A modular industrial purification device

By using a modular purification device, combined with a cage design for hanging brackets and fixed structures, the problem of the inflexibility of existing purification equipment is solved, achieving efficient and flexible purification results, reducing production costs and improving purification efficiency.

CN118452508BActive Publication Date: 2026-01-30CHINA NAT FOOD PURIFICATION TECH BEIJING CO LTD
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Patent Information

Application Number
CN202410835655.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-06-26
Publication Date
2026-01-30
Estimated Expiration
2044-06-26

AI Technical Summary

Technical Problem

Existing purification equipment cannot be flexibly adjusted to adapt to market demands, and its purification efficiency is low and its effect is poor. In particular, it has problems with adaptability and difficulty in modification in food industrial production, and its closed structure leads to low efficiency.

Method used

The purification device adopts a modular structure, including a mounting truss, a purification tank, and a purification structure. The purifier is composed of a cage structure through a hanging bracket and a fixing structure, with the electrode assembly exposed on all four sides. Combined with the horizontal and vertical movement of the adjustable mounting base, it can achieve flexible adjustment and efficient purification.

Benefits of technology

It achieves flexible adjustment with high purification efficiency and good effect, reduces production costs, is easy to install and maintain, has a wide range of applications, and improves hydroxyl generation efficiency and purification effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a modular industrial purification device, including a mounting truss, a purification tank, and a purification structure. The mounting truss is positioned above the purification tank, and the purification structure is suspended within the mounting truss, with its bottom end located within the purification tank. The purification structure includes an adjustable mounting base and a purifier. The adjustable mounting base is fixedly mounted within the mounting truss, and the purifier is located at the bottom end of the adjustable mounting base within the purification tank. This invention utilizes a modular structure that allows for flexible installation within food raw material cleaning equipment and can be adjusted according to production needs, meeting purification requirements under different modes, reducing production costs, and facilitating installation and maintenance. Furthermore, the purifier employs a suspended structure, which does not affect the normal use and operation of existing equipment, making it widely applicable. The cage-like structure for installation increases the contact area between the purifier and the cleaning water, thereby improving hydroxyl generation efficiency and purification effect, while also facilitating equipment maintenance.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of industrial purification, in particular to a modular industrial purification device. BACKGROUND

[0002] With the public's attention to food safety and the understanding of food safety knowledge, the requirement for the health and safety of food raw materials is also getting higher and higher. When food is produced industrially, the food raw materials need to be purified. The purification equipment needs to meet the needs of industrial production and ensure the purification effect. The commonly used purification equipment is a hydroxyl purifier, which has the advantages of no residue, high purification efficiency and good purification effect.

[0003] The hydroxyl purifier still has some defects when applied to food industrial production. First, in order to ensure production safety, industrial equipment generally adopts fixed equipment, which directly designs the purifier into the equipment body. Although it can reduce the equipment failure rate, it cannot flexibly adjust the production equipment according to market demand, and the adaptability and difficulty of modification are large. Secondly, the purifier adopts a closed structure, and its working process is to generate purified water in an independent space, and then inject the purified water into the purification device to purify the raw materials. There are defects of low efficiency and poor purification effect. The present application provides a modular industrial purification device to solve the above problems. SUMMARY

[0004] The present application provides a modular industrial purification device, which adopts a modular structure and directly places the purification structure in the production line, with high purification efficiency and good effect.

[0005] The technical scheme adopted by the present application to solve the above technical problems is:

[0006] A modular industrial purification device, comprising a mounting truss, a purification tank and a purification structure, the mounting truss is arranged above the purification tank, the purification structure is arranged in the mounting truss, and the bottom end of the purification structure is located in the purification tank.

[0007] The purification structure comprises an adjusting mounting seat and a purifier, the adjusting mounting seat is fixedly arranged in the mounting truss, and the purifier is arranged at the bottom end of the adjusting mounting seat and located in the purification tank.

[0008] The purifier comprises a conductive column, a lifting support, a plate assembly and a fixing structure, the lifting support is movably connected to the adjusting mounting seat, the plate assembly is arranged in the fixing structure, the fixing structure is arranged at the bottom end of the lifting support, and the conductive column is arranged in the lifting support and connected to the plate assembly at the bottom end.

[0009] The fixing structure is a cage structure, and the plate assembly is located in the cage structure, with its upper, lower, front and rear sides directly exposed.

[0010] The polar plate assembly comprises a polar sheet and a conductive sheet, the conductive column is electrically connected with the conductive sheet, and the conductive sheet is electrically connected with the polar sheet.

[0011] The conductive column, the polar sheet and the conductive sheet are provided with positive and negative types, the cathode conductive column is connected with the cathode conductive sheet, the cathode sheet is arranged on the cathode conductive sheet in a spaced manner, the anode conductive column is connected with the anode conductive sheet, and the anode sheet is arranged on the anode conductive sheet in a spaced manner.

[0012] The cathode conductive column and the anode conductive column are arranged side by side, the cathode conductive sheet and the anode conductive sheet are arranged oppositely, the cathode sheet and the anode sheet are arranged alternately and parallel to each other, the cathode sheet does not contact the anode conductive sheet, and the anode sheet does not contact the cathode conductive sheet.

[0013] Further, the fixing structure comprises an end cover, an upper retaining spacer plate and a lower retaining spacer plate, the upper retaining spacer plate and the lower retaining spacer plate are arranged in pairs and located on the front and rear sides of the polar plate assembly, the upper retaining spacer plate is connected with the upper part of the polar sheet, the lower retaining spacer plate is arranged on the outer side of the conductive sheet and connected with the lower part of the polar sheet, the end cover is arranged on the left and right ends of the polar plate assembly, and the end parts of the upper retaining spacer plate and the lower retaining spacer plate are connected with the end cover.

[0014] Further, the lifting support comprises a channel pipe and a lifting rod, the channel pipe is arranged vertically on the adjusting mounting seat, the conductive column is located in the channel pipe, the lifting rod is symmetrically arranged at the lower part of the channel pipe and forms a cross-shaped structure with the channel pipe, the outer end of the lifting rod is fixedly connected with the end cover, and the lower part of the channel pipe is located in the polar plate assembly.

[0015] Further, the conductive sheet, the upper retaining spacer plate and the lower retaining spacer plate are all provided with clamping grooves, and the polar sheet is clamped in the clamping grooves on the conductive sheet, the upper retaining spacer plate and the lower retaining spacer plate.

[0016] Further, the adjusting mounting seat comprises a fixed mounting seat, a first moving mechanism and a second moving mechanism, the fixed mounting seat is fixedly arranged in the mounting truss, the first moving mechanism is movably arranged on the fixed mounting seat, the second moving mechanism is movably arranged on the first moving mechanism, and the lifting support is arranged on the second moving mechanism.

[0017] The first moving mechanism and the second moving mechanism both comprise a sliding rail, a sliding block and a driving motor, the sliding block is movably arranged on the sliding rail, and the driving motor is connected with the sliding block.

[0018] Further, the mounting truss comprises a frame body, a placing groove and an energy supply groove, the placing groove and the energy supply groove are arranged on the frame body, the adjusting mounting seat is arranged in the placing groove, the placing groove is provided with a clearance hole, the second moving mechanism is located in the clearance hole, and the energy supply groove is provided with a converter, and the top end of the conductive column is connected with the converter.

[0019] Further, the purification tank is provided with a flow guide groove, and the purifier is located in the flow guide groove.

[0020] Further, the pole piece is in a door-shaped structure, and the top end thereof is in an arc shape.

[0021] The present application has the following advantages:

[0022] The modular structure can be flexibly arranged in the food raw material cleaning equipment, and can be flexibly adjusted according to production requirements, so as to meet the purification requirements in different modes, reduce production cost, and facilitate installation and maintenance.

[0023] The purifier adopts a hoisting structure, does not affect the normal use and operation of the existing equipment, has a wide application range, and adopts a cage structure to realize installation, improve the contact area of the purifier and the cleaning water, and then improve the hydroxyl generation efficiency and the purification effect, and facilitate equipment maintenance. DETAILED DESCRIPTION

[0024] Figure 1 It is a schematic diagram of the overall structure of the present application;

[0025] Figure 2 It is a schematic diagram of the adjusting mounting seat in the installed state;

[0026] Figure 3 It is a schematic diagram of the adjusting mounting seat structure;

[0027] Figure 4 It is a schematic diagram of the purifier structure;

[0028] Figure 5 It is a schematic diagram of the hoisting support and the pole plate assembly in the disassembled state;

[0029] Figure 6 It is a schematic diagram of the hydroxyl generation structure;

[0030] Figure 7 It is a schematic diagram of the fixing structure;

[0031] Figure 8 It is a schematic diagram of the hoisting support structure;

[0032] Figure 9 It is a schematic diagram of the hydroxyl generation structure in the disassembled state;

[0033] Figure 10 Figure 1 is a schematic diagram of the fixing structure of the polar piece in the disassembled state of the present application.

[0034] Reference signs: 1, mounting truss; 2, purification tank; 3, adjusting mounting seat; 31, fixed mounting seat; 32, first moving mechanism; 33, second moving mechanism; 4, purifier; 41, conductive column; 42, hoisting support; 421, passage pipe; 422, hoisting rod; 43, polar plate assembly; 431, polar piece; 432, conductive piece; 44, fixing structure; 441, end cover; 442, upper retaining spacer plate; 443, lower retaining spacer plate. DETAILED DESCRIPTION

[0035] The technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the specification. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0036] In the description of the present application, it should be understood that the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application.

[0037] As shown in Figure 1 , 2 A modular industrial purification device, comprising a mounting truss 1, a purification tank 2 and a purification structure, the mounting truss 1 is arranged above the purification tank 2, the purification structure is arranged in the mounting truss 1, and the bottom end of the purification structure is located in the purification tank 2.

[0038] The principle of this invention is as follows: the power supply provides power to the converter in the mounting truss 1. After the converter converts energy, it is transmitted to the conductive plate 432 through the conductive column 41. The electrode 431 is placed on the conductive plate 432 to achieve energization. The cathode plate and the anode plate form a passage in the cleaning water. The cleaning water is electrolyzed to generate hydroxyl groups, which are used to purify and clean the food raw materials. The adjusting mounting base 3 can be moved horizontally and raised vertically. The horizontal movement and vertical movement are coordinated to adjust the position of the purifier 4. The vertical movement is used to raise and lower the purifier 4 from the purification tank 2 during maintenance. The hoisting bracket 42 and the fixing structure 44 work together to install and hoist the electrode assembly 43. The fixing structure 44 realizes the assembly and fixing of the electrode assembly 43. The hoisting bracket 42 is used to hoist the electrode assembly 43 onto the adjusting mounting base 3.

[0039] like Figure 3 As shown, the purification structure includes an adjustable mounting base 3 and a purifier 4. The adjustable mounting base 3 is fixedly installed in the mounting truss 1 and serves as the hoisting structure for the purifier 4. The purifier 4 is located at the bottom end of the adjustable mounting base 3 and is situated in the purification tank 2.

[0040] like Figure 4 , 5 As shown, the purifier 4 includes a conductive column 41, a hanging bracket 42, an electrode assembly 43, and a fixing structure 44. The hanging bracket 42 is movably connected to the adjusting mounting base 3. The electrode assembly 43 is disposed in the fixing structure 44, which is located at the bottom end of the hanging bracket 42. The conductive column 41 is disposed in the hanging bracket 42, and its bottom end is connected to the electrode assembly 43.

[0041] like Figure 4 , 5 As shown in Figure 6, the core component of the purifier 4 is a hydroxyl generation structure composed of a conductive post 41 and an electrode assembly 43. The conductive post 41 is connected to the power supply through a converter. The electrical energy on the conductive post 41 is transferred to the electrode 431 through the conductive sheet 432. Then, the cathode sheet and the anode sheet are connected to the positive and negative electrodes of the power supply, respectively. After the purifier 4 is placed in the cleaning water, a circuit is formed, and the water is electrolyzed to generate hydroxyl groups.

[0042] like Figure 6 , 9 As shown in Figure 10, the electrode assembly 43 further includes an electrode 431 and a conductive sheet 432. The conductive post 41 is electrically connected to the conductive sheet 432, and the conductive sheet 432 is electrically connected to the electrode 431 to form a continuous circuit.

[0043] The conductive post 41, electrode 431 and conductive sheet 432 are all provided with two types of cathode and anode. The cathode conductive post is connected to the cathode conductive sheet, and the cathode sheet is arranged at intervals on the cathode conductive sheet. The anode conductive post is connected to the anode conductive sheet, and the anode sheet is arranged at intervals on the anode conductive sheet.

[0044] The cathode conductive column and the anode conductive column are arranged side by side, the cathode conductive sheet and the anode conductive sheet 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 sheet, and the anode sheet does not contact the cathode conductive sheet.

[0045] like Figure 4 , 5 As shown in Figures 7 and 8, the fixing structure 44 further includes an end cap 441, an upper retaining spacer 442, and a lower retaining spacer 443. The upper retaining spacer 442 and the lower retaining spacer 443 are arranged in pairs and located on the front and rear sides of the electrode assembly 43. The upper retaining spacer 442 is connected to the upper part of the electrode 431, and the lower retaining spacer 443 is disposed on the outside of the conductive sheet 432 and connected to the lower part of the electrode 431. The end cap 441 is disposed at the left and right ends of the electrode assembly 43, and the ends of the upper retaining spacer 442 and the lower retaining spacer 443 are connected to the end cap 441.

[0046] Furthermore, the fixing structure 44 is a cage structure, with end caps 441 located at the left and right ends of the fixing structure 44. The upper retaining spacer 442 and the lower retaining spacer 443, which are arranged in pairs, are respectively located at the upper and lower parts of the fixing structure 44, forming a cage structure with the end caps 441. The electrode assembly 43 is located in the cage structure, with its upper, lower, front, and back sides directly exposed. After hydroxyl groups are generated by electrolysis, hydroxyl groups diffuse through the four sides, thereby improving the generation and diffusion efficiency of hydroxyl groups.

[0047] like Figure 8 As shown, the hoisting bracket 42 further includes a channel tube 421 and a hoisting rod 422. The channel tube 421 is vertically arranged on the adjusting mounting base 3 and serves as the mounting tube for the main hoisting rod and the conductive column 41. The conductive column 41 is located inside the channel tube 421, and the bottom end of the conductive column 41 is connected to the conductive sheet 432. The hoisting rod 422 is symmetrically arranged at the lower part of the channel tube 421, forming a cross-shaped structure with the channel tube 421. The outer end of the hoisting rod 422 is fixedly connected to the end cap 441. The lower part of the channel tube 421 is located in the electrode plate assembly 43.

[0048] Furthermore, the channel tube 421 is a hollow tube with an insulating plug at its top, and the conductive post 41 passes through the insulating plug and is fixed in the hollow tube.

[0049] like Figure 9 , 10 As shown, further, the conductive sheet 432, the upper holding spacer 442 and the lower holding spacer 443 are all provided with slots, and the electrode 431 is fixed on the conductive sheet 432, the upper holding spacer 442 and the lower holding spacer 443.

[0050] Furthermore, the bottom of both sides of the electrode 431 is provided with a first retaining groove and a second retaining groove. The first retaining groove and the second retaining groove on the cathode sheet are symmetrically arranged with the first retaining groove and the second retaining groove on the anode sheet. The cathode conductive sheet and a lower holding spacer 443 are located in the first retaining groove of the cathode sheet, and the cathode sheet is in contact with the cathode conductive sheet. The anode conductive sheet and another lower holding spacer 443 are located in the second retaining groove of the cathode sheet, and the anode conductive sheet is not in contact with the cathode sheet. The connection method of the anode sheet is opposite to that of the cathode sheet.

[0051] like Figure 3 As shown, the adjusting mounting base 3 further includes a fixed mounting base 31, a first moving mechanism 32 and a second moving mechanism 33. The fixed mounting base 31 is fixedly installed in the mounting truss 1, the first moving mechanism 32 is movably installed on the fixed mounting base 31, the second moving mechanism 33 is movably installed on the first moving mechanism 32, and the hoisting bracket 42 is installed on the second moving mechanism 33.

[0052] Both the first moving mechanism 32 and the second moving mechanism 33 include a slide rail, a slider, and a drive motor. The slide rail of the first moving mechanism 32 is mounted on the fixed mounting base 31, and the slider is mounted on the slide rail. The slider is driven by the drive motor to move horizontally on the slide rail. The slide rail of the second moving mechanism 33 is mounted on the slider of the first moving mechanism 32, and the slider of the second moving mechanism 33 is mounted on the slide rail. The second moving mechanism 33 drives the slider to move up and down. The channel tube 421 is fixedly mounted on the slider of the second moving mechanism 33.

[0053] like Figure 2 As shown, the mounting truss 1 further includes a frame, a placement slot, and a power supply slot. The placement slot and the power supply slot are provided on the frame. The adjusting mounting seat 3 is provided in the placement slot. The placement slot is provided with a clearance hole. The second moving mechanism 33 is located in the clearance hole. A baffle is provided in the clearance hole. By disassembling the moving baffle, the second moving mechanism 33 can be moved aside and the placement slot can be closed. A converter is provided in the power supply slot. The top end of the conductive post 41 is connected to the converter.

[0054] Furthermore, the purification tank 2 is provided with a flow guide channel, and the purifier 4 is located in the flow guide channel.

[0055] Furthermore, the electrode 431 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 431.

[0056] Preferably, the hoisting bracket 42 and the fixing structure 44 are made of insulating material.

[0057] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of the 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 the present invention, and no reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A modular industrial purification device, characterized in that, The utility model provides a purification device, including installation truss (1), purification tank (2) and purification structure, installation truss (1) sets up in the top of purification tank (2), the purification structure is hoisted and is set up in installation truss (1), and the bottom end of purification structure is located in purification tank (2); The purification structure includes an adjusting mount (3) and a purifier (4), the adjusting mount (3) is fixedly arranged in the installation truss (1), and the purifier (4) is arranged at the bottom end of the adjusting mount (3) and located in the purification tank (2); The purifier (4) includes a conductive column (41), a hoisting support (42), a polar plate assembly (43) and a fixing structure (44), the hoisting support (42) is movably connected to the adjusting mount (3), the polar plate assembly (43) is arranged in the fixing structure (44), the fixing structure (44) is arranged at the bottom end of the hoisting support (42), and the conductive column (41) is arranged in the hoisting support (42) and connected to the polar plate assembly (43) at the bottom end; The fixing structure (44) is a cage structure, and the polar plate assembly (43) is located in the cage structure and directly exposed on the upper and lower sides and the front and back sides; The polar plate assembly (43) includes a polar sheet (431) and a conductive sheet (432), the conductive column (41) is electrically connected to the conductive sheet (432), and the conductive sheet (432) is electrically connected to the polar sheet (431); The fixing structure (44) includes an end cover (441), an upper retaining spacer plate (442) and a lower retaining spacer plate (443), the upper retaining spacer plate (442) and the lower retaining spacer plate (443) are arranged in pairs and located on the front and back sides of the polar plate assembly (43), the upper retaining spacer plate (442) is connected to the upper part of the polar sheet (431), the lower retaining spacer plate (443) is arranged outside the conductive sheet (432) and connected to the lower part of the polar sheet (431), the end cover (441) is arranged at the left and right ends of the polar plate assembly (43), and the end portions of the upper retaining spacer plate (442) and the lower retaining spacer plate (443) are connected to the end cover (441); The hoisting support (42) includes a channel pipe (421) and a hoisting rod (422), the channel pipe (421) is vertically arranged on the adjusting mount (3), the conductive column (41) is located in the channel pipe (421), the hoisting rod (422) is symmetrically arranged at the lower part of the channel pipe (421) and forms a cross-shaped structure with the channel pipe (421), the outer end of the hoisting rod (422) is fixedly connected to the end cover (441), and the lower part of the channel pipe (421) is located in the polar plate assembly (43); The adjusting mount (3) includes a fixed mount (31), a first moving mechanism (32) and a second moving mechanism (33), the fixed mount (31) is fixedly arranged in the installation truss (1), the first moving mechanism (32) is movably arranged on the fixed mount (31), the second moving mechanism (33) is movably arranged on the first moving mechanism (32), and the hoisting support (42) is arranged on the second moving mechanism (33); The first moving mechanism (32) and the second moving mechanism (33) each comprise a slide rail, a slide block and a driving motor, the slide block is movably arranged on the slide rail, and the driving motor is connected with the slide block.

2. A modular industrial air cleaning device according to claim 1, characterized in that: The cathode conductive column and the anode conductive column are arranged side by side, the cathode conductive sheet and the anode conductive sheet are arranged oppositely, the cathode sheet and the anode sheet are arranged alternately and parallel to each other, the cathode sheet does not contact the anode conductive sheet, and the anode sheet does not contact the cathode conductive sheet. The cathode conductive column and the anode conductive column are arranged side by side, the cathode conductive sheet and the anode conductive sheet are arranged oppositely, the cathode sheet and the anode sheet are arranged alternately and parallel to each other, the cathode sheet does not contact the anode conductive sheet, and the anode sheet does not contact the cathode conductive sheet.

3. A modular industrial air cleaning device according to claim 1, characterized in that: The cathode conductive column and the anode conductive column are arranged side by side, the cathode conductive sheet and the anode conductive sheet are arranged oppositely, the cathode sheet and the anode sheet are arranged alternately and parallel to each other, the cathode sheet does not contact the anode conductive sheet, and the anode sheet does not contact the cathode conductive sheet.

4. The modular industrial air cleaning device of claim 1, wherein: The mounting truss (1) comprises a truss body, a placing groove and an energy supply groove, the placing groove and the energy supply groove are arranged on the truss body, the adjusting mounting seat (3) is arranged in the placing groove, the placing groove is provided with a clearance hole, the second moving mechanism (33) is located in the clearance hole, the energy supply groove is provided with a converter, and the top end of the conductive column (41) is connected with the converter.

5. The modular industrial air cleaning device of claim 1, wherein: The purifier (4) is located in the flow guide groove.

6. The modular industrial air cleaning device of claim 1, wherein: The pole sheet (431) is in a door-shaped structure, and the top end thereof is in an arc shape.

Citation Information

Patent Citations

  • Throw-in type hydroxyl purifier

    CN118476632A

  • Wall-mounted food cleaning machine

    CN219593643U

  • Hydroxyl generator used in food industry

    CN223081007U