Reaction device

By sharing the ports of the steam pipeline and the cooling water return pipeline in the mixing tank, the problem of increased production time and difficulty caused by multiple ports in the mixing tank was solved, and the cost was reduced.

CN224025001UActive Publication Date: 2026-03-24GUANGDONG YA ROAD BIOTECH +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Existing mixing tanks require separate ports to connect to steam and cooling water pipelines, which increases manufacturing time, difficulty, and cost.

Method used

By sharing a port between the first steam pipeline and the cooling water return pipeline, and between the first condensate discharge pipeline and the cooling water inlet pipeline, the number of ports on the mixing tank is reduced.

Benefits of technology

This reduces the manufacturing time and difficulty of the mixing tanks, and lowers production costs.

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Abstract

The utility model discloses a reaction device and relates to the technical field of reaction. The reaction device comprises at least one blending tank, a first steam pipeline, a first condensate water discharge pipeline, a cooling water inlet pipeline and a cooling water return pipeline, the blending tank is provided with an inner tank and an outer tank, and the outer tank is provided with an outer tank first port and an outer tank second port; the first steam pipeline is communicated with the first port of the outer tank; the first condensate water discharge pipeline is communicated with the second port of the outer tank, and the first condensate water discharge pipeline is matched with the first steam pipeline to form a heating pipeline; the cooling water inlet pipeline is communicated with the second port of the outer tank; and the cooling water return pipeline is communicated with the first port of the outer tank and is matched with the cooling water inlet pipeline to form a cooling pipeline. According to the utility model, the first steam pipeline and the cooling water return pipeline share one port, and the first condensate water discharge pipeline and the cooling water inlet pipeline share one port, so that the ports of the blending tank can be reduced, the manufacturing time and difficulty of the blending tank are reduced, and the cost is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to reaction technical field especially relates to a reaction device. BACKGROUND

[0002] In the production process of spices, spices, the blending work of essence is a key step, which is directly related to the quality and stability of the final product, and the blending tank is a commonly used production equipment.

[0003] At present, the blending tank needs to be heated or cooled in the blending process of spices, essence, and the usual heating or cooling method is to pass steam or cooling water into the outer tank of the blending tank, and the steam or cooling water belongs to different pipelines, so the existing blending tank needs to be set up different ports to communicate with the steam pipeline and the cooling water pipeline, the more the ports of the blending tank, the higher the manufacturing time and difficulty of the blending tank, which will undoubtedly increase the cost. UTILITY MODEL CONTENTS

[0004] In view of the deficiencies existing in the prior art, the utility model aims at providing a reaction device for reducing the ports of the blending tank.

[0005] According to one aspect of the utility model, a reaction device is provided, comprising:

[0006] At least one blending tank, the blending tank has an inner tank and an outer tank, the outer tank has an outer tank first port and an outer tank second port;

[0007] A first steam pipeline, the first steam pipeline communicates with the outer tank first port;

[0008] A first condensed water discharge pipeline, the first condensed water discharge pipeline communicates with the outer tank second port, and the first condensed water discharge pipeline forms a heating pipeline in cooperation with the first steam pipeline;

[0009] A cooling water inlet pipeline, the cooling water inlet pipeline communicates with the outer tank second port;

[0010] A cooling water return pipeline, the cooling water return pipeline communicates with the outer tank first port, and the cooling water return pipeline forms a cooling pipeline in cooperation with the cooling water inlet pipeline.

[0011] The reaction device of the utility model, through the first steam pipeline and the cooling water return pipeline share a port, the first condensed water discharge pipeline and the cooling water inlet pipeline share a port, so as to reduce the ports of the blending tank, and further reduce the manufacturing time and difficulty of the blending tank, and reduce the cost.

[0012] In some embodiments, the first steam pipeline comprises:

[0013] a first steam pipe in communication with the outer tank first port;

[0014] a first valve provided in the first steam pipe for opening or closing the first steam pipe.

[0015] In some embodiments, the first condensate drain circuit comprises:

[0016] a first condensate drain pipe in communication with the outer tank second port;

[0017] a first valve set provided in the first condensate drain pipe for opening or closing the first condensate drain pipe.

[0018] In some embodiments, the first condensate drain pipe comprises a first branch end and a second branch end in communication with the outer tank second port respectively, and the first valve set comprises:

[0019] a second valve provided in the first branch end for opening or closing the first branch end;

[0020] a first trap provided in the second branch end for draining condensate;

[0021] a third valve provided in the second branch end for opening or closing the second branch end.

[0022] In some embodiments, the cooling water inlet circuit comprises:

[0023] a cooling water inlet pipe in communication with the outer tank second port;

[0024] a fourth valve provided in the cooling water inlet pipe for opening or closing the cooling water inlet pipe.

[0025] In some embodiments, the cooling water return circuit comprises:

[0026] a cooling water return pipe in communication with the outer tank first port;

[0027] a fifth valve provided in the cooling water return pipe for opening or closing the cooling water return pipe.

[0028] In some embodiments, further comprising:

[0029] The sandwich pot has an inner pot and an outer pot, and the outer pot has an outer pot first port and an outer pot second port;

[0030] A second steam pipeline is in communication with the outer pot first port;

[0031] A second condensate discharge pipeline is in communication with the outer tank second port, and the second condensate discharge pipeline cooperates with the second steam pipeline to form a heating pipeline.

[0032] In some embodiments, the second steam pipeline is consistent with the first steam pipeline, and the second condensate discharge pipeline is consistent with the first condensate discharge pipeline.

[0033] In some embodiments, a cleaning water pipeline is further included, which is in communication with at least one of the preparation tanks and the sandwich pot, respectively, and is used to provide cleaning water to the preparation tanks and the sandwich pot.

[0034] In some embodiments, a tap water pipeline is further included, which is in communication with at least one of the preparation tanks, and is used to provide tap water to the preparation tanks.

[0035] Compared with the prior art, the reaction device of the utility model, through first steam pipeline and cooling water return pipeline share a port, first condensate discharge pipeline and cooling water inlet pipeline share a port, thereby can reduce the port of preparation tank, and further reduce the manufacturing time and difficulty of preparation tank, reduce cost. BRIEF DESCRIPTION OF DRAWINGS

[0036] Figure 1 It is structure schematic view of reaction device of one embodiment of the utility model;

[0037] Figure 2 It is structure schematic view of A part of reaction device of one embodiment of the utility model;

[0038] Figure 3 It is structure schematic view of subsequent process after finished product discharge of reaction device of one embodiment of the utility model.

[0039] Explanation of reference numerals: blending tank 10, inner tank 11, outer tank 12, outer tank first port 121, outer tank second port 122, outer tank third port 123, safety valve 124, blender 13, first steam pipeline 20, first steam pipe 21, first valve 22, first condensate discharge pipeline 30, first condensate discharge pipe 31, first valve group 32, second valve 321, first trap valve 322, third valve 323, cooling water inlet pipeline 40, cooling water inlet pipe 41, fourth valve 42, cooling water return pipeline 50, cooling water return pipe 51, fifth valve 52, double boiler 60, inner pot 61, outer pot 62, second steam pipeline 70, second condensate discharge pipeline 80, cleaning water pipeline 90, sixth valve 91, seventh valve 92, tap water pipeline 100, eighth valve 101, ninth valve 102, tenth valve 103, full-automatic packaging line 200, barrel filling machine 300. DETAILED DESCRIPTION

[0040] The present application will be further described in detail below with reference to the accompanying drawings.

[0041] The present application provides a reaction device, as shown in Figure 1 and Figure 2 , the reaction device comprises at least one blending tank 10, a first steam pipeline 20, a first condensate discharge pipeline 30, a cooling water inlet pipeline 40 and a cooling water return pipeline 50.

[0042] As shown in Figure 1 and Figure 2 , the number of blending tanks 10 can be two, the structures of the two blending tanks 10 are substantially the same, and the difference between the two blending tanks 10 is that the volumes are different, one can be 1000L, and the other can be 2400L, so when the blending tank 10 is described, the small-volume blending tank 10 is taken as an example, and the large-volume blending tank 10 can be referred to the small-volume blending tank 10; the blending tank 10 has an inner tank 11 and an outer tank 12, the inner tank 11 is used for blending spices and essences, the outer tank 12 is arranged outside the inner tank 11, and the inner tank 11 is heated or cooled by passing steam or cooling water into the outer tank 12, the outer tank 12 has an outer tank first port 121 and an outer tank second port 122.

[0043] As shown in Figure 1 and Figure 2As shown, one end of the first steam pipeline 20 is communicated with the steam supply end to receive steam delivered by the steam supply end, and the other end of the first steam pipeline 20 is communicated with the outer tank first port 121 to deliver the received steam into the outer tank 12 through the outer tank first port 121 to heat the inner tank 11. Specifically, the first steam pipeline 20 includes a first steam pipe 21 and a first valve 22. One end of the first steam pipe 21 is communicated with the steam supply end to receive steam delivered by the steam supply end, and the other end of the first steam pipe 21 is communicated with the outer tank first port 121 to deliver the received steam into the outer tank 12 through the outer tank first port 121 to heat the inner tank 11. The first valve 22 is arranged in the first steam pipe 21, and the first valve 22 is used to open or close the first steam pipe 21, that is, whether to deliver steam to the outer tank 12 can be controlled through the first valve 22 to control whether to heat the inner tank 11. The first valve 22 can be a pneumatic valve.

[0044] As shown in Figure 1 and Figure 2 , one end of the first condensate discharge pipeline 30 is communicated with the outer tank second port 122, and the other end of the first condensate discharge pipeline 30 serves as a discharge port. The first condensate discharge pipeline 30 cooperates with the first steam pipeline 20 to form a heating pipeline. That is, steam delivered by the first steam pipeline 20 to the outer tank 12 will form condensate in the process of heating the inner tank 11, and the condensate is discharged through the first condensate discharge pipeline 30. Specifically, the first condensate discharge pipeline includes a first condensate discharge pipe 31 and a first valve group 32. One end of the first condensate discharge pipe 31 is communicated with the outer tank second port 122, and the other end of the first condensate discharge pipe 31 serves as a discharge port to discharge condensate. The first valve group 32 is arranged in the first condensate discharge pipe 31, and the first valve group 32 is used to open or close the first condensate discharge pipe 31.

[0045] Further, as shown in Figure 1 and Figure 2As shown, the first condensate water discharge pipeline 31 includes a first branch end and a second branch end respectively communicating with the outer tank second port 122, the first valve group includes a second valve 321, a first trap valve 322 and a third valve 323, the second valve 321 is arranged in the first branch end, and the second valve 321 is used to open or close the first branch end, that is, the first condensate water discharge pipeline 31 can be completely communicated with the outer tank second port 122 through the second valve 321; the first trap valve 322 is arranged in the second branch end, and the first trap valve 322 is used to discharge condensate water, that is, the first trap valve 322 is used to discharge condensate water to prevent steam leakage; the third valve 323 is arranged in the second branch end, and the third valve 323 is used to open or close the second branch end, that is, the first trap valve 322 is communicated with the outer tank second port 122 through the third valve 323, so that the first trap valve 322 plays a role, wherein the second valve 321 and the third valve 323 can be pneumatic valves.

[0046] As shown in Figure 1 and Figure 2 , one end of the cooling water inlet pipeline 40 communicates with the cooling water supply end to receive the cooling water delivered by the cooling water supply end, and the other end of the cooling water inlet pipeline 40 communicates with the outer tank second port 122 to deliver the received cooling water to the outer tank 12 through the outer tank second port 122 to cool and cool the inner tank 11, specifically, the cooling water inlet pipeline 40 includes a cooling water inlet pipeline 41 and a fourth valve 42, one end of the cooling water inlet pipeline 41 communicates with the cooling water supply end to receive the cooling water delivered by the cooling water supply end, and the other end of the cooling water inlet pipeline 41 communicates with the outer tank second port 122 to deliver the received cooling water to the outer tank 12 through the outer tank second port 122 to cool and cool the inner tank 11, and the fourth valve 42 is arranged in the cooling water inlet pipeline 41, and the fourth valve 42 is used to open or close the cooling water inlet pipeline 41, that is, whether to deliver cooling water to the outer tank 12 can be controlled through the fourth valve 42, so as to control whether to cool and cool the inner tank 11, wherein the fourth valve 42 can be a pneumatic valve.

[0047] As shown in Figure 1 and Figure 2 , one end of the cooling water inlet pipeline 40 communicates with the cooling water supply end to receive the cooling water delivered by the cooling water supply end, and the other end of the cooling water inlet pipeline 40 communicates with the outer tank second port 122 to deliver the received cooling water to the outer tank 12 through the outer tank second port 122 to cool and cool the inner tank 11, specifically, the cooling water inlet pipeline 40 includes a cooling water inlet pipeline 41 and a fourth valve 42, one end of the cooling water inlet pipeline 41 communicates with the cooling water supply end to receive the cooling water delivered by the cooling water supply end, and the other end of the cooling water inlet pipeline 41 communicates with the outer tank second port 122 to deliver the received cooling water to the outer tank 12 through the outer tank second port 122 to cool and cool the inner tank 11, and the fourth valve 42 is arranged in the cooling water inlet pipeline 41, and the fourth valve 42 is used to open or close the cooling water inlet pipeline 41, that is, whether to deliver cooling water to the outer tank 12 can be controlled through the fourth valve 42, so as to control whether to cool and cool the inner tank 11, wherein the fourth valve 42 can be a pneumatic valve.

[0047] As shown in Figure 1 and Figure 2 , one end of the cooling water inlet pipeline 40 communicates with the cooling water supply end to receive the cooling water delivered by the cooling water supply end, and the other end of the cooling water inlet pipeline 40 communicates with the outer tank second port 122 to deliver the received cooling water to the outer tank 12 through the outer tank second port 122 to cool and cool the inner tank 11, specifically, the cooling water inlet pipeline 40 includes a cooling water inlet pipeline 41 and a fourth valve 42, one end of the cooling water inlet pipeline 41 communicates with the cooling water supply end to receive the cooling water delivered by the cooling water supply end, and the other end of the cooling water inlet pipeline 41 communicates with the outer tank second port 122 to deliver the received cooling water to the outer tank 12 through the outer tank second port 122 to cool and cool the inner tank 11, and the fourth valve 42 is arranged in the cooling water inlet pipeline 41, and the fourth valve 42 is used to open or close the cooling water inlet pipeline 41, that is, whether to deliver cooling water to the outer tank 12 can be controlled through the fourth valve 42, so as to control whether to cool and cool the inner tank 11, wherein the fourth valve 42 can be a pneumatic valve.

[0048] As shown in Figure 1 and Figure 2 , the outer tank 12 of the blending tank 10 further comprises a temperature controller TIC, which can display the temperature of the steam or cooling water entering the outer tank 12, and the outer tank 12 further comprises an outer tank third port 123, which is communicated with a safety valve 124 for ensuring the safety of the outer tank 12 by allowing the pressure in the outer tank 12 to not exceed a set value, and the outer tank third port 123 is further provided with a pressure sensor PI for detecting the pressure in the outer tank 12.

[0049] In a possible implementation, as shown in Figure 1 and Figure 2 , the reaction device further comprises a sandwich pot 60, a second steam pipeline 70 and a second condensate discharge pipeline 80, the sandwich pot 60 can be used for heating raw materials, the sandwich pot 60 has an inner pot 61 and an outer pot 62, the outer pot 62 has an outer pot first port 621 and an outer pot second port 622; the second steam pipeline 70 is communicated with the outer pot first port 621; the second condensate discharge pipeline 80 is communicated with the outer pot second port 622, and the second condensate discharge pipeline 80 cooperates with the second steam pipeline 60 to form a heating pipeline, wherein the outer pot second port 622 can additionally be provided with a faucet to discharge condensate, the second steam pipeline 70 is consistent with the first steam pipeline 20, and the second condensate discharge pipeline 80 is consistent with the first condensate discharge pipeline 30, that is, the working principles of the two are the same, so details are not repeated here.

[0050] In a possible implementation, as shown in Figure 1 and Figure 2 , the reaction device further comprises a cleaning water pipeline 90, which is respectively communicated with at least one blending tank 10 and sandwich pot 60, and is used to provide cleaning water to the blending tank 10 and the sandwich pot 60, wherein the cleaning water can be hot water, and specifically, the cleaning water pipeline 90 has multiple branches, one of which corresponds to the sandwich pot 60, and is provided with a sixth valve 91 for controlling whether the branch provides cleaning water to the outer pot 62 of the sandwich pot 60, and the other branches respectively correspond to different blending tanks 10, and each branch can further have sub-branches, so that there are multiple communication ports between each branch and the corresponding blending tank 10, and the other branches are respectively provided with seventh valves 92 for controlling whether the respective branches provide cleaning water to the inner tanks 11 of the corresponding blending tanks 10.

[0051] In a possible implementation, as shown in Figure 1 and Figure 2As shown, the reaction device further comprises a tap water pipeline 100, the tap water pipeline 100 is communicated with the at least one blending tank 10, the tap water pipeline is used for providing tap water for the blending tank 10, specifically, the tap water pipeline 100 has a plurality of branches, each branch corresponds to one blending tank 10, and an eighth valve 101 is arranged on each branch, the eighth valve 101 is used for controlling whether the corresponding branch provides tap water for the inner tank 11 of the corresponding blending tank 10.

[0052] In a possible implementation manner, as shown in Figure 1 and Figure 2 As shown, the blending tank 10 is further provided with a stirring mechanism 13, the stirring mechanism 13 comprises a motor and a stirring blade connected with the motor, the inner tank 11 of the blending tank 10 is further provided with a plurality of auxiliary pipelines, a ninth valve 102 is arranged on each auxiliary pipeline, and the bottom of the inner tank 11 of each blending tank 10 is further provided with an outlet end, the outlet end is provided with a tenth valve 103, and the tenth valve 103 is used for controlling the discharge of the finished product of the inner tank 11, as shown in Figure 3 As shown, after the finished product is discharged, it can enter a subsequent process, such as entering an automatic packaging line 200 or entering a barrel filling machine 300.

[0053] The reaction device of the utility model, through first steam pipeline 20 and cooling water return pipeline 50 share a port, first condensate discharge pipeline 30 and cooling water inlet pipeline 40 share a port, thereby can reduce the port of blending tank, further reduce the manufacturing time and difficulty of blending tank, reduce cost.

[0054] The above only describes some embodiments of the utility model. For ordinary skilled in the art, without departing from the utility model creates the concept, can make several deformation and improvement, these all belong to the protection scope of the utility model.

Claims

1. A reaction apparatus, characterized in that, include: At least one mixing tank, the mixing tank having an inner tank and an outer tank, the outer tank having an outer tank first port and an outer tank second port; A first steam pipeline is connected to the first port of the outer tank; The first condensate discharge pipe is connected to the second port of the outer tank, and the first condensate discharge pipe, together with the first steam pipe, forms a heating pipe; A cooling water inlet pipe is connected to the second port of the outer tank; The cooling water return pipe is connected to the first port of the outer tank, and the cooling water return pipe, together with the cooling water inlet pipe, forms a cooling pipe.

2. The reaction apparatus according to claim 1, characterized in that, The first steam pipeline includes: A first steam pipe is connected to the first port of the outer tank; A first valve is disposed in the first steam pipe and is used to open or close the first steam pipe.

3. The reaction apparatus according to claim 2, characterized in that, The first condensate drain pipe includes: A first condensate drain pipe is connected to the second port of the outer tank; A first valve assembly is disposed in the first condensate drain pipe, and the first valve assembly is used to open or close the first condensate drain pipe.

4. The reaction apparatus according to claim 3, characterized in that, The first condensate discharge pipe includes a first branch end and a second branch end respectively connected to the second port of the outer tank, and the first valve group includes: The second valve is disposed in the first branch end and is used to open or close the first branch end; A first steam trap is installed in the second branch end and is used to drain condensate. A third valve is disposed in the second branch end, and the third valve is used to open or close the second branch end.

5. The reaction apparatus according to any one of claims 1-4, characterized in that, The cooling water inlet pipe includes: A cooling water inlet pipe is provided, which is connected to the second port of the outer tank. A fourth valve is provided in the cooling water inlet pipe, and the fourth valve is used to open or close the cooling water inlet pipe.

6. The reaction apparatus according to claim 5, characterized in that, The cooling water return pipeline includes: A cooling water return pipe is connected to the first port of the outer tank; A fifth valve is provided in the cooling water return pipe, and the fifth valve is used to open or close the cooling water return pipe.

7. The reaction apparatus according to any one of claims 1-4, characterized in that, Also includes: A jacketed kettle, the jacketed kettle having an inner pot and an outer pot, the outer pot having an outer pot first port and an outer pot second port; The second steam pipe is connected to the first port of the outer pot; The second condensate discharge pipe is connected to the second port of the outer tank, and the second condensate discharge pipe, together with the second steam pipe, forms a heating pipe.

8. The reaction apparatus according to claim 7, characterized in that, The second steam pipeline is the same as the first steam pipeline, and the second condensate drain pipeline is the same as the first condensate drain pipeline.

9. The reaction apparatus according to claim 7, characterized in that, It also includes a cleaning water pipeline, which is connected to at least one of the mixing tanks and the jacketed kettle, and is used to provide cleaning water to the mixing tanks and the jacketed kettle.

10. The reaction apparatus according to any one of claims 1-4, characterized in that, It also includes a tap water pipeline, which is connected to at least one of the mixing tanks and is used to supply tap water to the mixing tanks.