Integrated efficient water purifying device for wastewater treatment
By introducing a siphon tube and multi-chamber design into the water purification device, combined with a dosing component and a stirring component, the problem of long reaction time between the drug and wastewater is solved, achieving a highly efficient wastewater purification effect.
Patent Information
- Application Number
- CN202520321447.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-02-27
AI Technical Summary
Existing water purification devices require a long time for sedimentation before the drugs react with the wastewater, resulting in reduced purification efficiency.
The design incorporates a siphon tube, valve body, filter chamber, dosing and stirring chamber, and purification chamber within the equipment body. Combined with dosing, stirring, and filtering components, it achieves quantitative dosing and rapid stirring, thereby improving the binding efficiency between the drug and wastewater.
By using quantitative dosing and rapid stirring, the purification efficiency and safety of the integrated water purification device for wastewater treatment are significantly improved.
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Figure CN223837243U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water purification device technology, specifically an integrated high-efficiency water purification device for wastewater treatment. Background Technology
[0002] Wastewater refers to the water discharged during residential activities and runoff rainwater. It includes domestic sewage, industrial wastewater, and other non-useful water such as initial rainwater runoff into drainage pipes and ditches. Generally, it refers to water that cannot be recycled after certain technical treatment or water that fails to meet certain standards after purification treatment following primary pollution. A water purification device is a device that purifies such wastewater to meet the standards.
[0003] The prior art, disclosed in CN214936655U, provides a gravity-type integrated water purification device, including a housing. A raw water tank is fixedly installed on one side of the housing, and a water pump is fixedly installed on the top of the raw water tank. Inside the housing, from left to right, there are a sedimentation tank, an aeration tank, a multi-stage filtration tank, a disinfection tank, and a purified water tank. A chemical spraying sedimentation device is fixedly installed on one side of the top of the sedimentation tank. This utility model, a gravity-type integrated water purification device, adopts an integrated design, which simplifies the installation and construction process, shortens the installation period to a certain extent, is stable and reliable, and can perform multi-stage high-efficiency further filtration on the treated raw water, thereby improving the efficiency and quality of water purification to a certain extent. During use, it can promptly determine whether there is a large amount of dirt accumulation on the surface of the filter screen based on the changes in water pressure at the inlet and outlet, and remove it by suction through a cleaning mechanism as needed.
[0004] The aforementioned patent mainly involves setting up a drug spraying and settling device at the front end of the water purification device to dissolve and precipitate impurities in the wastewater. However, the aforementioned device does not mention any structure for stirring the drug and wastewater, which means that when the drug enters the wastewater, it takes a long time to react with the wastewater and then precipitate, thus greatly reducing the purification efficiency of the integrated water purification device for wastewater. Utility Model Content
[0005] The purpose of this invention is to overcome the shortcomings of the prior art and provide an integrated high-efficiency water purification device for wastewater treatment, thus solving the above-mentioned technical problems.
[0006] To achieve the above objectives, this utility model provides the following technical solution: an integrated high-efficiency water purification device for wastewater treatment, comprising a device body, a siphon pipe, and a valve body. The siphon pipe is used to deliver the purified water from the device body, and the valve body is used to control the water flow inside the siphon pipe. The device body is internally divided into four areas: a filtration chamber, a chemical dosing and stirring chamber, a purification chamber, and an instrument placement chamber. The device body includes a purification component, a drain outlet, a filtration component, and an intelligent component. The purification component is located in the purification chamber within the device body and is used for enhanced purification of wastewater in the later stages. The filtration component is located within the device body... The internal filtration chamber is used for preliminary filtration of wastewater. A water pump is placed in the instrument placement chamber of the device body to transfer wastewater from the filtration chamber to the dosing and mixing chamber. The intelligent component is located in the dosing and mixing chamber and the instrument placement chamber within the device body. The intelligent component includes a dosing component, a motor, a support plate, a fixed shaft, and a mixing component. The mixing component includes an output shaft, and the motor output end is fixedly connected to the output shaft. The end of the fixed shaft away from the mixing component is fixedly mounted on the support plate, and the output shaft penetrates the fixed shaft. The dosing component is used to periodically deliver chemicals to the dosing and mixing chamber within the device body from the fixed shaft. This allows for precise dosing of chemicals during the integrated high-efficiency water purification device for wastewater treatment, significantly improving the accuracy of the internal purified water dosing.
[0007] Furthermore, three strips are fixedly installed at the end of the output shaft away from the motor. The stirring assembly also includes several stirring blades, a central shaft, and a stirring plate. Several central shafts are fixedly installed on the strips below the output shaft, several stirring blades are rotatably installed at the bottom of the central shafts, and the stirring plate is fixedly installed at the end of the central shaft away from the stirring blades. The stirring plate being fixedly installed at the end of the central shaft away from the stirring blades makes the internal structure of the integrated high-efficiency water purification device for wastewater treatment more robust and reliable, greatly improving the operational safety of the integrated high-efficiency water purification device for wastewater treatment.
[0008] Furthermore, the dosing assembly includes a hollow block with a funnel for adding medication at one end away from the fixed shaft. A pipe is fixedly installed at the other end of the hollow block away from the funnel. A ball valve for connecting the funnel and the pipe is fixedly installed inside the hollow block. A turntable is fixedly installed at the end of the ball valve near the pipe. The dosing assembly also includes a timer microcontroller and an electric actuator, both housed inside the hollow block. The electric actuator is electrically connected to the timer microcontroller and controls the rotation of the turntable. The pipe is connected to the fixed shaft. This connection allows the medication delivered inside the pipe to flow downwards through a through-hole inside the fixed shaft, improving the flowability between the internal structures of the integrated high-efficiency water purification device for wastewater treatment.
[0009] Furthermore, the filter assembly includes a water inlet and a filter body. The filter body is fixedly installed at the tail end of the water inlet, and a plurality of adsorption balls for adsorbing impurities are placed inside the filter body. The presence of these adsorption balls inside the filter body allows the wastewater fed into the integrated high-efficiency wastewater purification device to adsorb impurities, thereby improving the purification rate of the wastewater by the integrated high-efficiency wastewater purification device.
[0010] Furthermore, the pipe is hollow and divided into two sections, one vertically installed and the other inclined. This design allows for rapid and continuous flow of the medication inside the pipe, significantly improving the practicality of the integrated high-efficiency water purification device for wastewater treatment.
[0011] Furthermore, the adsorption balls are made of activated carbon. This material enhances the adsorption effect on impurities, thereby improving the quality of wastewater purification in the integrated high-efficiency wastewater treatment device.
[0012] Furthermore, the filter body is a hollow sphere with several filter holes on its outer surface. This spherical shape allows for a larger internal space for impurity adsorption, enhancing the practicality of the integrated high-efficiency water purification device for wastewater treatment. Beneficial effects
[0013] Compared with the prior art, the present invention has the following beneficial effects:
[0014] This invention first filters the wastewater through a filtration component, then adds chemicals into the device body in stages using a dosing component, and works in conjunction with a stirring component to fully combine the chemicals with the wastewater. Finally, impurities are precipitated and purification is enhanced, thus enabling the integrated high-efficiency water purification device for wastewater treatment to purify wastewater more efficiently during use. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of an integrated high-efficiency water purification device for wastewater treatment according to the present invention;
[0016] Figure 2 This is a three-dimensional structural diagram of the main body of the device of this utility model;
[0017] Figure 3 This is a three-dimensional structural diagram of the filter assembly of this utility model;
[0018] Figure 4 This is a three-dimensional structural diagram of the intelligent component of this utility model;
[0019] Figure 5 This is a partially enlarged three-dimensional structural diagram of A of this utility model;
[0020] Figure 6 This is a three-dimensional structural diagram of the dosing component of this utility model.
[0021] In the diagram: Equipment body 1, siphon pipe 2, valve body 3, purification component 11, drain outlet 12, filter component 13, water pump 14, intelligent component 15, water inlet 131, adsorption ball 132, filter body 133, dosing component 151, motor 152, support plate 153, fixed shaft 154, stirring component 155, output shaft 1551, stirring plate 1552, central shaft 1553, stirring plate 1554, funnel 1511, ball valve 1512, timer microcontroller 1513, electric actuator 1514, turntable 1515, pipe 1516. Detailed Implementation
[0022] The technical solution of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the protection scope of this utility model.
[0023] Example
[0024] The following is in conjunction with the appendix Figure 1 -Appendix Figure 6This application will be described in further detail below.An integrated high-efficiency water purification device for wastewater treatment includes a main body 1, a siphon pipe 2, and a valve body 3. The siphon pipe 2 is used to deliver the purified water from the main body 1, and the valve body 3 is used to control the water flow inside the siphon pipe 2. The main body 1 is internally divided into four areas: a filtration chamber, a dosing and stirring chamber, a purification chamber, and an instrument placement chamber. The main body 1 includes a purification component 11, a drain outlet 12, a filtration component 13, and an intelligent component 15. The purification component 11 is located in the purification chamber within the main body 1 and is used for enhanced purification of wastewater in the later stages. The filtration component 13 is located in the filtration chamber within the main body 1 and is used for preliminary filtration of wastewater. A water pump 14 is placed in the instrument placement chamber within the main body 1 to transfer wastewater from the filtration chamber to the dosing and stirring chamber. The intelligent component 15... Component 15 is located within the dosing and mixing chamber and the instrument placement chamber of the equipment body 1. The intelligent component 15 includes a dosing component 151, a motor 152, a support plate 153, a fixed shaft 154, and a mixing component 155. The mixing component 155 includes an output shaft 1551. The output end of the motor 152 is fixedly connected to the output shaft 1551. The end of the fixed shaft 154 away from the mixing component 155 is fixedly mounted on the support plate 153. The output shaft 1551 penetrates the fixed shaft 154. The dosing component 151 is used to periodically deliver medication from the fixed shaft 154 to the dosing and mixing chamber within the equipment body 1. Three strips are fixedly mounted on the end of the output shaft 1551 away from the motor 152. The mixing component 155 also includes several mixing blades 1552 and a central shaft 1553. A stirring plate 1554 and several central shafts 1553 are fixedly mounted on a strip below the output shaft 1551. Several stirring blades 1552 are rotatably mounted on the bottom of the central shafts 1553. The stirring plate 1554 is fixedly mounted on the end of the central shaft 1553 away from the stirring blades 1552. The dosing assembly 151 includes a hollow block with a funnel 1511 for drug addition at the end away from the fixed shaft 154. A pipe 1516 is fixedly installed at the end of the hollow block away from the funnel 1511. A ball valve 1512 for communicating between the funnel 1511 and the pipe 1516 is fixedly installed inside the hollow block. A turntable 1515 is fixedly installed at the end of the ball valve 1512 near the pipe 1516. The dosing assembly 151 also includes... The microcontroller 1513 and the electric actuator 1514 are placed inside the hollow block. The electric actuator 1514 is electrically connected to the microcontroller 1513 and is used to control the rotation of the turntable 1515. The pipe 1516 is connected to the fixed shaft 154. The filter assembly 13 includes an inlet 131 and a filter body 133. The filter body 133 is fixedly installed at the end of the inlet 131. Several adsorption balls 132 for adsorbing impurities are placed inside the filter body 133. The pipe 1516 is hollow and divided into two sections, one vertically installed and the other inclined. The adsorption balls 132 are made of activated carbon. The filter body 133 is a hollow spherical shape with several filter holes on its outer surface.
[0025] The funnel 1511 has pipes extending below it and pipes 1516 have pipes extending above it. The ball valve 1512 is connected to both ends of the two pipes respectively, so that the ball valve 1512 can directly control the amount of drug entering the pipe 1516.
[0026] Among them, a strip is fixed to one end of the turntable 1515 near the electric actuator 1514, and the electric actuator 1514 is fixed to the strip. The rear of the electric actuator 1514 is fixed by a fixing plate. Therefore, when the electric actuator 1514 extends or retracts, the turntable 1515 can be rotated directly through the strip to control the opening and closing of the ball valve 1512.
[0027] The fixed shaft 154 is a through hollow shaft, and the output shaft 1551 penetrates the middle of the fixed shaft 154 and is fixedly connected to the motor 152. The pipe 1516 can continuously feed the medicine into the fixed shaft 154, and the fixed shaft 154 can feed the medicine to the bottom of the equipment body 1. Because the integrated high-efficiency water purification device for wastewater treatment is not immediately put into operation, the wastewater inside the integrated high-efficiency water purification device will undergo a period of sedimentation. Most of the impurities are located at the bottom of the equipment body 1. Therefore, directly feeding the medicine into the bottom of the equipment body 1 can more quickly combine the medicine and the wastewater.
[0028] Since the stirring plate 1552 is nested on the central shaft 1553, when the output shaft 1551 rotates with the entire stirring assembly 155, the stirring plate 1552 will rotate directly around the central shaft 1553, thereby more effectively stirring and combining the drugs and wastewater.
[0029] The working principle of this utility model is explained below: Unless otherwise specified, all internal mechanical structures of the integrated high-efficiency water purification device for wastewater treatment are fixed by threads. To allow for a more intuitive observation of the technical features, bolt connections are appropriately concealed in the figure. When using the integrated high-efficiency water purification device for wastewater treatment, the user adds the wastewater to be purified through the inlet 131. The wastewater first passes through the adsorption balls 132 inside the filter body 133 to adsorb impurities, and then through the filter holes on the filter body 133 to filter larger impurities. The wastewater, after adsorption and secondary filtration, is pumped by the water pump 14 to the area below the intelligent component 15. At this time, the operator adds the medicine through the funnel 1511. The timer microcontroller 1513 is set internally. When the time is reached, the timer microcontroller 1513 controls the electric push rod 1514 to extend outwards. The outward-extending electric push rod 1514 is used for rotation. The rotating disc 1515 is activated and the ball valve 1512 is opened. At this time, the medicine enters the fixed shaft 154 through the pipe 1516. Finally, the medicine enters the bottom of the equipment body 1 through the fixed shaft 154. At the same time, the motor 152 drives the output shaft 1551 to rotate, thereby rotating all the stirring blades 1552 and stirring plates 1554. The stirring blades 1552 rotate on the central shaft 1553 to fully mix the medicine and wastewater. After sedimentation, the sludge is sent out through the drain outlet 12. The sedimented water is then further purified by the purification component 11 and finally sent out through the siphon pipe 2. The valve body 3 can control the flow rate of the liquid inside the siphon pipe 2. Through the above steps, the wastewater can be more efficiently purified when it is sent into the integrated high-efficiency water purification device for wastewater treatment, which greatly improves the practicality of the integrated high-efficiency water purification device for wastewater treatment.
[0030] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
Claims
1. An integrated high-efficiency water purification device for wastewater treatment, characterized in that, The device includes a main body (1), a siphon (2), and a valve body (3). The siphon (2) is used to send out the purified water inside the main body (1). The valve body (3) is used to control the water flow inside the siphon (2). The main body (1) is divided into four areas: a filtration chamber, a dosing and stirring chamber, a purification chamber, and an instrument placement chamber. The main body (1) includes a purification component (11), a drain outlet (12), a filtration component (13), and an intelligent component (15). The purification component (11) is located in the purification chamber inside the main body (1) and is used for enhanced purification of wastewater in the later stages. The filtration component (13) is located in the filtration chamber inside the main body (1) and is used for preliminary filtration of wastewater. The instrument placement chamber in the main body (1) contains a device for removing wastewater from the filtration chamber. A water pump (14) transfers water into the dosing and mixing chamber. The intelligent component (15) is located in the dosing and mixing chamber and the instrument placement chamber of the equipment body (1). The intelligent component (15) includes a dosing component (151), a motor (152), a support plate (153), a fixed shaft (154), and a mixing component (155). The mixing component (155) includes an output shaft (1551). The output end of the motor (152) is fixedly connected to the output shaft (1551). The end of the fixed shaft (154) away from the mixing component (155) is fixedly installed on the support plate (153). The output shaft (1551) penetrates the fixed shaft (154). The dosing component (151) is used to deliver medicine to the dosing and mixing chamber of the equipment body (1) from the fixed shaft (154) at regular intervals.
2. The integrated high-efficiency water purification device for wastewater treatment according to claim 1, characterized in that: Three strips are fixedly installed at the end of the output shaft (1551) away from the motor (152). The stirring assembly (155) also includes several stirring blades (1552), a central shaft (1553), and a stirring plate (1554). Several central shafts (1553) are fixedly installed on the strips below the output shaft (1551). Several stirring blades (1552) are rotatably installed at the bottom of the central shaft (1553). The stirring plate (1554) is fixedly installed at the end of the central shaft (1553) away from the stirring blades (1552).
3. The integrated high-efficiency water purification device for wastewater treatment according to claim 1, characterized in that: The dosing assembly (151) includes a hollow block with a funnel (1511) for drug addition at one end away from the fixed shaft (154). A pipe (1516) is fixedly installed at the other end of the hollow block away from the funnel (1511). A ball valve (1512) for communicating between the funnel (1511) and the pipe (1516) is fixedly installed inside the hollow block, with the ball valve (1512) located near the end of the pipe (1516). A turntable (1515) is fixedly installed. The dosing assembly (151) also includes a timer microcontroller (1513) and an electric actuator (1514). The microcontroller (1513) and the electric actuator (1514) are placed inside the hollow block. The electric actuator (1514) is electrically connected to the timer microcontroller (1513). The electric actuator (1514) is used to control the rotation of the turntable (1515). The pipe (1516) is connected to the fixed shaft (154).
4. The integrated high-efficiency water purification device for wastewater treatment according to claim 1, characterized in that: The filter assembly (13) includes an inlet (131) and a filter body (133). The filter body (133) is fixedly installed at the tail end of the inlet (131). The filter body (133) contains a number of adsorption balls (132) for adsorbing impurities.
5. The integrated high-efficiency water purification device for wastewater treatment according to claim 3, characterized in that: The pipe (1516) is hollow inside and divided into two sections, one of which is installed vertically and the other of which is installed at an angle.
6. The integrated high-efficiency water purification device for wastewater treatment according to claim 4, characterized in that: The adsorption ball (132) is made of activated carbon.
7. The integrated high-efficiency water purification device for wastewater treatment according to claim 4, characterized in that: The filter body (133) is a hollow sphere with several filter holes on its outer surface.
Citation Information
Patent Citations
Gravity type integrated water purifying device
CN214936655U