Filtering and separating dual-treatment equipment used after protein extraction

By introducing leak-proof components into the filtration and separation equipment after protein extraction, and using threaded connections and smart sensors to monitor the flange rings, the leakage problem caused by flange ring aging was solved. This enabled automated leak detection and simplified installation of the equipment, improving production efficiency and detection accuracy.

CN223795085UActive Publication Date: 2026-01-13DUORUI MEDICAL TECHNOLOGY (JINGZHOU CITY) CO LTD
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Patent Information

Application Number
CN202520283590.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2026-01-13
Estimated Expiration
2035-02-21

AI Technical Summary

Technical Problem

In existing dual-processing equipment for protein extraction followed by filtration and separation, aging flange rings cause leakage problems, and traditional leak detection methods are cumbersome and rely on manual labor, affecting production efficiency and detection accuracy.

Method used

The system employs a leak-proof assembly, including a first leak-proof component and a second leak-proof component, which utilizes external and internal threads for connection. Combined with leak detection paper and a color recognition sensor probe, it enables real-time, non-destructive intelligent monitoring of the flange ring, enhancing sealing performance and facilitating installation.

Benefits of technology

It enables real-time, automated leak monitoring at flange ring connections, improving the accuracy and timeliness of detection, simplifying the installation process, reducing manual intervention, and ensuring stable equipment operation and efficient production.

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Abstract

The utility model discloses filtering and separating dual-treatment equipment after protein extraction, and relates to the field of filtering and separating dual-treatment equipment. The device comprises a treatment device, the treatment device comprises a filtering and separating tank and a pretreatment tank, a leakage-proof assembly, a first leakage-proof piece and a second leakage-proof piece are arranged, so that real-time and non-destructive intelligent monitoring of the joint of a flange ring is achieved, a first lantern ring is tightly connected with a second lantern ring through an external thread, and the leakage-proof assembly is arranged on the first lantern ring and the second lantern ring. The stability and the sealing performance of the leakage-proof assembly are ensured, the water leakage detection paper is placed below the inner wall of the first lantern ring, once water seeps out, the detection paper can be wetted immediately, the color of the detection paper is changed, a visual indication is provided for leakage, the second leakage-proof piece comprises a second lantern ring and a color recognition sensor probe, and the color recognition sensor probe can recognize the color of the detection paper. The second lantern ring is in threaded connection with the first lantern ring, the color change of the water leakage detection paper can be monitored in real time, an alarm is triggered immediately when the color change is detected, and automatic monitoring is achieved.
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Description

Technical Field

[0001] This utility model relates to the field of dual-process equipment for filtration and separation, specifically a dual-process equipment for filtration and separation after protein extraction. Background Technology

[0002] The dual-processing equipment for protein extraction followed by filtration and separation plays a crucial role in aquaculture. Through highly efficient filtration and separation technology, this equipment effectively removes organic matter such as protein, uneaten feed, and feces from the water, significantly reducing the pollution load and maintaining the balance and stability of the aquatic ecosystem. Simultaneously, the equipment removes harmful substances such as ammonia nitrogen, increases dissolved oxygen levels, and regulates pH, resulting in clearer water and a superior growth environment for aquatic organisms. These improvements not only enhance the growth rate and survival rate of aquatic organisms but also shorten the aquaculture cycle, thereby increasing overall production efficiency. Currently, existing dual-processing equipment for protein extraction and filtration requires connection to other equipment via pipelines and flange rings. Due to the influence of multiple factors such as temperature fluctuations, chemical corrosion, and physical stress in the working environment, the rubber material inside the flange ring gradually ages over time, reducing its elasticity and sealing performance, potentially leading to minor or even significant leaks. To avoid this, staff need to conduct regular leak detection. This process requires using specialized leak detection instruments to scan the flange connection and observe for signs of gas or liquid seepage. This operation is cumbersome, requires frequent interruptions to the production process, and the detection results are significantly affected by human factors, thus presenting certain limitations. Utility Model Content

[0003] Based on this, the purpose of this utility model is to provide a dual-processing device for protein extraction followed by filtration and separation, in order to solve the leakage problem caused by flange ring aging, as well as the technical problems of traditional leakage detection methods being cumbersome, affecting production efficiency, and having detection results greatly affected by human factors.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a dual-processing device for protein extraction followed by filtration and separation, comprising a processing device, wherein the processing device includes a filtration and separation tank and a pretreatment tank, and the ends of the water pipes on both sides of the filtration and separation tank and the pretreatment tank are connected to a water inlet device and a waste collection device via flange rings;

[0005] The flange ring is provided with a leak-proof component, which includes a first leak-proof element and a second leak-proof element. The first leak-proof element includes a first collar.

[0006] The outer side of the first collar is provided with external threads, and the lower part of the inner wall of the first collar is provided with leakage detection paper;

[0007] The second leak-proof component includes a second collar, the inner side of which is provided with an internal thread, and a color recognition sensor probe is passed through the back of the second collar, with the visual opening of the color recognition sensor probe aligned with the leak detection paper.

[0008] By adopting the above technical solution, and connecting the water inlet equipment and waste collection equipment through water pipes and flange rings, it helps users understand the overall layout and workflow of the equipment.

[0009] Furthermore, the first collar and the second collar are screwed together by external and internal threads.

[0010] By adopting the above technical solution, the tight connection between the first and second leak-proof components is ensured through the screw connection of external and internal threads, which enhances the leak-proof effect. At the same time, this design also facilitates the installation and disassembly of the leak-proof components.

[0011] Furthermore, the top of the first collar and the second collar are respectively provided with a first pipe opening and a second pipe opening.

[0012] By adopting the above technical solution, a pipe passage is opened at the top of the first and second rings, allowing the water pipe to easily pass through the leak-proof assembly and connect to the flange ring. This design simplifies the installation process and improves work efficiency.

[0013] Furthermore, the first and second pipe openings abut against the water pipe, and the first and second pipe openings facilitate the installation of the leak-proof components on the flange ring.

[0014] By adopting the above technical solution, the tight fit between the pipe inlet and the water pipe ensures the sealing of the connection and prevents liquid leakage. At the same time, this design also facilitates the installation and fixation of the leak-proof components on the flange ring.

[0015] Furthermore, a pretreatment tank is provided on one side of the filter separation tank, and the filter separation tank and the pretreatment tank are connected by a water pipe.

[0016] By adopting the above technical solution, the filtration and separation tank and the pretreatment tank are connected by a water pipe, realizing the liquid transfer between the two tanks. This design enables the equipment to complete the two steps of filtration and pretreatment after protein extraction, thus improving the processing efficiency.

[0017] Furthermore, a support is provided on the outside of the filtration separation tank and the pretreatment tank, and the support is connected to the ground by bolts. A drain pipe is provided at the bottom of the filtration separation tank.

[0018] By adopting the above technical solution, the support frame provides stable support for the filtration and separation tank and the pretreatment tank, ensuring the stable operation of the equipment. The drain pipe facilitates the discharge of the treated liquid from the equipment, maintaining its cleanliness and hygiene.

[0019] Furthermore, the leak-proof component is made of engineering plastic and has a transparent structure.

[0020] By adopting the above technical solution, the engineering plastic material possesses excellent corrosion resistance and mechanical strength, enabling it to resist the erosion of chemicals that may be encountered during protein extraction. The transparent structure facilitates observation of the internal condition of the leak-proof component, allowing for timely detection and handling of leaks. Furthermore, the transparent structure makes cleaning and maintenance of the leak-proof component easier.

[0021] In summary, the present invention has the following main advantages:

[0022] 1. This utility model, by setting up a leak-proof component, including a first leak-proof element and a second leak-proof element, achieves real-time, non-destructive intelligent monitoring of the flange ring connection. The first ring is tightly connected to the second ring via external threads, ensuring the stability and sealing of the leak-proof component. Leakage detection paper is placed below the inner wall of the first ring. Once water seeps out, it will immediately wet the detection paper and change its color, providing an intuitive visual indication of the leak. The second leak-proof element includes a second ring and a color recognition sensor probe. The second ring is connected to the first ring via threads, forming a complete leak-proof structure. The color recognition sensor probe is the intelligent core of the leak-proof component, which can monitor the color change of the leakage detection paper in real time and immediately trigger an alarm when a color change is detected, realizing automated monitoring. Moreover, the design of the first and second pipe outlets allows the leak-proof component to be easily installed on the water pipe without complex modifications to the original pipeline, improving the convenience and compatibility of installation. It has significant advantages such as easy installation and maintenance and no need for frequent manual inspection, providing reliable leak protection for the dual processing equipment of protein extraction filtration and separation.

[0023] 2. This utility model incorporates a first leak-proof component and a second leak-proof component. Since both components are made of engineering plastics, which are high-performance materials with excellent corrosion resistance, they can withstand the erosion of various chemical media encountered during protein extraction, such as acids, alkalis, and organic solvents. Furthermore, engineering plastics possess good mechanical strength and wear resistance, ensuring the stability and durability of the leak-proof component during long-term use. The transparent design of the leak-proof component allows workers to directly inspect the leak detection paper. Once water seeps out and wets the leak detection paper, its color change will be immediately detected, providing a clear visual indication of the leak. This design not only simplifies the leak detection process but also improves the accuracy and timeliness of the detection. Attached Figure Description

[0024] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0025] Figure 2 This is a partial three-dimensional structural diagram of the first leak-proof component of this utility model;

[0026] Figure 3 This is a partial three-dimensional structural diagram of the second leak-proof component of this utility model;

[0027] Figure 4 This utility model Figure 1 Enlarged structural diagram at point A in the middle.

[0028] In the diagram: 1. Processing equipment; 101. Filtration and separation tank; 102. Pretreatment tank; 103. Water pipe; 104. Support; 105. Drain pipe; 106. Flange ring; 2. Leak-proof assembly; 201. First leak-proof component; 2011. First collar; 2012. External thread; 2013. Leak detection paper; 2014. First pipe opening; 202. Second leak-proof component; 2021. Second collar; 2022. Internal thread; 2023. Color recognition sensor probe; 2024. Second pipe opening. Detailed Implementation

[0029] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.

[0030] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0031] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation", "connection", "linking", and "setting" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium; and they can refer to the internal connection of two components. For those skilled in the art, the specific meaning of the above terms in this utility model can be understood according to the specific circumstances.

[0032] The embodiments of this utility model will be described below based on its overall structure.

[0033] Example 1:

[0034] Protein extraction followed by filtration and separation dual processing equipment, such as... Figures 1-4 As shown, the device includes a processing unit 1, which comprises a filtration and separation tank 101 and a pretreatment tank 102. Water pipes 103 on both sides of the filtration and separation tank 101 and the pretreatment tank 102 are connected to an inlet device and a waste collection device via flange rings 106. A leak-proof assembly 2 is provided on the flange ring 106, comprising a first leak-proof component 201 and a second leak-proof component 202. The first leak-proof component 201 includes a first collar 2011; the outer side of the first collar 2011 is provided with an external thread 2012. A leak detection paper 2013 is installed on the lower inner wall of component 011; the second leak-proof component 202 includes a second collar 2021, with an internal thread 2022 on its inner side, and a color recognition sensor probe 2023 penetrating its back. The visual port of the color recognition sensor probe 2023 is aligned with the leak detection paper 2013. It is tightly connected to the water inlet equipment and waste collection equipment via a water pipe 103 and a flange ring 106, forming a complete and efficient protein extraction post-processing system. This design not only optimizes the processing flow but also improves the overall processing capacity and efficiency of the equipment.

[0035] See Figure 1 , Figure 2 , Figure 3 , Figure 4 The first collar 2011 and the second collar 2021 are screwed together via external threads 2012 and internal threads 2022. This design not only enhances the structural strength of the leak-proof assembly but also ensures its sealing performance. Furthermore, the screw connection facilitates quick installation and removal of the leak-proof assembly, which is beneficial for equipment maintenance and repair.

[0036] See Figure 1 , Figure 2 , Figure 3 , Figure 4 The top of the first ring 2011 and the second ring 2021 are respectively provided with a first pipe outlet 2014 and a second pipe outlet 2024. The first pipe outlet 2014 and the second pipe outlet 2024 on the top of the first ring 2011 and the second ring 2021 facilitate the passage of the water pipe 103. This design not only simplifies the installation process of the equipment, but also reduces the risk of leakage caused by improper installation of the water pipe.

[0037] See Figure 1 , Figure 2 , Figure 3 , Figure 4 The first pipe port 2014 and the second pipe port 2024 abut against the water pipe 103, and facilitate the installation of the leak-proof component 2 on the flange ring 106. The tight abutment between the first pipe port 2014 and the second pipe port 2024 and the water pipe 103 ensures the stability and sealing of the connection. This design effectively prevents liquid leakage and improves the reliability and safety of the equipment. At the same time, it also facilitates the accurate installation and positioning of the leak-proof component 2 on the flange ring 106.

[0038] See Figure 1 , Figure 2 , Figure 3 , Figure 4 A pretreatment tank 102 is located on one side of the filtration separation tank 101. The filtration separation tank 101 and the pretreatment tank 102 are connected by a water pipe 103, and the filtration separation tank 101 and the pretreatment tank 102 are directly connected by a water pipe 103. This design enables smooth liquid transfer between the two tanks. It not only simplifies the structure of the equipment but also improves the processing efficiency, allowing the filtration and pretreatment processes after protein extraction to be carried out continuously and efficiently.

[0039] Example 2:

[0040] See Figure 1 , Figure 2 , Figure 3 , Figure 4A support frame 104 is installed on the outside of the filtration separation tank 101 and the pretreatment tank 102. The support frame 104 is connected to the ground by bolts. A drain pipe 105 is installed at the bottom of the filtration separation tank 101. The support frame 104 provides stable support for the filtration separation tank 101 and the pretreatment tank 102, ensuring the smooth operation of the equipment. At the same time, the drain pipe 105 facilitates the timely discharge of treated liquid from the equipment, keeping the equipment clean and hygienic. This design not only improves the stability of the equipment but also extends its service life.

[0041] See Figure 1 , Figure 2 , Figure 3 , Figure 4 The leak-proof component 2 is made of engineering plastic and has a transparent structure. Made of engineering plastic, it possesses excellent corrosion resistance and mechanical strength, enabling it to resist the erosion of chemicals that may be encountered during protein extraction. Simultaneously, its transparent design allows operators to visually observe the internal condition of the leak-proof component, enabling timely detection and handling of potential leaks. This design not only improves the durability of the equipment but also enhances its operability and safety.

[0042] The implementation principle of this utility model is as follows: First, the first ring 2011 and the second ring 2021 of the leak-proof component 2 are screwed together by the external thread 2012 and the internal thread 2022 to form a complete leak-proof structure. The leak-proof component is installed on the flange ring 106 to ensure that the first pipe port 2014 and the second pipe port 2024 abut against and are fastened to the water pipe 103 to ensure the sealing of the connection.

[0043] After installation, check that all parts of the leak-proof assembly are securely installed without any looseness or leakage. Ensure that the leak detection paper 2013 is dry and intact, and that the visual port of the color recognition sensor probe 2023 is clear and unobstructed. Start the dual processing equipment for filtration and separation after protein extraction, so that the filtration separation tank 101 and the pretreatment tank 102 start working. Observe the water flow in the water pipe 103 to ensure that the water flow is smooth and unobstructed.

[0044] The color recognition sensor probe 2023 will monitor the color change of the leak detection paper 2013 in real time. Once the leak detection paper is wetted by water and changes color, the color recognition sensor probe will immediately detect this change and trigger an alarm.

[0045] All parts not covered in this utility model are the same as or can be implemented using existing technologies, and will not be described in detail here.

[0046] Although embodiments of the present invention have been shown and described, these specific embodiments are merely explanations of the present invention and are not intended to limit the invention. The specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. After reading this specification, those skilled in the art may make modifications, substitutions, and variations to the embodiments as needed without departing from the principles and spirit of the present invention, provided that such modifications, substitutions, and variations are within the scope of the claims of the present invention and are protected by patent law.

Claims

1. Double treatment device for the filtration separation after the extraction of proteins, characterized by the fact that it comprises: Including processing equipment (1), the processing equipment (1) includes filter separation tank (101), pretreatment tank (102), both sides of filter separation tank (101) and pretreatment tank (102) water pipe (103) end is connected with water inlet equipment and waste collection equipment through flange ring (106); The flange ring (106) is provided with a leakage prevention assembly (2), the leakage prevention assembly (2) includes a first leakage prevention piece (201) and a second leakage prevention piece (202), the first leakage prevention piece (201) includes a first collar (2011); The outer side of the first collar (2011) is provided with an external thread (2012), and the inner wall of the first collar (2011) is provided with a water leakage detection paper (2013) below; The second leakage prevention piece (202) includes a second collar (2021), the inner side of the second collar (2021) is provided with an internal thread (2022), the back of the second collar (2021) is penetrated by a color recognition sensor probe (2023), and the visual port of the color recognition sensor probe (2023) is opposite to the water leakage detection paper (2013).

2. The double treatment apparatus for filtering and separating proteins after extraction according to claim 1, characterized in that: The first collar (2011) and the second collar (2021) are screwed by the external thread (2012) and the internal thread (2022).

3. The double treatment apparatus for filtering and separating proteins after extraction according to claim 1, characterized in that: The top of the first collar (2011) and the second collar (2021) is respectively provided with a first pipe port (2014) and a second pipe port (2024).

4. The double treatment apparatus for filtering and separating proteins after extraction according to claim 3, characterized in that: The first pipe port (2014) and the second pipe port (2024) abut with the water pipe (103), and the first pipe port (2014) and the second pipe port (2024) facilitate the installation of the leakage prevention assembly (2) on the flange ring (106).

5. The double treatment apparatus for filtering and separating proteins after extraction according to claim 1, characterized in that: One side of the filter separation tank (101) is provided with a pretreatment tank (102), and the filter separation tank (101) and the pretreatment tank (102) are connected through a water pipe (103).

6. The double treatment apparatus for filtering and separating proteins after extraction according to claim 1, characterized in that: The outer side of the filter separation tank (101) and the pretreatment tank (102) is provided with a support (104).

7. The double treatment device for filtering separation after protein extraction according to claim 6, characterized in that: The support (104) is connected with the ground through bolts, and the bottom of the filter separation tank (101) is provided with a drain pipe (105).

8. The double treatment apparatus for filtering and separating proteins after extraction according to claim 1, characterized in that: The material of the leakage prevention assembly (2) is engineering plastic, and the leakage prevention assembly (2) is provided in a transparent structure.