shaft 5. The edges of the mesh plates 6 are provided with T-shaped clips 11. The T-shaped clips 11 are inserted into the T-shaped slots 10 to facilitate the assembly and disassembly of the mesh plates 6 on the connecting shaft 5, and then the number of mesh plates 6 can be installed according to the requirements.

[0037] The T-shaped slot 10 extends to the lower end of the connecting shaft 5 , and a limiting nut 12 is screwed to the lower end of the connecting shaft 5 . The limiting nut 12 abuts against the plurality of mesh plates 6 , so that the mesh plates 6 are stably installed on the connecting shaft 5 .

[0038] Working principle: First, pour the arginine solution from the feed port 3 into the holding barrel 1, the mesh cover 4 can isolate larger impurities, the rotating motor 8 rotates to drive the connecting shaft 5 to rotate, and the connecting shaft 5 rotates to drive the multiple mesh plates 6 to rotate, so that the activated carbon layer 7 in the mesh plate 6 is fully in contact with the arginine solution, thereby facilitating rapid decolorization. Secondly, after the decolorization is completed, it is only necessary to take the barrel cover 2 out of the holding barrel 1, and the rotating motor 8, the mesh cover 4 and the multiple mesh plates 6 will also be taken out together, and the impurities will remain in the mesh cover 4, and there will be no impurities remaining in the holding barrel 1, so that the decolorization and filtration of the arginine solution are continuous, and the use effect is good. Then, when the active carbon layer 7 is removed from the holding barrel 1, the rotating motor 8, the mesh cover 4 and the multiple mesh plates 6 will be removed together. The impurities are left in the mesh cover 4, and there is no impurity residue in the holding barrel 1, so that the decolorization and filtration of the arginine solution are continuous, and the use effect is good. When the carbon layer 7 needs to be replaced, the activated carbon layer 7 is removed from the mounting groove 9 of the mesh plate 6 and a new activated carbon layer 7 is installed. Finally, when adjusting the number of mesh plates 6 according to usage requirements, the mesh cover 4 is removed from the barrel cover 2, the limiting nut 12 is unscrewed, and the T-shaped clip 11 of the mesh plate 6 is removed from the T-shaped clip groove 10 of the connecting shaft 5 to reduce the number of mesh plates 6. The T-shaped clip 11 of the mesh plate 6 is inserted into the T-shaped clip groove 10 of the connecting shaft 5 to increase the number of mesh plates 6. After the adjustment is completed, the limiting bolt is screwed to the lower end of the connecting shaft 5, and the limiting bolt is against the multiple mesh plates 6 installed on the connecting shaft 5.

[0039] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes within the technical scope disclosed by the present invention according to the technical scheme and the utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A filtering device for preparing arginine hydrochloride, characterized in that: include: A containing barrel (1), which is a container without a cover; A barrel cover (2) is clamped on the containing barrel (1), and a feed port (3) is provided on the barrel cover (2); A mesh cover (4) is arranged in the containing barrel (1), and the mesh cover (4) is connected to the barrel cover (2); A connecting shaft (5), the upper end of which is hinged on the barrel cover (2), and the connecting shaft (5) extends into the mesh cover (4); A plurality of mesh plates (6) are arranged in the mesh cover (4), and the plurality of mesh plates (6) are clamped on the connecting shaft (5), and the mesh plates (6) are filled with an activated carbon layer (7); A rotating motor (8) is fixedly connected to the barrel cover (2), and the rotating motor (8) is connected to and drives the connecting shaft (5).

2. A filtering device for preparing arginine hydrochloride according to claim 1, characterized in that: The mesh plate (6) is provided with a mounting groove (9), and the activated carbon layer (7) is inserted into the mounting groove (9).

3. A filtering device for preparing arginine hydrochloride according to claim 2, characterized in that: The plurality of mesh plates (6) are arranged in a circular array along the axis of the connecting shaft (5); a plurality of T-shaped slots (10) are provided on the side of the connecting shaft (5); and a T-shaped clip strip (11) is provided on the edge of the mesh plate (6); the T-shaped clip strip (11) is inserted into the T-shaped slot (10).

4. A filtering device for preparing arginine hydrochloride according to claim 3, characterized in that: The T-shaped slot (10) extends to the lower end of the connecting shaft (5), and the lower end of the connecting shaft (5) is threadedly connected to a limiting nut (12), and the limiting nut (12) abuts against the plurality of mesh plates (6).