Enzymolysis tank

By setting up a dilution module at the feeding port of the enzymatic lysis tank, the problem of excessive local concentration caused by enzyme concentration is solved, and the uniform dilution of the enzyme is achieved, avoiding material reaction damage, and improving production stability and efficiency.

CN223176119UActive Publication Date: 2025-08-01GUANGZHOU TRACE ELEMENTS BIOLOGICAL TECH CO LTD
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Patent Information

Application Number
CN202422043188.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-22
Publication Date
2025-08-01
Estimated Expiration
2034-08-22

AI Technical Summary

Technical Problem

The concentration of enzymes in the existing enzymatic lysis tanks below the feeding port causes the local material to be too high, causing damage to the material reaction.

Method used

The dilution module is installed at the feeding port, including a dilution box, a drive piece, accumulator plate and a liquid dispersion cover. Through the stirring in the dilution box and the dispersion cover, the enzyme is evenly diluted and entered the tank to avoid excessive local concentration.

Benefits of technology

A uniform dilution of enzymes is achieved, preventing the destruction of material reactions and ensuring the stability and efficiency of the production process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of intestinal prebiotics production equipment, in particular to an enzymolysis tank. Comprising a tank body, a gear motor, a stirring shaft, stirring blades and a dilution module, the gear motor is fixedly connected with the tank body, the stirring shaft is connected with the output end of the gear motor and located in the tank body, the stirring blades are arranged on the outer side wall of the stirring shaft, the tank body is provided with a feeding port, and the dilution module is arranged at the feeding port; the dilution module comprises a dilution box, a driving part, a transmission rod, a stirring plate and a plurality of liquid separation covers, the dilution box is communicated with the feeding port, the driving part is fixedly connected with the dilution box and located on the inner side wall of the dilution box, the two ends of the transmission rod are fixedly connected with the driving part and the stirring plate respectively, the stirring plate is provided with stirring holes, and the liquid separation covers are distributed at the feeding port in an array mode and located on the inner side wall of the dilution box. By means of the structure, the effects that the enzyme adding concentration of local materials is prevented from being too high, and material reaction damage is avoided are achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of intestinal prebiotic production equipment, in particular to an enzymatic hydrolysis tank. Background Art

[0002] Prebiotics refer to some organic substances that are not digested and absorbed by the host but can selectively promote the metabolism and proliferation of beneficial bacteria in the body, thereby improving the health of the host. These substances usually include oligosaccharides, polysaccharides, sugar alcohols, and certain natural plant extracts, etc. The main production methods of prebiotics are: natural extraction, chemical synthesis, and enzymatic hydrolysis technology. Among them, the enzymatic hydrolysis of prebiotics refers to the process of using enzymes to decompose macromolecular carbohydrates into small molecule prebiotics.

[0003] In the prior art, a patent application with the authorization publication number of CN210635992U discloses an enzymatic hydrolysis tank, which includes a tank body, a reduction motor, a stirring shaft, and stirring blades. Enzymes are put into the tank body through the feeding port on the tank body, and driven by the reduction motor and the stirring shaft, the stirring blades are used to fully turn over the enzymes and materials.

[0004] The above structure can be used for the enzymatic hydrolysis treatment in the production of intestinal prebiotics. However, when putting enzymes in the above structure, the enzymes are concentrated at the materials below the feeding port, resulting in too high enzyme concentration in the local materials, thus causing damage to the material reaction. Summary of the Utility Model

[0005] The purpose of the utility model is to provide an enzymatic hydrolysis tank, which solves the problem that when putting enzymes, the enzymes are concentrated at the materials below the feeding port, resulting in too high enzyme concentration in the local materials, thus causing damage to the material reaction.

[0006] To achieve the above purpose, an enzymatic hydrolysis tank adopted by the utility model includes a tank body, a reduction motor, a stirring shaft, stirring blades, and a dilution module. The reduction motor is fixedly connected to the tank body. The stirring shaft is connected to the output end of the reduction motor and is located inside the tank body. The stirring blades are arranged on the outer side wall of the stirring shaft. The tank body has a feeding port, and the dilution module is arranged at the feeding port.

[0007] The dilution module includes a dilution tank, a driving part, a transmission rod, a stirring plate, and a plurality of liquid distribution covers. The dilution tank is communicated with the feeding port. The driving part is fixedly connected to the dilution tank and is located on the inner side wall of the dilution tank. The two ends of the transmission rod are respectively fixedly connected to the driving part and the stirring plate. The stirring plate has stirring holes. A plurality of the liquid distribution covers are arranged in an array at the feeding port, and the number of the liquid distribution covers in each row increases.

[0008] Among them, the driving member includes a servo motor and a rotating rod. The servo motor is fixedly connected to the dilution tank and is located on the inner side wall of the dilution tank. The rotating rod is fixedly connected to the output end of the servo motor.

[0009] Among them, the dilution module further includes a bottom stirring rod. The bottom stirring rod is fixedly connected to the rotating rod and is located at one end of the rotating rod away from the servo motor, and the bottom stirring rod is attached to the inner bottom wall of the dilution tank.

[0010] Among them, the dilution module further includes a scraping strip and an adjusting unit. The adjusting unit is respectively connected to the rotating rod and the scraping strip, and the scraping strip is attached to the inner side wall of the dilution tank.

[0011] Among them, the adjusting unit includes a fixed cylinder, an adjusting rod and an adjusting spring. The fixed cylinder is fixedly connected to the rotating rod and is located on the outer side wall of the rotating rod. One end of the adjusting rod is slidably connected to the fixed cylinder, the other end of the adjusting rod is fixedly connected to the scraping strip, the adjusting spring is arranged in the fixed cylinder, and both ends of the adjusting spring are respectively connected to the fixed cylinder and the adjusting rod.

[0012] For an enzymatic hydrolysis tank of the present utility model, intestinal prebiotic production raw materials are placed in the tank body, and enzymes are put into the tank body through the feeding port; when putting in enzymes, the enzymes are put into the dilution tank and water is added for dilution; during the dilution process, the driving member is driven, and the driving member drives the transmission rod to rotate in the dilution tank, so that the stirring plate with a plurality of stirring holes stirs water and enzymes, accelerating the dilution process of the enzymes. After dilution is completed, the diluted enzymes enter the tank body from the feeding port. The diluted enzymes are dispersed by the first row of liquid distribution covers and then dispersed row by row, so that when the diluted enzymes contact the materials, they are in a dispersed and diluted state, achieving the effect of preventing the enzyme concentration of local materials from being too high and avoiding the destruction of material reactions. Description of the Drawings

[0013] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0014] Figure 1 It is a schematic structural diagram of the enzymatic hydrolysis tank of the present utility model.

[0015] Figure 2 It is a side view of the enzymatic hydrolysis tank of the present utility model.

[0016] Figure 3 is the Figure 2 structural sectional view taken along line A-A of

[0017] Figure 4 partial structural sectional view of the enzymatic hydrolysis tank of the present utility model.

[0018] 101 - Tank body, 102 - Feeding port, 103 - Reducing motor, 104 - Stirring shaft, 105 - Stirring blade, 106 - Dilution tank, 107 - Servo motor, 108 - Rotating rod, 109 - Transmission rod, 110 - Stirring plate, 111 - Stirring hole, 112 - Liquid separation cover, 113 - Bottom stirring rod, 114 - Wall scraping strip, 115 - Fixed cylinder, 116 - Adjusting rod, 117 - Adjusting spring. Detailed implementation mode

[0019] The embodiments of the present utility model will be described in detail below. The examples of the embodiments are shown in the drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are intended to explain the present utility model, and should not be construed as a limitation to the present utility model.

[0020] Please refer to Figures 1 to 4 , wherein Figure 1 is the structural schematic diagram of the enzymatic hydrolysis tank, Figure 2 is the side view of the structural of the enzymatic hydrolysis tank, Figure 3 is Figure 2 structural sectional view taken along line A-A of Figure 4 partial structural sectional view of the enzymatic hydrolysis tank.

[0021] The present utility model provides an enzymatic hydrolysis tank: including a tank body 101, a reducing motor 103, a stirring shaft 104, stirring blades 105 and a dilution module. The reducing motor 103 is fixedly connected to the tank body 101. The stirring shaft 104 is connected to the output end of the reducing motor 103 and is located inside the tank body 101. The stirring blades 105 are arranged on the outer side wall of the stirring shaft 104. The tank body 101 has a feeding port 102, and the dilution module is arranged at the feeding port 102;

[0022] The dilution module includes a dilution tank 106, a driving member, a transmission rod 109, a stirring plate 110 and a plurality of liquid separation covers 112. The dilution tank 106 is communicated with the feeding port 102. The driving member is fixedly connected to the dilution tank 106 and is located on the inner side wall of the dilution tank 106. The two ends of the transmission rod 109 are respectively fixedly connected to the driving member and the stirring plate 110. The stirring plate 110 has stirring holes 111. A plurality of the liquid separation covers 112 are arranged in an array at the feeding port 102, and the number of the liquid separation covers 112 in each row increases.

[0023] In this embodiment, intestinal prebiotic production raw materials are placed in the tank body 101, and enzymes are put into the tank body 101 through the feeding port 102; when putting in the enzymes, the enzymes are placed in the dilution tank 106 and water is added for dilution; during the dilution process, the driving member is driven, and the driving member drives the transmission rod 109 to rotate in the dilution tank 106, so that the stirring plate 110 with a plurality of stirring holes 111 stirs the water and the enzymes, accelerating the dilution process of the enzymes; a valve body for controlling the flow rate is arranged at the feeding port 102. After dilution, the diluted enzymes enter the tank body 101 from the feeding port 102, and the diluted enzymes are dispersed by the first row of liquid distribution covers 112 and then dispersed row by row, so that when the diluted enzymes contact the materials, they are in a dispersed and diluted state, achieving the effect of preventing the enzyme concentration of local materials from being too high and avoiding damage to the material reaction.

[0024] Further, the driving member includes a servo motor 107 and a rotating rod 108. The servo motor 107 is fixedly connected to the dilution tank 106 and is located on the inner side wall of the dilution tank 106, and the rotating rod 108 is fixedly connected to the output end of the servo motor 107.

[0025] In this embodiment, during the dilution process, the servo motor 107 is driven. The servo motor 107 cooperates with the rotating rod 108 to drive the transmission rod 109 to rotate in the dilution tank 106, so that the stirring plate 110 with a plurality of stirring holes 111 stirs the water and the enzymes, accelerating the dilution process of the enzymes.

[0026] Further, the dilution module further includes a bottom stirring rod 113. The bottom stirring rod 113 is fixedly connected to the rotating rod 108 and is located at one end of the rotating rod 108 away from the servo motor 107, and the bottom stirring rod 113 is attached to the inner bottom wall of the dilution tank 106.

[0027] In this embodiment, the bottom stirring rod 113 rotates as the rotating rod 108 rotates. The bottom stirring rod 113 is attached to the inner bottom wall of the dilution tank 106, and the bottom stirring rod 113 stirs the enzymes at the inner bottom of the dilution tank 106, accelerating the dilution of the enzymes at the inner bottom.

[0028] Further, the dilution module further includes a scraping strip 114 and an adjusting unit. The adjusting unit is respectively connected to the rotating rod 108 and the scraping strip 114, and the scraping strip 114 is attached to the inner side wall of the dilution tank 106.

[0029] In this embodiment, during the dilution process, the servo motor 107 is driven. The servo motor 107 cooperates with the rotating rod 108 to drive the transmission rod 109 to rotate within the dilution tank 106. At the same time, the scraping strip 114 scrapes the enzyme remaining on the inner wall of the dilution tank 106, preventing the outer wall of the dilution tank 106 from adhering to undiluted enzyme.

[0030] Furthermore, the adjusting unit includes a fixed cylinder 115, an adjusting rod 116, and an adjusting spring 117. The fixed cylinder 115 is fixedly connected to the rotating rod 108 and is located on the outer wall of the rotating rod 108. One end of the adjusting rod 116 is slidably connected to the fixed cylinder 115, and the other end of the adjusting rod 116 is fixedly connected to the scraping strip 114. The adjusting spring 117 is disposed within the fixed cylinder 115, and the two ends of the adjusting spring 117 are respectively connected to the fixed cylinder 115 and the adjusting rod 116.

[0031] In this embodiment, during the dilution process, the servo motor 107 is driven. The servo motor 107 cooperates with the rotating rod 108 to drive the transmission rod 109 to rotate within the dilution tank 106. At the same time, the adjusting rod 116 slides within the fixed cylinder 115. Under the action of the adjusting spring 117, the scraping strip 114 always adheres to the inner wall of the dilution tank 106, and the scraping strip 114 scrapes the enzyme remaining on the inner wall of the dilution tank 106, preventing the outer wall of the dilution tank 106 from adhering to undiluted enzyme.

[0032] The above-disclosed is only a preferred embodiment of the present utility model. Of course, it cannot be used to limit the scope of rights of the present utility model. Those of ordinary skill in the art can understand the entire or partial processes of implementing the above embodiments, and the equivalent changes made according to the claims of the present utility model still fall within the scope covered by the utility model.

Claims

1. An enzymatic hydrolysis tank, comprising a tank body, a reduction motor, a stirring shaft and stirring blades. The reduction motor is fixedly connected to the tank body. The stirring shaft is connected to the output end of the reduction motor and is located inside the tank body. The stirring blades are arranged on the outer side wall of the stirring shaft. The tank body has a feeding port, and it is characterized in that, it further comprises a dilution module, and the dilution module is arranged at the feeding port; the dilution module includes a dilution tank, a driving member, a transmission rod, a stirring plate and a plurality of liquid distribution covers. The dilution tank is communicated with the feeding port. The driving member is fixedly connected to the dilution tank and is located on the inner side wall of the dilution tank. The two ends of the transmission rod are respectively fixedly connected to the driving member and the stirring plate. The stirring plate has stirring holes. The plurality of liquid distribution covers are arranged in an array at the feeding port, and the number of the liquid distribution covers in each row increases.

2. The enzymatic hydrolysis tank according to claim 1, wherein, the driving member includes a servo motor and a rotating rod. The servo motor is fixedly connected to the dilution tank and is located on the inner side wall of the dilution tank. The rotating rod is fixedly connected to the output end of the servo motor.

3. The enzymatic hydrolysis tank according to claim 2, wherein, the dilution module further includes a bottom stirring rod. The bottom stirring rod is fixedly connected to the rotating rod and is located at the end of the rotating rod away from the servo motor, and the bottom stirring rod is attached to the inner bottom wall of the dilution tank.

4. The enzymatic hydrolysis tank according to claim 2, wherein, the dilution module further includes a wall scraping strip and an adjusting unit. The adjusting unit is respectively connected to the rotating rod and the wall scraping strip, and the wall scraping strip is attached to the inner side wall of the dilution tank.

5. The enzymatic hydrolysis tank according to claim 4, wherein, the adjusting unit includes a fixed cylinder, an adjusting rod and an adjusting spring. The fixed cylinder is fixedly connected to the rotating rod and is located on the outer side wall of the rotating rod. One end of the adjusting rod is slidably connected to the fixed cylinder, the other end of the adjusting rod is fixedly connected to the wall scraping strip, the adjusting spring is arranged in the fixed cylinder, and the two ends of the adjusting spring are respectively connected to the fixed cylinder and the adjusting rod.

Citation Information

Patent Citations

  • Enzymolysis tank

    CN210635992U