Integrated water purifying device

Through the design of integrated water quality pretreatment, coagulation and stirring, double settlement and disinfection and sterilization components, the existing water purification device is solved and the problems of blockage and water quality in field applications are not met, achieving flexible movement and efficient purification of the water purification device.

CN223087721UActive Publication Date: 2025-07-11WEIFANG LIDE ELECTRIC APPLIANCE CO LTD
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Patent Information

Application Number
CN202422155438.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-03
Publication Date
2025-07-11
Estimated Expiration
2034-09-03

AI Technical Summary

Technical Problem

The existing integrated water purification device lacks pretreatment components and sterilization and disinfection components when used in the field, resulting in the equipment being easily blocked, the service life is reduced, and the filtered water quality is difficult to meet the requirements.

Method used

An integrated integrated water purification device is designed, including water quality pretreatment components, coagulation and stirring components, double settlement components, disinfection and sterilization components, etc., to realize the pretreatment, coagulation, precipitation, filtration and sterilization of raw water, and to facilitate the movement and flexible use of the device by setting up a mobile carrier.

Benefits of technology

It has achieved comprehensive purification and treatment of raw water, highly integrated equipment, small space, and can be easily transferred to different areas, ensuring the safety and sanitation of the water quality of the effluent, and is suitable for mobile water supply and emergency water supply in disaster areas.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of water quality purification equipment, and provides an integrated water purification device which comprises a mobile carrier, a first box body is arranged on the mobile carrier, a water quality pretreatment assembly communicated with an external water input pipe is arranged in the first box body, and the bottom of the water quality pretreatment assembly is communicated with a coagulation stirring assembly. The coagulation stirring assembly is communicated with a coagulant adding assembly and an electrolyte adding assembly, the bottom of the coagulation stirring assembly is communicated with at least two double sedimentation assemblies, the double sedimentation assemblies are communicated with a water storage tank, the water storage tank is communicated with a filter assembly, the filter assembly is communicated with a disinfection and sterilization assembly, and the disinfection and sterilization assembly is communicated with a clear water tank. The clear water tank is communicated with a water supply assembly. According to the utility model, the raw water can be pretreated, coagulated, precipitated, filtered, sterilized and disinfected, the comprehensive purification treatment of the raw water is realized, and meanwhile, the equipment is highly integrated, occupies a small space, can be conveniently transferred to different areas, and is flexible to use.
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Description

Technical Field

[0001] The utility model relates to the technical field of water purification equipment, in particular to an integrated water purification device. Background Art

[0002] An integrated water purifier integrates the essence of processes such as flocculation, sedimentation, sewage discharge, backwashing, and water collection and filtration. It is a series of water purification devices that can operate automatically without manual operation and is an important unit for realizing the automatic management of water plants.

[0003] Currently, there are also some integrated water purification devices. For example, a Chinese utility model patent with the patent number CN202322413250.5 and the patent name "An Integrated Water Purifier" includes a housing assembly, a filtration assembly, and a connection assembly. The left end of the inner wall of the housing assembly is fixedly connected with a filtration assembly, and both the front and rear ends on the right side of the top of the inner wall of the housing assembly are fixedly connected with connection assemblies. The housing assembly includes a device housing. The left end of the device housing is rotatably connected with an opening and closing door. The left side of the bottom end of the inner wall of the device housing is fixedly connected with a water pump. The right side of the bottom end of the inner wall of the device housing is fixedly connected with and penetrates an outlet pipe. The top end of the outlet pipe is threadedly connected with a threaded sleeve. The front right side of the device housing is rotatably connected with a compartment door. Although the above structure can achieve the filtration and purification of water, when applied in the wild, due to the turbid water quality and a large amount of impurities, the above device lacks a pretreatment component and a sterilization and disinfection component, which easily leads to the blockage of the integrated water purification equipment, reduces the service life, and the filtered water quality is difficult to meet the requirements. Summary of the Utility Model

[0004] In order to overcome the defects of the above-mentioned prior art, the utility model provides an integrated water purification device, which can perform pretreatment, coagulation, sedimentation, filtration, and sterilization and disinfection on raw water, realize the comprehensive purification treatment of raw water, and at the same time, the equipment is highly integrated, occupies a small space, and can be conveniently transferred to different areas, with flexible use.

[0005] To solve the above technical problems, the technical solution of the utility model is as follows:

[0006] An integrated water purification device, including a mobile carrier, on which a first box body is provided. An external water input pipe is provided on the first box body. A water quality pretreatment component communicated with the external water input pipe is arranged in the first box body. The bottom of the water quality pretreatment component is communicated with a coagulation stirring component. A coagulant adding component and an electrolyte adding component are also communicated with the coagulation stirring component. The bottom of the coagulation stirring component is communicated with at least two double sedimentation components. All the double sedimentation components are communicated with a water storage tank. The water storage tank is communicated with a filtering component. The filtering component is communicated with a disinfection and sterilization component. The disinfection and sterilization component is communicated with a clean water tank. A water supply component is communicated with the clean water tank. The water outlet end of the water supply component extends to the outside of the first box body.

[0007] As an improved technical solution, the water quality pretreatment component includes a second box body. A first partition board is arranged in the second box body. The first partition board divides the second box body into a water inlet cavity and a water storage cavity. The water inlet cavity is communicated with the external water input pipe. An inclined overflow filter screen is also arranged between the first partition board and the inner wall of the second box body. A cleaning component is arranged on the second box body and near the overflow filter screen.

[0008] As an improved technical solution, the cleaning component includes a sundry collection box. The sundry collection box is slidably installed on the second box body through a slideway. A cover plate for cleaning the sundry collection box is arranged on the top of the first box body. The sundry collection box is correspondingly arranged with the overflow filter screen and is communicated through a sundry collection hole.

[0009] A pushing device is also installed on the second box body. A cleaning plate is installed on the piston rod of the pushing device. The cleaning plate is correspondingly arranged with the sundry collection box, and the bottom of the cleaning plate is in sliding fit with the overflow filter screen.

[0010] As an improved technical solution, a leakage net is arranged on the side wall of the second box body and near the sundry collection hole. The leakage net is correspondingly arranged with the sundry collection box, and the top of the leakage net is connected to the overflow filter screen.

[0011] As an improved technical solution, the coagulation stirring component includes a third box body. The third box body is communicated with the water storage cavity. A stirring shaft is rotatably installed in the third box body. A number of stirring blades are arranged in an array on the stirring shaft. One end of the stirring shaft extends to the outside of the third box body and is connected with a stirring motor.

[0012] The coagulant adding component includes a coagulant storage tank. The coagulant storage tank is communicated with the third box body through a first metering pump.

[0013] The electrolyte addition component includes an electrolyte storage tank, and the electrolyte storage tank communicates with the third box body through a second metering pump.

[0014] As an improved technical solution, the double sedimentation component includes a fourth box body. A second partition plate is provided in the fourth box body. The second partition plate divides the fourth box body into a first sedimentation chamber and a second sedimentation chamber. An overflow hole is provided at the top of the second partition plate, and the overflow hole communicates with the first sedimentation chamber and the second sedimentation chamber.

[0015] Arc-shaped bottom plates or V-shaped plates are provided at the bottoms of the first sedimentation chamber and the second sedimentation chamber. A sludge discharge pipe is connected to the bottom of the arc-shaped bottom plate or V-shaped plate. A number of symmetrically arranged filter inclined plates are respectively arranged in the first sedimentation chamber and the second sedimentation chamber. The filter inclined plates are divided into longitudinal plates and transverse plates, and a filter through hole is jointly formed between adjacent longitudinal plates and transverse plates.

[0016] The input end of the first sedimentation chamber communicates with the coagulation stirring component, and the output end of the second sedimentation chamber communicates with an overflow tank. The overflow tank is installed outside the fourth box body, and the overflow tank communicates with the water storage tank.

[0017] As an improved technical solution, the disinfection and sterilization component includes a fifth box body. The input end of the fifth box body communicates with the filtration component, and the output end of the fifth box body communicates with the clean water tank. An ultraviolet lamp is installed at the top of the fifth box body, a conveying pipeline is installed at the bottom of the fifth box body, a conveying pump is installed on the conveying pipeline, and one end of the conveying pipeline away from the fifth box body communicates with an ozone generator or a disinfectant storage tank.

[0018] After adopting the above technical solutions, the beneficial effects of the present utility model are:

[0019] By setting up a mobile carrier, a first box body is arranged on the mobile carrier. An external water input pipe is provided on the first box body. A water quality pretreatment component communicated with the external water input pipe is arranged inside the first box body. The bottom of the water quality pretreatment component is communicated with a coagulation stirring component. A coagulant adding component and an electrolyte adding component are also communicated with the coagulation stirring component. The bottom of the coagulation stirring component is communicated with at least two double sedimentation components. All the double sedimentation components are communicated with a water storage tank. The water storage tank is connected to a filtering component. The filtering component is communicated with a disinfection and sterilization component. The disinfection and sterilization component is communicated with a clean water tank. A water supply component is communicated with the clean water tank. The water outlet end of the water supply component extends to the outside of the first box body. By setting up the first box body which is arranged on the mobile carrier, it is convenient to move the integrated integrated water purification device through the mobile carrier, realizing mobile water supply and emergency water supply in disaster areas. By setting up the water quality pretreatment component which is communicated with the external water input pipe, the external water can be pretreated through the water quality pretreatment component, intercepting and removing larger impurities and reducing the damage received by subsequent treatment components. By setting up the coagulation stirring component, the coagulant adding component and the electrolyte adding component, the coagulant adding component can add coagulant to the pretreated water. The coagulant undergoes hydrolysis and polymerization reactions in water to form macromolecular colloids, which adsorb with suspended substances and particulate matters in water and aggregate into larger flocs, facilitating the removal and sedimentation of impurities in water. The electrolyte adding component can add electrolyte to the pretreated water. The added electrolyte neutralizes the charges carried by colloidal particles, making the colloidal particles more likely to aggregate into larger particles, thereby accelerating flocculation. By setting up the coagulation stirring component to accelerate the mixing reaction and improve the treatment efficiency. By setting up at least two double sedimentation components, the double sedimentation components can sediment the coagulated water twice, enabling the flocs to gradually sediment to the bottom of the pool under the action of gravity to form sludge, while the sedimented water overflows into the water storage tank. Since sedimentation is carried out twice, the flocs in water can be greatly reduced, improving the water quality. At the same time, by setting up at least two double sedimentation components, they can operate alternately during use, facilitating the discharge of bottom sludge. By setting up the filtering component, the sedimented water can be filtered to remove fine impurities, microorganisms, organic matters, color, odor, etc. in the water. By setting up the disinfection and sterilization component, bacteria, viruses and other microorganisms in the water can be killed, ensuring the safety and hygiene of the effluent water quality and making the effluent water quality meet the relevant national standards. By setting up the clean water tank and the water supply component, the treated clean water can be stored and transported to the water-using unit.

[0020] In summary, the present utility model provides an integrated integrated water purification device, which can pre-treat, coagulate, precipitate, filter and disinfect and sterilize raw water, realizing the comprehensive purification treatment of raw water. At the same time, the equipment is highly integrated, occupies a small space, can be conveniently transferred to different areas, and is flexible to use. Description of the Drawings

[0021] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on the structures shown in these drawings. In addition, in the drawings, the components or parts are not necessarily drawn according to the actual scale.

[0022] Figure 1 Structural schematic diagram of the present invention;

[0023] Figure 2 Structural schematic diagram of the water quality pretreatment component and the cleaning component in the present invention;

[0024] Figure 3 Structural schematic diagram of the coagulation stirring component, the coagulant adding component and the electrolyte adding component in the present invention;

[0025] Figure 4 Structural schematic diagram of the double sedimentation component in the present invention;

[0026] Figure 5 Structural schematic diagram of the filter inclined plate in the present invention;

[0027] Figure 6 Structural schematic diagram of the filter inclined plate in another angular direction of the present invention;

[0028] Figure 7 Structural schematic diagram of the disinfection and sterilization component in the present invention;

[0029] Reference numerals:

[0030] 1. Mobile carrier, 2. First box body, 3. External water input pipe, 4. Water quality pretreatment component, 401. Second box body, 402. First partition board, 403. Water inlet cavity, 404. Water storage cavity, 405. Overflow filter screen, 5. Coagulation stirring component, 501. Third box body, 502. Stirring shaft, 503. Stirring blades, 504. Stirring motor, 6. Coagulant adding component, 601. Coagulant storage tank, 602. First metering pump, 7. Electrolyte adding component, 701. Electrolyte storage tank, 702. Second metering pump, 8. Double sedimentation component, 801. Fourth box body, 802. Second partition board, 803. First sedimentation cavity, 804. Second sedimentation cavity, 805. Overflow hole, 806. Arc-shaped bottom plate, 807. Sludge discharge pipe, 808. Filter inclined plate, 809. Filter through hole, 810. Overflow tank, 9. Water storage tank, 10. Filter component, 11. Disinfection and sterilization component, 1101. Fifth box body, 1102. Ultraviolet lamp, 1103. Delivery pipeline, 1104. Delivery pump, 1105. Disinfectant storage tank, 12. Clean water tank, 13. Water supply component, 14. Cleaning component, 1401. Debris collection box, 1402. Cover plate, 1403. Pushing device, 1404. Cleaning plate, 1405. Filter mesh. Detailed implementation manners

[0031] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0032] It should be noted that all directional indications (such as up, down, left, right, front, back,...) in the embodiments of the present invention are only used to explain the relative positional relationship and movement conditions between components in a specific posture (as shown in the drawings). If the specific posture changes, the directional indications will also change accordingly.

[0033] At the same time, the meaning of "and / or" or "and / or" appearing throughout the text is that it includes three solutions. Taking "A and / or B" as an example, it includes solution A, or solution B, or a solution that satisfies both A and B at the same time.

[0034] In addition, in the present utility model, descriptions such as "first", "second", etc. are only for descriptive purposes and should not be construed as indicating or implying their relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include at least one such feature. In addition, the technical solutions between various embodiments may be combined with each other, but it must be based on the ability of those of ordinary skill in the art to implement. When the combination of technical solutions results in contradictions or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection required by the present utility model.

[0035] Combined Figures 1-7 As shown, an integrated water purification device includes a mobile carrier 1, which can be a vehicle. A first box body 2 is provided on the mobile carrier 1. The first box body 2 can be fixed on the mobile carrier 1 or removed from the mobile carrier 1. An external water input pipe 3 is provided on the first box body 2 for inputting external water. A water quality pretreatment component 4 communicated with the external water input pipe 3 is provided in the first box body 2. The bottom of the water quality pretreatment component 4 is communicated with a coagulation stirring component 5. A coagulant adding component 6 and an electrolyte adding component 7 are also communicated with the coagulation stirring component 5. The bottom of the coagulation stirring component 5 is communicated with at least two double sedimentation components 8. The double sedimentation components 8 are all communicated with a water storage tank 9. The water storage tank 9 is communicated with a filtering component 10. The filtering component 10 is communicated with a disinfection and sterilization component 11. The disinfection and sterilization component 11 is communicated with a clean water tank 12. A water supply component 13 is communicated with the clean water tank 12, and the water outlet end of the water supply component 13 extends to the outside of the first box body 2;

[0036] Specifically, by setting the first box body 2 on the mobile carrier 1, it is convenient to move the integrated water purification device through the mobile carrier 1 to achieve mobile water supply and emergency water supply in disaster areas. By setting the water quality pretreatment component 4, which is connected to the external water input pipe 3, the external water can be pretreated through the water quality pretreatment component 4 to intercept and remove larger impurities, reducing the damage received by the subsequent treatment components. By setting the coagulation stirring component 5, the coagulant addition component 6 and the electrolyte addition component 7, the coagulant addition component 6 can add coagulant to the pretreated water. The coagulant undergoes hydrolysis and polymerization reactions in the water to form macromolecular colloids, which adsorb each other with the suspended solids and particulate matters in the water and aggregate into larger flocs, facilitating the removal and sedimentation of impurities in the water. The electrolyte addition component 7 can add electrolytes to the pretreated water. The added electrolytes will neutralize the charges carried by the colloidal particles, making it easier for the colloidal particles to aggregate into larger particles, thereby accelerating flocculation. By setting the coagulation stirring component 5, the mixing reaction is accelerated and the treatment efficiency is improved. By setting at least two double sedimentation components 8, the double sedimentation components 8 can sediment the coagulated water twice, causing the flocs to gradually settle to the bottom of the pool under the action of gravity to form sludge, while the sedimented water overflows into the water storage tank 9. Since the double sedimentation is carried out, the flocs in the water can be greatly reduced and the water quality can be improved. At the same time, by setting at least two double sedimentation components 8, they can operate alternately during use, facilitating the discharge of the bottom sludge. By setting the filtration component 10, the sedimented water can be filtered to remove fine impurities, microorganisms, organic matters, color, odor, etc. in the water. By setting the disinfection and sterilization component 11, bacteria, viruses and other microorganisms in the water can be killed to ensure the safety and hygiene of the effluent water quality, making the effluent water quality meet the relevant national standards. By setting the clean water tank 12 and the water supply component 13, the treated clean water can be stored and transported to the water-using units.

[0037] In addition, in combination with Figure 1 As shown, the filtration component 10 uses a filtration device currently sold on the market, which includes multiple layers of filtration materials and filtration membranes and can effectively remove impurities such as fine particles, organic matters, color, odor, etc. in the water. In addition, an automatic backwashing system is also set on the filtration component 10. Through the preset program control, the regular automatic washing of the filtration materials is realized. When the impurities accumulated on the surface of the filtration materials reach a certain degree, resulting in an increase in filtration resistance and a decrease in the effluent water quality, the system will automatically start the backwashing program. At this time, the backwashing water enters the filtration component 10 to conduct reverse washing on the filtration materials, washing down the impurities on the surface of the filtration materials and discharging the waste water.

[0038] In combination with Figures 1-2As shown, the water quality pretreatment component 4 includes a second box body 401. Inside the second box body 401, there is a first partition plate 402. The first partition plate 402 is in an L-shaped structure. The first partition plate 402 divides the second box body 401 into a water inlet chamber 403 and a water storage chamber 404. The water inlet chamber 403 is connected to the external water input pipe 3. An inclined overflow filter screen 405 is also provided between the first partition plate 402 and the inner wall of the second box body 401. A cleaning component 14 is provided on the second box body 401 and near the overflow filter screen 405. External water enters the water inlet chamber 403 through the external water input pipe 3 and gradually overflows to the overflow filter screen 405 through the water inlet chamber 403. The external water is roughly filtered by the overflow filter screen 405 to intercept and remove larger sundries in the water source. The sundries filtered out on the overflow filter screen 405 can be cleaned by the cleaning component 14 to avoid the problem of the mesh holes of the overflow filter screen 405 being blocked after long-term use.

[0039] Combined with Figures 1-2 As shown, the cleaning component 14 includes a sundries collection box 1401. The sundries collection box 1401 is slidably installed on the second box body 401 through a slideway. A cover plate 1402 for cleaning the sundries collection box 1401 is provided on the top of the first box body 2. The sundries collection box 1401 is correspondingly arranged with the overflow filter screen 405 and is connected through a sundries collection hole. The sundries filtered out by the overflow filter screen 405 can be collected by the sundries collection box 1401. Since the sundries collection box 1401 is slidably installed on the second box body 401 through a slideway, therefore, by opening the cover plate 1402 on the first box body 2, the sundries collection box 1401 can be regularly pulled out from the slideway for cleaning;

[0040] A pushing device 1403 is also installed on the second box body 401. The pushing device 1403 can be a cylinder. A cleaning plate 1404 is installed on the piston rod of the pushing device 1403. The cleaning plate 1404 is correspondingly arranged with the sundries collection box 1401, and the bottom of the cleaning plate 1404 is in sliding fit with the overflow filter screen 405. By the elongation of the piston rod of the pushing device 1403, the cleaning plate 1404 can be driven to slide along the surface of the overflow filter screen 405, and the sundries filtered out on the surface of the overflow filter screen 405 are cleaned and the sundries are cleaned into the sundries collection box 1401.

[0041] Combined with Figures 1-2 As shown, a strainer 1405 is provided on the side wall of the second box body 401 and near the sundries collection hole. The strainer 1405 is correspondingly arranged with the sundries collection box 1401. The top of the strainer 1405 is connected to the overflow filter screen 405. By providing the strainer 1405, the water contained in the sundries collected in the sundries collection box 1401 can be transported into the water storage chamber 404.

[0042] Combined with Figure 1 And Figure 3As shown in the figure, the coagulation stirring assembly 5 includes a third box body 501. The third box body 501 is communicated with the water storage cavity 404, so that the water preliminarily treated in the water storage cavity 404 enters the third box body 501. A stirring shaft 502 is rotatably installed in the third box body 501. A number of stirring blades 503 are arranged on the stirring shaft 502. One end of the stirring shaft 502 extends to the outside of the third box body 501 and is connected with a stirring motor 504. The stirring motor 504 can drive the stirring shaft 502 to rotate. During the rotation of the stirring shaft 502, the stirring blades 503 drive the water, coagulant and electrolyte in the third box body 501 to be fully stirred and mixed, accelerating the reaction and improving the treatment efficiency.

[0043] The coagulant adding assembly 6 includes a coagulant storage tank 601. The coagulant storage tank 601 is communicated with the third box body 501 through a first metering pump 602. Coagulant is stored in the coagulant storage tank 601. The coagulant can be polyaluminum chloride, polyacrylamide, etc. Through the first metering pump 602, the coagulant can be added into the third box body 501 in a regulated manner according to the water quality. The coagulant undergoes hydrolysis and polymerization reactions in water to form macromolecular colloids, which adsorb with suspended solids and particulate matters in the water and aggregate into larger flocs, facilitating the removal and sedimentation of impurities in the water.

[0044] The electrolyte adding assembly 7 includes an electrolyte storage tank 701. The electrolyte storage tank 701 is communicated with the third box body 501 through a second metering pump 702. Electrolyte is stored in the electrolyte storage tank 701. Through the second metering pump 702, the electrolyte can be added into the third box body 501 in a regulated manner according to the water quality. The added electrolyte neutralizes the charges carried by the colloidal particles, making it easier for the colloidal particles to aggregate into larger particles, thereby accelerating flocculation.

[0045] Combined Figure 1 and Figures 4-6 As shown in the figure, the double sedimentation assembly 8 includes a fourth box body 801. A second partition 802 is provided in the fourth box body 801. The second partition 802 divides the fourth box body 801 into a first sedimentation cavity 803 and a second sedimentation cavity 804. An overflow hole 805 is provided at the top of the second partition 802. The overflow hole 805 communicates the first sedimentation cavity 803 and the second sedimentation cavity 804. By providing the first sedimentation cavity 803 and the second sedimentation cavity 804, two-stage sedimentation can be carried out to reduce the flocs in the water quality.

[0046] An arc-shaped bottom plate 806 or a V-shaped plate is provided at the bottom of both the first sedimentation chamber 803 and the second sedimentation chamber 804. A sludge discharge pipe 807 is connected to the bottom of the arc-shaped bottom plate 806 or the V-shaped plate. By providing the arc-shaped bottom plate 806 or the V-shaped plate, it is convenient to collect the sedimented sludge and discharge it through the sludge discharge pipe 807. A number of symmetrically arranged filter inclined plates 808 are respectively arranged in the first sedimentation chamber 803 and the second sedimentation chamber 804. The filter inclined plates 808 are divided into longitudinal plates and transverse plates. A filter through-hole 809 is jointly formed between adjacent longitudinal plates and transverse plates. Water is filtered through the filter through-hole 809 to make large-particle flocs settle, while the clear water reaches the top of the filter inclined plate 808 through the filter through-hole 809, thereby realizing the filtration of water;

[0047] The input end of the first sedimentation chamber 803 is communicated with the coagulation stirring assembly 5, and the output end of the second sedimentation chamber 804 is communicated with the overflow tank 810. The overflow tank 810 is installed outside the fourth box body 801, and the overflow tank 810 is communicated with the water storage tank 9. The clear water sedimented and filtered by the first sedimentation chamber 803 and the second sedimentation chamber 804 is transported to the water storage tank 9 for storage.

[0048] Combined with Figure 1 and Figure 7 As shown, the disinfection and sterilization assembly 11 includes a fifth box body 1101. The input end of the fifth box body 1101 is communicated with the filtration assembly 10, and the output end of the fifth box body 1101 is communicated with the clear water tank 12. An ultraviolet lamp 1102 is installed on the top of the fifth box body 1101. The water is sterilized by the ultraviolet rays emitted by the ultraviolet lamp 1102. A conveying pipeline 1103 is installed at the bottom of the fifth box body 1101. A conveying pump 1104 is installed on the conveying pipeline 1103. One end of the conveying pipeline 1103 far from the fifth box body 1101 is communicated with an ozone generator or a disinfectant storage tank 1105. Ozone can be prepared by the ozone generator. By transporting ozone into the water in the second box body 401 through the conveying pipeline 1103, the water can be sterilized and disinfected. The disinfectant stored in the disinfectant storage tank 1105 is transported into the water through the conveying pipeline 1103, and bacteria, viruses and other microorganisms in the water can be killed to ensure that the quality of the effluent water meets the national standards.

[0049] In addition, the water supply assembly 13 includes a water supply pipeline, and the water supply pipeline is communicated outside the first box body 2, and a water supply pump is installed on the water supply pipeline. Water is transported to the water-using unit through the water supply pump.

[0050] In addition, there are many conveying pumps 1104 and various valves in the integrated integrated water purification device. The conveying pumps 1104 and various valves are common in daily life and are well-known common knowledge within the technical field. Therefore, they will not be elaborated here. Some conveying pumps 1104 and valves are not marked in the figure.

[0051] In addition, the integrated water purification device is also equipped with a monitoring and control system for real-time monitoring of the operating status of the device and the quality of the effluent water, achieving automatic monitoring and remote information management. These systems usually include instrument devices such as on-line water quality monitors, flow meters, pressure gauges, etc., as well as automation control devices such as PLC or DCS. Through these devices, real-time monitoring and automatic adjustment of the operating status of the device can be achieved, ensuring that the device operates in the best state and promptly discovering and solving problems.

[0052] For ease of understanding, the working process of this embodiment is described below:

[0053] Combined with Figures 1-7 As shown, first, the external water is transported through the external water input pipe 3 into the water inlet chamber 403 of the water quality pretreatment component 4. The external water in the water inlet chamber 403 gradually overflows to the overflow filter screen 405. The overflow filter screen 405 conducts rough filtration on the external water, intercepting and removing larger debris in the water source. The filtered water then enters the water storage chamber 404. After being used for a period of time, the piston rod of the pushing device 1403 extends and pushes the cleaning plate 1404 to slide along the surface of the overflow filter screen 405, cleaning the debris filtered out on the surface of the overflow filter screen 405 and discharging the debris into the debris collection box 1401. By opening the cover plate 1402 on the first box body 2, the debris collection box 1401 can be pulled out from the slideway for cleaning;

[0054] After that, the water pretreated in the water storage chamber 404 is transported into the third box body 501 of the coagulation stirring component 5. Then, the coagulant in the coagulant storage tank 601 is transported into the third box body 501 through the first metering pump 602, and the electrolyte in the electrolyte storage tank 701 is transported into the third box body 501 through the second metering pump 702. Then, the stirring motor 504 operates, and drives the stirring blades 503 through the stirring shaft 502 to stir and mix the water in the third box body 501, accelerating the mixing reaction and improving the flocculation efficiency;

[0055] After that, the water in the third box body 501 is transported into the fourth box body 801 of the double sedimentation component 8 through the delivery pump 1104. The first sedimentation chamber 803 and the second sedimentation chamber 804 are provided in the fourth box body 801. Filter inclined plates 808 are provided in both the first sedimentation chamber 803 and the second sedimentation chamber 804. The water is blocked and sedimented twice through the filter inclined plates 808, enabling the flocs to settle downward under the action of gravity to form sludge, while the clear water finally converges into the overflow tank 810 through the filter inclined plates 808. When there is more silt accumulation, the water is transported to another double sedimentation component 8 through the delivery pump 1104 for sedimentation treatment. Then, the settled silt is discharged through the sludge discharge pipe 807;

[0056] After that, the water in the overflow tank 810 is conveyed to the water storage tank 9, and the water in the water storage tank 9 is conveyed to the filtration assembly 10. The settled water is filtered by the filtration assembly 10 to remove fine impurities, microorganisms, organic matters, chromaticity, odor, etc. in the water. The filtered water is conveyed to the fifth tank body 1101 of the disinfection and sterilization assembly 11. An ultraviolet lamp 1102 is installed at the top of the fifth tank body 1101, and a conveying pipeline 1103 is installed at the bottom. The conveying pipeline 1103 is communicated with an ozone generator or a disinfectant storage tank 1105. Microorganisms such as bacteria and viruses in the water are killed by ultraviolet rays and ozone or disinfectants to ensure that the quality of the effluent water meets the national standards.

[0057] After that, the water after disinfection and sterilization is conveyed to the clean water tank 12 and conveyed to the water-using unit through the water supply assembly 13, thus forming an integrated treatment of water.

[0058] In summary, the present utility model provides an integrated water purification device, which can perform pretreatment, coagulation, sedimentation, filtration, disinfection and sterilization on raw water, realizing the comprehensive purification treatment of raw water. At the same time, the device is highly integrated, occupies a small space, and can be conveniently transferred to different areas, with flexible use.

[0059] It should be understood that the use of these embodiments is only for illustrating the present utility model and is not intended to limit the protection scope of the present utility model. In addition, it should also be understood that after reading the technical content of the present utility model, those skilled in the art can make various changes, modifications and / or variations to the present utility model, and all these equivalent forms also fall within the protection scope defined by the appended claims of this application.

Claims

1. An integrated water purification device, characterized in that: It includes a mobile carrier, on which a first box body is provided. An external water input pipe is provided on the first box body. A water quality pretreatment component communicated with the external water input pipe is arranged in the first box body. The bottom of the water quality pretreatment component is communicated with a coagulation stirring component. A coagulant adding component and an electrolyte adding component are also communicated with the coagulation stirring component. The bottom of the coagulation stirring component is communicated with at least two double sedimentation components. The double sedimentation components are all communicated with a water storage tank. The water storage tank is communicated with a filtering component. The filtering component is communicated with a disinfection and sterilization component. The disinfection and sterilization component is communicated with a clean water tank. A water supply component is communicated with the clean water tank. The water outlet end of the water supply component extends to the outside of the first box body.

2. The integrated water purification device according to claim 1, characterized in that: The water quality pretreatment component includes a second box body. A first partition board is arranged in the second box body. The first partition board divides the second box body into a water inlet cavity and a water storage cavity. The water inlet cavity is communicated with the external water input pipe. An inclined overflow filter screen is also arranged between the first partition board and the inner wall of the second box body. A cleaning component is arranged on the second box body and near the overflow filter screen.

3. The integrated water purification device according to claim 2, characterized in that: The cleaning component includes a sundry collection box. The sundry collection box is slidably installed on the second box body through a slideway. A cover plate for cleaning the sundry collection box is arranged on the top of the first box body. The sundry collection box is arranged corresponding to the overflow filter screen and is communicated through a sundry collection hole. A pushing device is also installed on the second box body. A cleaning plate is installed on the piston rod of the pushing device. The cleaning plate is arranged corresponding to the sundry collection box, and the bottom of the cleaning plate is slidably matched with the overflow filter screen.

4. The integrated water purification device according to claim 3, characterized in that: A strainer is arranged on the side wall of the second box body and near the sundry collection hole. The strainer is arranged corresponding to the sundry collection box, and the top of the strainer is connected to the overflow filter screen.

5. The integrated water purification device according to claim 2, wherein: The coagulation stirring component includes a third box body. The third box body is communicated with the water storage cavity. A stirring shaft is rotatably installed in the third box body. A number of stirring blades are arranged in sequence on the stirring shaft. One end of the stirring shaft extends to the outside of the third box body and is connected with a stirring motor. The coagulant adding component includes a coagulant storage tank. The coagulant storage tank is communicated with the third box body through a first metering pump. The electrolyte adding component includes an electrolyte storage tank. The electrolyte storage tank is communicated with the third box body through a second metering pump.

6. The integrated water purification device according to claim 1, characterized in that: The double sedimentation component includes a fourth box body. A second partition board is arranged in the fourth box body. The second partition board divides the fourth box body into a first sedimentation cavity and a second sedimentation cavity. An overflow hole is arranged at the top of the second partition board. The overflow hole communicates the first sedimentation cavity and the second sedimentation cavity. Arc-shaped bottom plates or V-shaped plates are arranged at the bottoms of the first sedimentation cavity and the second sedimentation cavity. The bottoms of the arc-shaped bottom plates or V-shaped plates are connected with sludge discharge pipes. A number of symmetrically arranged filtering inclined plates are respectively arranged in the first sedimentation cavity and the second sedimentation cavity. The filtering inclined plates are divided into longitudinal plates and transverse plates. Filtering through holes are jointly formed between adjacent longitudinal plates and transverse plates. The input end of the first sedimentation chamber is connected to the coagulation stirring assembly, the output end of the second sedimentation chamber is connected to the overflow tank, the overflow tank is installed outside the fourth box body, and the overflow tank is connected to the water storage tank.

7. An integrated water purification device according to claim 1, characterized in that: The disinfection and sterilization assembly includes a fifth box body. The input end of the fifth box body is connected to the filtration assembly, the output end of the fifth box body is connected to the clean water tank. An ultraviolet lamp is installed on the top of the fifth box body, a conveying pipeline is installed at the bottom of the fifth box body, a conveying pump is installed on the conveying pipeline, and one end of the conveying pipeline away from the fifth box body is connected to an ozone generator or a disinfectant storage tank.

Citation Information

Patent Citations

  • Integrated water purifier

    CN220834393U