A small-sized household water purifying apparatus for treating surface water and ground water
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- SUZHOU BOLE ENVIRONMENTAL TECHNOLOGY CO LTD
- Filing Date
- 2026-06-03
- Publication Date
- 2026-08-07
AI Technical Summary
但通过上料器将聚合氯化铝加入原水中,需要耗费大量时间完成二者的混合工作
[0038] 1. This miniaturized household water purification device for treating surface water and groundwater uses a mixing mechanism and a pushing component. The spray nozzle and inlet pipe work together to spray polyaluminum chloride (PAC) into the raw water flow. In existing equipment, adding PAC to the raw water via a feeder requires a significant amount of time to complete the mixing process. Therefore, the mixing mechanism and pushing component directly spray PAC into the raw water flow. The reagent enters the mixing zone simultaneously with the raw water upon entry, mixing while water is being introduced, eliminating the need for waiting for reagent dispersion or additional stirring time.
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Figure CN122520282A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of wastewater treatment technology, specifically to a miniaturized household water purification device for treating surface water and groundwater. Background Technology
[0002] Surface water and groundwater are easily affected by agricultural runoff, industrial emissions, domestic sewage, and geological conditions during their natural cycles. They may contain pollutants such as sediment, bacteria, viruses, heavy metals, pesticide residues, and excessive minerals. Direct consumption of these waters can threaten human health, thus requiring effective treatment. Miniature household water purifiers designed to address this need integrate multi-stage filtration technology to quickly remove suspended solids, odors, microorganisms, and dissolved harmful substances while retaining beneficial minerals, providing families with safe, clean, and delicious drinking water.
[0003] A small household water purifier is disclosed in invention patent CN112358067A, including a shell, a controller, and a ring-shaped air bladder, a baffle, a raw water tank, a filter element, and a pure water outlet at the bottom, arranged sequentially from top to bottom within the shell. An elastic, retractable rubber tube is fixedly connected to the piston plate, with the other end of the tube fixedly connected to the inner wall of the bottom of the raw water tank. A spring is installed inside the rubber tube, with one end fixed to the piston plate and the other end fixedly connected to the inner wall of the bottom of the raw water tank. However, adding polyaluminum chloride to the raw water via a feeder requires a significant amount of time to complete the mixing process. Summary of the Invention
[0004] To overcome the problem that adding polyaluminum chloride to raw water via a feeder requires a significant amount of time to complete the mixing process, this invention provides a miniaturized household water purification device for treating surface water and groundwater, comprising a main body and further including:
[0005] Water inlet and outlet pipes installed on the outside of the machine body;
[0006] The first partition installed inside the machine body;
[0007] A mixing mechanism is disposed outside the first partition plate. The mixing mechanism includes a first slid groove opened inside the first partition plate, a sliding box slidably connected inside the first slid groove, a nozzle installed below the sliding box, and a pushing component disposed inside the water inlet pipe. The sliding box is used to adjust the relative position between the nozzle and the pushing component.
[0008] Preferably, it further includes:
[0009] Solar panels and cover installed on top of the unit;
[0010] The second and third partitions are installed inside the machine body;
[0011] Disinfection mechanism located outside the second partition.
[0012] Preferably, the mixing mechanism further includes:
[0013] Contact components located on the outside of the sliding box;
[0014] The lifting frame is installed below the first partition.
[0015] Preferably, the contact assembly includes:
[0016] Connectors installed on the outside of the sliding box and movable plates connected to the connectors;
[0017] The first and second grooves are formed inside the movable plate;
[0018] An adjusting rod is located outside the moving plate, and a first blade is connected to the end of the adjusting rod away from the moving plate. The first blade is used to contact the first partition and the inner wall of the machine body.
[0019] Preferably, the push component includes:
[0020] Mounting plate installed on the outside of the water inlet pipe;
[0021] The third groove and channel are located inside the water inlet pipe, through which the raw water in the water inlet pipe enters the machine body.
[0022] Preferably, the push component further includes:
[0023] A push plate is slidably connected inside the water inlet pipe, and the push plate is adapted to the third groove;
[0024] The connecting rod is mounted on the push plate and the second blade is set on the connecting rod. The second blade is used to contact the channel opening.
[0025] A push rod is installed on the side of the push plate away from the connecting rod, and the fixed end of the push rod is installed on the first partition plate.
[0026] Preferably, the disinfection mechanism includes:
[0027] A second slide groove formed inside the second partition and a slide plate slidably connected inside the second slide groove;
[0028] A first lifting rod installed on the skateboard and an extrusion assembly connected to the telescopic end of the first lifting rod;
[0029] The collection box and the side plate connected to the collection box are installed outside the second partition. The side plate has a collection groove inside.
[0030] Preferably, the extrusion assembly includes:
[0031] A connecting frame is installed on the telescopic end of the first lifting rod;
[0032] The center plate is located on the connecting frame.
[0033] Preferably, the extrusion assembly further includes:
[0034] The second lifting rod and the connecting plate connected to the telescopic end of the second lifting rod are installed on the connecting frame;
[0035] The branch pipe located below the connecting plate and the central rod installed inside the branch pipe;
[0036] The chassis is snapped onto the outside of the central rod, and the second lifting rod drives the central plate and chassis to squeeze the activated carbon ring between them through the lifting operation.
[0037] This invention provides a miniaturized household water purification device for treating surface water and groundwater. It has the following beneficial effects:
[0038] 1. This miniaturized household water purification device for treating surface water and groundwater uses a mixing mechanism and a pushing component. The spray nozzle and inlet pipe work together to spray polyaluminum chloride (PAC) into the raw water flow. In existing equipment, adding PAC to the raw water via a feeder requires a significant amount of time to complete the mixing process. Therefore, the mixing mechanism and pushing component directly spray PAC into the raw water flow. The reagent enters the mixing zone simultaneously with the raw water upon entry, mixing while water is being introduced, eliminating the need for waiting for reagent dispersion or additional stirring time.
[0039] 2. This miniaturized household water purification device for treating surface water and groundwater, through the setting of a mixing mechanism and contact components, uses an electric push rod located in the first chute to drive two sliding boxes and contact components to reciprocate on both sides of a mechanical stirrer. The moving plate repeatedly contacts the inner wall of the machine body and drives the flow of raw water, while the first blades on both sides contact the inner wall of the machine body and the first partition plate, thereby promoting the flow of raw water and the mixing of raw water with polyaluminum chloride, while promoting the movement and falling of impurities on the upper middle part of the inner wall of the machine body.
[0040] 3. This miniaturized household water purification device for treating surface water and groundwater utilizes a contact component. A movable plate with first and second grooves repeatedly contacts the inner wall of the machine, promoting the movement and falling of impurity particles through collision. A first blade, composed of multiple arc-shaped elastic rods, deforms accordingly when the movable plate contacts the inner wall, facilitating the plate's fit against the wall. When the movable plate leaves the inner wall, the first blade returns to its original shape, contacting the inner wall and the first partition, causing the raw water to flow irregularly within a localized area.
[0041] 4. This miniaturized household water purification device for treating surface water and groundwater uses a disinfection mechanism and a squeezing component. The squeezing action between the central plate and the base discharges wastewater from the saturated activated carbon rings and collects it centrally, preventing secondary pollution caused by the transfer of wet activated carbon. The magnetically connected central rod and base facilitate quick and easy manual replacement of the activated carbon rings. Attached Figure Description
[0042] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0043] Figure 2 This is a schematic diagram of the internal structure of the body of the present invention;
[0044] Figure 3 This is a schematic diagram of the structure of the mixing mechanism of the present invention;
[0045] Figure 4 This is a schematic diagram of the hybrid mechanism of the present invention from another perspective;
[0046] Figure 5 This is a schematic diagram of the contact component of the present invention;
[0047] Figure 6 For the present invention Figure 5 Schematic diagram of the structure at point A;
[0048] Figure 7 This is a schematic diagram of the push component of the present invention;
[0049] Figure 8 This is a cross-sectional view of the water inlet pipe of the present invention;
[0050] Figure 9 This is a schematic diagram of the disinfection mechanism of the present invention;
[0051] Figure 10 This is a schematic diagram of the extrusion assembly of the present invention.
[0052] In the diagram: 1. Body; 2. Solar panel; 3. Cover plate; 4. Water inlet pipe; 5. First partition; 6. Second partition; 7. Third partition; 8. Mixing mechanism; 801. First chute; 802. Sliding box; 803. Nozzle; 804. Contact component; 8041. Connector; 8042. Moving plate; 8043. First groove; 8044. Second groove; 8045. Adjusting rod; 8046. First blade; 805. Pushing component; 8051. Mounting plate; 8052. Third groove; 80 53. Channel; 8054. Push rod; 8055. Push plate; 8056. Connecting rod; 8057. Second blade; 806. Lifting frame; 9. Disinfection mechanism; 901. Second chute; 902. Slide plate; 903. Collection box; 904. Side plate; 905. First lifting rod; 906. Extrusion assembly; 9061. Connecting frame; 9062. Second lifting rod; 9063. Connecting plate; 9064. Branch pipe; 9065. Center rod; 9066. Chassis; 9067. Center plate; 10. Water outlet pipe. Detailed Implementation
[0053] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and design various embodiments with various modifications suitable for a particular purpose.
[0054] like Figures 1-10 As shown, the present invention provides a technical solution: a miniaturized household water purification device for treating surface water and groundwater, which is described below.
[0055] Including the main body 1, it also includes:
[0056] Water inlet pipe 4 and water outlet pipe 10 are installed on the outside of the body 1;
[0057] The first partition 5 is installed inside the body 1;
[0058] A mixing mechanism 8 is disposed outside the first partition 5. The mixing mechanism 8 includes a first slide groove 801 opened inside the first partition 5, a sliding box 802 slidably connected inside the first slide groove 801, a spray pipe 803 installed below the sliding box 802, and a push assembly 805 disposed inside the water inlet pipe 4. The sliding box 802 is used to adjust the relative position between the spray nozzle and the push assembly 805. Two electric push rods 8054 are disposed inside the first slide groove 801. The two electric push rods 8054 drive the two sliding boxes 802 to move inside the first slide groove 801 respectively. Multiple spray pipes 803 are disposed below the two sliding boxes 802. The sliding box 802 is connected to a chemical dosing pipe.
[0059] The solar panel 2 and cover plate 3 are detachably installed on the top of the body 1;
[0060] The second partition 6, the third partition 7, and the fourth partition are installed inside the main body 1. The main body 1 and the first partition 5 form a mixing zone, and a mechanical stirrer is installed at the center of the bottom of the mixing zone. The first partition 5 and the fourth partition form a flocculation zone, and a stirring device is installed in the flocculation zone. The fourth partition and the second partition 6 form a sedimentation and filtration zone. The second partition 6 and the third partition 7 form a disinfection zone. The third partition 7 and the main body 1 form a clear water zone, and a float level gauge and an ultraviolet lamp are installed inside the clear water zone. The clear water zone is connected to the outlet pipe 10, and the outside of the outlet pipe 10 is connected to a multi-functional treatment zone. The multi-functional treatment zone is equipped with ion exchange resin, RO reverse osmosis membrane, and mineral slow-release filter. The soft water treatment achieves desalination and hardness removal through two ion exchange resin columns, and the soft water can be used for daily household water use. The direct drinking water treatment mainly relies on two-stage reverse osmosis membranes to achieve pure water production. After that, a mineral slow-release unit is installed to produce mineral-rich water according to user needs.
[0061] Disinfection mechanism 9 is located outside the second partition 6.
[0062] When using the equipment, the filtered raw water enters the mixing zone through the inlet pipe 4. After the mixing mechanism 8 performs the mixing work, the raw water enters the disinfection zone after passing through the flocculation zone and the sedimentation and filtration zone. The disinfection mechanism 9 disinfects the raw water, and the treated raw water enters the clear water zone and is discharged through the outlet pipe 10.
[0063] The hybrid mechanism 8 also includes:
[0064] Contact component 804 is disposed on the outside of sliding box 802;
[0065] The lifting frame 806 is installed below the first partition 5. The lifting frame 806 is composed of an electric push rod 8054 in the vertical direction and a frame plate. A flow groove is opened inside the first partition 5, and the frame plate is used to block the flow groove.
[0066] The working process of mixing raw water and polyaluminum chloride using mixing mechanism 8:
[0067] Before using the equipment, adjust the electric push rod 8054 located in the first slide trough 801. The electric push rod 8054 drives the sliding box 802 to move inside the first slide trough 801. The sliding box 802 drives the nozzle 803 to move, thereby adjusting the relative position of the nozzle 803 and the pushing component 805. Then, raw water enters the mixing zone through the water inlet pipe 4, and multiple nozzles 803 are activated simultaneously. The nozzles 803 spray a measured amount of polyaluminum chloride from the sliding box 802 downwards. The polyaluminum chloride falls into the mixing zone along with the raw water, and the mechanical stirrer mixes the water and polyaluminum chloride.
[0068] After spraying, the electric push rod 8054 in the first slide 801 is adjusted to the reciprocating motion mode. The electric push rod 8054 drives the sliding box 802 to move, and the sliding box 802 drives the contact component 804 to reciprocate in the mixing zone.
[0069] The process of adjusting the mixing mechanism 8 to control the entry of raw water into the flocculation zone:
[0070] After mixing, the stroke of the vertical electric push rod 8054 in the lifting frame 806 is adjusted. The electric push rod 8054 drives the frame plate to move up, and the flow channel flows. At this time, the raw water can enter the flocculation zone through the flow channel.
[0071] Contact component 804 includes:
[0072] The connector 8041 and the movable plate 8042 connected to the connector 8041 are installed on the outside of the sliding box 802. The connector 8041 is composed of an adjustable rod and an arc rod in the horizontal direction, and the movable plate 8042 is made of rubber.
[0073] A first groove 8043 and a second groove 8044 are formed inside the movable plate 8042;
[0074] An adjusting rod 8045 is disposed outside the movable plate 8042, and a first blade 8046 is connected to the end of the adjusting rod 8045 away from the movable plate 8042. The adjusting rod 8045 is configured as a rod that can adjust its length. The first blade 8046 is composed of multiple arc-shaped elastic rods. There are two sets of first blades 8046, with two blades in each set. The two sets of first blades 8046 are at different heights, and both sets of first blades 8046 are located in the upper middle area of the mixing zone.
[0075] The process of mixing raw water and polyaluminum chloride using contact component 804:
[0076] As the sliding box 802 reciprocates in the horizontal direction, it drives the connecting piece 8041 and the moving plate 8042 to reciprocate in the horizontal direction. When the moving plate 8042 contacts the inner wall of the machine body 1, the first blade 8046 deforms accordingly against the branch plate of the inner wall of the machine body 1. The moving plate 8042 touches the inner wall of the machine body 1 to promote the flow of raw water and the mixing of raw water and polyaluminum chloride. The first blades 8046 on both sides contact the inner wall of the machine body 1 and the first partition 5 to promote the movement and fall of impurities on the inner wall of the machine body 1 in the middle and upper part. At the same time, the mechanical agitator located at the bottom middle of the mixing zone stirs the raw water and polyaluminum chloride to promote the mixing of raw water and polyaluminum chloride.
[0077] By setting up a mixing mechanism 8 and a contact component 804, the electric push rod 8054 located in the first chute 801 drives the two sliding boxes 802 and the contact component 804 to reciprocate on both sides of the mechanical stirrer. The moving plate 8042 repeatedly contacts the inner wall of the machine body 1 and drives the flow of raw water. The first blades 8046 on both sides contact the inner wall of the machine body 1 and the first partition 5, thereby promoting the flow of raw water and the mixing of raw water and polyaluminum chloride, while promoting the movement and falling of impurities on the inner wall of the machine body 1 in the upper middle part.
[0078] By setting the contact component 804, the movable plate 8042, which has a first groove 8043 and a second groove 8044, repeatedly contacts the inner wall of the machine body 1, promoting the movement and falling of impurity particles through collision. By setting the first blade 8046, which is composed of multiple arc-shaped elastic rods, when the movable plate 8042 contacts the inner wall of the machine body 1, the first blade 8046 deforms accordingly, making it easy for the movable plate 8042 to fit against the inner wall of the machine body 1. When the movable plate 8042 leaves the inner wall of the machine body 1, the first blade 8046 returns to its original shape, contacts the inner wall of the machine body 1 and the first partition 5, and causes the raw water to flow irregularly in a local area.
[0079] Push component 805 includes:
[0080] Mounting plate 8051 installed on the outside of water inlet pipe 4;
[0081] The system includes a third groove 8052 and a channel 8053 inside the water inlet pipe 4. Multiple third grooves 8052 are provided and located at the bottom of the inner wall of the water inlet pipe 4. Multiple channels 8053 are provided in the middle of the water inlet pipe 4. The system is equipped with a water inlet pump to control the full-pipe pressure flow of the water inlet pipe 4.
[0082] A push plate 8055 is slidably connected inside the water inlet pipe 4, and the push plate 8055 is adapted to the third groove 8052;
[0083] The connecting rod 8056 is mounted on the push plate 8055 and the second blade 8057 is set on the connecting rod 8056. The second blade 8057 is composed of two arc-shaped blades and is made of rubber. The second blade 8057 has filter holes inside.
[0084] The push rod 8054 is installed on the side of the push plate 8055 away from the connecting rod 8056. The fixed end of the push rod 8054 is installed on the first partition plate 5. The push rod 8054 is configured as an electric push rod 8054.
[0085] The working process of using the 805 push component for raw water intake:
[0086] Adjust the position of the sliding box 802 so that the nozzle 803 corresponds to the position of the channel 8053. As raw water enters the inlet pipe 4, it is discharged through the channel 8053 in the middle of the inlet pipe 4 and mixes with the polyaluminum chloride sprayed from the nozzle 803 before entering the mixing zone.
[0087] During this process, multiple sets of second blades 8057 with filter holes intercept particulate matter in the raw water. The push rod 8054 is adjusted to perform periodic reciprocating motion. The push rod 8054 drives the push plate 8055, connecting rod 8056 and second blades 8057 to move. The second blades 8057 scrape the opening of the channel 8053, promoting the removal of impurities from the opening of the channel 8053. During the movement of the second blades 8057, some impurities are promoted to settle into the third groove 8052, so as to reduce particulate impurities entering the mixing zone through the channel 8053.
[0088] The process of using push component 805 to push impurities in water inlet pipe 4:
[0089] After the work is completed, disconnect the external pipe connected to the water inlet pipe 4, start the push rod 8054 to the maximum stroke, the push rod 8054 drives the push plate 8055, the connecting rod 8056 and the second blade 8057 to move away from the machine body 1, the push plate 8055 begins to scrape the inner wall of the water inlet pipe 4, and drives the particles in the third groove 8052 to leave the water inlet pipe 4.
[0090] By setting up a mixing mechanism 8 and a pushing component 805, and with the spray nozzle 803 and the water inlet pipe 4 working together, polyaluminum chloride is sprayed into the raw water inlet flow. In existing equipment, adding polyaluminum chloride to the raw water via a feeder requires a significant amount of time to complete the mixing process. Therefore, by setting up a mixing mechanism 8 and a pushing component 805, polyaluminum chloride is directly sprayed into the raw water inlet flow. The reagent enters the mixing zone simultaneously with the raw water at the moment of water intake, mixing while water is being introduced, eliminating the need to wait for reagent dispersion or additional stirring time.
[0091] Disinfection facilities 9 include:
[0092] A second slide 901 is formed inside the second partition 6 and a slide plate 902 is slidably connected inside the second slide 901. An electric push rod 8054 is provided inside the second slide 901, and the slide plate 902 is driven to move inside the second slide 901 by the electric push rod 8054.
[0093] A first lifting rod 905 and a pressing assembly 906 connected to the telescopic end of the first lifting rod 905 are installed on the slide plate 902. The first lifting rod 905 is configured as an electric push rod 8054.
[0094] The collection box 903 and the side plate 904 connected to the collection box 903 are installed outside the second partition 6. The collection box 903 is connected to the drain pipe, which runs through the body 1.
[0095] The extrusion assembly 906 includes:
[0096] Connecting bracket 9061 is installed on the telescopic end of the first lifting rod 905;
[0097] The center plate 9067 is mounted on the connecting frame 9061;
[0098] The second lifting rod 9062 and the connecting plate 9063 connected to the telescopic end of the second lifting rod 9062 are mounted on the connecting frame 9061. The second lifting rod 9062 is configured as an electric push rod 8054.
[0099] The branch pipe 9064 is located below the connecting plate 9063 and the central rod 9065 is installed inside the branch pipe 9064. The central rod 9065 is made of magnetic material and has a rough outer surface.
[0100] The base 9066 is snapped onto the outside of the center rod 9065, and the base 9066 is made of magnetic material.
[0101] The process of using disinfection unit 9 and extrusion component 906 to adsorb activated carbon onto raw water:
[0102] In the initial state, the annular activated carbon ring is fitted around the outside of the central rod 9065. Both the first lifting rod 905 and the second lifting rod 9062 are in the initial state, and the central rod 9065 is completely submerged in the raw water. The activated carbon ring is in contact with the raw water and performs adsorption on the raw water.
[0103] The process of using the disinfection mechanism 9 and the extrusion assembly 906 to extrude activated carbon and discharge wastewater:
[0104] After the activated carbon ring has been used for the specified period, manually remove the cover plate 3, and then activate the first lifting rod 905. The first lifting rod 905 drives the connecting frame 9061, the branch pipe 9064, and the chassis 9066 to rise. Activate the electric push rod 8054 located in the second slide chute 901. The electric push rod 8054 drives the slide plate 902 to move towards the collection box 903 until the chassis 9066 is above the collection box 903.
[0105] When the second lifting rod 9062 is activated, it drives the connecting plate 9063, branch pipe 9064, and chassis 9066 to rise. The center plate 9067 and chassis 9066 begin to squeeze the activated carbon ring between them, and the sewage gradually flows into the collection box 903 and is discharged from the equipment through the sewage pipe.
[0106] Workers then disassembled the chassis 9066, which was located outside the central rod 9065, and reinstalled the activated carbon ring to carry out subsequent activated carbon adsorption work.
[0107] By incorporating a disinfection mechanism 9 and an extrusion assembly 906, the wastewater in the saturated activated carbon rings is discharged and collected centrally through the extrusion action of the central plate 9067 and the base 9066, preventing secondary pollution caused by the transfer of wet carbon. The magnetically connected central rod 9065 and base 9066 facilitate quick and manual replacement of the activated carbon rings.
[0108] Working principle: Before using the equipment, adjust the electric push rod 8054 located in the first slide groove 801. The electric push rod 8054 drives the sliding box 802 to move inside the first slide groove 801. The sliding box 802 drives the nozzle 803 to move, thereby adjusting the relative position of the nozzle 803 and the pushing component 805. Then, raw water enters the mixing zone through the water inlet pipe 4. At the same time, multiple nozzles 803 are activated. The nozzles 803 spray a metered amount of polyaluminum chloride from the sliding box 802 downwards. The polyaluminum chloride falls into the mixing zone along with the raw water. The mechanical stirrer mixes the water and polyaluminum chloride.
[0109] Adjust the position of the sliding box 802 so that the nozzle 803 corresponds to the position of the channel 8053. As raw water enters the inlet pipe 4, it is discharged through the channel 8053 in the middle of the inlet pipe 4 and mixes with the polyaluminum chloride sprayed from the nozzle 803 before entering the mixing zone.
[0110] During this process, multiple sets of second blades 8057 with filter holes intercept particulate matter in the raw water. The push rod 8054 is adjusted to perform periodic reciprocating motion. The push rod 8054 drives the push plate 8055, connecting rod 8056 and second blades 8057 to move. The second blades 8057 scrape the opening of the channel 8053, promoting the removal of impurities from the opening of the channel 8053. During the movement of the second blades 8057, some impurities are promoted to settle into the third groove 8052, so as to reduce particulate impurities entering the mixing zone through the channel 8053.
[0111] After spraying, the electric push rod 8054 in the first slide 801 is adjusted to the reciprocating motion mode. The electric push rod 8054 drives the sliding box 802 to move, and the sliding box 802 drives the contact component 804 to reciprocate in the mixing zone.
[0112] As the sliding box 802 reciprocates in the horizontal direction, the sliding box 802 drives the connecting piece 8041 and the moving plate 8042 to reciprocate in the horizontal direction. When the moving plate 8042 contacts the inner wall of the machine body 1, the first blade 8046 deforms accordingly against the branch plate of the inner wall of the machine body 1. The moving plate 8042 touches the inner wall of the machine body 1 to promote the flow of raw water and the mixing of raw water and polyaluminum chloride. The first blades 8046 on both sides contact the inner wall of the machine body 1 and the first partition 5 to promote the movement and fall of impurities on the inner wall of the machine body 1 in the middle and upper part.
[0113] After mixing, the stroke of the vertical electric push rod 8054 in the lifting frame 806 is adjusted. The electric push rod 8054 drives the frame plate to move upward, and the flow channel is circulated. At this time, the raw water can enter the flocculation zone through the flow channel. Subsequently, the raw water enters the disinfection zone after passing through the flocculation zone and the sedimentation and filtration zone, where the disinfection mechanism 9 disinfects the raw water.
[0114] Both the first lifting rod 905 and the second lifting rod 9062 are in their initial state, with the central rod 9065 completely submerged in the raw water. The activated carbon ring is in contact with the raw water, adsorbing it. Subsequently, the treated raw water enters the clear water zone and is discharged through the outlet pipe 10. It is collected separately and reintroduced into the inlet pipe 4.
[0115] After the work is completed, start the push rod 8054 to the maximum stroke. The push rod 8054 drives the push plate 8055, the connecting rod 8056 and the second blade 8057 to move away from the machine body 1. The push plate 8055 begins to scrape the inner wall of the water inlet pipe 4 and drives the particles in the third groove 8052 to leave the water inlet pipe 4.
[0116] Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. All other embodiments obtained by those skilled in the art and related fields based on the embodiments of the present invention without inventive effort should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention, unless otherwise specified or limited, shall be implemented according to conventional means in the art.
Claims
1. A miniaturized household water purification device for treating surface water and groundwater, comprising a body (1), characterized in that, Also includes: Water inlet pipe (4) and water outlet pipe (10) installed on the outside of the body (1); The first partition (5) is installed inside the body (1); A mixing mechanism (8) is provided outside the first partition (5). The mixing mechanism (8) includes a first groove (801) opened inside the first partition (5), a sliding box (802) slidably connected inside the first groove (801), a nozzle (803) installed below the sliding box (802), and a push assembly (805) provided inside the water inlet pipe (4). The sliding box (802) is used to adjust the relative position between the nozzle and the push assembly (805).
2. The miniaturized household water purification device for treating surface water and groundwater according to claim 1, characterized in that: Also includes: Solar panel (2) and cover plate (3) installed on the top of the body (1); The second partition (6) and the third partition (7) are installed inside the body (1); Disinfection mechanism (9) is located outside the second partition (6).
3. The miniaturized household water purification device for treating surface water and groundwater according to claim 1, characterized in that: The hybrid mechanism (8) further includes: Contact component (804) disposed outside the sliding box (802); The lifting frame (806) is installed below the first partition (5).
4. The miniaturized household water purification device for treating surface water and groundwater according to claim 3, characterized in that: The contact assembly (804) includes: A connector (8041) installed on the outside of the sliding box (802) and a movable plate (8042) connected to the connector (8041); A first groove (8043) and a second groove (8044) are formed inside the movable plate (8042); An adjusting rod (8045) is disposed outside the movable plate (8042), and a first blade (8046) is connected to the end of the adjusting rod (8045) away from the movable plate (8042).
5. The miniaturized household water purification device for treating surface water and groundwater according to claim 1, characterized in that: The push component (805) includes: Mounting plate (8051) installed on the outside of water inlet pipe (4); The third groove (8052) and the channel (8053) are opened inside the water inlet pipe (4).
6. The miniaturized household water purification device for treating surface water and groundwater according to claim 5, characterized in that: The push component (805) also includes: A push plate (8055) is slidably connected inside the water inlet pipe (4), and the push plate (8055) is adapted to the third groove (8052); The connecting rod (8056) is mounted on the push plate (8055) and the second blade (8057) is disposed on the connecting rod (8056); A push rod (8054) is installed on the side of the push plate (8055) away from the connecting rod (8056), and the fixed end of the push rod (8054) is installed on the first partition plate (5).
7. The miniaturized household water purification device for treating surface water and groundwater according to claim 2, characterized in that: The disinfection mechanism (9) includes: A second slide groove (901) is opened inside the second partition (6) and a slide plate (902) is slidably connected inside the second slide groove (901); A first lifting rod (905) and an extrusion assembly (906) connected to the telescopic end of the first lifting rod (905) are mounted on the slide plate (902). The collection box (903) and the side plate (904) connected to the collection box (903) are installed outside the second partition (6).
8. The miniaturized household water purification device for treating surface water and groundwater according to claim 7, characterized in that: The extrusion assembly (906) includes: The connecting frame (9061) is installed on the telescopic end of the first lifting rod (905). The center plate (9067) is mounted on the connecting frame (9061).
9. The miniaturized household water purification device for treating surface water and groundwater according to claim 8, characterized in that: The extrusion assembly (906) further includes: The second lifting rod (9062) and the connecting plate (9063) connected to the telescopic end of the second lifting rod (9062) are installed on the connecting frame (9061). The branch pipe (9064) is located below the connecting plate (9063) and the center rod (9065) is installed inside the branch pipe (9064). The chassis (9066) is snapped onto the outside of the center rod (9065).
Citation Information
Patent Citations
Small household water purifier
CN112358067A