An efficient integrated water purification device
By designing multiple sets of interceptor components and adsorbent control flow ports in the water purification equipment, combining multi-layer filtration and membrane filters, the problem of overflow holes is solved during the flocculation process, and efficient sewage purification is achieved.
Patent Information
- Application Number
- CN202510316078.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2045-03-18
AI Technical Summary
Existing water purification equipment can easily lead to blockage of overflow holes during the flocculation process, affecting the water flow circulation and purification efficiency.
An efficient integrated water purification equipment was designed to construct multiple precipitation and flocculation chambers through multiple sets of intercepting components, and the flow port opening and closing is controlled by adsorbents, and repeated flocculation and precipitation are combined, and combined with multi-layer filtration and membrane filters to achieve combined purification and layer-by-layer processing.
It effectively avoids overflow hole blockage, improves the flowability and purification efficiency of water flow, and achieves efficient sewage purification.
Smart Images

Figure CN119841511B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of sewage treatment, and in particular to a high-efficiency integrated water purification device. Background Art
[0002] Sewage treatment refers to the process of treating and purifying wastewater containing various organic, inorganic, suspended matter, microorganisms and other pollutants generated in cities, industries, rural areas, etc. The purpose of sewage treatment is to remove or reduce harmful substances in sewage to an environmentally acceptable standard in order to protect the quality of water resources and safeguard public health. It involves the management of multiple links such as sewage collection, transportation, treatment and discharge. Existing water purification equipment generally sets up multiple adjacent water purification tanks outdoors. The sewage passes through the water purification tanks in turn to complete the corresponding flocculation, sedimentation, filtration and other purification processes. This open-air water purification structure not only occupies a large area (especially the flocculation sedimentation tank), but is also easily polluted by the outside world, resulting in low water purification efficiency and poor water purification effect.
[0003] The Chinese patent with authorization announcement number CN118420071B provides a high-efficiency integrated water purification device, including a water purification body, and a sunshade device is provided on the top of the water purification body; the water purification body includes a flocculation tank, a sedimentation tank and a filtration tank connected in sequence, and a plurality of first partitions are provided in the flocculation tank, which are spaced and arranged in parallel along the length direction of the flocculation tank, and the flocculation tank is divided into a plurality of flocculation channels arranged in sequence along the length direction of the flocculation tank; the fluid flow directions in two adjacent flocculation channels are opposite, and the flow direction of the fluid in the flocculation tank is S-shaped; a plurality of second partitions are provided in each flocculation channel, which are spaced and arranged in parallel along the width direction of the flocculation tank, and the flocculation channel is divided into a plurality of flocculation grids arranged in sequence along the width direction of the flocculation tank; the fluid flow direction in the flocculation grid is vertical, and the fluid flow directions in two adjacent flocculation grids in the same flocculation channel are opposite, and the fluid flow direction in a single flocculation channel is S-shaped.
[0004] The above-mentioned high-efficiency integrated water purification equipment allows water to flow through the flow holes during the flocculation process. The water flow contains flocculation, impurities, etc., and is accompanied by the production of some residues, which can easily clog the flow holes, resulting in poor water flow and purification obstruction, thereby affecting the efficiency and effect of purification. Summary of the invention
[0005] In view of the problems existing in the background technology, a high-efficiency integrated water purification equipment is proposed, which has integrated structure and function, and finally achieves high-efficiency water purification through repeated flocculation and sedimentation, multi-layer filtration, combined purification, and layer-by-layer treatment.
[0006] The present invention provides an efficient integrated water purification device, which includes a water purification cylinder, an interception component, a first filter element, and a second filter element. The water purification cylinder is horizontally arranged, with a water inlet pipe, a first slag discharge pipe, and a sedimentation and coagulation chamber at one end, and a second slag discharge pipe, a water outlet pipe, and a filtration chamber at the other end; multiple groups of interception components are provided to divide the sedimentation and coagulation chamber into multiple sedimentation and coagulation cavities; the first group of sedimentation and coagulation cavities is connected to the water inlet pipe; the bottom of each group of sedimentation and coagulation cavities is connected to the first slag discharge pipe; the lower end of each group of interception components is set as a sedimentation and coagulation interception section, and the upper end is set as a water purification section with a circulation port; a connecting member is located between the sedimentation and coagulation interception section and the water purification section for discharging gas and coagulant into the sedimentation and coagulation cavity; an adsorbing member is located on the water purification section, which drives the lifting through buoyancy to control the opening and closing of the circulation port, and simultaneously adsorbs the residue on the water surface; the circulation port is connected to the sedimentation and coagulation cavities on both sides; the first filter element is located above the filtration chamber, connected to the last group of circulation ports on one side and the second slag discharge pipe on the other side; the second filter element is located below the filtration chamber and is connected to the water outlet pipe.
[0007] Preferably, the adsorbing member is connected to a slag collection box through a slag collection pipe; the connecting member is connected to a liquid storage tank through a liquid discharge pipe and connected to an air pump through an air discharge pipe.
[0008] Preferably, the sedimentation and coagulation interception section and the water purification section form a disc structure; the connecting member includes a connecting seat penetrating the center of the disc structure; a coagulant outlet is arranged at the center of the connecting seat; the coagulant outlet is connected to the liquid discharge pipe through a first pipeline; an air outlet is arranged on the outer periphery of the connecting seat; the air outlet is connected to the air discharge pipe through a second pipeline.
[0009] Preferably, the circulation port is filled with adsorption particles, with water inlet at one end and water outlet at the other end, and liquid passing plates are arranged at both ends.
[0010] Preferably, an elastic dredging member is arranged in the circulation port; a guiding frame that frames the water inlet side of the circulation port is arranged on the water purification section; the adsorbing member lifts along the guiding frame under the action of buoyancy, and simultaneously pulls the elastic dredging member synchronously to move and dredge the circulation port.
[0011] Preferably, the adsorbing member includes an adsorption box arranged slidably; a main slag suction port and a floating frame are arranged at the bottom of the adsorption box, telescopic adsorption cylinders are arranged on both sides, a first slag suction pump and a slag suction hose are arranged at the top; a second slag suction pump is arranged at the top of the adsorption cylinder, and a side slag suction port is arranged at the bottom; one end is slidably connected to the adsorption box, and the other end is provided with a driving wheel and a limiting frame that slidably contact the inner wall of the water purification cylinder, and elastic telescopic rods are arranged on both sides of the adsorption cylinder; one end of the elastic telescopic rod is connected to the adsorption box, and the other end is connected to the limiting frame; the slag suction hose is connected to the slag collection pipe.
[0012] Preferably, a brush plate for cleaning the liquid passing plate on the water inlet side is arranged on the back of the adsorption box; the elastic end of the elastic dredging member penetrates through the liquid passing plate at one end, is connected to the brush plate, and is connected to the liquid passing plate on the water outlet side at the other end.
[0013] Preferably, the elastic dredging member includes an elastic rope; the elastic rope is the elastic end, and multiple sets of rotatable dredging frames are strung on the elastic rope.
[0014] Preferably, the first filter member includes a sedimentation table located below the last set of circulation ports; the two sides of the sedimentation table are mirror - image - arranged with inclined filter tables; filter through - holes are arranged on the filter tables; the sedimentation table is provided with a sunken sedimentation tank; the sedimentation tank is communicated with the second slag discharge pipe; the filter through - holes are inclined in a direction away from the sedimentation tank, and the cross - section is set as a polygonal structure.
[0015] Preferably, the second filter member is internally provided with a membrane filter.
[0016] Compared with the prior art, the present invention has the following beneficial technical effects: Firstly, multiple sedimentation and flocculation chambers are constructed through multiple sets of interception components. During each sedimentation and flocculation process, an adsorbing member is set to rise and fall with the water level change to control the opening and closing of the circulation ports. This enables the sewage to enter the next re - flocculation link in batches after reacting with the flocculant for a certain time, and flocculate repeatedly and multiple times to ensure the effect of flocculation and sedimentation. At the same time, the adsorbing member can absorb the residues on the water surface, and can also pull the elastic rope, causing the dredging frames to move and rotate synchronously, dredging the circulation ports and stirring the adsorbed particles, promoting sewage purification from multiple aspects. Then, the first filter member is set up. The filter tables are used to intercept the residual flocs and impurities in the sewage, and the sedimentation tank is used to collect the residual flocs and impurities in the sewage. After multi - layer purification, the membrane filter is used to deeply purify the sewage. The equipment has an integrated structure and function. The sediment and impurities in the sewage flow out in batches, and are purified in combination and treated layer by layer, ultimately achieving efficient water purification. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a schematic structural view (viewpoint one) of the high - efficiency integrated water purification equipment in the present invention;
[0018] Figure 2 is a schematic structural view (viewpoint two) of the high - efficiency integrated water purification equipment in the present invention;
[0019] Figure 3 is a cross - sectional view of the high - efficiency integrated water purification equipment in the present invention;
[0020] Figure 4 is a combined schematic view of multiple sets of interception components in the present invention;
[0021] Figure 5 is a schematic structural view of the interception component in the present invention;
[0022] Figure 6 is a cross - sectional view of the interception component in the present invention;
[0023] Figure 7 is a schematic structural view (viewpoint one) of the adsorbing member in the present invention;
[0024] Figure 8 Structural schematic diagram of the adsorbing component in the present invention (viewpoint two);
[0025] Figure 9 is Figure 6 the enlarged view of part A in;
[0026] Figure 10 Structural schematic diagram of the first filter element in the present invention;
[0027] Figure 11 Cross-sectional view of the first filter element in the present invention.
[0028] Reference numerals: 1, water purification cylinder; 101, water inlet pipe; 102, second slag discharge pipe; 103, water outlet pipe; 104, first slag discharge pipe; 105, precipitation and flocculation chamber; 106, filtration chamber; 2, gas outlet pipe; 201, second pipe; 3, liquid outlet pipe; 301, first pipe; 4, slag collection pipe; 5, interception assembly; 501, precipitation and flocculation interception section; 502, water purification section; 503, connecting member; 50301, flocculant outlet; 50302, gas outlet; 50303, connecting seat; 504, liquid passing plate; 505, adsorption particles; 506, adsorbing component; 50601, adsorption box; 50602, main slag suction port; 50603, floating frame; 50604, adsorption cylinder; 50605, limiting frame; 50606, side slag suction port; 50607, driving wheel; 50609, elastic telescopic rod; 50610, brush plate; 50611, second slag suction pump; 50612, first slag suction pump; 50613, guide rod; 50614, slag suction hose; 507, elastic dredging member; 50701, elastic rope; 50702, dredging frame; 508, guide frame; 50801, frame body; 50802, support plate; 6, first filter element; 601, precipitation table; 602, filtration table; 603, filtration through holes; 7, second filter element; 8, air pump; 9, liquid storage tank; 10, slag collection tank. Detailed implementation manners
[0029] Example 1, as Figures 1-4As shown in the figure, an efficient integrated water purification device proposed by the present invention includes a water purification cylinder 1, an interception component 5, a first filter element 6, and a second filter element 7. The water purification cylinder 1 is horizontally placed, with a water inlet pipe 101, a first slag discharge pipe 104, and a precipitation and coagulation chamber 105 arranged at one end, and a second slag discharge pipe 102, a water outlet pipe 103, and a filtration chamber 106 arranged at the other end; multiple groups of interception components 5 are provided, dividing the precipitation and coagulation chamber 105 into multiple precipitation and coagulation cavities; the first precipitation and coagulation cavity is connected to the water inlet pipe 101; the bottom of each precipitation and coagulation cavity is connected to the first slag discharge pipe 104; the lower end of each interception component 5 is set as a precipitation and coagulation interception section 501, and the upper end is set as a water purification section 502 with a circulation port; a connecting component 503 is located between the precipitation and coagulation interception section 501 and the water purification section 502, and is used for discharging gas and coagulant into the precipitation and coagulation cavity; an adsorption component 506 is located on the water purification section 502, and drives the lifting by buoyancy to control the opening and closing of the circulation port, and at the same time adsorbs the residue on the water surface; the circulation port is connected to the precipitation and coagulation cavities on both sides; the first filter element 6 is located above the filtration chamber 106, with one side connected to the last group of circulation ports and the other side connected to the second slag discharge pipe 102; the second filter element 7 is located below the filtration chamber 106 and is connected to the water outlet pipe 103.
[0030] It should be further noted that the adsorption component 506 is connected to the slag collection box 10 through the slag collection pipe 4; during the lifting process, with the cooperation of a vacuum pump, the residue on the water surface is transferred into the slag collection box 10. The connecting component 503 is connected to the liquid storage tank 9 through the liquid outlet pipe 3 and connected to the air pump 8 through the air outlet pipe 2; the liquid storage tank 9 is filled with coagulant, which is directly added into the water through the connecting component 503, and at the same time the air pump 8 ventilates to promote the mixing of water and the liquid agent, accelerating the coagulation reaction.
[0031] As Figure 5 As shown in the figure, the precipitation and coagulation interception section 501 and the water purification section 502 form a disc structure; the connecting component 503 includes a connecting seat 50303 penetrating through the center of the disc structure; a coagulant outlet 50301 is arranged at the center of the connecting seat 50303; the coagulant outlet 50301 is connected to the liquid outlet pipe 3 through the first pipe 301; an air outlet 50302 is arranged on the outer periphery of the connecting seat 50303; the air outlet 50302 is connected to the air outlet pipe 2 through the second pipe 201.
[0032] It should be further noted that the air outlet 50302 is arranged along a semi-circular trajectory and around the bottom of the coagulant outlet 50301; the adsorption component 506 is located above the connecting seat 50303; the water inlet pipe 101 is arranged opposite to the position of the connecting seat 50303.
[0033] The air outlet 50302 sprays out air flow around the coagulant outlet 50301, lifting and moving the coagulant, accelerating the diffusion and circulation of the coagulant, promoting its mixing with the sewage, and thus accelerating coagulation.
[0034] As Figure 6As shown, the connection port is filled with adsorption particles 505, with water inlet at one end and water outlet at the other end, and liquid passing plates 504 are provided at both ends.
[0035] It should be further noted that the adsorption particles 505 are set as activated carbon balls for adsorbing and purifying sewage.
[0036] As Figure 6 shown, an elastic dredging member 507 is arranged in the connection port; a guiding frame 508 that frames the water inlet side of the flow port is arranged on the purified water section 502; the adsorbing member 506 rises and falls along the guiding frame 508 under the action of buoyancy, and at the same time synchronously pulls the elastic dredging member 507 to move and dredge the connection port.
[0037] The elastic dredging member 507 moves with the adsorbing member 506. On the one hand, it dredges the connection port, and on the other hand, it stirs the adsorption particles 505 to make them evenly adsorb impurities in the sewage.
[0038] As Figures 7-8 shown, the guiding frame 508 includes a frame body 50801 that frames the connection port and a support plate 50802 located at the top of the frame body 50801; the adsorbing member 506 includes an adsorption box 50601 slidably arranged on the frame body 50801; a main slag suction port 50602 and a floating frame 50603 are arranged at the bottom of the adsorption box 50601, telescopic adsorption cylinders 50604 are arranged on both sides, and a slag suction pump 50612 and a slag suction hose 50614 are arranged at the top.
[0039] A slag suction pump 50611 is arranged at the top of the adsorption cylinder 50604, and a side slag suction port 50606 is arranged at the bottom; one end is slidably connected to the adsorption box 50601, and the other end is provided with a driving wheel 50607 that slidably contacts the inner wall of the purified water cylinder 1 and a limiting frame 50605. Elastic telescopic rods 50609 are arranged on both sides of the adsorption cylinder 50604.
[0040] One end of the elastic telescopic rod 50609 is connected to the adsorption box 50601, and the other end is connected to the limiting frame 50605. The driving wheel 50607 is always in sliding contact with the inner wall of the purified water cylinder 1 under the push of the built-in spring to adjust the position of the side slag suction port 50606.
[0041] The top end of the slag suction hose 50614 penetrates through the support plate 50802 and is connected to the slag collection pipe 4. Guide rods 50613 that slidably penetrate through the adsorption box 50601 are arranged on both sides of the slag suction hose 50614.
[0042] When the amount of water in the sedimentation and flocculation chamber is lower than the flow port, the adsorbent 506 is located at the bottom of the frame 50801 under the action of gravity and covers the flow port. After adding flocculants to the sewage, a compressed double layer will appear, causing the suspended particles in the sewage to lose their original stability, and the colloidal objects will condense each other, resulting in an increase in particles, thereby forming floccules and alum flowers. When the floccules grow to a certain volume, they will separate from the water phase and precipitate under the action of gravity. At the same time, since some tiny particles or soluble substances may still remain in the water, or floccules that have not settled to the bottom, residues will form on the water surface. As the water level gradually rises, the floating frame 50603 lifts the adsorption box 50601 up and gradually exposes the flow port. The side suction slag port 50606 slides in and out of the adsorption box 50601. After the flow port is exposed, the sewage passes through the flow port. The main suction slag port 50602 and the side suction slag port 50606 remove surface residues and purify the sewage. After passing through the adsorption particles 505, the sewage enters the next sedimentation and flocculation chamber. When the sewage level is lower than the flow port, the adsorption box 50601 is reset and the flow port is closed. The residue adsorbed by the main slag suction port 50602 and the side slag suction port 50606 is adsorbed and transferred to the slag collection box 10.
[0043] like Figure 8 As shown, a brush plate 50610 for cleaning the liquid passage plate 504 on the water inlet side is provided on the back of the adsorption box 50601; one end of the elastic end of the elastic clearing member 507 passes through the liquid passage plate 504 and is connected to the brush plate 50610, and the other end is connected to the liquid passage plate 504 on the water outlet side.
[0044] As the water level in the adsorption box 50601 rises and falls, the liquid passage plate 504 on the water inlet side can be cleaned to avoid poor sewage flow. The elastic dredging member 507 also moves with the adsorption box 50601 to achieve the purpose of synchronous dredging.
[0045] like Figure 9 As shown, the elastic clearing member 507 includes an elastic rope 50701; the elastic rope 50701 is the elastic end, and a plurality of groups of rotatable clearing frames 50702 are connected in series to the elastic rope 50701.
[0046] It should be further explained that the dredging frame 50702 is a cross-shaped structure.
[0047] The adsorption box 50601 is lifted and lowered, the elastic rope 50701 is pulled, and at the same time, the dredging frame 50702 is synchronously moved and rotated under the push of the water flow. The dredging frame 50702 dredges the flow port and stirs the adsorption particles 505.
[0048] like Figures 10-11As shown, the first filter element 6 includes a sedimentation table 601 located below the last group of flow-through openings; filter tables 602 with inclined surfaces are arranged in a mirror image on both sides of the sedimentation table 601; filter through-holes 603 are provided on the filter tables 602; a sunken sedimentation tank is provided on the sedimentation table 601; the sedimentation tank is communicated with the second slag discharge pipe 102; the filter through-holes 603 are inclined in a direction away from the sedimentation tank, and the cross-section is arranged as a polygonal structure.
[0049] It should be further noted that the inclination angle of the filter through-holes 603 is 45 degrees.
[0050] It should be further noted that the sewage after multiple coagulations enters the first filter element 6, and the residual coagulations and impurities in the sewage are intercepted by the filter tables 602 and enter the sedimentation tank. The sewage falls below the filter chamber 106 through the filter through-holes 603.
[0051] It should be further noted that the second filter element 7 is provided with a membrane filter inside.
[0052] Embodiment 2: Based on the high-efficiency integrated water purification equipment in Embodiment 1, this embodiment proposes a high-efficiency water purification method, and the steps are as follows:
[0053] S1. The sewage flows through multiple sedimentation and coagulation chambers in sequence, and sedimentation and coagulation are repeated. The failure process in each sedimentation and coagulation chamber is as follows: When the water volume in the sedimentation and coagulation chamber is lower than the flow-through opening, the adsorbing member 506 is located at the bottom of the frame body 50801 under the action of gravity and covers the flow-through opening; after adding a flocculant to the sewage, the air outlet 50302 sprays out air around the flocculant outlet 50301 to lift and move the flocculant; the coagulation precipitates out of the water phase under the action of gravity; as the water level gradually rises, the floating frame 50603 lifts the adsorption box 50601 to gradually expose the flow-through opening; the side slag suction port 50606 slides in and out of the adsorption box 50601; after the flow-through opening is opened, the sewage passes through the flow-through opening; the main slag suction port 50602 and the side slag suction port 50606 suck the surface residues to purify the sewage; after the sewage passes through the adsorption particles 505, it enters the next sedimentation and coagulation chamber; when the sewage level is lower than the flow-through opening, the adsorption box 50601 resets and the flow-through opening is closed; during the lifting and lowering process of the adsorption box 50601, the elastic rope 50701 is pulled, and at the same time, under the push of the water flow, the dredging frame 50702 moves and rotates synchronously; the dredging frame 50702 dredges the flow-through opening and stirs the adsorption particles 505;
[0054] S2. The sewage enters the first filter element 6, and the residual coagulations and impurities in the sewage are intercepted by the filter tables 602 and enter the sedimentation tank; the sewage falls below the filter chamber 106 through the filter through-holes 603;
[0055] S3. The membrane filter filters the purified sewage again;
[0056] S4. The purified water flows out from the water outlet pipe 103, and the sediment flows out from the second slag outlet pipe 102, the first slag outlet pipe 104, and the slag collection box 10.
[0057] The embodiments of the present invention have been described in detail above in conjunction with the accompanying drawings. However, the present invention is not limited thereto. Various changes can be made without departing from the gist of the present invention within the scope of knowledge possessed by those skilled in the art.
Claims
1. A high-efficiency integrated water purification device, characterized in that: include: A water purification cylinder (1), wherein the water purification cylinder (1) is horizontally arranged, with a water inlet pipe (101), a first slag discharge pipe (104) and a sedimentation and flocculation chamber (105) provided at one end, and a second slag discharge pipe (102), a water outlet pipe (103) and a filtration chamber (106) provided at the other end; An interception assembly (5), wherein a plurality of interception assemblies (5) are provided to divide the sedimentation and flocculation chamber (105) into a plurality of sedimentation and flocculation chambers; The first set of sedimentation and flocculation chambers is connected to a water inlet pipe (101); the bottom of each set of sedimentation and flocculation chambers is connected to a slag discharge pipe (104); the lower end of each set of interception components (5) is provided with a sedimentation and flocculation interception section (501), and the upper end is provided with a water purification section (502) with a flow port; the connecting piece (503) is located between the sedimentation and flocculation interception section (501) and the water purification section (502), and is used to discharge air and flocculating agent to the sedimentation and flocculation chamber; the adsorbent (506) is located on the water purification section (502), and is driven to rise and fall by buoyancy to control the opening and closing of the flow port, while absorbing the residue on the water surface; the flow port is connected to the sedimentation and flocculation chambers on both sides; Filter element 1 (6), the filter element 1 (6) is located above the filter chamber (106), one side of the filter element is connected to the last group of flow ports, and the other side of the filter element is connected to the slag discharge pipe 2 (102); And a second filter element (7), the second filter element (7) is located below the filter chamber (106) and is connected to the water outlet pipe (103).
2. The high-efficiency integrated water purification equipment according to claim 1, characterized in that: The adsorption member (506) is connected to the slag collecting box (10) via the slag collecting pipe (4); The connecting piece (503) is connected to the liquid storage tank (9) via the liquid outlet pipe (3) and is connected to the air pump (8) via the air outlet pipe (2).
3. The high-efficiency integrated water purification equipment according to claim 2, characterized in that: The sedimentation and flocculation interception section (501) and the water purification section (502) form a disc structure; The connecting piece (503) comprises a connecting seat (50303) penetrating the center of the disc structure; a flocculant outlet (50301) is arranged at the center of the connecting seat (50303); the flocculant outlet (50301) is connected to the liquid outlet pipe (3) through a first pipe (301); an air outlet (50302) is arranged on the periphery of the connecting seat (50303); and the air outlet (50302) is connected to the air outlet pipe (2) through a second pipe (201).
4. The high-efficiency integrated water purification equipment according to claim 3, characterized in that: The flow port is filled with adsorption particles (505), one end is for water inlet and the other end is for water outlet, and liquid passage plates (504) are arranged at both ends.
5. The high-efficiency integrated water purification equipment according to claim 4, characterized in that: An elastic dredging member (507) is arranged in the flow opening; A guide frame (508) is provided on the water purification section (502) to frame the water inlet side of the circulation port; the adsorption member (506) rises and falls along the guide frame (508) under the action of buoyancy, and simultaneously pulls the elastic dredging member (507) to move and dredge the circulation port.
6. The high-efficiency integrated water purification equipment according to claim 5, characterized in that: The adsorption member (506) comprises an adsorption box (50601) which is arranged to slide; a main slag suction port (50602) and a floating frame (50603) are arranged at the bottom of the adsorption box (50601), retractable adsorption cylinders (50604) are arranged on both sides, and a slag suction pump (50612) and a slag suction hose (50614) are arranged at the top; A second slag suction pump (50611) is provided at the top of the adsorption cylinder (50604), and a side slag suction port (50606) is provided at the bottom; one end of the adsorption cylinder (50604) is slidably connected to the adsorption box (50601), and the other end is provided with a limit frame (50605) and a driving wheel (50607) that is in slidable contact with the inner wall of the water purification cylinder (1); elastic telescopic rods (50609) are provided on both sides of the adsorption cylinder (50604); One end of the elastic telescopic rod (50609) is connected to the adsorption box (50601), and the other end is connected to the limit frame (50605); The slag suction hose (50614) is connected to the slag collecting pipe (4).
7. The high-efficiency integrated water purification equipment according to claim 6, characterized in that: A brush plate (50610) for cleaning the liquid-passing plate (504) on the water inlet side is arranged on the back side of the adsorption box (50601); one end of the elastic end of the elastic dredging member (507) penetrates the liquid-passing plate (504) and is connected to the brush plate (50610), and the other end is connected to the liquid-passing plate (504) on the water outlet side.
8. The high-efficiency integrated water purification equipment according to claim 7, characterized in that: The elastic dredging member (507) comprises an elastic rope (50701); the elastic rope (50701) is an elastic end, and a plurality of groups of rotatable dredging frames (50702) are serially connected to the elastic rope (50701).
9. The high-efficiency integrated water purification equipment according to claim 1, characterized in that: The filter element 1 (6) comprises a sedimentation platform (601) located below the last group of flow ports; filter platforms (602) with inclined surfaces are arranged in a mirror-like manner on both sides of the sedimentation platform (601); and filter through holes (603) are arranged on the filter platform (602); The sedimentation platform (601) is provided with a concave sedimentation tank; the sedimentation tank is connected to the second slag discharge pipe (102); The filtering through hole (603) is arranged to be inclined in a direction away from the sedimentation tank, and the cross section is arranged to be a polygonal structure.
10. The high-efficiency integrated water purification equipment according to claim 1, characterized in that: The filter element 2 (7) is provided with a membrane filter.
Citation Information
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A high-efficiency integrated water purification equipment
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