Roxburgh rose flavor extract extraction device

By installing a temperature control component inside the extraction tank and using a hot and cold air blower to regulate the temperature of the extraction channel, the passive temperature control problem in the existing technology is solved, and the extraction efficiency is improved.

CN224194154UActive Publication Date: 2026-05-05GUIZHOU JIHAI FRUIT & VEGETABLE BEVERAGE ENG TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUIZHOU JIHAI FRUIT & VEGETABLE BEVERAGE ENG TECH CO LTD
Filing Date
2025-05-12
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

The existing temperature control method for extraction tanks is passive, which affects extraction efficiency and makes it impossible to adjust the temperature in real time.

Method used

A temperature control component is installed inside the extraction tank. The temperature of the extraction channel is adjusted in real time through the exhaust fan and the air inlet column. A hot and cold air fan is used to introduce airflow at an appropriate temperature for temperature control.

Benefits of technology

It enables real-time temperature control during the extraction process, improving extraction efficiency and preventing the extraction process from being interrupted due to temperature changes.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224194154U_ABST
Patent Text Reader

Abstract

The utility model discloses a roxburgh rose flavor extract extraction device which comprises an extraction tank, and a solvent inlet disc and a stock solution inlet seat are distributed in the extraction tank up and down; an extraction channel is arranged between the solvent inlet disc and the stock solution inlet seat; the stock solution inlet seat is connected with the stock solution pump; the solvent inlet disc is connected with a solvent pump; a temperature control assembly is arranged in the extraction tank; and the temperature control assembly is positioned on the inner side of the extraction channel. In the extraction tank, the extraction process of the solvent and the stock solution occurs in the extraction channel, and the extraction channel is arranged at the inner circumferential position of the extraction tank. In this way, a space can exist in the central area of the extraction tank; and a temperature control assembly is arranged in the space, so that the temperature in the extraction channel can be adjusted from inside to outside.
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Description

Technical Field

[0001] This utility model relates to an extraction device, specifically an extraction device for prickly pear flavor extract, and belongs to the field of extraction equipment technology. Background Technology

[0002] Prickly pear flavor extract is typically extracted using subcritical low-temperature extraction technology, which involves selectively dissolving fat-soluble components such as prickly pear seed oil using organic solvents (such as butane and propane). After the crushed prickly pear seeds are softened and rolled into a compact, the solvent is repeatedly applied at 40-60℃ and 0.3-0.6 MPa. The system achieves efficient extraction through one or more countercurrent extractions. Because the extract is heat-sensitive, the extraction tank requires strict temperature control. After extraction, the temperature needs to be briefly raised to allow the solvent to vaporize and be recovered; therefore, the extraction tank itself needs strong temperature regulation capabilities. However, existing extraction tanks typically use passive temperature control, i.e., real-time temperature monitoring. When the temperature changes significantly, the extraction process is slowed down until the temperature returns to normal, which affects extraction efficiency. Utility Model Content

[0003] The purpose of this invention is to overcome the above-mentioned technical deficiencies and propose a prickly pear flavor extract extraction device that is convenient for temperature control, has a reasonable structural layout, and is flexible and convenient to use.

[0004] An extraction device for prickly pear flavor extract includes an extraction tank, wherein a solvent inlet plate and a stock solution inlet seat are arranged vertically inside the extraction tank; an extraction channel is provided between the solvent inlet plate and the stock solution inlet seat; the stock solution inlet seat is connected to a stock solution pump; the solvent inlet plate is connected to a solvent pump; a temperature control component is provided inside the extraction tank; the temperature control component is located inside the extraction channel.

[0005] Furthermore, the solvent inlet disc has an inner cavity; the bottom of the inner cavity is shaped like an inverted V; the top of the inner cavity is connected to a solvent pump via a flexible tube; solvent delivery heads are provided on both sides of the bottom of the inner cavity; and a solvent inlet is provided at the top of the extraction channel opposite to the solvent delivery head.

[0006] Furthermore, the bottom of the extraction channel is provided with a raw liquid inlet; the raw liquid inlet seat includes a rotary seat; the center of the rotary seat is provided with a shaft hole; the shaft hole is connected to a motor; the rotary seat is provided with a lifting plug and a raw liquid conveying head.

[0007] Furthermore, the raw liquid delivery head includes two parts, symmetrically arranged on the surface of the rotary seat; the two raw liquid delivery heads are respectively connected to the connecting pipe; the connecting pipe is connected to the raw liquid pump through the hose; the lifting plug is connected to the cylinder; the cylinder is located on the lower side of the rotary seat; the raw liquid delivery head or the lifting plug is inserted into the raw liquid inlet.

[0008] Furthermore, the extraction channel includes an inner cylinder; the inner cylinder is coaxially disposed inside the extraction tank; the inner cylinder and the inner wall of the extraction tank together form the extraction channel; the solvent inlet and the raw liquid inlet are respectively disposed on the upper and lower sides of the inner cylinder.

[0009] Furthermore, the temperature control component is located inside the inner cylinder; the temperature control component includes an exhaust fan; the exhaust fan is coaxially located inside the inner cylinder; an air intake column is provided in the solvent inlet tray; the air intake column is connected to the exhaust fan; the air intake column is connected to the hot and cold air blower via a flexible hose.

[0010] This invention offers the following advantages: In the extraction tank, the extraction process of the solvent and the original solution occurs within the extraction channel, which is located on the inner circumference of the extraction tank. This design allows for a central space within the extraction tank; a temperature control component is then installed within this space to regulate the temperature within the extraction channel from the inside out. This method eliminates the need to pause the extraction process to adjust the temperature, enabling real-time adjustment. Attached Figure Description

[0011] Figure 1 This is a schematic diagram of the main structure of this utility model.

[0012] Figure 2 This is a cross-sectional structural diagram of the present invention.

[0013] Figure 3 This is a schematic diagram of the layout structure of the raw liquid inlet seat.

[0014] Wherein: 1 is the extraction tank, 2 is the solvent inlet plate, 2-1 is the inner cavity, 3 is the raw liquid inlet seat, 3-1 is the rotary seat, 3-11 is the shaft hole, 4 is the extraction channel, 4-1 is the inner cylinder, 5 is the solvent delivery head, 6 is the motor, 7 is the lifting plug, 8 is the raw liquid delivery head, 9 is the exhaust fan, 10 is the cylinder, 11 is the connecting pipe, and 12 is the air inlet column. Detailed Implementation

[0015] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0016] See Figures 1-3 This application discloses an extraction device for prickly pear flavor extract, including an extraction tank 1. The extraction tank 1 has a solvent inlet plate 2 and a raw liquid inlet seat 3 distributed vertically inside. An extraction channel 4 is provided between the solvent inlet plate 2 and the raw liquid inlet seat 3. The raw liquid inlet seat 3 is connected to a raw liquid pump. The solvent inlet plate 2 is connected to a solvent pump. A temperature control component is provided inside the extraction tank 1. The temperature control component is located inside the extraction channel 4.

[0017] Furthermore, the solvent inlet plate 2 has an inner cavity 2-1; the bottom of the inner cavity 2-1 is arranged in an inverted V shape; the top of the inner cavity 2-1 is connected to the solvent pump through a hose; solvent delivery heads 5 are arranged on both sides of the bottom of the inner cavity 2-1; and the top of the extraction channel 4 has a solvent inlet opposite to the solvent delivery head.

[0018] Furthermore, the extraction channel 4 is provided with a raw liquid inlet at the bottom; the raw liquid inlet seat 3 includes a rotary seat 3-1; the rotary seat 3-1 is provided with a shaft hole 3-11 at its center; the shaft hole 3-11 is connected to the motor 6; the rotary seat 3-1 is provided with a lifting plug 7 and a raw liquid conveying head 8.

[0019] Furthermore, the raw liquid delivery head 8 includes two parts, symmetrically arranged on the surface of the rotary seat 3-1; the two raw liquid delivery heads 8 are respectively connected to the connecting pipe 11; the connecting pipe 11 is connected to the raw liquid pump through a hose; the lifting plug 7 is connected to the cylinder 10; the cylinder 10 is located on the lower side of the rotary seat 3-1; the raw liquid delivery head 8 or the lifting plug 7 is inserted into the raw liquid inlet.

[0020] Specifically, in this embodiment, the solvent, under the action of the solvent pump, enters the solvent inlet pan 2; then flows downward from the solvent delivery head 5 at the bottom of the solvent inlet pan 2 into the extraction channel 4. Simultaneously, the stock solution, under the action of the stock solution pump, enters the stock solution inlet seat 3 from the stock solution delivery head 8, and then enters the extraction channel 4 from the stock solution delivery head 8. This causes the solvent and stock solution to flow counter-currently in the extraction channel 4. During the extraction process, the motor 6 drives the rotary seat 3-1 to rotate, causing the lifting plug 7 to align with the stock solution inlet at the bottom of the extraction channel 4 and insert to seal it.

[0021] Furthermore, the extraction channel 4 includes an inner cylinder 4-1; the inner cylinder 4-1 is coaxially arranged inside the extraction tank 1; the inner cylinder 4-1 and the inner wall of the extraction tank 1 together form the extraction channel; the solvent inlet and the raw liquid inlet are respectively arranged on the upper and lower sides of the inner cylinder.

[0022] Furthermore, the temperature control component is located inside the inner cylinder 4-1; the temperature control component includes an exhaust fan 9; the exhaust fan 9 is coaxially located inside the inner cylinder; an air inlet column 12 is provided inside the solvent inlet tray 2; the air inlet column 12 is connected to the exhaust fan 9; the air inlet column 12 is connected to the hot and cold air blower via a flexible hose.

[0023] The air intake column 12 introduces cold or warm air of appropriate temperature through a hot or cold air fan and enters the air duct 9. Since the air duct 9 is located inside the extraction channel 4 and has several fine holes on its circumference, the airflow will be directed to the inside of the extraction channel 4 to cool or heat its interior.

[0024] The specific embodiments of this utility model described above do not constitute a limitation on the scope of protection of this utility model. Any other corresponding changes and modifications made based on the technical concept of this utility model should be included within the scope of protection of the claims of this utility model.

Claims

1. An extraction apparatus for prickly pear flavor extract, comprising an extraction tank, characterized in that: The extraction vessel has a solvent inlet tray and a stock solution inlet seat distributed vertically inside; an extraction channel is provided between the solvent inlet tray and the stock solution inlet seat; the stock solution inlet seat is connected to a stock solution pump; the solvent inlet tray is connected to a solvent pump; a temperature control component is provided inside the extraction vessel; the temperature control component is located inside the extraction channel.

2. The prickly pear flavor extract extraction device according to claim 1, characterized in that: The solvent inlet tray has an inner cavity; the bottom of the inner cavity is shaped like an inverted V; the top of the inner cavity is connected to the solvent pump via a hose; solvent delivery heads are provided on both sides of the bottom of the inner cavity; and a solvent inlet is provided at the top of the extraction channel opposite to the solvent delivery head.

3. The prickly pear flavor extract extraction device according to claim 1, characterized in that: The extraction channel has a raw liquid inlet at the bottom; the raw liquid inlet seat includes a rotary seat; the rotary seat has a shaft hole at its center; the shaft hole is connected to a motor; the rotary seat is equipped with a lifting plug and a raw liquid conveying head.

4. The prickly pear flavor extract extraction device according to claim 3, characterized in that: The raw liquid delivery head includes two parts, symmetrically arranged on the surface of the rotary seat; the two raw liquid delivery heads are respectively connected to the connecting pipe; the connecting pipe is connected to the raw liquid pump through the hose; the lifting plug is connected to the cylinder; the cylinder is located on the lower side of the rotary seat; the raw liquid delivery head or the lifting plug is inserted into the raw liquid inlet.

5. The prickly pear flavor extract extraction device according to claim 4, characterized in that: The extraction channel includes an inner cylinder; the inner cylinder is coaxially arranged inside the extraction tank; the inner cylinder and the inner wall of the extraction tank together form the extraction channel; the solvent inlet and the raw liquid inlet are respectively located on the upper and lower sides of the inner cylinder.

6. The prickly pear flavor extract extraction apparatus according to claim 5, characterized in that: The temperature control component is located inside the inner cylinder; the temperature control component includes an exhaust fan; the exhaust fan is coaxially located inside the inner cylinder; an air inlet column is provided in the solvent inlet tray; the air inlet column is connected to the exhaust fan; the air inlet column is connected to a hot / cold air blower via a flexible hose.