Desalted water recycling device

By introducing multi-stage reverse osmosis tanks and demisters into the demineralized water recovery unit, the problems of lack of return water tanks and difficulty in foam removal in traditional units are solved, realizing non-powered water recovery and efficient foam removal, thus improving the overall recovery effect.

CN223973970UActive Publication Date: 2026-03-06INNER MONGOLIA BAOFENG COAL-BASED NEW MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

Traditional desalination water recovery devices lack a return water tank and pipeline structure design, making it impossible to achieve non-powered water recovery, and the foam cannot be effectively removed, resulting in poor recovery effect.

Method used

A device comprising a support base, a reverse osmosis chamber, a multi-media filter, and a demister is designed. Through multi-stage reverse osmosis isolation and demister operation, a return water tank and piping structure are added. The device utilizes a multi-media filter and multi-layer reverse osmosis filter cartridges for filtration, combined with a demister to remove foam.

Benefits of technology

It achieves non-powered water recovery and effective removal of foam, improving the efficiency of desalinated water recycling and meeting usage requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a desalted water recycling device, which relates to the field of desalted water recovery, and comprises a support base, a base disc body A, a sleeve end, a multi-medium filter and a defoaming box body, one side of the support base is fixedly connected with a reverse osmosis box, the bottom of one end of the reverse osmosis box is fixedly connected with a base disc body B, and the bottom of the other end of the reverse osmosis box is fixedly connected with the sleeve end. A multi-medium filter is fixedly connected to one side of the top end of the supporting base, a water inlet pipeline is fixedly connected to one side of the multi-medium filter, a defoaming box is fixedly connected to the top of the end, close to the base disc body B, of the reverse osmosis box, and an inclined supporting frame B is fixedly connected to the interior of the top face of the base disc body A; according to the utility model, unpowered water recovery can be realized, foam materials exist in recycled desalted water, foam removal can be effectively realized, the foam materials in the desalted water can be effectively removed by arranging the foam removal box, the overall desalted water recycling effect can be better, and the overall use requirements can be better met.
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Description

Technical Field

[0001] This utility model relates to the field of desalination water recovery, specifically a desalination water recovery and utilization device. Background Technology

[0002] There are three main methods for producing desalinated water: distillation, which involves heating and evaporating salt-containing water, then condensing the steam to obtain desalinated water; ion exchange, which involves passing salt-containing water through an exchange column filled with zeolite or ion exchange resin, where calcium, magnesium, and other ions remain on the column, and the filtered water is desalinated water; and electrodialysis, which utilizes the selective permeability of ion exchange membranes. Under the influence of an applied electric field, cations and anions in the water between two ion exchange membranes are concentrated at the anion and cation electrodes, respectively. The area between the membranes becomes the desalinated water zone, and the area outside the membranes becomes the concentrated water zone. The water drawn from the desalinated water zone is the desalinated water. Distillation is often used in laboratories for washing containers or preparing solutions, and is suitable for small quantities with high purity requirements. Ion exchange and electrodialysis are often used in the chemical industry, such as for boiler water, to reduce scaling and corrosion, and are suitable for large quantities where high purity requirements are not always necessary.

[0003] Traditional demineralized water recycling does not include a return water tank or additional piping, resulting in a relatively simple overall structure. Furthermore, it lacks multi-stage reverse osmosis isolation, making non-powered water recycling impossible. Additionally, the recycled demineralized water contains foam, which cannot be effectively removed due to the absence of a defoaming box. Overall, the demineralized water recycling effect is poor and fails to meet overall usage requirements.

[0004] Therefore, those skilled in the art have provided a demineralized water recovery and utilization device to solve the problems mentioned in the background art. Utility Model Content

[0005] The purpose of this utility model is to provide a demineralized water recycling device to solve the problems mentioned in the background art. Traditional demineralized water recycling does not include a return water tank or pipeline structure, resulting in a relatively simple overall structure. Furthermore, it lacks multi-stage reverse osmosis isolation, making it impossible to achieve non-powered water recycling. Additionally, the recycled demineralized water contains foam, which cannot be effectively removed due to the absence of a defoaming box. Overall, the demineralized water recycling effect is poor and fails to meet the overall usage requirements.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] A demineralized water recovery and utilization device includes a support base, a base plate A, a connecting end, a multi-media filter, and a demister box. A reverse osmosis tank is fixedly connected to one side of the support base. The base plate B is fixedly connected to the bottom of one end of the reverse osmosis tank. A multi-media filter is fixedly connected to one side of the top of the support base. An inlet pipe is fixedly connected to one side of the multi-media filter. A demister box is fixedly connected to the top of the reverse osmosis tank near the base plate B. An inclined support frame B is fixedly connected inside the top surface of the base plate A. A connecting ring is fixedly connected to one end of the inclined support frame B. One side of the body is fixedly connected to an inclined support frame A. The top surface of the base plate A is fixedly connected to a side support plate. The top of the side support plate is fixedly connected to a demister box. One side of the connecting ring is fixedly connected to a telescopic moving rod. One end of the socket end is provided with a primary reverse osmosis box. One end of the primary reverse osmosis box is provided with a secondary reverse osmosis box. A connecting pipe is inserted into the top of the socket end. The other end of the connecting pipe is inserted into a multi-media filter. A connecting pipe is inserted into the top of the secondary reverse osmosis box. One end of the connecting pipe is provided with a demister box body. The other side of the demister box body is provided with an outlet pipe.

[0008] In a preferred embodiment of the present invention, the support base includes a base plate A, a side support plate, a telescopic moving rod, a connecting ring, an inclined support frame A, and an inclined support frame B.

[0009] In a preferred embodiment of this utility model, the inclined support frame B and the inclined support frame A are arranged opposite to each other, and both the inclined support frame B and the inclined support frame A are located on the same side of the connecting ring, while the telescopic moving rod is located on the other side of the connecting ring.

[0010] In a preferred embodiment of this utility model, there are several telescopic moving rods, and the telescopic moving rods are arranged perpendicularly to the connecting ring body.

[0011] As a preferred embodiment of the present invention: the reverse osmosis box includes a socket end, a primary reverse osmosis box, a secondary reverse osmosis box, and connecting pipes.

[0012] As a preferred embodiment of this utility model: both the primary reverse osmosis box and the secondary reverse osmosis box are equipped with multiple layers of reverse osmosis filter plates, and the reverse osmosis filter plates are arranged in parallel.

[0013] As a preferred embodiment of the present invention: the demister box includes a demister box body, a water outlet pipe and a connecting pipe.

[0014] In a preferred embodiment of this utility model, there are several connecting pipes arranged in parallel with each other, and the connecting pipes can be made of transparent plastic flexible tubing.

[0015] Compared with the prior art, the beneficial effects of this utility model are:

[0016] This utility model discloses a desalination water recycling device that overcomes the limitations of traditional desalination water recycling methods, which often lack a return water tank. By incorporating a pipeline design, the overall structure becomes more convenient to use. Furthermore, it utilizes a multi-stage reverse osmosis tank for reverse osmosis isolation, enabling non-powered water recycling. Additionally, it effectively removes foam particles present in the recycled desalination water through a defoaming box, resulting in improved overall desalination water recycling efficiency and better meeting the overall usage requirements. Attached Figure Description

[0017] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:

[0018] Figure 1 This is a three-dimensional structural diagram of a desalination water recovery and utilization device;

[0019] Figure 2 This is a schematic diagram of the overall isometric side view of a desalination water recovery and utilization device;

[0020] Figure 3 This is a schematic diagram of the connection between the reverse osmosis tank and the support base in a desalination and water recovery device.

[0021] Figure 4 This is a three-dimensional structural diagram of a support base in a desalination water recycling device.

[0022] In the diagram: 1. Support base; 101. Base plate A; 102. Side support plate; 103. Telescopic moving rod; 104. Connecting ring; 105. Inclined support frame A; 106. Inclined support frame B; 2. Base plate B; 3. Reverse osmosis box; 301. Socket end; 302. First-stage reverse osmosis box; 303. Second-stage reverse osmosis box; 304. Connecting pipe; 4. Multi-media filter; 5. Demister box; 501. Demister box body; 502. Outlet pipe; 503. Connecting pipe; 6. Inlet pipe. Detailed Implementation

[0023] Please see Figure 1-4In this embodiment of the invention, a demineralized water recycling device includes a support base 1, a base plate A101, a connecting end 301, a multi-media filter 4, and a demister box 501. A reverse osmosis box 3 is fixedly connected to one side of the support base 1, and a base plate B2 is fixedly connected to the bottom of one end of the reverse osmosis box 3. The multi-media filter 4 is fixedly connected to one side of the top of the support base 1. This design overcomes the limitations of traditional demineralized water recycling methods that do not include a return water tank during recycling. By incorporating a more sophisticated pipeline design, the overall structure can be more efficient and efficient. Convenient and capable of reverse osmosis isolation operation through multi-stage reverse osmosis boxes, the multi-media filter 4 is fixedly connected to one side of the inlet pipe 6, the reverse osmosis box 3 is fixedly connected to the top of the end near the base plate B2 of the reverse osmosis box 3, the inclined support frame B106 is fixedly connected to the inside of the top surface of the base plate A101, the inclined support frame B106 is fixedly connected to one end of the inclined support frame B106, the inclined support frame A105 is fixedly connected to one side of the connecting ring 104, the top surface of the base plate A101 is fixedly connected to the side support plate 10, the side support plate 10 A defoaming box 5 is fixedly connected to the top of component 2. A telescopic moving rod 103 is fixedly connected to one side of the connecting ring 104. A primary reverse osmosis box 302 is provided at one end of the sleeve end 301, and a secondary reverse osmosis box 303 is provided at one end of the primary reverse osmosis box 302. During use, water is introduced through the inlet pipe 6. Under the action of the multi-media filter 4, multi-media filtration is performed. Then, a return water tank is set inside the multi-media filter 4. At the same time, the demineralized water after passing through the multi-media filter 4 enters the sleeve end 301 and the primary reverse osmosis box 303 through the connecting pipe 304. The demineralized water enters the defoaming tank 501 after passing through multiple stages of reverse osmosis operation, including the first-stage reverse osmosis tank 302, the second-stage reverse osmosis tank 303, and the connecting pipe 304. The overall operation effect is stronger. The top of the sleeve end 301 is connected to the connecting pipe 304, and the other end of the connecting pipe 304 is connected to the multi-media filter 4. The top of the second-stage reverse osmosis tank 303 is connected to the connecting pipe 503. One end of the connecting pipe 503 is equipped with the defoaming tank 501, and the other side of the defoaming tank 501 is equipped with the outlet pipe 502.

[0024] Please see Figure 1 and Figure 4The support base 1 includes a base plate A101, a side support plate 102, a telescopic moving rod 103, a connecting ring 104, an inclined support frame A105, and an inclined support frame B106. The connecting ring 104, inclined support frame A105, and inclined support frame B106 primarily provide support. The telescopic moving rod 103 can adjust the position of the sleeve end 301, the first-stage reverse osmosis tank 302, and the second-stage reverse osmosis tank 303, enabling non-powered water recovery. The inclined support frames B106 and A105 are positioned opposite each other, both located on the same side of the connecting ring 104, while the telescopic moving rod 103 is located on the other side of the connecting ring 104. Several telescopic moving rods 103 are provided, and they are perpendicular to the connecting ring 104. The reverse osmosis tank 3 includes a connecting end 301, a primary reverse osmosis tank 302, a secondary reverse osmosis tank 303, and connecting pipes 304. Since foam exists in the demineralized water being circulated, the defoaming tank effectively removes this foam, resulting in better overall demineralized water recovery and utilization, thus better meeting overall usage requirements. Both the primary and secondary reverse osmosis tanks 302 and 303 are equipped with multiple layers of reverse osmosis filter plates, which are arranged parallel to each other. The defoaming tank 5 includes a tank body 501, an outlet pipe 502, and connecting pipes 503. Several connecting pipes 503 are provided, arranged parallel to each other, and the connecting pipes 503 can be made of transparent plastic flexible tubing.

[0025] It should be noted that this utility model is a desalination water recovery and utilization device, including: 1. Support base; 101. Base plate A; 102. Side support plate; 103. Telescopic moving rod; 104. Connecting ring; 105. Inclined support frame A; 106. Inclined support frame B; 2. Base plate B; 3. ; 301. Sleeve end; 302. First-stage reverse osmosis box; 303. Second-stage reverse osmosis box; 304. Connecting pipe; 4. Multi-media filter; 5. Demister box; 501. Demister box body; 502. Water outlet pipe; 503. Connecting pipe; 6. Water inlet pipe. All components are general standard parts or components known to those skilled in the art. Their structure and principle can be learned by those skilled in the art through technical manuals or conventional experimental methods.

[0026] The working principle of this utility model is as follows: It overcomes the limitations of traditional demineralized water recycling methods, which often lack a return water tank during recovery. By incorporating a new pipeline design, the overall structure becomes more convenient to use. Furthermore, it enables reverse osmosis isolation operations through multi-stage reverse osmosis tanks. During operation, water is introduced through the inlet pipe 6. Multi-media filtration is performed by the multi-media filter 4, which contains a return water tank. The demineralized water passing through the multi-media filter 4 then enters the connecting pipe 304 through the connecting end 301, the first-stage reverse osmosis tank 302, the second-stage reverse osmosis tank 303, and the connecting pipe 304. Then... After multi-stage reverse osmosis operation, the demineralized water enters the demister 501 for defoaming. The overall operation effect is stronger. The connecting ring 104, the inclined support frame A105, and the inclined support frame B106 mainly serve as supports. The telescopic moving rod 103 can drive the socket end 301, the first-stage reverse osmosis tank 302, and the second-stage reverse osmosis tank 303 to adjust their positions. The whole system can realize non-powered water recovery. At the same time, the demineralized water contains foam, which can be effectively defoamed. The demister can effectively remove foam in the demineralized water, resulting in better overall demineralized water recycling and utilization, and better meeting the overall usage requirements.

[0027] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A desalted water recycling device, comprising a supporting base (1), a base disc body A (101), a sleeve joint end head (301), a multi-medium filter (4) and a defoaming box body (501), characterized in that, The support base (1) is fixedly connected with a reverse osmosis box (3) on one side, one end of the reverse osmosis box (3) is fixedly connected with a base disc body B (2), the top end of the support base (1) is fixedly connected with a multi-medium filter (4) on one side, one side of the multi-medium filter (4) is fixedly connected with a water inlet pipeline (6), one end of the top of the reverse osmosis box (3) near the base disc body B (2) is fixedly connected with a defoaming box (5), the top surface of the base disc A (101) is fixedly connected with an inclined support frame B (106) inside, one end of the inclined support frame B (106) is fixedly connected with a connecting ring body (104), one side of the connecting ring body (104) is fixedly connected with an inclined support frame A (105), the top surface of the base disc A (101) is fixedly connected with a side edge support plate (102), the top of the side edge support plate (102) is fixedly connected with a defoaming box (5), one side of the connecting ring body (104) is fixedly connected with a telescopic moving rod (103), one end of the sleeve joint end head (301) is provided with a primary reverse osmosis box (302), one end of the primary reverse osmosis box (302) is provided with a secondary reverse osmosis box (303), the top end of the sleeve joint end head (301) is inserted with a connecting pipeline (304), the other end of the connecting pipeline (304) is inserted with the multi-medium filter (4), the top of the secondary reverse osmosis box (303) is inserted with a through connecting pipeline (503), one end of the through connecting pipeline (503) is provided with a defoaming box body (501), the other side of the defoaming box body (501) is provided with a water outlet pipeline (502).

2. The desalinated water recycling device of claim 1, wherein, The support base (1) comprises a base disc A (101), a side edge support plate (102), a telescopic moving rod (103), a connecting ring body (104), an inclined support frame A (105) and an inclined support frame B (106).

3. The desalinated water recycling device of claim 1, wherein, The inclined support frame B (106) and the inclined support frame A (105) are oppositely arranged, and both are located on the same side of the connecting ring body (104), and the telescopic moving rod (103) is located on the other side of the connecting ring body (104).

4. The desalinated water recycling device of claim 1, wherein, The telescopic moving rod (103) is provided with a plurality of telescopic moving rods (103), and the telescopic moving rod (103) and the connecting ring body (104) are vertically arranged.

5. The desalinated water recycling device of claim 1, wherein, The reverse osmosis box (3) comprises a sleeve joint end head (301), a primary reverse osmosis box (302), a secondary reverse osmosis box (303) and a connecting pipeline (304).

6. The desalinated water recycling device of claim 1, wherein, The primary reverse osmosis box (302) and the secondary reverse osmosis box (303) are both provided with a plurality of reverse osmosis filter core plates inside, and the reverse osmosis filter core plates are parallelly arranged.

7. The desalinated water recycling device of claim 1, wherein, The defoaming box (5) comprises a defoaming box body (501), a water outlet pipeline (502) and a through connecting pipeline (503).

8. The desalinated water recycling device of claim 1, wherein, The through connecting pipeline (503) is provided with a plurality of through connecting pipelines (503), and the through connecting pipelines (503) are parallelly arranged, and the through connecting pipeline (503) can be selected from a plastic transparent hose.