An electrolytic channel assembly and electrolytic channel device

By adopting a serpentine path arrangement of electrolytic tubes and arc tubes in the electrolysis channel assembly, the problem of low space utilization of the electrolysis channel assembly is solved, and more efficient space utilization and electrolysis efficiency are achieved.

CN224325422UActive Publication Date: 2026-06-05北斗航天环保科技(宁波)有限公司

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
北斗航天环保科技(宁波)有限公司
Filing Date
2025-09-16
Publication Date
2026-06-05

Smart Images

  • Figure CN224325422U_ABST
    Figure CN224325422U_ABST
Patent Text Reader

Abstract

The application provides an electrolysis channel assembly and an electrolysis channel device. The electrolysis channel assembly comprises a plurality of electrolysis tubes, corresponding arc-shaped tubes and an input tube. The plurality of electrolysis tubes are arranged along a serpentine path in sequence, and the input tube is connected to an electrolysis tube. An electrolysis component is arranged in the electrolysis tube, and the electrolysis component is used for electrolyzing a liquid to be electrolyzed. The arc-shaped tube is arranged between two adjacent electrolysis tubes. The arc-shaped tube is provided with a first connecting end and a second connecting end. The second connecting end is located above the first connecting end. The first connecting end is close to the bottom of one of the two adjacent electrolysis tubes. The second connecting end is close to the bottom of the other of the two adjacent electrolysis tubes, so as to realize multiple electrolysis. The arc-shaped tube can accommodate more space by using the space between the two adjacent electrolysis tubes. Meanwhile, the gap between the two electrolysis tubes is compressed. The arc-shaped tube fully utilizes the gap between the two electrolysis tubes, and the space utilization of the electrolysis channel assembly is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the technical field of electrolysis channel devices, and in particular to an electrolysis channel assembly and an electrolysis channel device. Background Technology

[0002] With the development of technology, electrolysis channel assemblies are applied in industry. These assemblies power the flow of the liquid to be electrolyzed and perform the electrolysis process. They are part of an electrolysis channel device. In existing technology, conventional electrolysis channel assemblies include multiple electrolysis tubes, corresponding horizontal tubes, and an input tube. The horizontal tubes connect two adjacent electrolysis tubes, and the input tube connects to one electrolysis tube. However, the horizontal tubes have limited space; if more space is needed, the length of the horizontal tubes must be increased, resulting in low space utilization of existing electrolysis channel assemblies. Utility Model Content

[0003] The purpose of this invention is to provide an electrolysis channel assembly and an electrolysis channel device. The electrolysis channel assembly includes multiple electrolysis tubes, corresponding arc-shaped tubes, and an input tube. The multiple electrolysis tubes are arranged sequentially along a serpentine path. The input tube connects to one electrolysis tube and is located near the top of the electrolysis tube. Each electrolysis tube contains an electrolytic element for electrolyzing the liquid to be electrolyzed. The arc-shaped tube is arranged between two adjacent electrolysis tubes and connects the two adjacent electrolysis tubes. The arc-shaped tube has a first connecting end and a second connecting end. The second connecting end is located above the first connecting end. The first connecting end is close to the bottom of one of the two adjacent electrolysis tubes, and the second connecting end is close to the bottom of the other of the two adjacent electrolysis tubes, so as to achieve multiple electrolysis points. By utilizing the space between two adjacent electrolysis tubes, the arc-shaped tube can accommodate more space and compress the gap between the two electrolysis tubes. The arc-shaped tube makes full use of the gap between the two electrolysis tubes, thereby improving the space utilization rate of the electrolysis channel assembly.

[0004] To achieve the above objectives, the present invention provides the following technical solution: an electrolysis channel assembly, applied to an electrolysis channel device, the electrolysis channel assembly comprising multiple electrolysis tubes, corresponding arc-shaped tubes, and input tubes;

[0005] Multiple electrolysis tubes are arranged sequentially along a serpentine path, and the input tube is connected to one of the electrolysis tubes and is close to the top of the electrolysis tube; the electrolysis tube has an internal electrolytic element for electrolyzing the liquid to be electrolyzed;

[0006] The arc-shaped tube is arranged between two adjacent electrolytic tubes and connects the two adjacent electrolytic tubes; the arc-shaped tube has a first docking end and a second docking end, the second docking end is located above the first docking end, the first docking end is close to the bottom of one of the two adjacent electrolytic tubes, and the second docking end is close to the bottom of the other of the two adjacent electrolytic tubes.

[0007] Optionally, the arc-shaped tube is arranged in an arc shape along the upward direction;

[0008] The arc-shaped tube includes a first sub-arc tube and a second sub-arc tube, the first sub-arc tube and the second sub-arc tube are connected, and the end of the first sub-arc tube that is connected to one of the two adjacent electrolytic tubes is used as the first docking end;

[0009] The end of the second sub-circular arc tube that is connected to the other of the two adjacent electrolytic tubes serves as the second docking end.

[0010] Optionally, the first sub-arc tube and the second sub-arc tube are connected in a sealed manner and in a connected state;

[0011] The first sub-arc tube is integrated into one of two adjacent electrolytic tubes;

[0012] The second sub-circular arc tube is integrated into another of the two adjacent electrolytic tubes.

[0013] Optionally, the connection between the first sub-arc tube and the second sub-arc tube is used as the midpoint of the arc tube; the arc tube is an S-tube in an inclined state.

[0014] Optionally, the input tube is arranged horizontally and connected to an electrolytic tube along the horizontal direction; multiple electrolytic tubes are arranged sequentially along a serpentine path, and two adjacent electrolytic tubes are connected through the arc-shaped tube, so that the input tube, multiple electrolytic tubes and the arc-shaped tube form a corresponding electrolytic channel;

[0015] Each of the electrolytic tubes is equipped with a corresponding electrolytic element.

[0016] Optionally, the electrolytic tube is arranged in a vertical direction;

[0017] The electrolysis tube is provided with an inner cavity, which receives the liquid to be electrolyzed input through the arc-shaped tube;

[0018] The electrolytic element is inserted into the electrolytic tube along the vertical direction. The electrolytic part of the electrolytic element is located in the inner cavity and is arranged along the vertical direction to electrolyze the liquid to be electrolyzed at different heights.

[0019] Optionally, the liquid to be electrolyzed is sequentially transported along the electrolysis channel and electrolyzed at multiple points in the electrolysis unit connected to each of the electrolysis tubes.

[0020] Optionally, the electrolytic tube is connected to a cover, which is detachably connected to the electrolytic tube and located at the top of the electrolytic tube;

[0021] The cover supports the corresponding electrolytic element.

[0022] Optionally, the electrolytic element is provided with a mounting portion that is detachably mounted to the cover.

[0023] To achieve the above objectives, the present invention provides the following technical solution: an electrolysis channel device, comprising the aforementioned electrolysis channel assembly.

[0024] Compared with the prior art, the beneficial effects of this utility model are:

[0025] This invention provides an electrolysis channel assembly and an electrolysis channel device. The electrolysis channel assembly includes multiple electrolysis tubes, corresponding arc-shaped tubes, and an input tube. The multiple electrolysis tubes are arranged sequentially along a serpentine path. The input tube connects to one electrolysis tube and is located near the top of the electrolysis tube. Each electrolysis tube contains an electrolytic element for electrolyzing the liquid to be electrolyzed. The arc-shaped tube is arranged between two adjacent electrolysis tubes and connects the two adjacent electrolysis tubes. The arc-shaped tube has a first connecting end and a second connecting end. The second connecting end is located above the first connecting end. The first connecting end is close to the bottom of one of the two adjacent electrolysis tubes, and the second connecting end is close to the bottom of the other of the two adjacent electrolysis tubes, so as to achieve multiple electrolysis points. By utilizing the space between two adjacent electrolysis tubes, the arc-shaped tube can accommodate more space and compress the gap between the two electrolysis tubes. The arc-shaped tube makes full use of the gap between the two electrolysis tubes, improving the space utilization rate of the electrolysis channel assembly. Attached Figure Description

[0026] To gain a more complete understanding of this application and its beneficial effects, the following description will be provided in conjunction with the accompanying drawings. In the following description, the same reference numerals denote the same parts.

[0027] Figure 1 A schematic diagram of an electrolysis channel assembly according to an embodiment of this application is shown.

[0028] Figure 2 A cross-sectional view of the connection of the electrolytic tube of an electrolytic channel assembly according to an embodiment of this application is shown.

[0029] Figure 3 A front view of an electrolysis channel assembly according to an embodiment of this application is shown.

[0030] Figure 4 A top view of an electrolysis channel assembly according to an embodiment of this application is shown.

[0031] Figure 5 A front view of the arcuate tube of an electrolytic channel assembly according to an embodiment of this application is shown. Attached Figure

[0032] 100. Electrolysis channel assembly;

[0033] 10. Electrolysis tube; 10a. Inner cavity; 11. Electrolysis component; 111. Mounting part; 12. Cover;

[0034] 20. Arc-shaped tube; 21. First mating end; 22. Second mating end; 23. First sub-arc tube; 24. Second sub-arc tube;

[0035] 30. Input tube. Detailed Implementation

[0036] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.

[0037] Please refer to the attached document. Figures 1-5 This application provides an electrolysis channel assembly 100, which is applied to an electrolysis channel device. The electrolysis channel assembly 100 is used to supply the flow of liquid to be electrolyzed and to perform electrolysis on the liquid to be electrolyzed.

[0038] Please refer to the attached document. Figures 1-5In this embodiment, the electrolysis channel assembly 100 includes multiple electrolysis tubes 10, corresponding arc-shaped tubes 20, and input tubes 30. The multiple electrolysis tubes 10 are arranged sequentially along a serpentine path. The input tube 30 connects to one electrolysis tube 10 and is located near the top of the electrolysis tube 10. Each electrolysis tube 10 has an internal electrolytic element 11 for electrolyzing the liquid to be electrolyzed. The arc-shaped tube 20 is arranged between two adjacent electrolysis tubes 10 and connects to them. The arc-shaped tube 20 is provided with a first pair of... The first docking end 21 and the second docking end 22 are located above the first docking end 21. The first docking end 21 is close to the bottom of one of the two adjacent electrolytic tubes 10, and the second docking end 22 is close to the bottom of the other of the two adjacent electrolytic tubes 10, so as to realize multiple electrolysis. The arc tube 20 utilizes the space between the two adjacent electrolytic tubes 10, and the arc tube 20 can accommodate more space while compressing the gap between the two electrolytic tubes 10. The arc tube 20 makes full use of the gap between the two electrolytic tubes 10, thereby improving the space utilization rate of the electrolysis channel assembly 100.

[0039] Please refer to the attached document. Figures 1-5 In this embodiment, the electrolysis channel assembly 100 includes multiple electrolysis tubes 10, corresponding arc-shaped tubes 20, and input tubes 30. The multiple electrolysis tubes 10 are arranged sequentially along a serpentine path. The input tube 30 is connected to an electrolysis tube 10 and is close to the top of the electrolysis tube 10 so that the liquid to be electrolyzed can flow to the electrolysis tube 10 through the input tube 30. The electrolysis tube 10 has an electrolysis element 11 built in it, which is used to electrolyze the liquid to be electrolyzed, so as to realize the electrolysis of the liquid to be electrolyzed.

[0040] An arc-shaped tube 20 is arranged between two adjacent electrolytic tubes 10 and connects the two adjacent electrolytic tubes 10. The arc-shaped tube 20 is provided with a first docking end 21 and a second docking end 22. The second docking end 22 is located above the first docking end 21. The first docking end 21 is close to the bottom of one of the two adjacent electrolytic tubes 10, and the second docking end 22 is close to the bottom of the other of the two adjacent electrolytic tubes 10, so as to realize multiple electrolysis. By utilizing the space between the two adjacent electrolytic tubes 10, the arc-shaped tube 20 can accommodate more space and compress the gap between the two electrolytic tubes 10. The arc-shaped tube 20 makes full use of the gap between the two electrolytic tubes 10, thereby improving the space utilization rate of the electrolysis channel assembly 100.

[0041] In this embodiment, the arc-shaped tube 20 is arranged in an arc shape along the upward direction. The arc-shaped tube 20 includes a first sub-arc tube 23 and a second sub-arc tube 24, which are connected. The end of the first sub-arc tube 23 that is connected to one of the two adjacent electrolytic tubes 10 serves as the first docking end 21. The end of the second sub-arc tube 24 that is connected to the other of the two adjacent electrolytic tubes 10 serves as the second docking end 22. This allows the arc-shaped tube 20 to be connected to the two adjacent electrolytic tubes 10 through the first sub-arc tube 23 and the second sub-arc tube 24, thereby facilitating the use of the space between the two adjacent electrolytic tubes 10. The arc-shaped tube 20 can accommodate more space while compressing the gap between the two electrolytic tubes 10. The arc-shaped tube 20 fully utilizes the gap between the two electrolytic tubes 10, improving the space utilization rate of the electrolysis channel assembly 100.

[0042] Please refer to the attached document. Figures 1-5 In this embodiment, the first sub-arc tube 23 and the second sub-arc tube 24 are connected in a sealed manner and in a continuous state; this ensures the sealing effect at the connection between the first sub-arc tube 23 and the second sub-arc tube 24, preventing leakage of the liquid to be electrolyzed at the connection between the first sub-arc tube 23 and the second sub-arc tube 24. The first sub-arc tube 23 is integrated into one of two adjacent electrolysis tubes 10; the second sub-arc tube 24 is integrated into the other of two adjacent electrolysis tubes 10, so as to achieve interconnection between the two adjacent electrolysis tubes 10.

[0043] Please refer to the attached document. Figures 1-5 In this embodiment of the application, the connection between the first sub-arc tube 23 and the second sub-arc tube 24 serves as the midpoint of the arc tube 20; the arc tube 20 is an inclined S-tube, which can accommodate more space and compress the gap between the two electrolytic tubes 10. The arc tube 20 makes full use of the gap between the two electrolytic tubes 10, thereby improving the space utilization rate of the electrolytic channel assembly 100.

[0044] Please refer to the attached document. Figures 1-4 In this embodiment, the input pipe 30 is horizontally arranged and connected to an electrolysis pipe 10 in the horizontal direction, so that the liquid to be electrolyzed can flow horizontally through the input pipe 30 to the electrolysis pipe 10. Multiple electrolysis pipes 10 are arranged sequentially along a serpentine path, with adjacent electrolysis pipes 10 connected by arc-shaped pipes 20, so that the input pipe 30, the multiple electrolysis pipes 10, and the arc-shaped pipes 20 form corresponding electrolysis channels, allowing the liquid to be electrolyzed in one electrolysis pipe 10 to flow through each arc-shaped pipe 20 to the remaining electrolysis pipes 10. Each electrolysis pipe 10 is equipped with a corresponding electrolysis element 11 to achieve multiple electrolysis points.

[0045] Please refer to the attached document. Figures 1-2In this embodiment, the electrolysis tube 10 is arranged vertically to allow the liquid to be electrolyzed to automatically flow into the arc-shaped tube 20 when it reaches the position of the arc-shaped tube 20. The electrolysis tube 10 has an inner cavity 10a, which receives the liquid to be electrolyzed input through the arc-shaped tube to accommodate the liquid. The electrolytic element 11 is inserted into the electrolysis tube 10 vertically, with its electrolytic portion located within the inner cavity 10a and arranged vertically to electrolyze the liquid at different heights, ensuring the electrolysis effect of the liquid.

[0046] Please refer to the attached document. Figures 1-2 In this embodiment, the liquid to be electrolyzed is sequentially transported along the electrolysis channel and electrolyzed at multiple points in the electrolysis unit 11 connected to each electrolysis tube 10, thereby improving the electrolysis efficiency of the electrolysis channel assembly 100 for the liquid to be electrolyzed.

[0047] Please refer to the attached document. Figures 1-4 In this embodiment, the electrolytic tube 10 is connected to a cover 12, which is detachably connected to the electrolytic tube 10 and located at the top of the electrolytic tube 10. This allows the cover 12 to be connected to or detached from the electrolytic tube 10. When the cover 12 is connected to the electrolytic tube 10, it supports the corresponding electrolytic component 11, ensuring that the electrolytic component 11 remains vertical. When the cover 12 is detached from the electrolytic tube 10, it facilitates the loading and unloading of the electrolytic component 11.

[0048] Please refer to the attached document. Figures 1-4 In this embodiment of the application, the electrolytic element 11 is provided with a mounting part 111, which is detachably mounted on the cover 12 so that the electrolytic element 11 can be detachably connected to the cover 12 through the mounting part 111, thereby facilitating the connection or disconnection of the electrolytic element 11 from the cover 12.

[0049] In a second embodiment of the application, an electrolysis channel device includes an electrolysis channel assembly 100, which is part of the electrolysis channel device used to electrolyze a liquid to be electrolyzed.

[0050] Compared with the prior art, the beneficial effects of this utility model are:

[0051] This invention provides an electrolysis channel assembly 100 and an electrolysis channel device. The electrolysis channel assembly 100 includes multiple electrolysis tubes 10, corresponding arc-shaped tubes 20, and input tubes 30. The multiple electrolysis tubes 10 are arranged sequentially along a serpentine path. The input tube 30 is connected to an electrolysis tube 10 and is located near the top of the electrolysis tube 10. Each electrolysis tube 10 has an electrolytic element 11 built in it, which is used to electrolyze the liquid to be electrolyzed. The arc-shaped tube 20 is arranged between two adjacent electrolysis tubes 10 and connects the two adjacent electrolysis tubes 10. The arc-shaped tube 20 is provided with a first docking end 21 and a second docking end. End 22, the second docking end 22 is located above the first docking end 21. The first docking end 21 is close to the bottom of one of the two adjacent electrolytic tubes 10, and the second docking end 22 is close to the bottom of the other of the two adjacent electrolytic tubes 10, so as to realize multiple electrolysis. The arc tube 20 utilizes the space between the two adjacent electrolytic tubes 10. The arc tube 20 can accommodate more space and compress the gap between the two electrolytic tubes 10. The arc tube 20 makes full use of the gap between the two electrolytic tubes 10, thereby improving the space utilization rate of the electrolysis channel assembly 100.

[0052] In the above embodiments, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the relevant descriptions in other embodiments.

[0053] In the description of this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more features.

Claims

1. An electrolysis channel assembly, characterized in that, Applied to an electrolysis channel device, the electrolysis channel assembly includes multiple electrolysis tubes, corresponding arc-shaped tubes, and input tubes; Multiple electrolytic tubes are arranged sequentially along a serpentine path, and the input tube is connected to one of the electrolytic tubes and is located near the top of the electrolytic tube; The electrolysis tube contains an electrolysis element, which is used to electrolyze the liquid to be electrolyzed; The arc-shaped tube is arranged between two adjacent electrolytic tubes and connects the two adjacent electrolytic tubes; the arc-shaped tube has a first docking end and a second docking end, the second docking end is located above the first docking end, the first docking end is close to the bottom of one of the two adjacent electrolytic tubes, and the second docking end is close to the bottom of the other of the two adjacent electrolytic tubes.

2. The electrolysis channel assembly according to claim 1, characterized in that, The arc-shaped tube is arranged in an arc shape along the upward direction; The arc-shaped tube includes a first sub-arc tube and a second sub-arc tube, the first sub-arc tube and the second sub-arc tube are connected, and the end of the first sub-arc tube that is connected to one of the two adjacent electrolytic tubes is used as the first docking end; The end of the second sub-circular arc tube that is connected to the other of the two adjacent electrolytic tubes serves as the second docking end.

3. The electrolysis channel assembly according to claim 2, characterized in that, The first sub-arc tube and the second sub-arc tube are connected in a sealed manner and are in a connected state; The first sub-arc tube is integrated into one of two adjacent electrolytic tubes; The second sub-circular arc tube is integrated into another of the two adjacent electrolytic tubes.

4. The electrolysis channel assembly according to claim 3, characterized in that, The connection between the first sub-arc tube and the second sub-arc tube serves as the midpoint of the arc tube; the arc tube is an S-tube in an inclined state.

5. The electrolysis channel assembly according to claim 1, characterized in that, The input tube is arranged horizontally and connected to an electrolytic tube along the horizontal direction; multiple electrolytic tubes are arranged sequentially along a serpentine path, and two adjacent electrolytic tubes are connected through the arc-shaped tube, so that the input tube, multiple electrolytic tubes and the arc-shaped tube form a corresponding electrolytic channel; Each of the electrolytic tubes is equipped with a corresponding electrolytic element.

6. The electrolysis channel assembly according to claim 5, characterized in that, The electrolysis tubes are arranged vertically. The electrolysis tube is provided with an inner cavity, which receives the liquid to be electrolyzed input through the arc-shaped tube; The electrolytic element is inserted into the electrolytic tube along the vertical direction. The electrolytic part of the electrolytic element is located in the inner cavity and is arranged along the vertical direction to electrolyze the liquid to be electrolyzed at different heights.

7. The electrolysis channel assembly according to claim 5, characterized in that, The liquid to be electrolyzed is sequentially transported along the electrolysis channel and electrolyzed at multiple points in the electrolysis unit connected to each of the electrolysis tubes.

8. The electrolysis channel assembly according to claim 1, characterized in that, The electrolytic tube is connected to a cover, which is detachably connected to the electrolytic tube and located at the top of the electrolytic tube; The cover supports the corresponding electrolytic element.

9. The electrolysis channel assembly according to claim 8, characterized in that, The electrolytic element is provided with a mounting part, which is detachably mounted to the cover.

10. An electrolysis channel device, characterized in that, Includes the electrolysis channel assembly as described in any one of claims 1 to 9.