Wolfberry wine stabilizing treatment device

By designing a rotatable wolfberry wine stabilization treatment device, the rotating of the treatment tank is driven by a motor to make the adsorption saturation state of the resin uniform, solving the problem of premature saturation caused by uneven resin distribution, and improving the purification effect and cleaning efficiency.

CN223002907UActive Publication Date: 2025-06-20NINGXIA QUANTONG WOLFBERRY IND CO LTD
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Patent Information

Application Number
CN202421277693.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-05
Publication Date
2025-06-20
Estimated Expiration
2034-06-05

AI Technical Summary

Technical Problem

In the existing wolfberry wine stabilization treatment device, the adsorption saturation state of the resin is unevenly distributed, resulting in premature saturation of the resin on the upper part of the treatment tank, affecting the purification effect, and cleaning the inner side wall of the treatment tank is longer.

Method used

A wolfberry wine stabilization treatment device is designed. By designing the treatment tank to be rotatable, the motor drives the treatment tank to rotate by 180 degrees, so that the resin previously located at the bottom of the treatment tank can be transferred to the top position of the treatment tank, so that the resin at different positions can fully process the wine, and the resin is removed from the whole mesh bag to prevent the inner wall from adhering.

Benefits of technology

The uniform utilization of resin is achieved, preventing premature saturation of the resin on the upper part of the treatment tank, improving the purification effect of wolfberry wine, and saving time in cleaning the inner side wall of the treatment tank.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of lycium barbarum wine resin treatment, in particular to a lycium barbarum wine stabilizing treatment device which comprises a bottom plate, two first supporting columns are fixed to the top face of the bottom plate, a treatment tank is rotatably connected between the two first supporting columns and comprises a tank barrel, tank covers are detachably fixed to the two ends of the tank barrel, and the two ends of the tank barrel are each provided with a first supporting column and a second supporting column. A mesh bag is placed in the tank barrel, resin is contained in the mesh bag, and a motor used for driving the treatment tank to rotate is fixed to the outer side of one first supporting column. In the utility model, the traditional static treatment tank is designed to rotate between the two support columns I, and the resin at the top and the bottom in the treatment tank can be close to the inlet of the Chinese wolfberry wine by rotating the treatment tank, so that the resin at the top in the treatment tank is prevented from exchanging ion with the wine preferentially all the time; therefore, the resin at the top and the bottom in the treatment tank can fully treat the wine, and the resin can fully purify the medlar wine conveniently.
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Description

Technical Field

[0001] The utility model relates to the technical field of goji berry wine resin treatment, in particular to a goji berry wine stabilization treatment device. Background Technique

[0002] The stabilization treatment of goji berry wine mainly uses a cation resin treatment tank to perform ion exchange on the wine passing through the tank, removing or adjusting the ions that may affect the stability in the wine. The specific treatment process is to first load cation resin particles into the treatment tank, then add an appropriate amount of water to fully expand and activate the resin, and then introduce the goji berry wine to be treated into the cation resin tank through a pipeline. When the goji berry wine flows through the resin layer, the cation resin will adsorb the cation impurities in the wine, such as metal ions, etc., so as to achieve the purpose of purifying the goji berry wine.

[0003] During the process of the resin adsorbing metal ions in the wine, the adsorption saturation states of the resin at different positions in the treatment tank are not completely evenly distributed. This is mainly because the resin in the upper part of the treatment tank is closer to the inlet of the goji berry wine, so it will contact more metal ions earlier, and thus reach the adsorption saturation state faster than the resin at the bottom of the treatment tank, which further affects the resin's full purification of the goji berry wine. Moreover, when removing the saturated resin from the treatment tank, a small amount of resin generally adheres to the inner wall of the treatment tank, which is convenient for users to quickly clean the inner wall of the treatment tank. Content of the Utility Model

[0004] The purpose of the utility model is to provide a goji berry wine stabilization treatment device to solve the problems raised in the above background technique.

[0005] To achieve the above purpose, the utility model provides the following technical solution:

[0006] A goji berry wine stabilization treatment device includes a bottom plate. Two first support columns are fixed on the top surface of the bottom plate. A treatment tank is rotatably connected between the two first support columns. The treatment tank includes a tank barrel. Tank covers are detachably fixed at both ends of the tank barrel. A mesh bag is placed inside the tank barrel, and resin is contained inside the mesh bag. A motor for driving the treatment tank to rotate is fixed on the outside of one of the first support columns. An infusion pipe is detachably connected and fixed to the outside of the tank cover. Support columns two and three are respectively fixed at both ends of the bottom plate, and drainage components for transporting goji berry wine are arranged at the tops of the support column two and the support column three.

[0007] Furthermore: Annular grooves are respectively opened at the top and bottom of the tank barrel, and annular blocks that are screwed and connected with the annular grooves are fixed at the bottom of the tank cover.

[0008] Furthermore, two U-shaped handles are fixed to the outer side of the can lid. An exhaust hole communicating with the treatment can is opened at one end of each U-shaped handle, and a first electromagnetic valve is serially installed in the middle of the exhaust hole.

[0009] Furthermore, two symmetrically distributed connecting shafts are fixed to the outer side of the can barrel. The connecting shafts are rotatably connected to the first support columns. A driven gear is fixed to one end of one of the connecting shafts, and a driving gear meshing with the driven gear is fixed to the output end of the motor.

[0010] Furthermore, the drainage assembly includes an electric push rod. A connecting block is fixed to the output end of the electric push rod, and a drainage pipe is fixed to the top of the connecting block. The drainage pipe is movably inserted into the corresponding infusion pipe.

[0011] Furthermore, the second support column and the third support column are respectively fixedly connected to the corresponding electric push rods, and a second electromagnetic valve is serially installed in the middle of the infusion pipe.

[0012] Furthermore, connecting plates are fixed to both sides of the bottom plate, and the second support column and the third support column are respectively fixedly connected to the corresponding connecting plates.

[0013] Furthermore, a resin column is arranged on the outer side of the second support column. A first elbow pipe and a second elbow pipe are respectively fixedly connected and communicated at the bottom and the top of the resin column, and a third electromagnetic valve is serially installed in each of the first elbow pipe and the second elbow pipe.

[0014] Compared with the prior art, the beneficial effects of the utility model are as follows:

[0015] 1. By fixedly connecting the pipeline for transporting medlar wine with the drainage pipe at the top of the second support column, and the electric push rod drives the drainage pipe to communicate with the infusion pipe, so that the medlar wine flows down along the infusion pipe through the resin inside the treatment can. After the wine is ion-exchanged by the resin, the wine is discharged from the infusion pipe at the bottom of the treatment can. After the resin in the mesh bag is used for a period of time, the drainage pipe is separated from the infusion pipe, and the motor is used to drive the treatment can to rotate by 180 degrees, so that the resin inside the treatment can can be turned over by 180 degrees, and the resin previously located at the bottom of the treatment can is transferred to the top position of the treatment can. At this time, the wine is continuously transported downward through the infusion pipe, which can enable the resin previously located at the bottom of the treatment can to preferentially treat the wine, so that the resins at different positions inside the treatment can can fully treat the wine, and prevent the resin in the upper part of the treatment can from being prematurely saturated due to being close to the inlet of the medlar wine for a long time.

[0016] 2. By packing the resin in a mesh bag and then putting it into the treatment tank, when replacing the resin in the adsorption-saturated state, the tank lid at the bottom of the treatment tank can be opened, and then the resin can be taken out of the treatment tank as a whole through the mesh bag, effectively preventing the inner wall of the treatment tank from adhering to the resin and saving the time for cleaning the inner wall of the treatment tank. Description of the Drawings

[0017] Figure 1 is a schematic diagram of the overall structure of the present utility model;

[0018] Figure 2 is a schematic diagram of the structure of the drainage tube detaching from the infusion tube in the present utility model;

[0019] Figure 3 is a schematic diagram of the internal structure of the treatment tank in the present utility model;

[0020] Figure 4 is a schematic diagram of the structure of the tank barrel in the present utility model;

[0021] Figure 5 is a schematic diagram of the structure of the first support column, the tank barrel, and the motor in the present utility model;

[0022] Figure 6 is a schematic diagram of the structure of the series connection state of the treatment tank and the resin column in the present utility model.

[0023] In the figure: 100, bottom plate; 110, first support column; 120, second support column; 130, third support column; 200, treatment tank; 210, tank barrel; 211, annular groove; 220, tank lid; 221, U-shaped handle; 2211, first solenoid valve; 2212, air extraction and exhaust hole; 222, annular block; 230, connecting shaft; 231, driven gear; 300, mesh bag; 400, motor; 410, driving gear; 500, infusion tube; 510, second solenoid valve; 600, drainage assembly; 610, electric push rod; 620, drainage tube; 700, resin column; 710, first elbow; 720, second elbow. Detailed Embodiment

[0024] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0025] Example 1, please refer to Figures 1-5, in the embodiment of the present utility model, a stabilizing treatment device for wolfberry wine includes a bottom plate 100. On the top surface of the bottom plate 100, two first support columns 110 are fixedly installed. A treatment tank 200 is rotatably connected between the two first support columns 110. The treatment tank 200 includes a tank cylinder 210. At both ends of the tank cylinder 210, tank covers 220 are detachably fixed. Inside the tank cylinder 210, a mesh bag 300 is placed, and resin is contained inside the mesh bag 300. On the outside of one first support column 110, a motor 400 for driving the treatment tank 200 to rotate is fixedly installed. On the outside of the tank cover 220, an infusion pipe 500 is detachably connected and fixedly installed. At both ends of the bottom plate 100, a second support column 120 and a third support column 130 are respectively fixedly installed. At the tops of the second support column 120 and the third support column 130, a drainage assembly 600 for conveying wolfberry wine is provided.

[0026] Specifically, by designing the traditional static treatment tank 200 to be rotatable between the two first support columns 110, by rotating the treatment tank 200, the resin at the top and bottom inside the treatment tank 200 can both approach the inlet of the wolfberry wine, preventing the resin at the top inside the treatment tank 200 from always preferentially performing ion exchange with the liquor first, so that the resin at the top and bottom inside the treatment tank 200 can both fully treat the liquor, facilitating the resin to fully purify the wolfberry wine. By containing the resin in the mesh bag 300 and then putting it into the treatment tank 200, when replacing the resin in the adsorption-saturated state, the tank cover at the bottom of the treatment tank 200 can be opened, and then the resin can be taken out of the treatment tank 200 as a whole through the mesh bag 300, effectively preventing the inner side wall of the treatment tank 200 from adhering to the resin.

[0027] As Figure 3 and Figure 4 shown, in this embodiment, annular grooves 211 are opened at both the top and bottom of the tank cylinder 210. At the bottom of the tank cover 220, an annular block 222 that is screwed into the annular groove 211 is fixedly installed. Threads for screwing into the annular block 222 are opened inside the annular groove 211, so that the tank cover 220 can be detached from the tank cylinder 210, facilitating the replacement of the resin inside the tank cylinder 210. When detaching the tank cover 220, the infusion pipe 500 needs to be detached first.

[0028] As Figure 5 shown, in this embodiment, two symmetrically distributed connecting shafts 230 are fixedly installed on the outside of the tank cylinder 210. The connecting shafts 230 are rotatably connected to the first support columns 110. At one end of one connecting shaft 230, a driven gear 231 is fixedly installed. At the output end of the motor 400, a driving gear 410 that meshes with the driven gear 231 is fixedly installed.

[0029] In this embodiment, the motor 400 drives the driving gear 410 to rotate, causing the driven gear 231 to drive the connecting shaft 230 to rotate. As a result, the processing tank 200 can rotate by 180 degrees, transferring the resin that was previously at the bottom of the processing tank 200 to the top of the processing tank 200, facilitating the replacement of the resin and giving priority to approaching the liquor at different positions.

[0030] As Figure 3 shown, in this embodiment, the drainage assembly 600 includes an electric push rod 610. A connecting block is fixed to the output end of the electric push rod 610, and a drainage pipe 620 is fixed to the top of the connecting block. The drainage pipe 620 is movably inserted into the infusion pipe 500 at the corresponding position.

[0031] In this embodiment, the electric push rod 610 drives the drainage pipe 620 on the connecting block to move towards the infusion pipe 500, facilitating the connection of the drainage pipe 620 with the infusion pipe 500. The drainage pipe 620 at the top of the processing tank 200 is convenient for delivering liquor to the processing tank 200, and the drainage pipe 620 at the bottom of the processing tank 200 is convenient for discharging the processed liquor. During the rotation of the processing tank 200, the electric push rod 610 drives the drainage pipe 620 away from the infusion pipe 500 to provide the space required for the rotation of the processing tank 200.

[0032] As Figure 3 shown, in this embodiment, the second support column 120 and the third support column 130 are respectively fixedly connected to the electric push rod 610 at the corresponding positions, and a second solenoid valve 510 is serially installed in the middle of the infusion pipe 500.

[0033] In this embodiment, when evacuating the air inside the processing tank 200, the second solenoid valve 510 can be closed to shut off the infusion pipe 500, allowing nitrogen to enter through one exhaust hole 2212 and exit through the other exhaust hole 2212. During the rotation of the processing tank 200, if there is liquor in the processing tank 200, the solenoid valve on the infusion pipe 500 can be closed to prevent the liquor from discharging from the infusion pipe 500 during the rotation of the processing tank 200.

[0034] As Figure 1 shown, in this embodiment, connecting plates are fixed to both sides of the bottom plate 100, and the second support column 120 and the third support column 130 are respectively fixedly connected to the connecting plates at the corresponding positions, enabling the second support column 120 and the third support column 130 to stably support and fix the drainage assembly 600.

[0035] During specific implementation, open the tank cover 220 at the top of the treatment tank 200, put the mesh bag 300 filled with resin into the interior of the treatment tank 200, close the pipe cover 220, and the electric push rod 610 inserts the drainage pipe 620 on the connecting block into the infusion pipe 500, so that the infusion pipes 500 at the top and bottom of the treatment tank 200 are both connected to the drainage pipe 620. Connect the pipe for transporting Chinese wolfberry wine from the outside through the second support column 120 and connect it to the drainage pipe 620 on its outer side. Transport the Chinese wolfberry wine through the resin from top to bottom into the interior of the treatment tank 200, and the treated wine is transported from the infusion pipe 500 at the bottom of the treatment tank 200 to the external container for collection through the drainage pipe 620. When it is necessary to change the position of the resin to treat the wine, stop transporting the wine into the treatment tank 200, the electric push rod 610 takes the drainage pipe 620 away from the infusion pipe 500, and then the motor 400 drives the driving gear 410 to rotate, causing the treatment tank 200 to rotate by 180 degrees, so that the resin previously located at the bottom of the treatment tank 200 can be swapped to the top of the treatment tank 200 to give priority to contacting the wine. Similarly, continue to transport the wine into the rotated treatment tank 200, so that the resin can fully perform ion exchange with the wine, improving the stability of the purified wine.

[0036] Embodiment 2, on the basis of Embodiment 1, in order to evacuate the oxygen inside the treatment tank 200 with nitrogen.

[0037] As Figure 4 shown, in this embodiment, two U-shaped handles 221 are fixed on the outer side of the tank cover 220. One end of the U-shaped handle 221 is provided with an air extraction and exhaust hole 2212 communicating with the treatment tank 200, and a solenoid valve 2211 is serially installed in the middle of the air extraction and exhaust hole 2212.

[0038] In this embodiment, the U-shaped handle 221 can facilitate the user to rotate and open the tank cover 220. After putting the mesh bag 300 filled with resin into the tank cylinder 210, both ends of the tank cylinder 210 are sealed by the tank cover 220, and then the pipe for transporting nitrogen from the outside is connected to one of the air extraction and exhaust holes 2212 at the top of the treatment tank 200 to input nitrogen into the treatment tank 200. At the same time, open the other air extraction and exhaust hole 2212 at the top of the treatment tank 200, and use nitrogen to evacuate the oxygen inside the treatment tank 200, effectively preventing the oxidation of the wine by oxygen.

[0039] Embodiment 3, on the basis of Embodiment 1, in order to better realize the ion exchange and purification process and improve the quality and purity of Chinese wolfberry wine.

[0040] As Figure 6 shown, in this embodiment, a resin column 700 is arranged on the outer side of the second support column 120. The bottom and top of the resin column 700 are respectively connected and fixed with a first elbow pipe 710 and a second elbow pipe 720, and solenoid valves 3 are serially installed inside both the first elbow pipe 710 and the second elbow pipe 720.

[0041] As Figure 6 shown, in this embodiment, the solenoid valve three on the elbow pipe two 720 is opened, and wolfberry wine is injected into the elbow pipe two 720, so that the wolfberry wine can first enter the resin column 700 for preliminary ion exchange, and then the preliminarily treated wolfberry wine is transported to the inside of the treatment tank 200 through the elbow pipe one 710 for secondary ion exchange, thereby achieving the effects of full purification and ion exchange. The resin column 700 can be supported and fixed at a position higher than the treatment tank 200 by an external bracket, which is convenient for the preliminarily purified wolfberry wine in the resin column 700 to flow along the elbow pipe one 710 into the treatment tank 200 for secondary purification. How the resin column 700 is filled with resin and the principle of ion exchange in the resin column 700 are prior arts, and the applicant will not elaborate here. Among them, the resin column 700 and the treatment tank 200 may be filled with different types of ion exchange resin raw materials, and these resins have different selectivities and can adsorb and exchange different ions or impurities. Therefore, the wolfberry wine passing through the resin column 700 and the treatment tank 200 successively can achieve multi-stage separation and purification, and more effectively remove impurities and bad components.

[0042] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claimed claims.

[0043] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A wolfberry wine stabilization treatment device, comprising a bottom plate (100), characterized in that: On the top surface of the bottom plate (100), two first support columns (110) are fixedly installed. A treatment tank (200) is rotatably connected between the two first support columns (110). The treatment tank (200) includes a tank cylinder (210). At both ends of the tank cylinder (210), tank covers (220) are detachably fixed. A mesh bag (300) is placed inside the tank cylinder (210), and resin is contained inside the mesh bag (300). Outside one of the first support columns (110), a motor (400) for driving the treatment tank (200) to rotate is fixedly installed. Outside the tank cover (220), an infusion tube (500) is detachably and communicatively fixed. At both ends of the bottom plate (100), a second support column (120) and a third support column (130) are respectively fixedly installed. At the tops of the second support column (120) and the third support column (130), a drainage assembly (600) for transporting wolfberry wine is provided.

2. The wolfberry wine stabilization treatment device according to claim 1, characterized in that: Annular grooves (211) are formed at both the top and bottom of the tank cylinder (210). At the bottom of the tank cover (220), an annular block (222) that is screwed into the annular groove (211) is fixedly installed.

3. The wolfberry wine stabilization treatment device according to claim 1, characterized in that: Two U-shaped handles (221) are fixedly installed outside the tank cover (220). At one end of each U-shaped handle (221), an air extraction and exhaust hole (2212) communicating with the treatment tank (200) is formed. In the middle of the air extraction and exhaust hole (2212), a first solenoid valve (2211) is serially installed.

4. The wolfberry wine stabilization treatment device according to claim 1, characterized in that: Outside the tank cylinder (210), two symmetrically distributed connecting shafts (230) are fixedly installed. The connecting shafts (230) are rotatably connected to the first support columns (110). At one end of one of the connecting shafts (230), a driven gear (231) is fixedly installed. At the output end of the motor (400), a driving gear (410) meshing with the driven gear (231) is fixedly installed.

5. The wolfberry wine stabilization treatment device according to claim 1, characterized in that: On both sides of the bottom plate (100), connecting plates are fixedly installed. The second support column (120) and the third support column (130) are respectively fixedly connected to the connecting plates at corresponding positions.

6. The wolfberry wine stabilization treatment device according to claim 1, characterized in that: Outside the second support column (120), a resin column (700) is arranged. At the bottom and top of the resin column (700), a first elbow pipe (710) and a second elbow pipe (720) are respectively communicatively fixed. In the interiors of the first elbow pipe (710) and the second elbow pipe (720), third solenoid valves are serially installed.

7. The wolfberry wine stabilization treatment device according to claim 1, characterized in that: The drainage assembly (600) includes an electric push rod (610). At the output end of the electric push rod (610), a connecting block is fixedly installed. At the top of the connecting block, a drainage tube (620) is fixedly installed. The drainage tube (620) is movably inserted into the infusion tube (500) at the corresponding position.

8. The wolfberry wine stabilization treatment device according to claim 5, characterized in that: The second support column (120) and the third support column (130) are respectively fixedly connected to the electric push rods (610) at corresponding positions. In the middle of the infusion tube (500), a second solenoid valve (510) is serially installed.