Enzymolysis storage tank for instant fish maw finished product

By designing an ready-to-eat lilac storage tank including a tank body, a tank body bracket, a liquid discharge pipeline and a pump body, the problem of instant lilac condensation during temperature changes is solved, and efficient feeding and discharge of lilac raw materials is achieved, ensuring the biological activity of lilac and the retention of nutrients.

CN222948362UActive Publication Date: 2025-06-06NANJING FENGSHENG BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421812430.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-06-06
Estimated Expiration
2034-07-30

AI Technical Summary

Technical Problem

The prior art is difficult to effectively store and process ready-to-eat gum, especially when temperature changes, liquid gum is prone to condense, resulting in the inappropriate storage method of conventional tanks.

Method used

An enzymatic storage tank for finished products of ready-to-eat petals is designed, including multiple tank bodies and tank body brackets. The discharge flow is controlled through the liquid discharge pipeline and flowmeter, and the external enzymatic equipment is connected to the pump line pipe and the pump body to achieve unified feeding and discharge of petals.

Benefits of technology

Through the design of this storage tank, efficient feeding and discharge of the raw materials of the collagen is achieved, avoiding the problems of repeated fillers and inefficiency of discharge, and ensuring the retention of the bioactive substances and nutrients of the collagen.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an enzymolysis storage tank for ready-to-eat fish maw finished products, which solves the problem that a conventional tank body is easy to coagulate after being cooled in the storage and discharge processes in the solid melting enzymolysis process of the existing ready-to-eat fish maw, and adopts the main scheme that the enzymolysis storage tank comprises a plurality of tank bodies and tank body brackets provided with fixing cavities in one-to-one correspondence with the plurality of tank bodies, each tank body is horizontally and vertically placed and comprises a column body and a sealing cover for movably sealing an opening in the top of the column body, a fixing table is welded to the side periphery of the bottom of each column body, each fixing cavity is of a frame-shaped structure, the bottom layer of each fixing cavity is a supporting plate with the hollow center, and the top layer of each fixing cavity is hollow; the center of the bottom of each tank body corresponds to the hollow position of the center of the bottom layer of the fixed cavity through a discharging pipe and is communicated with the outside, the top layer of each tank body is arranged corresponding to the hollow top layer, exposed out of the fixed cavity, of the sealing cover part, and the discharging pipes are communicated with an external pump body through a liquid outlet pipeline and then communicated with external enzymolysis equipment through the pump body.
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Description

Technical Field

[0001] The utility model relates to the technical field of fish maw storage, in particular to an enzymolysis storage tank for instant fish maw finished products. Background Art

[0002] From the perspective of traditional Chinese medicine, fish maw has extremely nourishing and therapeutic effects. It is made from dried fish bladders. Generally, huge sturgeons and large yellow croakers are used as raw materials. Since various fish maws are processed and prepared according to different fish types, the hardness of the fish bladder also varies. It can be divided into three types: wide maw, fish maw and fried maw.

[0003] However, for instant fish maw, it needs to be further enzymatically hydrolyzed and multiple processing procedures are added on the basis of high-temperature solidification, so that the biologically active substances and nutritional components of the solid fish maw are completely retained, and the molecular weight distribution, water solubility, taste and flavor, and product activity are taken into account. However, for the liquid instant fish maw after solidification, it is easy to re-condense due to the lowering of temperature. Therefore, the conventional tank storage method is obviously not applicable. For this reason, we propose an enzymatic hydrolysis storage tank for instant fish maw finished product to solve the above problems. Utility Model Content

[0004] The technical problem to be solved by the utility model is to overcome the defects of the prior art. The utility model proposes an enzymatic hydrolysis storage tank for instant fish maw finished products which can uniformly discharge materials and has higher raw material adding efficiency.

[0005] In order to solve the above technical problems, the technical solution adopted by the utility model is: an enzymatic storage tank for instant fish maw finished product, comprising: a plurality of tank bodies and a tank body bracket with fixed cavities corresponding to the plurality of the tank bodies, each of the tank bodies is placed horizontally and upright, and comprises a column body and a sealing cover with a movable sealing top opening of the column body, a fixed platform is welded to the side of the bottom of the column body, each of the fixed cavities is a frame structure, the bottom layer is a support plate with a hollow center, and the top layer is hollow, the center of the bottom of each tank body corresponds to the hollow center of the bottom layer of the fixed cavity through a discharge pipe and is connected to the outside, and the top layer corresponds to the hollow top layer of the fixed cavity exposed outside the sealing cover, the discharge pipe is connected to an external pump body through a liquid outlet pipeline, and the pump body is then connected to an external enzymatic hydrolysis equipment.

[0006] Furthermore, the tank body includes two.

[0007] Furthermore, the liquid outlet pipeline includes a flow meter, a collecting pipe and a pump line pipe shared by the collecting pipes. One end of the discharge pipe is vertically connected to the bottom of the tank body, and the other end is connected to the collecting pipe elbow through the flow meter. The collecting pipe is connected to the pump line pipe through a tee.

[0008] Furthermore, the pump line pipe includes segments and adjacent segments are locked by elbows and clamps. One end of the pump body is connected to the pump line pipe, and the other end is connected to the outside through an external pipe.

[0009] Furthermore, the four corners of the tank support are raised by height rods, the bottom of the height rod is fixed to the ground screws by positioning feet, the liquid outlet pipeline is located at the bottom of the fixed platform, and a step corresponding to the height rod is also fixed on one side of the tank support.

[0010] Furthermore, the tank body bracket is welded with connecting platforms at the four corners of the bottom layer corresponding to the fixed cavity. The fixed platform is a trapezoidal structure, the front surface of which is welded to the column body, and the bottom surface is fixed to the connecting platform by positioning bolts. The tank body bracket is also welded with protective plates at the four corners of the top layer of the fixed cavity.

[0011] Furthermore, a planar support platform is fixed to the bottom of the pump body, and positioning holes are evenly distributed along the edges of both sides of the support platform.

[0012] Compared with the prior art, the beneficial effects of the utility model include: the discharge flow rate can be controlled by electrical signals through the liquid outlet pipeline and the flowmeter, and the two collecting pipes are shared by a pump pipe and then connected to the pump body. At the same time, multiple tanks are carried at the same time by the tank body bracket to ensure sufficient feeding of fish maw raw materials and avoid problems such as repeated filling and low discharge efficiency caused by the one-to-one feeding method. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] The disclosure of the present invention is described with reference to the accompanying drawings. It should be understood that the drawings are only for illustrative purposes and are not intended to limit the scope of protection of the present invention. In the accompanying drawings, the same reference numerals are used to refer to the same components. Among them:

[0014] Figure 1 The overall structural diagram proposed according to one embodiment of the utility model is schematically shown.

[0015] Numbers in the figure: 1. tank body; 2. tank body bracket; 3. column body; 4. sealing cover; 5. fixing platform; 6. supporting plate; 7. discharge pipe; 8. fixing chamber; 9. liquid outlet pipeline; 10. pump body; 11. flow meter; 12. collecting pipe; 13. pump line pipe; 14. elbow; 15. clamp; 16. external pipe; 17. height rod; 18. positioning foot; 19. step; 20. connecting platform; 21. positioning bolt; 22. protective plate; 23. supporting platform; 24. positioning hole. DETAILED DESCRIPTION

[0016] It is easy to understand that according to the technical solution of the utility model, without changing the essential spirit of the utility model, a person skilled in the art can propose a variety of interchangeable structural modes and implementation modes. Therefore, the following specific implementation modes and drawings are only exemplary descriptions of the technical solution of the utility model, and should not be regarded as the entirety of the utility model or as a limitation or restriction to the technical solution of the utility model.

[0017] According to one embodiment of the present invention, Figure 1 Shown.

[0018] In the present embodiment, as for the overall structure, an enzymatic storage tank for instant fish maw product includes: a plurality of tank bodies 1 and a tank body support 2 with fixed cavities 8 corresponding to the plurality of tank bodies 1, each of the tank bodies 1 is placed horizontally and upright, and includes a column body 3 and a sealing cover 4 with a movable sealing opening on the top of the column body 3, a fixing platform 5 is welded to the side of the bottom of the column body 3, each of the fixed cavities 8 is a frame-type structure, and its bottom layer is a support plate 6 with a hollow center, and its top layer is hollow. The center of the bottom of each tank body 1 corresponds to the hollow center of the bottom layer of the fixed cavity 8 through a discharge pipe 7 and is connected to the outside, and its top layer corresponds to the hollow top layer of the fixed cavity 8 partially exposed outside the sealing cover 4, and the discharge pipe 7 is connected to an external pump body 10 through a liquid outlet pipeline 9, and the pump body 10 is then connected to an external enzymatic hydrolysis device.

[0019] Specifically, in this embodiment, if Figure 1 As shown, the tank body 1 includes two. The liquid outlet pipeline 9 corresponding to each tank body 1 includes a flow meter 11, a collecting pipe 12 and a pump line pipe 13 shared by the collecting pipe 12. One end of the discharge pipe 7 is vertically connected to the bottom of the tank body 1, and the other end is connected to the elbow 14 of the collecting pipe 12 through the flow meter 11. The collecting pipe 12 is connected to the pump line pipe 13 through a tee. The pump line pipe 13 includes sections and adjacent sections are locked by elbows 14 and clamps 15. One end of the pump body 10 is connected to the pump line pipe 13, and the other end is connected to the outside through an external pipe 16.

[0020] The four corners of the tank support 2 are raised by a height rod 17, and the bottom of the height rod 17 is fixed to the ground screw by a positioning foot 18. The liquid outlet pipeline 9 is located at the bottom of the fixing platform 5, and a step 19 corresponding to the height rod 17 is fixed on one side of the tank support 2. The tank support 2 is also welded with a connecting platform 20 at the four corners corresponding to the bottom layer of the fixing cavity 8. The fixing platform 5 is a trapezoidal structure, the front of which is welded to the column 3, and the bottom of which is fixed to the connecting platform 20 by positioning bolts 21. The tank support 2 is also welded with a protective plate 22 at the four corners of the top layer of the fixing cavity 8. A planar support platform 23 is also fixed to the bottom of the pump body 10, and positioning holes 24 are evenly distributed along the sides of the support platform 23.

[0021] According to the above structural records, the present application further adds a tank body bracket 2 and a corresponding liquid outlet pipeline 9 to the bottom of the existing storage tank and tank body 1, so as to facilitate the feeding of fish maw raw materials in the subsequent enzymatic hydrolysis process. The overall structure of the bracket is simple, and the overall structure is welded from multiple steel sections, so the cost is relatively low. The internally hollowed-out fixed cavity 8 is pre-corresponding to the outer diameter size of each tank body 1, and after placement, it is fixed by bolts through a trapezoidal fixed platform 5 and a connecting platform 20 on the bracket to ensure the stability of the internal raw material discharge process. Similarly, the utility model pre-opens a hole in the center of the support plate 6 to correspond to the liquid outlet pipeline 9 at the bottom through a discharge pipe 7.

[0022] During the liquid discharge process, the external pump body 10 provides driving force, and the finished fish maw product enters the liquid discharge pipeline 9 through the discharge pipe 7, and then the discharge flow rate is controlled by the electrical signal of the flowmeter 11. At the same time, the two collecting pipes 12 are shared through a pump line pipe 13 and then connected to the pump body 10. During the discharge process, the conventional one-to-one discharge method is avoided, and the fish maw raw materials in multiple tank bodies 1 can be connected by pipelines. The pump body 10 is connected to the external enzymatic hydrolysis equipment through the external pipe 16. The two flow meters 11 are independently controlled to ensure the uniformity of the remaining fish maw raw materials in each tank body 1, which is convenient for the subsequent unified addition of materials to the tank body 1.

[0023] The technical scope of the present invention is not limited to the contents described above. Those skilled in the art can make various deformations and modifications to the above embodiments without departing from the technical concept of the present invention, and these deformations and modifications should all fall within the protection scope of the present invention.

Claims

1. An enzymatic hydrolysis storage tank for instant fish maw finished product, characterized in that: include: A plurality of tank bodies and a tank body support having fixed cavities corresponding to the plurality of tank bodies, each of the tank bodies being placed upright horizontally, comprising a column body and a cover that movably seals the opening on the top of the column body, a fixed platform being welded to the side periphery of the bottom of the column body, each of the fixed cavities being a frame-type structure, the bottom layer being a support plate with a hollow center, and the top layer being hollow, the center of the bottom of each tank body corresponding to the hollow center of the bottom layer of the fixed cavity through a discharge pipe and connected to the outside, the top layer corresponding to the cover partially exposing the hollow top layer of the fixed cavity, the discharge pipe being connected to an external pump body through a liquid discharge pipeline, and the pump body being connected to an external enzymatic hydrolysis device.

2. The enzymatic hydrolysis storage tank for instant fish maw product according to claim 1, characterized in that: The tank body comprises two.

3. The enzymatic hydrolysis storage tank for instant fish maw product according to claim 2, characterized in that: The liquid outlet pipeline includes a flow meter, a collecting pipe and a pump line pipe shared by the collecting pipes. One end of the discharge pipe is vertically connected to the bottom of the tank body, and the other end is connected to the collecting pipe elbow through the flow meter. The collecting pipe is connected to the pump line pipe through a tee.

4. The enzymatic hydrolysis storage tank for instant fish maw product according to claim 3, characterized in that: The pump line pipe includes sections and adjacent sections are locked by elbows and clamps. One end of the pump body is connected to the pump line pipe, and the other end is connected to the outside through an external pipe.

5. The enzymatic hydrolysis storage tank for instant fish maw product according to claim 1, characterized in that: The four corners of the tank support are raised by height rods, the bottom of the height rod is fixed to the ground screws by positioning feet, the liquid outlet pipeline is located at the bottom of the fixing platform, and a step corresponding to the height rod is fixed on one side of the tank support.

6. The enzymatic hydrolysis storage tank for instant fish maw product according to claim 1, characterized in that: The tank body bracket is also welded with connecting platforms at the four corners of the bottom layer of the corresponding fixed cavity. The fixed platform is a trapezoidal structure, the front surface of which is welded to the column body, and the bottom surface is fixed to the connecting platform by positioning bolts. The tank body bracket is also welded with protective plates at the four corners of the top layer of the fixed cavity.

7. The enzymatic hydrolysis storage tank for instant fish maw product according to claim 1, characterized in that: A flat support platform is also fixed at the bottom of the pump body, and positioning holes are evenly distributed along the edges of both sides of the support platform.