Integrated assembly water purification device

Water purification equipment with integrated water circuit board and multi-stage filtration and biodegradation mechanism solves the problem of complex piping systems in existing equipment, achieving space saving and convenient installation and maintenance.

CN117585859BActive Publication Date: 2026-05-08QINGDAO XINYUAN ENVIRONMENTAL PROTECTION EQUIP ENG
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
QINGDAO XINYUAN ENVIRONMENTAL PROTECTION EQUIP ENG
Filing Date
2023-12-27
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing water purification equipment has a complex piping system that occupies a lot of space and is inconvenient to install and maintain.

Method used

It adopts an integrated water circuit design, which connects various components through multiple water channels within the water circuit, reducing the need for complex piping. Combined with multi-stage filtration and biodegradation mechanisms, it achieves water purification.

Benefits of technology

This reduces the space occupied by water purification equipment and improves the convenience of installation and maintenance.

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Abstract

The application discloses an integrated assembly type water purification equipment, and relates to the technical scheme as follows: a water channel plate is internally provided with multiple water channels; a total water inlet pipe is used for feeding water to be purified into the water channel plate; a total water outlet pipe is used for feeding purified water out of the water channel plate; a first filtering mechanism is used for preliminarily filtering impurities in the water; a biological degradation mechanism is used for decomposing organic impurities in the drinking water; and a second filtering mechanism is used for finely filtering the water after biological degradation; through the arrangement of the water channel plate, complex pipelines are not needed, the space occupied by the water purification equipment is reduced, and the convenience of installation and maintenance is improved.
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Description

Technical Field

[0001] This invention relates to the technical field of drinking water purification, and more specifically, to an integrated, modular water purification device. Background Technology

[0002] As society develops and people's living standards continue to improve, their requirements for drinking water quality are getting higher and higher. However, due to the impact of human life and industrial production, natural water resources have been greatly affected. In order to meet people's requirements for drinking water quality, natural water resources need to be purified before they are supplied to people for drinking.

[0003] Existing water purification equipment requires numerous pipes and joints between various components to connect the equipment, resulting in a complex piping system that increases the space occupied by the water purification equipment and makes installation and maintenance inconvenient. Summary of the Invention

[0004] In view of the shortcomings of the existing technology, the purpose of this invention is to provide an integrated modular water purification device, which eliminates the need for complex piping by setting up a water circuit panel, reduces the space occupied by the water purification device, and improves the convenience of installation and maintenance.

[0005] To achieve the above objectives, the present invention provides the following technical solution: an integrated prefabricated water purification device, including a water circuit panel, wherein multiple water channels are provided in the water circuit panel;

[0006] The main water inlet pipe is used to supply water to be purified into the water circuit panel.

[0007] The main water outlet pipe is used to deliver purified water from the water circuit panel.

[0008] The first filtration mechanism is used for preliminary filtration of impurities in the water;

[0009] A biodegradation mechanism for decomposing organic impurities in drinking water;

[0010] And a second filtration mechanism, which is used to finely filter the biodegraded water;

[0011] The water entering the water tray flows sequentially through the first filtration mechanism, the biodegradation mechanism, and the second filtration mechanism.

[0012] The present invention is further configured such that: the first filtration mechanism includes an outer cylinder, the outer cylinder is detachably connected to the top of the water circuit plate, and the top of the outer cylinder is open;

[0013] A filter frame, wherein the filter frame is detachably connected to the outer cylinder;

[0014] A filter medium, which is disposed on a filter frame for preliminary filtration of drinking water;

[0015] The cylinder cover is threaded to the top of the outer cylinder, and when the cylinder cover is tightened on the top of the outer cylinder, the cylinder cover presses against the top of the filter frame;

[0016] The first water inlet pipe is located at the bottom of the outer cylinder to deliver water into the outer cylinder;

[0017] And a first water outlet pipe, which is located at the bottom of the outer cylinder to deliver filtered drinking water from the outer cylinder.

[0018] The present invention is further configured such that: the filter frame includes a filter tube, the outer side of the filter tube is attached to the inner wall of the outer cylinder, the bottom of the filter tube is attached to the bottom of the inner cavity of the outer cylinder, and the top of the filter tube is in contact with the cylinder cover;

[0019] The filter tube is equipped with a partition plate, which is vertically arranged to divide the inner cavity of the filter tube into an inlet chamber and a filter chamber. The filter medium is placed in the filter chamber. The bottom of the partition plate is sealed to the bottom of the outer cylinder, and a gap is left between the top of the partition plate and the cylinder cover so that the water in the inlet chamber can flow into the filter chamber. The inlet chamber is connected to the first inlet pipe, and the filter chamber is connected to the first outlet pipe.

[0020] The present invention is further configured such that: a sealing strip located at the bottom of the partition plate and on both sides of the partition plate is fixedly connected to the outside of the filter tube;

[0021] The bottom of the outer cylinder and both sides of the inner wall of the outer cylinder are provided with sealing grooves that cooperate with the sealing strip.

[0022] The present invention is further configured such that: the biodegradation mechanism includes a degradation tank, and the top and bottom of the degradation tank are sealed;

[0023] A degradation water inlet pipe, which is used to supply water into the degradation tank;

[0024] A biodegradable water outlet pipe is used to deliver the biodegraded drinking water from the biodegradable tank.

[0025] The chassis is fixedly connected to the bottom of the inner cavity of the degradation tank;

[0026] A temporary storage tube is fixedly connected to the top of the chassis;

[0027] A degradation block is fixedly connected to the top of a temporary storage tube. The degradation block has multiple vertically penetrating degradation holes that are connected to the temporary storage tube.

[0028] And degradation components, with each degradation hole containing a degradation component;

[0029] The degradation inlet pipe is connected to the temporary storage pipe, and the degradation outlet pipe is connected to the space between the temporary storage pipe and the inner wall of the degradation tank.

[0030] The present invention is further configured such that: an air intake chamber is provided inside the chassis, and a plurality of air intake holes extending upward through the chassis are provided at the top of the air intake chamber; a degradation air intake pipe is fixedly connected to the bottom of the degradation barrel, and the degradation air intake pipe is used to send air into the air intake chamber.

[0031] The present invention is further configured such that: the degradation component includes a fixing rod, the fixing rod is vertically arranged and the top of the fixing rod is connected to the top of the degradation tank, and the fixing rod extends vertically downward into the corresponding degradation hole;

[0032] And a spiral plate, which is spirally wound around the outside of the fixed rod, and the spiral plate is located inside the degradation hole, with the outer side of the spiral plate in contact with the inner wall of the degradation hole.

[0033] The present invention is further configured such that: a fixing plate is fixedly connected to the top of the fixing rod, and a plurality of fixing holes are provided on the top of the degradation bucket, the fixing holes vertically penetrating the top side wall of the degradation bucket, the plurality of fixing holes corresponding to a plurality of fixing plates respectively, and the fixing plates are threadedly connected to the fixing holes;

[0034] A lever is fixedly connected to the top of the fixed plate.

[0035] The present invention is further configured such that: the second filtration mechanism includes a filter barrel, the filter barrel is detachably connected to the top of the water channel plate, and the top and bottom of the filter barrel are closed;

[0036] The filter membrane is vertically arranged and divides the filtration through its inner cavity into two parallel chambers.

[0037] The second water inlet pipe is fixedly connected to the bottom of the filter barrel and communicates with one of the chambers.

[0038] And a second water outlet pipe, which is fixedly connected to the bottom of the filter bucket and communicates with another chamber.

[0039] The present invention is further configured such that: the water channels within the water channel panel are respectively first water channels, and the first water channels connect the main water inlet pipe to the first water inlet pipe;

[0040] The second water channel connects the first water outlet pipe to the degradation water inlet pipe;

[0041] The third water channel connects the degradation outlet pipe to the second inlet pipe;

[0042] The fourth waterway connects the second outlet pipe to the main outlet pipe.

[0043] In summary, the present invention has the following advantages over the prior art: the present invention, through the setting of the water circuit panel, eliminates the need for complex piping, reduces the space occupied by the water purification equipment, and also improves the convenience of installation and maintenance. Attached Figure Description

[0044] Figure 1 This is a schematic diagram of the overall structure of the embodiment;

[0045] Figure 2 This is a cross-sectional view of the overall structure of the embodiment;

[0046] Figure 3 A cross-sectional view of the first filtration mechanism and water channel plate in the embodiment;

[0047] Figure 4 This is a schematic diagram of the filtering framework for an embodiment;

[0048] Figure 5 This is a schematic diagram of the outer cylinder of an embodiment;

[0049] Figure 6 A cross-sectional view of the biodegradation mechanism and water channel plate in the embodiment;

[0050] Figure 7 This is a cross-sectional view illustrating the air intake chamber in an embodiment.

[0051] Figure 8 for Figure 7 Enlarged schematic diagram of part A;

[0052] Figure 9 This is a cross-sectional view of the second filtration mechanism and water channel plate in the embodiment.

[0053] In the diagram: 1. Water channel plate; 11. First water channel; 12. Second water channel; 13. Third water channel; 14. Fourth water channel; 15. Air channel; 2. First filtration mechanism; 21. Outer cylinder; 211. Sealing groove; 221. Filter pipe; 222. Divider plate; 223. Sealing strip; 23. Filter medium; 24. Cylinder cover; 25. First water inlet pipe; 26. First water outlet pipe; 3. Biodegradation mechanism; 31. Degradation tank; 311. Fixing hole; 32. 321. Chassis; 322. Air inlet chamber; 33. Temporary storage tube; 34. Degradation block; 341. Degradation hole; 35. Degradation component; 351. Fixing rod; 352. Spiral plate; 353. Fixing plate; 36. Degradation water inlet pipe; 37. Degradation water outlet pipe; 38. Degradation air inlet pipe; 4. Second filtration mechanism; 41. Filter barrel; 42. Filter membrane; 43. Second water inlet pipe; 44. Second water outlet pipe; 5. Main water inlet pipe; 6. Main water outlet pipe; 7. Oxygen air inlet pipe. Detailed Implementation

[0054] To enable those skilled in the art to better understand the technical solutions of the present invention, the technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. Based on the embodiments in this application, other similar embodiments obtained by those skilled in the art without creative effort should all fall within the scope of protection of this application. Furthermore, directional terms mentioned in the following embodiments, such as "up," "down," "left," and "right," are only for reference to the directions in the accompanying drawings; therefore, the directional terms used are for illustrative purposes and not for limiting the invention.

[0055] The present invention will be further described below with reference to the accompanying drawings and preferred embodiments.

[0056] Example: An integrated, prefabricated water purification device, see attached document. Figure 1 - Appendix Figure 9 The system includes a water tray 1, a main inlet pipe 5, a main outlet pipe 6, a first filtration mechanism 2, a biodegradation mechanism 3, and a second filtration mechanism 4. Specifically, the water tray 1 has multiple water channels. The main inlet pipe 5 is used to supply water to be purified into the water tray 1, the main outlet pipe 6 is used to discharge purified water from the water tray 1, the filtration mechanism is used to perform preliminary filtration of impurities in the water, the biodegradation mechanism 3 is used to decompose organic impurities in the drinking water, and the second filtration mechanism 4 is used to perform fine filtration of the biodegraded water. The water entering the water tray 1 flows sequentially through the first filtration mechanism 2, the biodegradation mechanism 3, and the second filtration mechanism 4 under the action of the water channels within the water tray 1.

[0057] Specifically, the first filtration mechanism 2 includes an outer cylinder 21, a filter frame, a filter medium 23, a cylinder cover 24, a first inlet pipe 25, and a first outlet pipe 26. The outer cylinder 21 is detachably connected to the top of the water circuit plate 1, and the top of the outer cylinder 21 is open. The filter frame is detachably connected inside the outer cylinder 21, and the filter medium 23 is placed on the filter frame for preliminary filtration of drinking water. The cylinder cover 24 is threadedly connected to the top of the outer cylinder 21, and when the cylinder cover 24 is tightened on the top of the outer cylinder 21, the cylinder cover 24 presses against the top of the filter frame. The first inlet pipe 25 is located at the bottom of the outer cylinder 21 for delivering water into the outer cylinder 21, and the first outlet pipe 26 is located at the bottom of the outer cylinder 21 for delivering the filtered drinking water out of the outer cylinder 21.

[0058] Specifically, the filter frame includes a filter tube 221 and a partition plate 222. The outer side of the filter tube 221 is attached to the inner wall of the outer cylinder 21, the bottom of the filter tube 221 is attached to the bottom of the inner cavity of the outer cylinder 21, and the top of the filter tube 221 is in contact with the cylinder cover 24. The partition plate 222 is vertically arranged to divide the inner cavity of the filter tube 221 into an inlet chamber and a filter chamber. The filter medium 23 is placed in the filter chamber. The bottom of the partition plate 222 is sealed to the bottom of the outer cylinder 21, and a gap is left between the top of the partition plate 222 and the cylinder cover 24 so that water in the inlet chamber can flow into the filter chamber. The inlet chamber is connected to the first inlet pipe 25, and the filter chamber is connected to the first outlet pipe 26.

[0059] The filter frame design facilitates the replacement of the filter frame and the filter media 23 within it after the cylinder cover 24 is removed.

[0060] Specifically, the filter tube 221 is fixedly connected to a sealing strip 223 located at the bottom of the partition plate 222 and on both sides of the partition plate 222; the bottom of the outer cylinder 21 and both sides of the inner wall of the outer cylinder 21 are provided with sealing grooves 211 that cooperate with the sealing strips 223.

[0061] Specifically, the biodegradation mechanism 3 includes a degradation tank 31, a degradation inlet pipe 36, a degradation outlet pipe 37, a base 32, a temporary storage pipe 33, a degradation block 34, and a degradation component 35. The top and bottom of the degradation tank 31 are sealed. The degradation tank 31 is detachably connected to the top of the water circuit plate 1. The degradation inlet pipe 36 is located at the bottom of the degradation tank 31 and is used to supply water into the degradation tank 31. The degradation outlet pipe 37 is located at the bottom of the degradation tank 31 and is used to discharge the biodegraded drinking water from the degradation tank 31. The base 32 is fixedly connected to the bottom of the inner cavity of the degradation tank 31. The temporary storage pipe 33 is fixedly connected to the top of the base 32. The degradation block 34 is fixedly connected to the top of the temporary storage pipe 33. The degradation block 34 is provided with multiple vertically penetrating degradation holes 341. The degradation holes 341 are connected to the temporary storage pipe 33. Each degradation hole 341 is provided with a degradation component 35. The degradation inlet pipe 36 is connected to the temporary storage pipe 33, and the degradation outlet pipe 37 is connected to the space between the temporary storage pipe 33 and the inner wall of the degradation tank 31.

[0062] Specifically, an air intake chamber 321 is provided inside the chassis 32. The top of the air intake chamber 321 has several upward-facing air intake holes 322 penetrating the chassis 32. A degradation air intake pipe 38 is fixedly connected to the bottom of the degradation tank 31, and the degradation air intake pipe 38 is used to deliver air into the air intake chamber 321. An air passage 15 is provided in the water pipe, and the air passage 15 is connected to an oxygen intake pipe 7. The oxygen intake pipe 7 is connected to one side of the water pipe 1 to communicate with the end of the air passage away from the degradation air intake pipe 38. A degradation air intake pipe 38 is fixedly connected to the bottom of the degradation tank 31, inserted into and connected to the air passage, and connected to the air intake chamber 321.

[0063] Water enters the temporary storage tube 33 through the degradation inlet pipe 36, while oxygen enters the temporary storage tube 33 through the air inlet chamber 321 and then through the air inlet 322. The water and oxygen mix in the temporary storage tube 33, and the oxygen-mixed water flows upward into the degradation hole 341. Degrading microorganisms adhere to the degradation component 35 in the degradation hole 341, using oxygen to decompose the organic matter in the water. The water is then discharged through the top of the degradation hole 341 and subsequently sent to the water circuit board through the degradation outlet hole.

[0064] Specifically, the degradation component 35 includes a fixing rod 351 and a spiral plate 352. The fixing rod 351 is vertically arranged, and its top is connected to the top of the degradation tank 31. The fixing rod 351 extends vertically downward into the corresponding degradation hole 341. The spiral plate 352 is spirally wound around the fixing rod 351 and is located inside the degradation hole 341. The outer side of the spiral plate 352 is in contact with the inner wall of the degradation hole 341, and the degrading microorganisms adhere to the spiral plate 352. By setting the spiral plate 352, the flow time of water in the degradation hole 341 can be extended, thereby improving the degradation effect of microorganisms on organic matter.

[0065] Specifically, a fixing plate 353 is fixedly connected to the top of the fixing rod 351. The top of the degradation tank 31 has multiple fixing holes 311, which vertically penetrate the top sidewall of the degradation tank 31. Each fixing hole 311 corresponds to a fixing plate 353, and the fixing plate 353 is threaded into the fixing hole 311. A lever is fixedly connected to the top of the fixing plate 353. The fixing plate 353 and lever facilitate the replacement of the fixing rod 351 and the spiral plate 352.

[0066] Specifically, the second filtration mechanism 4 includes a filter barrel 41, a filter membrane 42, a second inlet pipe 43, and a second outlet pipe 44. The filter barrel 41 is detachably connected to the top of the water circuit plate 1. The top and bottom of the filter barrel 41 are closed. The filter membrane 42 is vertically arranged and divides the filtration through its inner cavity into two parallel chambers. The second inlet pipe 43 is fixedly connected to the bottom of the filter barrel 41 and communicates with one of the chambers. The second outlet pipe 44 is fixedly connected to the bottom of the filter barrel 41 and communicates with the other chamber.

[0067] Specifically, the water channels within the water channel panel 1 are a first water channel 11, a second water channel 12, a third water channel 13, and a fourth water channel 14. The first water channel 11 connects the main inlet pipe 5 to the first inlet pipe 25; the second water channel 12 connects the first outlet pipe 26 to the degradation inlet pipe 36; the third water channel 13 connects the degradation outlet pipe 37 to the second inlet pipe 43; and the fourth water channel 14 connects the second outlet pipe 44 to the main outlet pipe 6. The first inlet pipe 25, the first outlet pipe 26, the degradation inlet pipe 36, the degradation outlet pipe 37, the second inlet pipe 43, and the second outlet pipe 44 are all connected to their respective water channels by being inserted into them.

[0068] The above description is merely a preferred embodiment of the present invention. The scope of protection of the present invention is not limited to the above embodiments. All technical solutions falling within the scope of the present invention's concept are within the scope of protection of the present invention. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principles of the present invention should also be considered within the scope of protection of the present invention.

Claims

1. An integrated, prefabricated water purification device, characterized in that: It includes a water channel plate (1), which has multiple water channels. The main water inlet pipe (5) is used to supply water to be purified into the water circuit panel (1); The main water outlet pipe (6) is used to send purified water out from the water circuit panel (1); The first filtration mechanism (2) is used to perform preliminary filtration of impurities in the water; Biodegradation mechanism (3), which is used to decompose organic impurities in water; And a second filtration mechanism (4), which is used to finely filter the biodegraded water; Water entering the water circuit (1) flows sequentially through the first filtration mechanism (2), the biodegradation mechanism (3), and the second filtration mechanism (4); The first filter mechanism (2) includes an outer cylinder (21), which is detachably connected to the top of the water circuit plate (1), and the top of the outer cylinder (21) is open. A filter frame, which is detachably connected inside the outer cylinder (21); Filter medium (23), which is disposed on the filter frame for preliminary filtration of water; The cylinder cover (24) is threaded to the top of the outer cylinder (21). When the cylinder cover (24) is tightened to the top of the outer cylinder (21), the cylinder cover (24) presses against the top of the filter frame. The first water inlet pipe (25) is located at the bottom of the outer cylinder (21) to deliver water into the outer cylinder (21); And a first water outlet pipe (26), which is located at the bottom of the outer cylinder (21) for sending out the filtered water inside the outer cylinder (21); The filter frame includes a filter tube (221), the outer side of which is attached to the inner wall of the outer cylinder (21), the bottom of which is attached to the bottom of the inner cavity of the outer cylinder (21), and the top of which is in contact with the cylinder cover (24). And a partition plate (222), which is vertically arranged to divide the inner cavity of the filter tube (221) into an inlet chamber and a filter chamber. The filter medium (23) is placed in the filter chamber. The bottom of the partition plate (222) is sealed to the bottom of the outer cylinder (21). A gap is left between the top of the partition plate (222) and the cylinder cover (24) so ​​that the water in the inlet chamber can flow into the filter chamber. The inlet chamber is connected to the first inlet pipe (25), and the filter chamber is connected to the first outlet pipe (26). The biodegradation mechanism (3) includes a degradation tank (31), the top and bottom of which are sealed. A degradation water inlet pipe (36) is used to supply water into the degradation tank (31); Degradation water outlet pipe (37), the degradation water outlet pipe (37) is used to send out the biodegraded water in the degradation tank (31); A chassis (32) is fixedly connected to the bottom of the inner cavity of the degradation tank (31); Temporary storage tube (33), which is fixedly connected to the top of chassis (32); A degradation block (34) is fixedly connected to the top of a temporary storage tube (33). The degradation block (34) is provided with a plurality of vertically penetrating degradation holes (341) and the degradation holes (341) are connected to the temporary storage tube (33). And a degradation component (35), wherein a degradation component (35) is provided in each degradation hole (341); The degradation inlet pipe (36) is connected to the temporary storage pipe (33), and the degradation outlet pipe (37) is connected to the space between the temporary storage pipe (33) and the inner wall of the degradation tank (31); An air inlet chamber (321) is provided inside the chassis (32). Several air inlet holes (322) that extend upward through the chassis (32) are provided at the top of the air inlet chamber (321). A degradation air inlet pipe (38) is fixedly connected to the bottom of the degradation barrel (31). The degradation air inlet pipe (38) is used to send air into the air inlet chamber (321). The degradation component (35) includes a fixing rod (351), which is vertically arranged and the top of the fixing rod (351) is connected to the top of the degradation bucket (31). The fixing rod (351) extends vertically downward into the corresponding degradation hole (341). And a spiral plate (352), which is spirally wound around the outside of the fixed rod (351), the spiral plate (352) is located inside the degradation hole (341), and the outer side of the spiral plate (352) is in contact with the inner wall of the degradation hole (341); The top of the fixing rod (351) is fixedly connected to a fixing plate (353), and the top of the degradation bucket (31) is provided with multiple fixing holes (311). The fixing holes (311) vertically penetrate the top side wall of the degradation bucket (31), and the multiple fixing holes (311) correspond to the multiple fixing plates (353) respectively. The fixing plates (353) are threadedly connected to the fixing holes (311). A lever is fixedly connected to the top of the fixed plate (353).

2. The integrated prefabricated water purification equipment according to claim 1, characterized in that: The filter tube (221) is fixedly connected to a sealing strip (223) located at the bottom of the partition plate (222) and on both sides of the partition plate (222); The bottom of the outer cylinder (21) and both sides of the inner wall of the outer cylinder (21) are provided with sealing grooves (211) that cooperate with the sealing strip (223).

3. The integrated prefabricated water purification equipment according to claim 2, characterized in that: The second filtration mechanism (4) includes a filter barrel (41), which is detachably connected to the top of the water circuit plate (1), and the top and bottom of the filter barrel (41) are enclosed. A filter membrane (42) is vertically arranged, which divides the inner cavity of the filter bucket (41) into two parallel chambers. The second water inlet pipe (43) is fixedly connected to the bottom of the filter barrel (41) and communicates with one of the chambers; And a second water outlet pipe (44), which is fixedly connected to the bottom of the filter barrel (41) and communicates with another chamber.

4. The integrated prefabricated water purification equipment according to claim 3, characterized in that: The water channels in the water channel panel (1) are the first water channel (11), the second water channel (12), the third water channel (13), and the fourth water channel (14). The first water channel (11) connects the main water inlet pipe (5) to the first water inlet pipe (25); the second water channel (12) connects the first water outlet pipe (26) to the degradation water inlet pipe (36); the third water channel (13) connects the degradation water outlet pipe (37) to the second water inlet pipe (43); and the fourth water channel (14) connects the second water outlet pipe (44) to the main water outlet pipe (6).

Citation Information

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