Hydroxyl food purification equipment

The hydroxyl food purification equipment, with its modular structure and suspended immersion installation, solves the problems of low efficiency and inconvenient maintenance of existing hydroxyl generators on large-scale food production lines, achieving flexible setup and efficient purification.

CN224268228UActive Publication Date: 2026-05-26CHINA NAT FOOD PURIFICATION TECH BEIJING CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHINA NAT FOOD PURIFICATION TECH BEIJING CO LTD
Filing Date
2024-06-26
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing hydroxyl generators are inefficient on large-scale food production lines, and their fixed structure makes maintenance inconvenient and cannot be flexibly adjusted to meet market demands.

Method used

The hydroxyl food purification equipment adopts a modular structure. Through the assembled connection between the purification device and the food purification tank, combined with the hoisting and immersion installation method, it realizes the flexible setting of the hydroxyl generator and efficient purification.

Benefits of technology

It enables flexible settings according to production needs, improves purification efficiency and effectiveness, facilitates equipment maintenance, is highly adaptable, and is suitable for large-scale food production lines.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224268228U_ABST
    Figure CN224268228U_ABST
Patent Text Reader

Abstract

The utility model discloses hydroxyl food purification equipment which comprises a purification device and a food purification tank, the purification device is connected with the food purification tank in an assembly mode, the purification device comprises a hydroxyl generator, a mounting seat and an assembly frame, the hydroxyl generator is arranged on the mounting seat and located in the food purification tank, the mounting seat is arranged in the assembly frame, and the assembly frame is arranged on the mounting seat. And the assembly frame is positioned above the food purification tank. By adopting a modular structure, the device can be flexibly arranged at any position of a production line according to production requirements, the purification requirements in different modes are met, and a plurality of purification procedures can be set for multi-stage and multi-time purification, so that the purification effect is ensured; the hydroxyl generator is installed in a hoisting immersion mode, normal use and operation of existing equipment are not affected, the application range is wide, installation is achieved through a cage type structure, the contact area of the purifier and cleaning water is increased, the hydroxyl generating efficiency and the purifying effect are improved, and meanwhile equipment maintenance is facilitated.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of food production purification technology, specifically to a hydroxyl food purification device. Background Technology

[0002] Existing hydroxyl-based generators are mostly used in small food purification machines, such as the physical purification machine disclosed in CN213153834U, whose principle is to achieve physical purification through a hydroxyl generator. Although hydroxyl generators are commonly used for food cleaning, they are mostly used in small household devices. When applied to large-scale food production lines, existing hydroxyl generators suffer from low hydroxyl generation efficiency and incompatibility with the production line. Furthermore, most hydroxyl purifiers adopt a permanent structure, fixed inside the production line equipment, which leads to inconvenient maintenance. Additionally, they cannot be flexibly adjusted to meet market demands, making adaptation and modification difficult. This utility model provides a hydroxyl-based food purification device to solve the above problems. Utility Model Content

[0003] This invention provides a hydroxyl food purification device with a modular structure, which can be flexibly set according to production needs, and has high purification efficiency and good effect.

[0004] The technical solution adopted by this utility model to solve the above-mentioned technical problems is:

[0005] A hydroxyl food purification device includes a purification unit and a food purification tank. The purification unit is assembled with the food purification tank. The purification unit includes a hydroxyl generator, a mounting base, and an assembly frame. The hydroxyl generator is mounted on the mounting base and located in the food purification tank. The mounting base is located in the assembly frame, and the assembly frame is located above the food purification tank.

[0006] The mounting base includes a fixed base frame, a horizontal adjustment seat, and a lifting seat. The fixed base frame is fixedly installed in the assembly frame, the horizontal adjustment seat is installed on the fixed base frame, the lifting seat is installed on the horizontal adjustment seat, and the hydroxyl generator is installed at the bottom end of the lifting seat.

[0007] Furthermore, the hydroxyl generator includes an electrode assembly and a mounting cage, wherein the electrode assembly is disposed in the mounting cage and the mounting cage is disposed on a lifting base.

[0008] Furthermore, the electrode assembly includes conductive pillars, electrode plates, and conductive plates. The conductive pillars are vertically arranged in the mounting cage, the conductive plates are connected to the conductive pillars, the electrode plates are spaced apart on the conductive plates, the conductive pillars are electrically connected to the conductive plates, the conductive plates are electrically connected to the electrode plates, and both the electrode plates and the conductive plates are arranged in the mounting cage.

[0009] Furthermore, the conductive pillars, electrodes, and conductive plates are all arranged in pairs, divided into anode and cathode types; the cathode conductive pillars are electrically connected to the cathode conductive plates, and the cathode electrodes are spaced apart on the cathode conductive plates and electrically connected to the cathode conductive plates; the anode conductive pillars are electrically connected to the anode conductive plates, and the anode electrodes are spaced apart on the anode conductive plates and electrically connected to the anode conductive plates.

[0010] The cathode conductive column and the anode conductive column are arranged side by side, the cathode conductive plate and the anode conductive plate are arranged opposite each other, the cathode sheet and the anode sheet are arranged alternately and parallel to each other, the cathode sheet does not contact the anode conductive plate, and the anode sheet does not contact the cathode conductive plate.

[0011] Furthermore, the mounting cage includes a hanger and a cage, the hanger is fixedly connected to the lifting seat, the cage is located at the bottom of the hanger, and the electrode assembly is located in the cage, with its upper, lower, front, and rear sides directly exposed.

[0012] The cage frame includes an end cap, an upper retaining plate, and a lower retaining plate. The end cap, upper retaining plate, and lower retaining plate are arranged in pairs. The end cap is located on the left and right sides of the cage frame, and the upper and lower retaining plates are located on the front and rear sides of the cage frame. The ends of the upper and lower retaining plates are connected to the end cap to form a cage-like structure, and the upper retaining plate is located above the lower retaining plate.

[0013] Furthermore, the hanger includes a vertical hanger tube and a horizontal hanger rod. The top end of the vertical hanger tube is fixedly connected to the lifting seat. The conductive column is disposed in the vertical hanger tube. The horizontal hanger rod is symmetrically disposed at the lower part of the vertical hanger tube. The outer end of the horizontal hanger rod is connected to the end cap and is located at the top of the cage.

[0014] Furthermore, the conductive plate, the upper holding plate, and the lower holding plate are all provided with slots, and the electrode is secured in the slots of the conductive plate, the upper holding plate, and the lower holding plate.

[0015] Furthermore, both the horizontal adjustment seat and the lifting seat include a slide rail, a slider, and a drive motor. The slider is movably mounted on the slide rail, and the drive motor is connected to the slider.

[0016] Furthermore, the assembly frame includes a frame body, a placement slot, and a power supply slot. The placement slot and the power supply slot are located in the frame body. The mounting seat is located in the placement slot. The placement slot has a clearance hole. The lifting seat is located in the clearance hole. The power supply slot has a converter. The top end of the conductive column is connected to the converter.

[0017] Furthermore, the food purification tank includes a tank frame and a flow guide channel, wherein the flow guide channel is disposed in the tank frame and the hydroxyl generator is located in the flow guide channel.

[0018] The beneficial effects of this utility model are as follows:

[0019] The modular structure allows for flexible placement at any position on the production line according to production needs, meeting purification requirements under different modes. It can also be set up with multiple purification processes that run in multiple stages to ensure purification effectiveness.

[0020] The hydroxyl generator is installed by immersion in a suspended manner, which does not affect the normal use and operation of existing equipment. It has a wide range of applications and adopts a cage structure for installation, which increases the contact area between the purifier and the cleaning water, thereby improving the hydroxyl generation efficiency and purification effect, while also facilitating equipment maintenance. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0022] Figure 2 A schematic diagram showing the mounting base of this utility model in various states;

[0023] Figure 3 This is a schematic diagram of the mounting base structure of this utility model;

[0024] Figure 4 This is a schematic diagram of the hydroxyl generator structure of this utility model;

[0025] Figure 5 This is a schematic diagram of the overall structure of the electrode assembly of this utility model;

[0026] Figure 6 This is a schematic diagram of the single-electrode assembly structure of this utility model;

[0027] Figure 7 This is a schematic diagram of the structure of the cage frame of this utility model;

[0028] Figure 8 This is a schematic diagram of the cage structure of this utility model;

[0029] Figure 9 This is an exploded view of the connection structure between the lower retaining plate and the conductive plate of this utility model.

[0030] Reference numerals: 1-Hydroxygen generator, 11-Electrode assembly, 111-Conductive column, 112-Electrode sheet, 113-Conductive plate, 12-Mounting cage, 121-Vertical hanging pipe, 122-Horizontal hanging rod, 123-End cap, 124-Upper retaining plate, 125-Lower retaining plate, 2-Mounting base, 21-Fixed base frame, 22-Horizontal adjustment seat, 23-Lifting seat, 3-Assembly rack, 4-Food purification tank. Detailed Implementation

[0031] The technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0032] In the description of this utility model, it should be understood that the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "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.

[0033] like Figure 1 , 2 As shown, a hydroxyl food purification device includes a purification unit and a food purification tank 4. The purification unit is assembled with the food purification tank 4. The purification unit includes a hydroxyl generator 1, a mounting base 2, and an assembly frame 3. The hydroxyl generator 1 is mounted on the mounting base 2 and located in the food purification tank 4. The mounting base 2 is located in the assembly frame 3, and the assembly frame 3 is located above the food purification tank 4.

[0034] The working principle of this invention is that after the hydroxyl generator 1 is powered on, it electrolyzes water to produce hydroxyl groups, which diffuse into the food purification tank 4 to sterilize and clean the food ingredients passing through. The mounting frame 3 allows for flexible placement of the purification device. The device can be placed at any position on the production line according to production needs, and can be adapted to the mounting base 2, thus achieving compatibility between the hydroxyl generator 1 and the food purification tank 4. Furthermore, the suspended structure not only facilitates the placement of the hydroxyl generator 1 but also does not affect the normal use and operation of existing equipment.

[0035] like Figure 2 , 3 As shown, the mounting base 2 includes a fixed base frame 21, a horizontal adjustment seat 22, and a lifting seat 23. The mounting base 2 can move horizontally and rise vertically. The horizontal movement of the horizontal adjustment seat 22 and the vertical rise of the lifting seat 23 are coordinated to adjust the position of the hydroxyl generator 1. The fixed base frame 21 is fixedly installed in the assembly frame 3. The horizontal adjustment seat 22 is installed on the fixed base frame 21. The lifting seat 23 is installed on the horizontal adjustment seat 22. The hydroxyl generator 1 is installed at the bottom end of the lifting seat 23.

[0036] like Figure 3 , 4As shown, the hydroxyl generator 1 further includes an electrode assembly 11 and a mounting cage 12. The electrode assembly 11 is disposed in the mounting cage 12 and generates hydroxyl groups after being connected to a power source. The mounting cage 12 is disposed on a lifting seat 23 and serves as the mounting structure for the electrode assembly 11, ensuring the stability of the electrode assembly 11 and facilitating the diffusion of hydroxyl groups.

[0037] like Figure 5 , 6 As shown, the electrode assembly 11 further includes conductive posts 111, electrode plates 112, and conductive plates 113. The conductive posts 111 are vertically arranged in the mounting cage 12. The conductive plates 113 are connected to the conductive posts 111. The electrode plates 112 are spaced apart on the conductive plates 113. The conductive posts 111 and conductive plates 113 are electrically connected, and the conductive plates 113 are electrically connected to the electrode plates 112. Both the electrode plates 112 and the conductive plates 113 are arranged in the mounting cage 12. The conductive posts 111 are connected to the power supply through a converter. The electrical energy on the conductive posts 111 is transferred to the electrode plates 112 through the conductive plates 113. Then, the cathode and anode plates are connected to the positive and negative terminals of the power supply, respectively. After being immersed in the cleaning water of the food purification tank 4, a passage is formed. Electrolysis of water produces hydroxyl groups, which diffuse with the water flow, thereby purifying and cleaning the food.

[0038] like Figure 5 , 6 As shown, the conductive pillars 111, electrode plates 112, and conductive plates 113 are all arranged in pairs, divided into anode and cathode types. The cathode conductive pillars are electrically connected to the cathode conductive plates, and the cathode plates are spaced apart on the cathode conductive plates and electrically connected to them to form a cathode circuit. The anode conductive pillars are electrically connected to the anode conductive plates, and the anode plates are spaced apart on the anode conductive plates and electrically connected to them to form an anode circuit. After being immersed in the cleaning water of the food purification tank 4, the cathode circuit and the anode circuit form a conductive path, and the electrolysis of water generates hydroxyl groups, which play a purification role.

[0039] The cathode conductive column and the anode conductive column are arranged side by side in the vertical hanging pipe 121. The cathode conductive plate and the anode conductive plate are arranged opposite to each other. The cathode sheet and the anode sheet are arranged alternately and parallel to each other between the cathode conductive plate and the anode conductive plate. The cathode sheet is arranged on the cathode conductive plate and does not contact the anode conductive plate. The anode sheet is arranged on the anode conductive plate and does not contact the cathode conductive plate.

[0040] like Figure 7 As shown, the mounting cage 12 further includes a hanger and a cage. The hanger is fixedly connected to the lifting seat 23, and the cage is located at the bottom of the hanger. The electrode assembly 11 is located in the cage. The upper, lower, front, and back sides of the electrode assembly 11 are directly exposed. After electrolysis generates hydroxyl groups, hydroxyl groups diffuse through the four sides, thereby improving the generation and diffusion efficiency of hydroxyl groups.

[0041] like Figure 7 , 8 As shown, the cage frame includes an end cap 123, an upper retaining plate 124, and a lower retaining plate 125. The end cap 123, the upper retaining plate 124, and the lower retaining plate 125 are all arranged in pairs. The end cap 123 is located on the left and right sides of the cage frame, and the upper retaining plate 124 and the lower retaining plate 125 are located on the front and rear sides of the cage frame. The ends of the upper retaining plate 124 and the lower retaining plate 125 are connected to the end cap 123 to form a cage-like structure. The upper retaining plate 124 is located above the lower retaining plate 125.

[0042] like Figure 7 As shown, the hanger further includes a vertical hanging tube 121 and a horizontal hanging rod 122. The top end of the vertical hanging tube 121 is fixedly connected to the lifting seat 23, and its bottom is located in the cage. The conductive column 111 is provided in the vertical hanging tube 121, and the conductive column 111 and the vertical hanging tube 121 form a cross-shaped structure. The horizontal hanging rod 122 is symmetrically arranged at the lower part of the vertical hanging tube 121. The outer end of the horizontal hanging rod 122 is connected to the end cover 123 and is located at the top of the cage.

[0043] Furthermore, the vertical hanging tube 121 is a hollow tube with an insulating plug at its top, and the conductive post 111 passes through the insulating plug and is fixed in the hollow tube.

[0044] Furthermore, the conductive plate 113, the upper holding plate 124 and the lower holding plate 125 are all provided with slots, and the electrode 112 is fixed in the slots of the conductive plate 113, the upper holding plate 124 and the lower holding plate 125.

[0045] Furthermore, both the horizontal adjustment seat 22 and the lifting seat 23 include a slide rail, a slider, and a drive motor. The slider is movably mounted on the slide rail, and the drive motor is connected to the slider.

[0046] like Figure 2 As shown, the assembly frame 3 further includes a frame body, a placement slot, and a power supply slot. The placement slot and the power supply slot are located in the frame body. The mounting base 2 is located in the placement slot. The placement slot is provided with a clearance hole. The lifting seat 23 is located in the clearance hole. A baffle is provided in the clearance hole. The lifting seat 23 is moved and the placement slot is closed by disassembling and moving the baffle. A converter is provided in the power supply slot. The top end of the conductive post 111 is connected to the converter.

[0047] Furthermore, the food purification tank 4 includes a tank frame and a flow guide channel, wherein the flow guide channel is disposed in the tank frame and the hydroxyl generator 1 is located in the flow guide channel.

[0048] Furthermore, the electrode 112 has a gate-shaped structure with an arched top to facilitate the passage of food raw materials and prevent them from accumulating on the top of the electrode 112.

[0049] Preferably, the vertical hanging pipe 121, the horizontal hanging rod 122, the end cap 123, the upper holding plate 124, and the lower holding plate 125 are all made of insulating materials.

[0050] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this invention, and no reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A hydroxyl food purifier characterized by, The device includes a purification unit and a food purification tank (4). The purification unit is assembled with the food purification tank (4). The purification unit includes a hydroxyl generator (1), a mounting base (2), and an assembly frame (3). The hydroxyl generator (1) is mounted on the mounting base (2) and located in the food purification tank (4). The mounting base (2) is located in the assembly frame (3), and the assembly frame (3) is located above the food purification tank (4). The mounting base (2) includes a fixed base frame (21), a horizontal adjustment seat (22) and a lifting seat (23). The fixed base frame (21) is fixedly installed in the assembly frame (3). The horizontal adjustment seat (22) is installed on the fixed base frame (21). The lifting seat (23) is installed on the horizontal adjustment seat (22). The hydroxyl generator (1) is installed at the bottom of the lifting seat (23).

2. A hydroxyl food purifier according to claim 1, characterized in that: The hydroxyl generator (1) includes an electrode assembly (11) and a mounting cage (12), wherein the electrode assembly (11) is disposed in the mounting cage (12) and the mounting cage (12) is disposed on a lifting seat (23).

3. A hydroxyl radical food purification apparatus as defined in claim 2, wherein: The electrode assembly (11) includes a conductive post (111), an electrode (112), and a conductive plate (113). The conductive post (111) is vertically arranged in the mounting cage (12). The conductive plate (113) is connected to the conductive post (111). The electrode (112) is spaced apart on the conductive plate (113). The conductive post (111) is electrically connected to the conductive plate (113). The conductive plate (113) is electrically connected to the electrode (112). Both the electrode (112) and the conductive plate (113) are arranged in the mounting cage (12).

4. A hydroxyl radical food purification apparatus as defined in claim 3, wherein: The conductive pillars (111), electrode plates (112), and conductive plates (113) are all arranged in pairs, and are divided into positive and negative types; the cathode conductive pillars are electrically connected to the cathode conductive plates, and the cathode plates are spaced apart on the cathode conductive plates and electrically connected to the cathode conductive plates; the anode conductive pillars are electrically connected to the anode conductive plates, and the anode plates are spaced apart on the anode conductive plates and electrically connected to the anode conductive plates. The cathode conductive column and the anode conductive column are arranged side by side, the cathode conductive plate and the anode conductive plate are arranged opposite each other, the cathode sheet and the anode sheet are arranged alternately and parallel to each other, the cathode sheet does not contact the anode conductive plate, and the anode sheet does not contact the cathode conductive plate.

5. A hydroxyl radical food purification apparatus as defined in claim 3, wherein: The mounting cage (12) includes a hanger and a cage. The hanger is fixedly connected to the lifting seat (23). The cage is located at the bottom of the hanger. The electrode assembly (11) is located in the cage, and its upper, lower, front, and rear sides are directly exposed. The cage frame includes an end cap (123), an upper retaining plate (124), and a lower retaining plate (125). The end cap (123), the upper retaining plate (124), and the lower retaining plate (125) are all arranged in pairs. The end cap (123) is located on the left and right sides of the cage frame. The upper retaining plate (124) and the lower retaining plate (125) are located on the front and rear sides of the cage frame. The ends of the upper retaining plate (124) and the lower retaining plate (125) are connected to the end cap (123) to form a cage-like structure. The upper retaining plate (124) is located above the lower retaining plate (125).

6. A hydroxyl radical food purification apparatus as defined in claim 5, wherein: The hanger includes a vertical hanging tube (121) and a horizontal hanging rod (122). The top end of the vertical hanging tube (121) is fixedly connected to the lifting seat (23). The conductive column (111) is located in the vertical hanging tube (121). The horizontal hanging rod (122) is symmetrically arranged at the lower part of the vertical hanging tube (121). The outer end of the horizontal hanging rod (122) is connected to the end cap (123) and located at the top of the cage.

7. A hydroxyl radical food purification apparatus as defined in claim 5, wherein: The conductive plate (113), the upper holding plate (124) and the lower holding plate (125) are all provided with slots, and the electrode (112) is fixed in the slots of the conductive plate (113), the upper holding plate (124) and the lower holding plate (125).

8. A hydroxyl radical food purification apparatus as defined in claim 1, wherein: Both the horizontal adjustment seat (22) and the lifting seat (23) include a slide rail, a slider and a drive motor. The slider is movably mounted on the slide rail and the drive motor is connected to the slider.

9. A hydroxyl radical food purification apparatus as defined in claim 3, wherein: The assembly frame (3) includes a frame body, a placement slot and a power supply slot. The placement slot and the power supply slot are located in the frame body. The mounting base (2) is located in the placement slot. The placement slot is provided with a clearance hole. The lifting base (23) is located in the clearance hole. The power supply slot is provided with a converter. The top of the conductive column (111) is connected to the converter.

10. A hydroxyl food purifier according to claim 1, characterized in that: The food purification tank (4) includes a tank frame and a flow guide, wherein the flow guide is located in the tank frame and the hydroxyl generator (1) is located in the flow guide.

Citation Information

Patent Citations

  • Food purifying machine

    CN213153834U