Enzymolysis equipment

By employing a separation cylinder and a drive motor transmission system in the enzymatic hydrolysis equipment, centrifugal force and transmission are used to drive the separation cylinder to rotate, solving the problem of inconvenient separation of enzyme solution and protoplasts, and achieving efficient and comprehensive separation results.

CN223592727UActive Publication Date: 2025-11-25SHANGHAI LITHY ONE-HEALTH GRP TECH CO LTD
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Patent Information

Application Number
CN202422983672.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-04
Publication Date
2025-11-25
Estimated Expiration
2034-12-04

AI Technical Summary

Technical Problem

The separation of enzyme solution and protoplast in the existing enzymatic hydrolysis process is inconvenient and not comprehensive enough, resulting in low separation efficiency.

Method used

The enzyme solution is discharged into the separation tank through the separation hole by centrifugal force using a separation cylinder, and the drive motor drives the active wheel to rotate. The separation cylinder is rotated rapidly by a synchronous belt and passive wheel transmission system, so as to achieve efficient separation of enzyme solution and protoplast.

Benefits of technology

This method enables rapid and comprehensive separation of enzyme solutions and protoplasts, improving separation efficiency and practicality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses enzymolysis equipment and relates to the field of enzymolysis device.The enzymolysis equipment comprises a base and an enzymolysis tank, the lower portion of the enzymolysis tank is connected with a separation tank through a connecting pipe, a mounting opening is formed in the upper portion of the separation tank, a separation barrel is rotatably mounted in the mounting opening, and separation holes are formed in the side face of the separation barrel; leaking holes are formed in the outer side of the lower surface of the separating tank, a funnel is installed on the lower portion of the separating tank, and a discharging pipe is installed in the middle of the funnel. According to the device, an enzyme solution is discharged into the separation tank from the separation holes under the action of centrifugal force generated during rotation of the separation cylinder, the enzyme solution and protoplast can be rapidly separated, separation can be rapidly carried out in a rotating mode, separation is more comprehensive, the separation effect is improved, and the separation efficiency is improved. The problems that an enzyme solution and protoplast are inconvenient to separate in an existing separation mode, and separation is not comprehensive enough are solved.
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Description

Technical Field

[0001] This application relates to the field of enzymatic hydrolysis apparatus, and more particularly to an enzymatic hydrolysis device. Background Technology

[0002] Enzymatic hydrolysis refers to the decomposition process catalyzed by enzymes, which breaks down large molecules into smaller ones. Enzymes are typically produced by living cells and are large biomolecules. They are important biological catalysts that govern processes such as metabolism, energy conversion, and nutrition. For example, through the movement of the digestive tract and the enzymes secreted by digestive glands, large molecules such as starch and protein are broken down into smaller molecules such as amino acids and glucose, enabling the digestion and absorption of food. Simultaneously, enzymes also maintain organ function, including cell repair, metabolism, boosting immunity, generating energy, and promoting blood circulation.

[0003] In the current enzymatic hydrolysis process, protoplasts sink to the bottom of the culture vessel, and then the enzyme solution is removed to separate the enzyme solution from the protoplasts. In actual separation, the enzyme solution at the bottom is in contact with the protoplasts, making it inconvenient to separate them. At the same time, the separation process is not comprehensive enough and the efficiency is not high. Utility Model Content

[0004] To address the problem that current separation methods are inconvenient for separating enzyme solutions and protoplasts, and that the separation is not comprehensive enough, this application provides an enzymatic hydrolysis device.

[0005] The enzymatic hydrolysis device provided in this application adopts the following technical solution:

[0006] The device includes a base and an enzymatic hydrolysis tank. The lower part of the enzymatic hydrolysis tank is connected to a separation tank via a connecting pipe. The upper part of the separation tank has an installation port. A separation cylinder is rotatably installed inside the installation port. A separation hole is opened on the side of the separation cylinder. A leakage hole is opened on the outer side of the lower surface of the separation tank. A funnel is installed at the lower part of the separation tank. A discharge pipe is installed in the middle of the funnel.

[0007] By adopting the above technical solution, when the separation cylinder rotates, the enzyme solution is discharged from the separation hole into the interior of the separation tank by the action of centrifugal force. Through the leakage hole at the bottom of the separation tank, the enzyme solution enters the interior of the funnel, and is sent into the interior of the collection tank through the discharge pipe.

[0008] Preferably, the diameter of the separating cylinder is matched with the diameter of the mounting port, the upper surface of the separating cylinder is flush with the upper surface of the separating tank, and the lower part of the separating cylinder is rotatably connected to the inner bottom of the separating tank.

[0009] By adopting the above technical scheme, when the passive wheel rotates, the separation cylinder will be driven to rotate in the interior of the separation tank through the connecting ring, and the two are matched, and the enzyme solution in the interior will not spill from the connecting part.

[0010] Preferably, the upper part of the separation cylinder is fixedly installed with a connecting ring, the side surface of the connecting ring is installed with a passive wheel, the side surface of the passive wheel is drivingly connected with a synchronous belt, and the passive wheel is drivingly connected with a driving wheel through the synchronous belt.

[0011] By adopting the above technical scheme, when the passive wheel rotates, the separation cylinder will be driven to rotate in the interior of the separation tank through the connecting ring, and the two are matched, and the enzyme solution in the interior will not spill from the connecting part.

[0012] Preferably, the upper part of the separation cylinder is fixedly installed with a connecting ring, the side surface of the connecting ring is installed with a passive wheel, the side surface of the passive wheel is drivingly connected with a synchronous belt, and the passive wheel is drivingly connected with a driving wheel through the synchronous belt.

[0013] By adopting the above technical scheme, through the driving motor driving the driving wheel to rotate, the driving wheel can drive the passive wheel to rotate through the synchronous belt when the driving wheel rotates.

[0014] Preferably, the base is installed with a middle support plate, the middle support plate is provided with an upper support plate, and the base, the middle support plate and the upper support plate are connected through support columns.

[0015] By adopting the above technical scheme, through the setting of the multi-layer structure, the protoplast in the enzymolysis tank and the enzyme solution in the separation tank can flow downward.

[0016] Preferably, the separation tank and the driving motor are located on the middle support plate, the enzymolysis tank is located on the upper support plate, and the connecting pipe is installed with a protection ring.

[0017] By adopting the above technical scheme, through the driving motor driving the driving wheel to rotate, the driving wheel can drive the passive wheel to rotate through the synchronous belt when the driving wheel rotates.

[0018] Preferably, the base is provided with a collecting barrel, and the collecting barrel is located at the lower part of one end of the discharge pipe.

[0019] By adopting the above technical scheme, the enzyme solution enters the interior of the funnel, and the enzyme solution is sent into the interior of the collecting barrel through the discharge pipe.

[0020] In summary, the present application has at least one of the following beneficial technical effects:

[0021] 1. The application can separate the enzyme solution and protoplast by the centrifugal force generated by the rotation of the separation cylinder, and can quickly separate the enzyme solution and protoplast by rotating, and the separation is more comprehensive, which improves the separation effect, solves the problem that the current separation method is not convenient for separating the enzyme solution and protoplast, and the separation is not comprehensive;

[0022] 2. The application can drive the driving wheel to rotate by the driving motor, and the passive wheel can be driven to rotate by the synchronous belt when the driving wheel rotates, and the separation cylinder can be driven to rotate by the connecting ring when the passive wheel rotates, so that the separation cylinder can be quickly rotated, the enzyme solution and protoplast can be separated, and the overall practicability is improved. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 The whole structure of the enzyme hydrolysis equipment is shown in the embodiment of the application;

[0024] Figure 2 The whole structure of the enzyme hydrolysis equipment is shown in the embodiment of the application;

[0025] Figure 3 The whole structure of the enzyme hydrolysis equipment is shown in the embodiment of the application;

[0026] Figure 4 The whole structure of the enzyme hydrolysis equipment is shown in the embodiment of the application;

[0027] Figure 5 The whole structure of the enzyme hydrolysis equipment is shown in the embodiment of the application;

[0028] Reference signs: 1, base; 2, middle support plate; 3, upper support plate; 4, support column; 5, enzyme hydrolysis tank; 6, connecting pipe; 7, protection ring; 8, separation tank; 9, mounting port; 10, separation cylinder; 11, connecting ring; 12, separation hole; 13, leakage hole; 14, funnel; 15, discharge pipe; 16, collection bucket; 17, passive wheel; 18, synchronous belt; 19, driving wheel; 20, driving motor. DETAILED DESCRIPTION

[0029] The following will be described in detail in combination with the drawings Figures 1-5 The application will be further described in detail.

[0030] The embodiment of the application discloses an enzymolysis device, which comprises a base 1 and an enzymolysis tank 5, the lower part of the enzymolysis tank 5 is connected with a separation tank 8 through a connecting pipe 6, the upper part of the separation tank 8 is provided with a mounting hole 9, the inside of the mounting hole 9 is rotatably provided with a separation cylinder 10, when the separation cylinder 10 rotates, the enzyme solution can be discharged from the separation hole 12 into the inside of the separation tank 8 through the action of centrifugal force, the side of the separation cylinder 10 is provided with a separation hole 12, the lower surface outside of the separation tank 8 is provided with a leakage hole 13, the lower part of the separation tank 8 is provided with a hopper 14, the middle part of the hopper 14 is provided with a discharge pipe 15, through the leakage hole 13 in the lower part of the separation tank 8, the enzyme solution can enter the inside of the hopper 14, and the enzyme solution is conveniently collected.

[0031] Please refer to Figure 4 and Figure 5 , the diameter of the separation cylinder 10 is matched with the diameter of the mounting hole 9, the upper surface of the separation cylinder 10 is flush with the upper surface of the separation tank 8, the lower part of the separation cylinder 10 is rotatably connected with the inside bottom of the separation tank 8, when the driven wheel 17 rotates, the separation cylinder 10 is driven to rotate through the connecting ring 11, when the separation cylinder 10 rotates, the enzyme solution is discharged from the separation hole 12 into the inside of the separation tank 8 through the action of centrifugal force, and through the leakage hole 13 in the lower part of the separation tank 8, the enzyme solution enters the inside of the hopper 14.

[0032] Please refer to Figures 1 to 3 , the upper part of the separation cylinder 10 is fixedly provided with the connecting ring 11, the side of the connecting ring 11 is provided with the driven wheel 17, the side of the driven wheel 17 is drivingly connected with the synchronous belt 18, the driven wheel 17 is drivingly connected with the driving wheel 19 through the synchronous belt 18, the middle part of the driving wheel 19 is connected with the driving motor 20, the output end of the driving motor 20 is drivingly connected with the middle part of the driving wheel 19, the driving wheel 19 is driven to rotate through the driving motor 20, when the driving wheel 19 rotates, the driven wheel 17 is driven to rotate through the synchronous belt 18, when the driven wheel 17 rotates, the separation cylinder 10 is driven to rotate through the connecting ring 11, when the separation cylinder 10 rotates, the enzyme solution is discharged from the separation hole 12 into the inside of the separation tank 8 through the action of centrifugal force.

[0033] Please refer to Figure 1 and Figure 2The base 1 is provided with a middle support plate 2, the middle support plate 2 is provided with an upper support plate 3, the base 1, the middle support plate 2 and the upper support plate 3 are connected through support columns 4, through the multi-layer structure, the protoplast in the enzymolysis tank 5 and the enzyme solution in the separation tank 8 can flow downwards, the practicability is improved, the separation tank 8 and the driving motor 20 are located on the middle support plate 2, the enzymolysis tank 5 is located on the upper support plate 3, the connecting pipe 6 is provided with a protection ring 7, the base 1 is provided with a collecting barrel 16, the collecting barrel 16 is located at the lower part of one end of the discharge pipe 15, the enzyme solution enters the inside of the funnel 14, the enzyme solution is sent into the inside of the collecting barrel 16 through the discharge pipe 15, when the enzyme solution in the collecting barrel 16 is more, it can be removed.

[0034] The implementation principle of the enzyme hydrolysis equipment is as follows: first, the enzyme hydrolysis tank 5 is used for enzyme hydrolysis treatment, the treated protoplast is discharged into the inside of the separation cylinder 10 through the connecting pipe 6, the driving motor 20 is started at this time, the driving motor 20 drives the driving wheel 19 to rotate, the driving wheel 19 can drive the driven wheel 17 to rotate through the synchronous belt 18, the driven wheel 17 drives the separation cylinder 10 to rotate through the connecting ring 11, the enzyme solution is discharged from the separation hole 12 into the inside of the separation tank 8 through the action of centrifugal force, the enzyme solution enters the inside of the funnel 14 through the leakage hole 13 at the lower part of the separation tank 8, and the enzyme solution is sent into the inside of the collecting barrel 16 through the discharge pipe 15.

[0035] The above are the preferred embodiments of the application, and the protection scope of the application is not limited thereto, therefore: all equivalent changes made according to the structure, shape and principle of the application should be covered in the protection scope of the application.

Claims

1. An enzymatic device, characterized by: Including base (1) and enzymolysis jar (5), the lower part of enzymolysis jar (5) is connected with separation jar (8) through connecting pipe (6), the upper part of separation jar (8) is provided with installation mouth (9), the inside of installation mouth (9) is rotatably installed with separation cylinder (10), the side of separation cylinder (10) is provided with separation hole (12), the lower surface outside of separation jar (8) is provided with leakage hole (13), the lower part of separation jar (8) is installed with funnel (14), the middle part of funnel (14) is installed with discharge pipe (15).

2. The enzymatic device of claim 1, wherein: The diameter of separation cylinder (10) and the diameter of installation mouth (9) are matched, the upper surface of separation cylinder (10) and the upper surface of separation jar (8) are flush, the lower part of separation cylinder (10) and the inside bottom of separation jar (8) are rotatably connected.

3. An enzymatic device according to claim 2, wherein: The upper part of separation cylinder (10) is fixedly installed with connecting ring (11), the side of connecting ring (11) is installed with passive wheel (17), the side of passive wheel (17) is drivingly connected with synchronous belt (18), passive wheel (17) is drivingly connected with driving wheel (19) through synchronous belt (18).

4. An enzymatic device according to claim 3, wherein: The middle part of driving wheel (19) is connected with driving motor (20), the output end of driving motor (20) and the middle part of driving wheel (19) are drivingly connected.

5. The enzymatic device of claim 1, wherein: The upper part of base (1) is installed with middle support plate (2), the upper part of middle support plate (2) is provided with upper support plate (3), base (1) and middle support plate (2) and upper support plate (3) are connected through support column (4).

6. An enzymatic device according to claim 5, wherein: Separation jar (8) and driving motor (20) are located on middle support plate (2), enzymolysis jar (5) is located on upper support plate (3), connecting pipe (6) is installed with protection ring (7).

7. An enzymatic device according to claim 6, characterized in that: The lower part of one end of discharge pipe (15) is provided with collection barrel (16).