Creatine monohydrate purification device capable of recycling mother liquor

By designing a monohydrate creatine purification device that can recycle mother liquor, the problem of ineffective utilization of mother liquor is solved by utilizing the coordinated work of stirring and heating components, thereby improving crystallization efficiency and product purity, and reducing resource waste and environmental pressure.

CN223874635UActive Publication Date: 2026-02-06LIAONING TUOFENG LIFE SCIENCES CO LTD
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Patent Information

Application Number
CN202520125081.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2026-02-06
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

In existing creatine monohydrate purification devices, the purified mother liquor cannot be effectively utilized, resulting in resource waste and environmental pressure.

Method used

A recyclable mother liquor creatine monohydrate purification device was designed. The mother liquor is recycled by combining a stirring system and a heating component. The device includes a heat-insulated enamel kettle shell, a stirring enamel kettle shell, a gear protective block, a drive component, a filter heating component, and a mother liquor delivery pipe. The coordinated operation of these components enables recrystallization and purification of the mother liquor.

Benefits of technology

It improves crystallization efficiency and product purity, reduces resource waste, lowers production costs, and reduces the difficulty of waste disposal and environmental pressure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of solution purification, and discloses a creatine monohydrate purification device capable of recycling mother liquor, which comprises a heat preservation enamel kettle shell, a stirring enamel kettle shell is fixedly connected in the heat preservation enamel kettle shell, and a driving end of a driving component is fixedly connected with a working gear I; a connecting shaft is rotatably connected to the interior of the gear protection block, a first transmission gear is fixedly connected to the exterior of the connecting shaft, a forward stirring shaft is fixedly connected to the interior of the first transmission gear, and a reverse stirring shaft is rotatably connected to the exterior of the forward stirring shaft. According to the utility model, the rotating motor is started to drive the working gear I, the working gear I drives the transmission gear I to rotate through the internal gear ring which is externally coupled and connected, then the transmission gear II which is connected with the bottom of the connecting shaft drives the working gear II to rotate, then the working gear II drives the forward stirring shaft, and the stirring fan blades are matched with the kettle bottom stirring block; and the solution is fully stirred.
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Description

TECHNICAL FIELD

[0001] The utility model relates to solution purification technical field especially, it is one water creatine purification device of recycling mother liquor. BACKGROUND

[0002] One water creatine is a common form of creatine, in which each creatine molecule is combined with one water molecule, and is widely used in sports nutrition supplements to help improve muscle strength and endurance. In the production process of one water creatine, the purification device is used to remove impurities and ensure the high purity and quality of the product. The purification device helps to obtain purer creatine by removing impurities, solvent residues and by-products in the raw materials, improving the bioavailability and stability of the product, and avoiding the potential impact of impurities on human health. In addition, the purification process can improve production efficiency, reduce cost, and ensure that the final product meets strict quality standards.

[0003] Some one water creatine purification devices usually adopt solvent extraction, filtration, crystallization and drying steps. First, by dissolving the raw material creatine and water, a saturated solution is formed, and then the temperature and solvent change is used to promote the separation of impurities. In the crystallization stage, creatine will be recrystallized into pure creatine monohydrate under certain conditions, while impurities remain in the solution. Then, the impurities are removed by filtration, and the excess water is removed by drying, and finally high-purity one water creatine is obtained. This process can effectively improve the purity of creatine, remove insoluble substances, solvents and by-products, and ensure the quality and stability of the product.

[0004] The main problem of the existing one water creatine purification device is that the mother liquor after purification cannot be effectively utilized. The mother liquor after purification usually contains a certain amount of creatine and solvent residues, but in the existing equipment, these mother liquors often cannot be effectively recovered or reused, causing resource waste. In addition, the impurities and solvent residues in the mother liquor also increase the difficulty of waste disposal and cause certain pressure on the environment. Therefore, the one water creatine purification device for recycling mother liquor is proposed to solve the above problems. SUMMARY

[0005] In order to make up for the above shortcomings, the one water creatine purification device for recycling mother liquor is provided, which aims to improve the problem that the mother liquor after the existing one water creatine purification device cannot be effectively utilized, causing resource waste.

[0006] In order to achieve the above object, the utility model discloses the following technical scheme: the aqueous creatine purification device of recyclable mother liquor, including the heat preservation enamel kettle shell, the inside fixedly connected with the stirring enamel kettle shell of heat preservation enamel kettle shell, the top of stirring enamel kettle shell is installed gear protection block, the top of gear protection block is detachably connected with the driving assembly of providing stirring rotation force, driving assembly drive end fixedly connected with gear a, the inside rotatable connection of gear protection block has connecting shaft, the outside fixedly connected with transmission gear no.

[0007] As a further description of the above technical scheme: the filter heating assembly includes a heating mechanism housing, the top of the heating mechanism housing is detachably connected with a heating mechanism top cover, the inside of the heating mechanism housing is slidably connected with a screen, the inside of the heating mechanism housing is fixedly connected with an electric heating tube, the inside of the heating mechanism housing is provided with a cavity, the electric heating tube is fixedly connected in the cavity, the outside of the heating mechanism housing is fixedly connected with a limiting block, the inside of the heating mechanism top cover is provided with an outlet chute, the limiting block is slidably connected in the outlet chute.

[0008] As a further description of the above technical scheme: the driving assembly includes a motor fixing seat, the motor fixing seat is detachably connected on the top of the gear protection block, the top of the motor fixing seat is fixedly connected with a rotary motor, the gear a is fixedly connected on the drive end of the rotary motor.

[0009] As a further description of the above technical scheme: the stirring assembly includes four stirring vanes, four stirring vanes are fixedly connected on the outside of the reverse stirring shaft, four stirring vanes are in two two opposite forms, the outside of the forward stirring shaft is fixedly connected with a kettle bottom stirring block, the kettle bottom stirring block is a circular arc block, two connecting blocks are fixedly connected on the side near both ends of the kettle bottom stirring block, and the two connecting blocks are fixed with the forward stirring shaft.

[0010] As a further description of the above technical solution: the new solution feeding port is fixedly connected outside the heat preservation enamel kettle shell, the inside of the new solution feeding port is slidably connected with two filter shaft mounting blocks, the new material filter shaft is fixedly connected to the side close to the two filter shaft mounting blocks, and the outside of the new solution feeding port is provided with a sealing ring.

[0011] As a further description of the above technical solution: the bottom of the heat preservation enamel kettle shell is fixedly connected with four supporting columns, the bottom of the four supporting columns is fixedly connected with a supporting block, the top of the supporting block is rounded, and the four supporting columns are distributed at the four corners of the heat preservation enamel kettle shell.

[0012] As a further description of the above technical solution: the outside of the heating mechanism top cover is fixedly connected with a top cover handle, the outside of the heating mechanism shell is fixedly connected with a power supply interface, and the two ends of the electric heating pipe are connected and fixedly connected to the side close to the power supply interface and the top cover handle.

[0013] As a further description of the above technical solution: the heat preservation enamel kettle shell and the stirring enamel kettle shell have a gap, the outside of the stirring enamel kettle shell is provided with a heat preservation solution inlet, the outside of the heat preservation solution inlet is provided with a sealing ring, and the side close to the heat preservation solution inlet and the heat preservation enamel kettle shell is connected with the gap.

[0014] The utility model has the advantages of the following beneficial effects:

[0015] 1、 the utility model discloses, rotary motor starts, drive gearwheel a, and gearwheel a passes through the internal gear ring of external coupling connection drive gearwheel one rotation, then drive gearwheel one drives the connecting shaft in the inside, then the drive gearwheel two of connecting shaft bottom connection drive gearwheel b rotation, in this process, gearwheel a drives the drive gearwheel two in the inside, then gearwheel b drives the forward stirring shaft, and the forward stirring shaft sleeve is connected in the inside of drive gearwheel two, and the stirring fan blade and the kettle bottom stirring block cooperate, complete the sufficient stirring of solution, make the crystallization process more uniform, controllable.

[0016] 2. The utility model discloses a leakage net is completed the solid -liquid separation of solution in this process, then the electric heating tube generates heat because of the reason of the electricity, and the heating of mother liquor is completed through the heat insulation method, in the heating process, the crystalline crude product separated out flows back to the mother liquor because the hole of leakage net bottom is opened in advance, then the mother liquor after heating returns to the inside of agitating porcelain shell shell through mother liquor delivery pipe and carries out stirring, can improve the solubility, promote the recrystallization process of solute, thereby improve the efficiency and yield of crystallization. Through this process, the impurities in the mother liquor can be effectively removed, and a purer crystalline product is obtained. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is the three -dimensional schematic view of the one water creatine purification device of recycling mother liquor that the utility model puts forward;

[0018] Figure 2 It is the structure schematic view of the inner gear ring of the one water creatine purification device of recycling mother liquor that the utility model puts forward;

[0019] Figure 3 It is the structure schematic view of the leakage net of the one water creatine purification device of recycling mother liquor that the utility model puts forward

[0020] Figure 4 It is the structure schematic view of the heating mechanism shell of the one water creatine purification device of recycling mother liquor that the utility model puts forward;

[0021] Figure 5 It is Figure 1 The enlarged view of A in the middle.

[0022] Legend:

[0023] 1, the heat preservation porcelain shell shell, 2, the heat preservation solution entrance, 3, agitates the porcelain shell shell, 4, gear protection block, 5, motor fixed seat, 6, rotary motor, 7, gear a, 8, gear b, 9, transmission gear one, 10, inner gear ring, 11, transmission gear two, 12, stirring fan blade, 13, forward stirring shaft, 14, cauldron bottom stirring block, 15, connecting shaft, 16, solid -liquid mixed output pipe, 17, support column, 18, support block, 19, heating mechanism shell, 20, electric heating tube, 21, leakage net, 22, limit block, 23, heating mechanism top cover, 24, top cover handle, 25, power supply interface, 26, mother liquor delivery pipe, 27, new solution feed inlet, 28, sealing ring, 29, new material filter shaft, 30, filter shaft mounting block, 31, reverse stirring shaft. DETAILED DESCRIPTION

[0024] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.

[0025] With reference to Figure 1 , Figure 2 , Figure 5 An embodiment provided by the utility model: the aqueous creatine purification device with recyclable mother liquor comprises a heat preservation enamel kettle shell 1, the heat preservation enamel kettle shell 1 is used as the main shell of the device, and plays the role of protecting the internal stirring device and heating device. It is composed of enamel material, has good corrosion resistance, can effectively insulate heat, prevent internal temperature loss, ensure constant temperature in the purification process, and the inside of the heat preservation enamel kettle shell 1 is fixedly connected with a stirring enamel kettle shell 3, the stirring enamel kettle shell 3 is fixed in the heat preservation enamel kettle shell 1, and provides physical support for the stirring system. The stirring enamel kettle shell 3 is directly contacted with the reaction material, so the stirring enamel kettle shell 3 is made of enamel and has good corrosion resistance, so that the stirring efficiency and the safety of the device are ensured, a gear protection block 4 is installed at the top of the stirring enamel kettle shell 3, the gear protection block 4 is used for protecting the gear system and preventing abnormal conditions or accidental damage of the gear in the running process. At the same time, it provides necessary mechanical protection for the gear system and ensures long-term stable operation of the equipment, a driving assembly for providing stirring rotary force is detachably connected to the top of the gear protection block 4, the driving assembly is detachably connected through a screw and a nut, the driving assembly provides power for the stirring device and ensures stable operation of the stirring system, a gear a7 is fixedly connected to the driving end of the driving assembly and used as intermediate equipment of the transmission assembly, the rotary force is transmitted to a transmission gear one 9 through an internally toothed gear ring 10 coupled and connected externally, the inside of the gear protection block 4 is rotatably connected with a connecting shaft 15, which is used as a connecting piece between the transmission gear two 11 and the transmission gear one 9, the transmission gear one 9 and the transmission gear two 11 are connected, so that the rotary force can directly act on the transmission gear two 11, avoiding energy loss, the transmission gear one 9 is fixedly connected to the outside of the connecting shaft 15 and used as one of the gear sets and is responsible for the transmission of the rotary force, and the rotary force is transmitted to a transmission shaft two through the connection of the connecting shaft 15.

[0026] The lower side of the transmission gear one 9 is fixedly connected with the transmission gear two 11, which is a rotating force transmission member, and transmits the rotating force to the gear b8, and finally drives the reverse stirring shaft 31 to complete the stirring by the gear b8. The gear a7 is coupled with the outer part of the transmission gear one 9, and the inner gear ring 10 is fixedly connected with the gear a7. The inner part of the gear a7 is fixedly connected with the forward stirring shaft 13, and the outer part of the forward stirring shaft 13 is rotatably connected with the reverse stirring shaft 31. The forward stirring shaft 13 and the reverse stirring shaft 31 are respectively installed in the forward and reverse directions. The forward stirring shaft 13 is mainly responsible for the main stirring action in the stirring process, while the reverse stirring shaft 31 performs reverse stirring when needed to avoid the accumulation of sediments and improve the purification efficiency. The outer part of the reverse stirring shaft 31 is fixedly connected with the gear b8, and the gear b8 and the transmission gear two 11 are coupled with each other, so that the transmission gear two 11 can transmit the rotating force to the gear b8. The outer part of the reverse stirring shaft 31 is fixedly connected with the stirring assembly, which is the core part of the material mixing. The four stirring blades 12 are evenly distributed on the stirring device to ensure uniform stirring of the material, thereby promoting uniform distribution and dissolution of the solute, making the crystallization process more uniform and controllable. The bottom of the heat preservation enamel kettle shell 1 is fixedly connected with the solid-liquid mixed output pipe 16, which is used to transport the stirred mother liquor and crystallization mixture to the filtration heating assembly or the discharge system. The solid-liquid mixed output pipe 16 can discharge the mixture from the heat preservation enamel kettle shell 1 for subsequent processing. The left side of the solid-liquid mixed output pipe 16 is detachably connected with the filtration heating assembly, which is realized by threaded sleeve connection. The filtration heating assembly is used for filtering and heating the stirred mother liquor, so that the mother liquor can be recombined with the water creatine crude product and then recrystallized. The filtration heating assembly and the heat preservation enamel kettle shell 1 are detachably connected with the mother liquor conveying pipe 26, which is realized by pipe sleeve connection. The heated mother liquor is sent back to the stirring enamel kettle shell 3 for recrystallization. The outer part of the heat preservation enamel kettle shell 1 is fixedly connected with the inlet filtration assembly, which is used to filter the new solution entering the reaction kettle to prevent impurities from entering the reaction kettle and affecting the subsequent purification process. The driving assembly includes a motor fixed seat 5, which is detachably connected to the top of the gear protection block 4 by screws and nuts.

[0027] The top of the motor fixing seat 5 is fixedly connected with a rotating motor 6, the driving assembly comprises the motor fixing seat 5 and the rotating motor 6, the rotating motor 6 provides stable rotating force for the gear a7, and then drives the subsequent driving assembly. The detachable design of the motor fixing seat 5 facilitates maintenance and replacement of the rotating motor 6, the gear a7 is fixedly connected to the driving end of the rotating motor 6, the stirring assembly comprises four stirring blades 12, the four stirring blades 12 are fixedly connected to the outside of the reverse stirring shaft 31, the four stirring blades 12 are in a two-by-two opposite form, the outside of the forward stirring shaft 13 is fixedly connected with a kettle bottom stirring block 14, the kettle bottom stirring block 14 is a circular arc block, the four stirring blades 12 are evenly distributed on the stirring device, ensuring uniform stirring of the material, thereby promoting uniform distribution and dissolution of the solute, and making the crystallization process more uniform and controllable. The stirring can accelerate the contact between the solute and the solvent, reduce the occurrence of supersaturation, avoid local rapid crystallization or precipitation, thereby improving the crystallization efficiency and the purity of the product. The kettle bottom stirring block 14 is used for stirring at the bottom to prevent deposition, two connecting blocks are fixedly connected to the side close to the two ends of the kettle bottom stirring block 14, the connecting blocks provide stable support for the kettle bottom stirring block 14, prevent the kettle bottom stirring block 14 from falling off or being damaged during rotation, and the two connecting blocks are fixedly connected with the forward stirring shaft 13. The heat preservation enamel kettle shell 1 and the stirring enamel kettle shell 3 have a gap, the outside of the stirring enamel kettle shell 3 is provided with a heat preservation solution inlet 2, the gap is injected with a heat preservation solution, so that the solution can provide stable heat preservation effect, and the heat preservation solution inlet 2 is close to one side of the heat preservation enamel kettle shell 1 and the gap.

[0028] Referring to Figure 3 , Figure 4The filtering and heating assembly comprises a heating mechanism shell 19, a heating mechanism top cover 23, an electric heating pipe 20, a limiting block 22, a mesh screen 21, a new solution inlet 27, a sealing ring 28, a new material filtering shaft 29, a support column 17, a support block 18, a power supply interface 25 and a top cover handle 24. The heating mechanism top cover 23 is detachably connected to the top of the heating mechanism shell 19, and the detachable connection is realized by limiting the top cover through the cooperation of the limiting block 22 and the cavity. The mesh screen 21 is slidably connected to the inside of the heating mechanism shell 19, and the mesh screen 21 is connected to the heating mechanism shell 19 in a sliding manner, so as to facilitate cleaning. The main function is to complete the solid-liquid separation of the crystallization solution, and the crystallization is re-melted into the mother liquor due to the heating of the mother liquor. The electric heating pipe 20 is fixedly connected to the inside of the heating mechanism shell 19, and is fixed in the heating mechanism. The electric heating pipe 20 converts electric energy into heat energy, so as to improve the temperature of the solution. The cavity is formed in the inside of the heating mechanism shell 19, and the electric heating pipe 20 is fixedly connected to the inside of the cavity. The limiting block 22 is fixedly connected to the outside of the heating mechanism shell 19. The inside of the heating mechanism top cover 23 is provided with an outlet sliding groove. The limiting block 22 is matched with the outlet sliding groove, so as to complete the sealing of the heating mechanism shell 19 and the heating mechanism top cover 23. When the mesh screen 21 is cleaned, the top cover handle 24 is held and the heating mechanism top cover 23 is rotated, so that the heating mechanism top cover 23 is opened. The limiting block 22 is slidably connected in the outlet sliding groove. The new solution inlet 27 is fixedly connected to the outside of the heat preservation enamel kettle shell 1. The two filtering shaft mounting blocks 30 are slidably connected to the inside of the new solution inlet 27. The new material filtering shaft 29 is fixedly connected to the side of the two filtering shaft mounting blocks 30, so as to complete the filtration of impurities in the new material, thereby improving the efficiency of subsequent purification. The sealing ring 28 is arranged on the outside of the new solution inlet 27, so as to ensure the sealing property when being connected. The filtering shaft mounting block 30 provides support and fixation for the new material filtering shaft 29. The four support columns 17 are fixedly connected to the bottom of the heat preservation enamel kettle shell 1. The support block 18 is fixedly connected to the bottom of the four support columns 17. The support column 17 and the support block 18 provide stable support for the device, so as to prevent the device from being inclined or damaged due to vibration in the stirring process or other factors in the operation. The top of the support block 18 is rounded. The four support columns 17 are distributed at the four corners of the heat preservation enamel kettle shell 1. The top cover handle 24 is fixedly connected to the outside of the heating mechanism top cover 23. The power supply interface 25 is fixedly connected to the outside of the heating mechanism shell 19. The power supply interface 25 is connected to the power supply, so as to provide power for the electric heating pipe 20. The top cover handle 24 facilitates the operator to detach the top cover of the heating mechanism for maintenance or adjustment of the mesh screen 21. The two ends of the electric heating pipe 20 are connected and fixedly connected to the power supply interface 25 and the side close to the top cover handle 24.

[0029] Working principle: first, the new solution enters the heat preservation enamel kettle shell 1 through the new solution inlet 27, and the solution passes through the inlet filter assembly before entering the reaction kettle, and the impurities are filtered by the new material filter shaft 29 to ensure the purity of the solution. The filtered solution enters the stirring enamel kettle shell 3, which is fixed in the heat preservation enamel kettle shell 1 to provide support for the stirring system. The stirring system works through the cooperation of gear protection block 4, drive assembly, motor fixing seat 5, rotating motor 6 and other parts. The rotating motor 6 provides stable rotating force for the gear a7, which in turn drives the gear a7, the transmission gear one 9 and the transmission gear two 11, and finally transmits the rotating force to the forward stirring shaft 13 and the reverse stirring shaft 31 through the connecting shaft 15, so that the stirring fan blade 12 stirs the material in a set way;

[0030] During the stirring process, the forward stirring shaft 13 is responsible for the main stirring work, and the reverse stirring shaft 31 is used to avoid sediment accumulation, improve the crystallization efficiency and ensure the uniform stirring of the material. The kettle bottom stirring block 14 cooperates with the stirring fan blade 12 to stir the bottom material to prevent the material from depositing. The stirring process helps the uniform distribution and dissolution of solute, thereby promoting the smooth progress of the crystallization process, reducing the occurrence of supersaturation, and improving the crystallization efficiency and product purity;

[0031] After the stirring is completed, the stirred mother liquor and crystallization mixture are transported to the subsequent processing link through the solid-liquid mixed output pipe 16. The solid-liquid mixed output pipe 16 is connected with the filter heating assembly, and the filter heating assembly heats the stirred solution through the heating mechanism shell 19, the electric heating pipe 20 and the power supply interface 25, so that the crystals in the mother liquor are re-dissolved, and the recycling of the mother liquor is completed. In this process, the mesh screen 21 separates the heated solution into solid and liquid to ensure effective separation of the mother liquor and the crystalline material for subsequent operation;

[0032] The heated mother liquor returns to the stirring enamel kettle shell 3 through the mother liquor conveying pipe 26 for recrystallization, recycling, improving production efficiency and reducing resource waste. This process can be recycled multiple times according to demand, and the purification effect is gradually improved. During each processing process, the heat preservation effect of the heat preservation enamel kettle shell 1 ensures a stable temperature environment to avoid the influence of temperature fluctuation on the purification process.

[0033] Finally, it should be pointed out that the above description is only a preferred embodiment of the present application and is not intended to limit the present application. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some technical features, as long as they are within the spirit and principles of the present application. Any modification, equivalent substitution, improvement, etc. made within the scope of the present application shall be included in the protection scope of the present application.

Claims

1. A purification device of creatine monohydrate with recyclable mother liquor, comprising a heat-insulated enamel kettle shell (1), characterized in that: The inside of the heat preservation enamel kettle shell (1) is fixedly connected with a stirring enamel kettle shell (3), the top of the stirring enamel kettle shell (3) is provided with a gear protection block (4), the top of the gear protection block (4) is detachably connected with a driving assembly for providing stirring rotation force, the driving end of the driving assembly is fixedly connected with a gear a (7), the inside of the gear protection block (4) is rotatably connected with a connecting shaft (15), the outside of the connecting shaft (15) is fixedly connected with a transmission gear one (9), the outside of the connecting shaft (15) and the lower side of the transmission gear one (9) are fixedly connected with a transmission gear two (11), the outside of the gear a (7) and the transmission gear one (9) are coupled with an internal gear ring (10), the inside of the gear a (7) is fixedly connected with a forward stirring shaft (13), the outside of the forward stirring shaft (13) is rotatably connected with a reverse stirring shaft (31), the outside of the reverse stirring shaft (31) is fixedly connected with a gear b (8), the outside of the reverse stirring shaft (31) and the forward stirring shaft (13) are fixedly connected with a stirring assembly, the bottom of the heat preservation enamel kettle shell (1) is fixedly connected with a solid-liquid mixed output pipe (16), the left side of the solid-liquid mixed output pipe (16) is detachably connected with a filtering heating assembly, the filtering heating assembly and the heat preservation enamel kettle shell (1) are detachably connected with a mother liquor conveying pipe (26), and the outside of the heat preservation enamel kettle shell (1) is fixedly connected with an inlet material filtering assembly.

2. The recyclable mother liquor carnine purification device according to claim 1, characterized in that: The filtering heating assembly comprises a heating mechanism shell (19), the top of the heating mechanism shell (19) is detachably connected with a heating mechanism top cover (23), the inside of the heating mechanism shell (19) is slidably connected with a screen (21), the inside of the heating mechanism shell (19) is fixedly connected with an electric heating pipe (20), the inside of the heating mechanism shell (19) is provided with a cavity, the electric heating pipe (20) is fixedly connected in the cavity, the outside of the heating mechanism shell (19) is fixedly connected with a limiting block (22), the inside of the heating mechanism top cover (23) is provided with an outlet sliding groove, and the limiting block (22) is slidably connected in the outlet sliding groove.

3. The recyclable mother liquor carnine purification device according to claim 1, wherein: The driving assembly comprises a motor fixed seat (5), the motor fixed seat (5) is detachably connected at the top of the gear protection block (4), the top of the motor fixed seat (5) is fixedly connected with a rotating motor (6), and the gear a (7) is fixedly connected with the driving end of the rotating motor (6).

4. The recyclable mother liquor carnine purification device according to claim 1, wherein: The stirring assembly comprises four stirring blades (12), the four stirring blades (12) are fixedly connected at the outside of the reverse stirring shaft (31), the four stirring blades (12) are in a two-by-two opposite form, the outside of the forward stirring shaft (13) is fixedly connected with a kettle bottom stirring block (14), the kettle bottom stirring block (14) is a circular arc block, one side near the two ends of the kettle bottom stirring block (14) is fixedly connected with two connecting blocks, and the two connecting blocks are fixedly connected with the forward stirring shaft (13).

5. The recyclable mother liquor carnine purification device according to claim 1, wherein: The feed filtering assembly includes a new solution feed port (27) fixedly connected outside the heat preservation enamel kettle shell (1), the inside of the new solution feed port (27) is slidably connected with two filter shaft mounting blocks (30), two filter shaft mounting blocks (30) are fixedly connected with new material filter shaft (29) on the side, the outside of the new solution feed port (27) is equipped with sealing ring (28).

6. The recyclable mother liquor carnine purification device according to claim 1, wherein: The bottom of the heat preservation enamel kettle shell (1) is fixedly connected with four support columns (17), the bottom of four support columns (17) is fixedly connected with support block (18), the top of support block (18) is rounded, four support columns (17) are distributed in the four corners of the heat preservation enamel kettle shell (1).

7. The recyclable mother liquor carnine purification device according to claim 2, wherein: The outside of the heating mechanism top cover (23) is fixedly connected with top cover handle (24), the outside of the heating mechanism shell (19) is fixedly connected with power interface (25), the two ends of the electric heating pipe (20) are merged and fixedly connected on the side of the power interface (25) and the top cover handle (24).

8. The recyclable mother liquor solution of carnosine purification device according to claim 1, characterized in that: The heat preservation enamel kettle shell (1) and the stirring enamel kettle shell (3) have a gap, the outside of the stirring enamel kettle shell (3) is provided with a heat preservation solution inlet (2), the outside of the heat preservation solution inlet (2) is provided with a sealing ring, the heat preservation solution inlet (2) is connected with the gap on the side of the heat preservation enamel kettle shell (1).