Ultrapure water EDI (electrodeionization) continuous electrodeionization device

By designing protective plates and fluff structures on the EDI continuous electro-salting device, the problem of dust adhesion in open air environments is solved, the practicality and heat dissipation efficiency of the device are improved, and the normal operation of the device is ensured in the dust environment.

CN223239838UActive Publication Date: 2025-08-19JIANGSU ZHONGCHUN HYDROGEN ENERGY TECH CO LTD
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Patent Information

Application Number
CN202421952234.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-13
Publication Date
2025-08-19
Estimated Expiration
2034-08-13

AI Technical Summary

Technical Problem

In an open-air environment, a large amount of dust is attached to the surface of the EDI continuous electrostatic desalting device, which affects the normal operation and heat dissipation efficiency of the device.

Method used

An ultrapure water EDI continuous electrostatic desalting device is designed. By setting up protective plates, sliders, shielding plates and fluff structures, the surface of the device is blocked and dust cleaned. Combined with magnetic connections to fix the shielding plates, adjust the shielding area to adapt to different environments.

Benefits of technology

It improves the practicality and heat dissipation efficiency of the device, solves the problem of dust adhesion, and ensures that the device operates normally in an open-air environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an ultrapure water EDI continuous electrodeionization device which comprises an EDI deionization device body, a heat dissipation plate is arranged on one side of the EDI deionization device body, a plurality of heat dissipation grooves are formed in the surface of the heat dissipation plate, first protection plates are arranged on the two sides of the EDI deionization device body respectively, two sliding blocks are installed in the two first protection plates respectively in a sliding mode, and the two sliding blocks are connected with the first protection plates in a sliding mode. By arranging the first protection plates, the sliding blocks, the first shielding plates, a second protection plate, an L-shaped plate and fluff, the two pull rods are sequentially pulled downwards, the corresponding first shielding plates can be driven to move downwards, the second protection plate moves synchronously along with the first shielding plates, the practicability of the desalting device is improved, and the practicability of the desalting device is improved. And along with the up-down movement of the first baffle plate, one end of each fluff rubs against the surface of the corresponding heat dissipation groove, so that dust attached to the inner surface of the first baffle plate can be wiped off, and the heat dissipation efficiency of the EDI desalting device body is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of EDI continuous electric desalination devices, in particular to an ultrapure water EDI continuous electric desalination device. Background Art

[0002] The ultrapure water EDI continuous electric desalination device is a highly efficient and environmentally friendly water treatment equipment. Its core technology combines electrodialysis and ion exchange technology. It realizes the directional migration of ions in water through the action of electric field, thereby achieving deep purification and desalination of water. The directional migration of ions in water is achieved through the selective permeation of cations and anions by cation and anion membranes and the exchange of ions in water by ion exchange resins. The EDI device can efficiently remove impurities such as ions and organic matter in water to ensure that the water quality meets high standards.

[0003] Ultrapure water EDI continuous electric desalination device is applicable to many places. In some specific situations, such as temporary water supply points and field work stations, EDI devices are also needed to provide ultrapure water. In the open air environment, the EDI device is in a dusty environment, and the device is in an open state. A large amount of dust will adhere to the surface of the device, which will affect the normal operation of the desalination device and increase the labor intensity of dust cleaning. Dust adhesion may reduce the heat dissipation efficiency, which is not conducive to the operation of the device. Therefore, it is particularly important to design an ultrapure water EDI continuous electric desalination device. Utility Model Content

[0004] The purpose of the utility model is to provide an ultrapure water EDI continuous electric desalination device to solve the problem proposed in the above background technology that when the device is in an open state, a large amount of dust will adhere to the surface of the device, which will affect the normal operation of the desalination device.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an ultrapure water EDI continuous electric desalination device, comprising an EDI desalination device body, a heat sink is provided on one side of the EDI desalination device body, a plurality of heat dissipation grooves are provided on the surface of the heat sink, a first protective plate is provided on both sides of the EDI desalination device body, two sliders are slidably installed inside the two first protective plates, a first baffle is provided on one side of the two adjacent sliders, a second protective plate is provided on one side of the two first baffles, two lifting blocks are slidably installed inside the two second protective plates, an L-shaped plate is provided on one side of one of the first baffles, and a plurality of hairs are provided on one side of the L-shaped plate.

[0006] As a preferred technical solution of the present invention, a pull rod is fixedly installed on the other side of the two first shielding plates, and one end of several of the fluffs is fixedly connected to one side of the L-shaped plate.

[0007] As a preferred technical solution of the present invention, the positions of the plurality of hairs are arranged at equal intervals.

[0008] As a preferred technical solution of the present invention, a second shielding plate is provided on one side of two adjacent lifting blocks, and one side of the two second shielding plates is fixedly connected to one side of the two first shielding plates respectively.

[0009] As a preferred technical solution of the present invention, the two second shielding plates are movable on one side of the two second protective plates respectively, and the positions of the two second shielding plates are corresponding to each other.

[0010] As a preferred technical solution of the present invention, a vertical plate is fixedly installed on one side of the two first protective plates, and a plurality of second magnets are provided on the top of the two first shielding plates.

[0011] As a preferred technical solution of the present invention, a plurality of first magnets are provided at the bottom ends of the two vertical plates, and the plurality of first magnets are magnetically connected to the plurality of second magnets respectively.

[0012] Compared with the prior art, the beneficial effects of the present invention are:

[0013] 1. The utility model relates to an ultrapure water EDI continuous electric desalination device, which is provided with a first protective plate, a slider, a first shielding plate, a second protective plate, an L-shaped plate and fluff. By pulling the two pull rods downward in sequence, the corresponding first shielding plate can be driven to move downward, and the second protective plate moves synchronously therewith. Then, the two second shielding plates are pulled downward continuously. Since the two lifting blocks slide back and forth inside the second protective plates respectively, the position height of the second shielding plates can be adjusted. Through the mutual cooperation of the first protective plate, the first shielding plate, the second protective plate and the second shielding plate, the shielding area of the outer surface of the EDI desalination device body can be adjusted, thereby solving the problem that the EDI desalination device body is located in an open air environment and is adhered to a large amount of dust, and improving the practicality of the desalination device. As the first shielding plate moves up and down, one end of a plurality of fluffs rubs against the surfaces of a plurality of heat dissipation slots respectively, thereby wiping off the dust adhered to the inner surface thereof, and improving the heat dissipation efficiency of the EDI desalination device body.

[0014] 2. The utility model provides an ultrapure water EDI continuous electric desalination device, which is equipped with a heat dissipation groove, a vertical plate, a first magnet and a second magnet. When there is no need to protect the EDI desalination device body, the second shielding plate and the first shielding plate are pushed upward in turn, and the multiple second magnets gradually approach the multiple first magnets. Since the two are magnetically connected, the first shielding plate and the first protective plate can be limited and fixed. The friction between the lifting block and the second protective plate is relatively large, and the friction between the slider and the first protective plate is relatively large. Therefore, when no pressure is applied to the first shielding plate and the second shielding plate, the two will remain stable. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a front view structural diagram of the utility model;

[0016] Figure 2 For the utility model Figure 1 Enlarged view of point A in the middle;

[0017] Figure 3 This is a side structural diagram of the present utility model;

[0018] Figure 4 It is a partial side view structural schematic diagram of the utility model.

[0019] In the figure: 1. EDI desalination device body; 2. heat sink; 3. heat sink; 4. first protective plate; 5. vertical plate; 6. first magnet; 7. slider; 8. first baffle; 9. second magnet; 10. second protective plate; 11. second baffle; 12. pull rod; 13. L-shaped plate; 14. fluff; 15. lifting block. DETAILED DESCRIPTION

[0020] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0021] See also Figure 1-4 The utility model provides a technical solution for an ultrapure water EDI continuous electric desalination device:

[0022] Example 1:

[0023] like Figure 1-3As shown, an ultrapure water EDI continuous electric desalination device includes an EDI desalination device body 1, a heat sink 2 is provided on one side of the EDI desalination device body 1, and a plurality of heat dissipation grooves 3 are provided on the surface of the heat sink 2. First protective plates 4 are provided on both sides of the EDI desalination device body 1, two sliders 7 are slidably installed inside the two first protective plates 4, a first baffle 8 is provided on one side of the two adjacent sliders 7, a second protective plate 10 is provided on one side of the two first baffles 8, and two lifting blocks 15 are slidably installed inside the two second protective plates 10, one of the first baffles An L-shaped plate 13 is provided on one side of 8, and a plurality of fluffs 14 are provided on one side of the L-shaped plate 13. Through the mutual cooperation of the first protective plate 4, the first baffle plate 8, the second protective plate 10 and the second baffle plate 11, the shielding area of the outer surface of the EDI desalination device body 1 can be adjusted, thereby solving the problem that the EDI desalination device body 1 is located in an open-air environment and is attached to a large amount of dust, and improving the practicality of the desalination device. As the first baffle plate 8 moves up and down, one end of the plurality of fluffs 14 rubs against the surfaces of the plurality of heat dissipation slots 3 respectively, so that the dust attached to its inner surface can be wiped off.

[0024] Example 2:

[0025] Based on the first embodiment, Figure 1 and Figure 4 As shown, a second baffle 11 is provided on one side of two adjacent lifting blocks 15, one side of the two second protective plates 10 is fixedly connected to one side of the two first baffles 8 respectively, a vertical plate 5 is fixedly installed on one side of the two first protective plates 4, and a plurality of second magnets 9 are provided on the top of the two first baffles 8. The utility model provides an ultrapure water EDI continuous electric desalination device, which is provided with a heat dissipation groove 3, a vertical plate 5, a first magnet 6 and a second magnet 9. When there is no need to protect the EDI desalination device body 1, the second baffle 11 and the first baffle 8 are pushed upward in turn, and the plurality of second magnets 9 gradually approach each other with the plurality of first magnets 6. Due to the magnetic connection between the two, the first baffle 8 and the first protective plate 4 can be limited and fixed.

[0026] Working principle: The ultrapure water EDI continuous electrodialysis device is a highly efficient and environmentally friendly water treatment equipment. Its core technology combines electrodialysis and ion exchange technology. Through the action of the electric field, the directional migration of ions in the water is realized, thereby achieving deep purification and desalination of the water. The directional migration of ions in the water is achieved through the selective permeation of cations and anions by cation and anion membranes and the exchange of ions in water by ion exchange resins. The ultrapure water EDI continuous electrodialysis device is applicable to many places. In some specific cases, EDI devices are also needed to provide ultrapure water. In the open air environment, the EDI device is in an environment with a lot of dust, and the device is in an open state. A large amount of dust will adhere to the surface of the device, which will affect the normal operation of the desalination device. Therefore, when the device is in an open air environment, the staff can pull down the two pull rods 12 in turn, which can drive the corresponding first baffle 8 to move downward, and the second protective plate 10 will move synchronously. Then, continue to pull down the two second baffles 11. Since the two lifting blocks 15 slide back and forth inside the second protective plate 10, the second baffle can be adjusted. The position height of the baffle 11 can be adjusted by the mutual cooperation of the first protective plate 4, the first shielding plate 8, the second protective plate 10 and the second shielding plate 11 to block the outer surface of the EDI desalination device body 1, thereby solving the problem that the EDI desalination device body 1 is located in an open air environment and is adhered to a large amount of dust, thereby improving the practicality of the desalination device. As the first shielding plate 8 moves up and down, one end of the plurality of fluffs 14 rubs against the surface of the plurality of heat dissipation slots 3, thereby wiping off the dust attached to the inner surface thereof, thereby improving the EDI. The heat dissipation efficiency of the desalination device body 1 is such that when there is no need to protect the EDI desalination device body 1, the second baffle 11 and the first baffle 8 are pushed upward in turn, and the multiple second magnets 9 gradually approach the multiple first magnets 6. Since the two are magnetically connected, the first baffle 8 and the first protective plate 4 can be limited and fixed. The friction between the lifting block 15 and the second protective plate 10 is relatively large, and the friction between the slider 7 and the first protective plate 4 is relatively large. Therefore, when no pressure is applied to the first baffle 8 and the second baffle 11, the two will remain stable.

[0027] In the description of the present invention, it should be understood that the indicated orientations or positional relationships are based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it cannot be understood as a limitation on the present invention.

[0028] In the present invention, unless otherwise clearly specified and limited, for example, it can be a fixed connection, a detachable connection, or an integrated connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements. Unless otherwise clearly specified and limited, ordinary technicians in this field can understand the specific meanings of the above terms in the present invention according to specific circumstances.

[0029] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An ultrapure water EDI continuous electric desalination device, comprising an EDI desalination device body (1), characterized in that: A heat dissipation plate (2) is provided on one side of the EDI desalination device body (1), and a plurality of heat dissipation grooves (3) are provided on the surface of the heat dissipation plate (2). A first protective plate (4) is provided on both sides of the EDI desalination device body (1), and two sliders (7) are slidably installed inside the two first protective plates (4). A first baffle (8) is provided on one side of the two adjacent sliders (7), and a second protective plate (10) is provided on one side of the two first baffles (8). Two lifting blocks (15) are slidably installed inside the two second protective plates (10), and an L-shaped plate (13) is provided on one side of one of the first baffles (8), and a plurality of hairs (14) are provided on one side of the L-shaped plate (13).

2. The ultrapure water EDI continuous electric desalination device according to claim 1, characterized in that: A pull rod (12) is fixedly mounted on the other side of the two first shielding plates (8), and one end of a plurality of the hairs (14) is fixedly connected to one side of the L-shaped plate (13).

3. The ultrapure water EDI continuous electric desalination device according to claim 2, characterized in that: The positions of the plurality of hairs (14) are arranged at equal intervals.

4. The ultrapure water EDI continuous electric desalination device according to claim 1, characterized in that: One side of each of the two adjacent lifting blocks (15) is provided with a second shielding plate (11), and one side of the two second protective plates (10) is fixedly connected to one side of the two first shielding plates (8), respectively.

5. The ultrapure water EDI continuous electric desalination device according to claim 4, characterized in that: The two second shielding plates (11) are movable on one side of the two second protective plates (10), respectively, and the positions of the two second shielding plates (11) are corresponding.

6. The ultrapure water EDI continuous electric desalination device according to claim 1, characterized in that: A vertical plate (5) is fixedly mounted on one side of each of the two first protective plates (4), and a plurality of second magnets (9) are provided on the top ends of each of the two first shielding plates (8).

7. The ultrapure water EDI continuous electric desalination device according to claim 6, characterized in that: A plurality of first magnets (6) are provided at the bottom ends of the two vertical plates (5), and the plurality of first magnets (6) are magnetically connected to the plurality of second magnets (9) respectively.