Water treatment device for gardenia extract

By designing a water treatment device for gardenia extract, the air pump body is used to reduce the pressure in the concentration tank and condense the steam in the cooling pipe, the components failure and scald caused by high-temperature heating are solved, and safe and efficient moisture evaporation is achieved.

CN223112326UActive Publication Date: 2025-07-18QIANJIANG GREEN SEA TREASURE BIO TECH
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Patent Information

Application Number
CN202421734418.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-22
Publication Date
2025-07-18
Estimated Expiration
2034-07-22

AI Technical Summary

Technical Problem

During the processing of gardenia extract, high temperature heating will cause the effective ingredients to fail, and the steam will be at risk of burning the staff.

Method used

A water treatment device including a concentration tank body, a pumping mechanism and a cooling mechanism is designed. The pressure in the concentration tank body is reduced by the pumping pump body, the boiling point of water is reduced, and the moisture evaporates rapidly at a lower temperature, and the steam is condensed by using the cooling pipe to prevent scalding.

Benefits of technology

It effectively prevents the effective ingredients in gardenia extract from failing at high temperatures and avoids the risk of burning the staff by steam.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223112326U_ABST
Patent Text Reader

Abstract

The water treatment device comprises a concentration tank body, a material inlet is formed in the upper end of the concentration tank body, a sealing end cover is arranged at the tail end of the material inlet, a steam outlet is formed in the edge of the upper end of the concentration tank body, a steam inlet is formed in the edge of the lower end of the concentration tank body, and an air exhaust mechanism is connected to the concentration tank body. The air exhaust mechanism comprises an air exhaust pipeline fixed on the concentration tank body, the tail end of the air exhaust pipeline is connected with an air exhaust pump body, and the air exhaust pipeline is connected with a cooling mechanism. According to the water treatment device for the gardenia extract, disclosed by the utility model, gas in the concentration tank body can be pumped out, so that lower pressure in the concentration tank body is kept, the boiling point of water is reduced, moisture in the gardenia extract is quickly boiled and evaporated at lower temperature, and effective components in the extract are prevented from losing efficacy; and when the steam is exhausted, cooling water can be conveyed into the cooling pipeline, so that the steam in the exhaust pipeline is quickly condensed, and workers are prevented from being scalded by the steam.
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Description

Technical Field

[0001] The utility model relates to the field of gardenia extract processing, and particularly relates to a water treatment device for gardenia extract. Background Technique

[0002] Gardenia, a traditional Chinese medicine name, is the fruit of the plant Gardenia jasminoides Ellis of the Rubiaceae family. The fruit of gardenia is a traditional Chinese medicine, which has the effects of protecting the liver, promoting gallbladder function, reducing blood pressure, sedation, hemostasis, detumescence, etc., and is commonly used in traditional Chinese medicine clinics to treat jaundice hepatitis, contusions and strains, hypertension, diabetes and other diseases. Gardenia extract is the effective ingredient extracted from the fruit of gardenia, which has a variety of pharmacological effects and functions. The freshly extracted gardenia extract contains a large amount of water. During the processing, it is necessary to heat the gardenia extract to quickly evaporate the water to increase the concentration of the gardenia extract. However, too high heating temperature will cause the effective ingredients in the gardenia extract to become ineffective, and the steam generated by heating poses a risk of scalding the staff. Therefore, a water treatment device for gardenia extract is proposed. Content of the Utility Model

[0003] The main purpose of the utility model is to provide a water treatment device for gardenia extract, which can effectively solve the problems mentioned in the background technique.

[0004] To achieve the above purpose, the technical solution adopted by the utility model is as follows:

[0005] A water treatment device for gardenia extract includes a concentration tank body. A material inlet is opened at the upper end of the concentration tank body, and a sealing end cover is provided at the end of the material inlet. A steam outlet is provided at the edge of the upper end of the concentration tank body, and a steam inlet is provided at the edge of the lower end of the concentration tank body. An air extraction mechanism is connected to the concentration tank body. The air extraction mechanism includes an air extraction pipeline fixed on the concentration tank body. The end of the air extraction pipeline is connected to an air extraction pump body. A driving motor is connected to the air extraction pump body. An exhaust pipeline is provided on the air extraction pump body, and a cooling mechanism is connected to the exhaust pipeline. The cooling mechanism includes a heat insulation sleeve fixed on the exhaust pipeline. A liquid inlet is fixedly installed at one edge of the heat insulation sleeve, and a liquid outlet is fixedly installed at the other edge of the heat insulation sleeve. A cooling pipeline is provided in the heat insulation sleeve, and heat conduction liquid is stored in the heat insulation sleeve.

[0006] Furthermore, a butt joint flange is provided on the air extraction pipeline. The air extraction pipeline is connected to the concentration tank body through the butt joint flange, and a control valve is connected to the air extraction pipeline.

[0007] Furthermore, one end of the air extraction pipeline is communicated with the concentration tank body, and the other end of the air extraction pipeline is communicated with the air extraction pump body.

[0008] Furthermore, one end of the heat insulation sleeve is provided with a first installation opening, and the other end of the heat insulation sleeve is provided with a second installation opening. The heat insulation sleeve is installed on the exhaust pipe through the first installation opening and the second installation opening, and sealing rings are provided in the first installation opening and the second installation opening.

[0009] Furthermore, one end of the cooling pipe is connected to the liquid inlet, and the other end of the cooling pipe is connected to the liquid outlet.

[0010] Furthermore, a discharge port is provided at the bottom of the concentration tank body, and a valve is provided on the discharge port.

[0011] Compared with the prior art, the utility model has the following beneficial effects:

[0012] Steam can be transported to the inner liner of the concentration tank body through the steam inlet, so as to heat the gardenia extract in the concentration tank body. During the heating process, the driving motor can be started. After starting the driving motor, it will drive the air extraction pump body to operate, so as to extract the gas in the concentration tank body, keep a lower pressure in the concentration tank body, reduce the boiling point of water, and make the water in the gardenia extract boil and evaporate rapidly at a lower temperature, preventing the effective components in the extract from failing. And when the steam is discharged, the cooling water can be transported into the cooling pipe, so as to quickly condense the steam in the exhaust pipe and prevent the steam from scalding the staff. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 is a schematic diagram of the overall structure of the utility model;

[0014] Figure 2 is a schematic diagram of the air extraction mechanism of the utility model;

[0015] Figure 3 is a schematic diagram of the cooling mechanism of the utility model.

[0016] In the figure: 1, concentration tank body; 2, sealing end cover; 3, material inlet; 4, steam outlet; 5, steam inlet; 6, air extraction mechanism; 601, docking flange; 602, air extraction pipe; 603, control valve; 604, driving motor; 605, air extraction pump body; 606, exhaust pipe; 7, cooling mechanism; 701, liquid inlet; 702, heat insulation sleeve; 703, liquid outlet; 704, first installation opening; 705, cooling pipe; 706, second installation opening. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0017] In order to make the technical means, creative features, achieving purposes and effects of the utility model easy to understand, the utility model will be further described below in conjunction with specific embodiments.

[0018] Such as Figure 1As shown in the figure, a water treatment device for gardenia extract includes a concentration tank body 1. A material inlet 3 is provided at the upper end of the concentration tank body 1. A sealing end cover 2 is provided at the end of the material inlet 3. A steam outlet 4 is provided at the upper edge of the concentration tank body 1. A steam inlet 5 is provided at the lower edge of the concentration tank body 1. An air extraction mechanism 6 is connected to the concentration tank body 1. A cooling mechanism 7 is connected to the exhaust pipeline 606. The gardenia extract can be injected into the concentration tank body 1 through the material inlet 3, and steam can be transported to the inner tank of the concentration tank body 1 through the steam inlet 5, so as to heat the gardenia extract in the concentration tank body 1. During the heating process, the air extraction mechanism 6 can extract the gas in the concentration tank body 1 to keep the pressure in the concentration tank body 1 relatively low, and the cooling mechanism 7 can quickly cool and condense the steam in the exhaust pipeline 606.

[0019] As Figure 2 shown, the air extraction mechanism 6 includes an air extraction pipeline 602 fixed on the concentration tank body 1. The end of the air extraction pipeline 602 is connected to an air extraction pump body 605. A driving motor 604 is connected to the air extraction pump body 605. An exhaust pipeline 606 is provided on the air extraction pump body 605. A docking flange 601 is provided on the air extraction pipeline 602. The air extraction pipeline 602 is connected to the concentration tank body 1 through the docking flange 601. A control valve 603 is connected to the air extraction pipeline 602. One end of the air extraction pipeline 602 is communicated with the concentration tank body 1, and the other end of the air extraction pipeline 602 is communicated with the air extraction pump body 605.

[0020] Specifically, the driving motor 604 can drive the air extraction pump body 605 to operate, so as to extract the gas in the concentration tank body 1 to keep the pressure in the concentration tank body 1 relatively low, reduce the boiling point of water, and enable the water in the gardenia extract to quickly boil and evaporate at a relatively low temperature, preventing the effective components in the extract from being invalidated, and the steam generated by boiling will be discharged through the exhaust pipeline 606.

[0021] As Figure 3 shown, the cooling mechanism 7 includes a heat insulation sleeve 702 fixed on the exhaust pipeline 606. A liquid inlet 701 is fixedly installed at one end edge of the heat insulation sleeve 702. A liquid outlet 703 is fixedly installed at the other end edge of the heat insulation sleeve 702. A cooling pipeline 705 is provided in the heat insulation sleeve 702, and a heat-conducting liquid is stored in the heat insulation sleeve 702. A first installation port 704 is provided at one end of the heat insulation sleeve 702, and a second installation port 706 is provided at the other end of the heat insulation sleeve 702. The heat insulation sleeve 702 is installed on the exhaust pipeline 606 through the first installation port 704 and the second installation port 706, and sealing rings are provided in the first installation port 704 and the second installation port 706. One end of the cooling pipeline 705 is connected to the liquid inlet 701, and the other end of the cooling pipeline 705 is connected to the liquid outlet 703.

[0022] Specifically, the heat insulation sleeve 702 can serve the purpose of heat insulation. When the steam is discharged through the exhaust pipe 606, the cooling water can be conveyed into the cooling pipe 705, thereby reducing the temperature inside the heat insulation sleeve 702, quickly condensing the steam in the exhaust pipe 606, and preventing the steam from scalding the staff.

[0023] It should be noted that the present utility model is a water treatment device for gardenia extracts. In actual use, first, the gardenia extracts are injected into the concentration tank body 1 through the material inlet 3. Then, the steam can be conveyed to the inner liner of the concentration tank body 1 through the steam inlet 5, thereby heating the gardenia extracts in the concentration tank body 1. During the heating process, the driving motor 604 can be started. After starting the driving motor 604, it will drive the air extraction pump body 605 to operate. After the air extraction pump body 605 operates, it will extract the gas in the concentration tank body 1, keep the pressure in the concentration tank body 1 relatively low, reduce the boiling point of water, enable the water in the gardenia extracts to quickly boil and evaporate at a relatively low temperature, prevent the active ingredients in the extracts from becoming ineffective, and can convey the cooling water into the cooling pipe 705 to reduce the temperature inside the heat insulation sleeve 702, and further quickly condense the steam in the exhaust pipe 606 to prevent the steam from scalding the staff.

[0024] Finally, it should be noted that the above are only the preferred embodiments of the present utility model and are not used to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or perform equivalent replacements on some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included in the protection scope of the present utility model.

Claims

1. A water treatment device for gardenia extract, comprising a concentration tank body (1), characterized in that: The upper end of the concentration tank body (1) is provided with a material inlet (3), and a sealing end cover (2) is arranged at the end of the material inlet (3). A steam outlet (4) is arranged at the upper edge of the concentration tank body (1), and a steam inlet (5) is arranged at the lower edge of the concentration tank body (1). An air extraction mechanism (6) is connected to the concentration tank body (1). The air extraction mechanism (6) includes an air extraction pipeline (602) fixed on the concentration tank body (1). The end of the air extraction pipeline (602) is connected to an air extraction pump body (605). A driving motor (604) is connected to the air extraction pump body (605). An exhaust pipeline (606) is arranged on the air extraction pump body (605). A temperature reduction mechanism (7) is connected to the exhaust pipeline (606). The temperature reduction mechanism (7) includes a heat insulation sleeve (702) fixed on the exhaust pipeline (606). A liquid inlet (701) is fixedly installed at one end edge of the heat insulation sleeve (702), and a liquid outlet (703) is fixedly installed at the other end edge of the heat insulation sleeve (702). A temperature reduction pipeline (705) is arranged in the heat insulation sleeve (702), and a heat conducting liquid is stored in the heat insulation sleeve (702).

2. The water treatment device for gardenia extract according to claim 1, characterized in that: A butt joint flange (601) is arranged on the air extraction pipeline (602). The air extraction pipeline (602) is connected to the concentration tank body (1) through the butt joint flange (601). A control valve (603) is connected to the air extraction pipeline (602).

3. The water treatment device for gardenia extract according to claim 2, wherein: One end of the air extraction pipeline (602) is communicated with the concentration tank body (1), and the other end of the air extraction pipeline (602) is communicated with the air extraction pump body (605).

4. The water treatment device for gardenia extract according to claim 3, wherein: A first installation opening (704) is arranged at one end of the heat insulation sleeve (702), and a second installation opening (706) is arranged at the other end of the heat insulation sleeve (702). The heat insulation sleeve (702) is installed on the exhaust pipeline (606) through the first installation opening (704) and the second installation opening (706), and sealing rings are arranged in the first installation opening (704) and the second installation opening (706).

5. The water treatment device for gardenia extract according to claim 4, characterized in that: One end of the temperature reduction pipeline (705) is connected to the liquid inlet (701), and the other end of the temperature reduction pipeline (705) is connected to the liquid outlet (703).

6. The water treatment device for gardenia extract according to claim 5, characterized in that: A discharge port is arranged at the bottom of the concentration tank body (1), and a valve is arranged on the discharge port.