Ecological purification integrated system applied to elution of suspended solids in water body
By designing a suspended object fisherman with a rotating shaft and arc-shaped helical teeth, combined with auxiliary disturbances of the worm and jet head, the problems of limited stirring range and narrow disturbance range of traditional equipment are solved, and efficient bottom sludge disturbances and pollutant release are achieved.
Patent Information
- Application Number
- CN202510311932.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-17
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2045-03-17
AI Technical Summary
In the prior art, the mixing range of the bottom sludge mixing equipment is limited and cannot fully cover each area of the bottom of the water body, resulting in difficulty in releasing pollutants in some areas and affecting the treatment effect. At the same time, the traditional jet disturbance device has a single impact direction and a narrow disturbance range, making it difficult to effectively deal with the bottom mud in complex river terrain.
A suspended object fisherman is designed, which uses the reciprocating rotation of the rotating shaft to drive the mount and the vertical shaft to swing. Combined with the coordination of one-way bearings and arc-shaped helical teeth, the vertical shaft can rotate forward and reversely, and the rotation speed and number of turns are different. At the same time, a worm is provided outside the vertical shaft to drive the slow stirring rod to rotate slowly forward and reversely, and a high-pressure water flow is emitted through the injection head to assist in the disturbance.
The efficiency and coverage of the bottom sludge disturbance are improved, and the mixing force can be adjusted according to the water body of different depths to avoid damage to shallow aquatic organisms. At the same time, the disturbance range is expanded, the effect of pollutant release is improved, and the shortcomings of traditional equipment are overcome.
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Figure CN119977235A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of water body suspended matter elution, and in particular to an integrated ecological purification system for water body suspended matter elution. Background Art
[0002] In aquatic ecosystems, sediment and suspended matter are key factors affecting water quality. Sediment is an important accumulation site for pollutants in water bodies, containing large amounts of nitrogen, phosphorus, heavy metals, and organic pollutants. These pollutants will be continuously released into the water through the exchange of substances between sediment and water, causing secondary pollution of the water, which is one of the important reasons for eutrophication and deterioration of water quality. Suspended matter will reduce the transparency of water bodies, affect the photosynthesis of aquatic plants, and may also adsorb pollutants, migrate and transform in the water, further endangering the water ecological environment. Therefore, effective treatment of sediment and suspended matter is a key link in improving water quality and repairing aquatic ecosystems.
[0003] In the suspended matter elution device in the prior art, in the sediment disturbance link, traditional sediment stirring equipment mostly adopts a single-axis or simple double-axis stirring structure. In practical applications, this structure has a limited stirring range and cannot fully cover all areas of the bottom of the water body. In the management of large lakes, single-axis stirring equipment can only act on the sediment near the stirring shaft, and the sediment in the area far away from the stirring shaft cannot be effectively disturbed, resulting in the difficulty of releasing pollutants in these areas, affecting the subsequent treatment effect. Since the rotation speed, angle and depth of the stirring shaft are fixed, it cannot be flexibly adjusted according to the different characteristics of the sediment. For deep sediment, the stirring force may be insufficient, making it difficult to fully turn it over; and for shallow sediment, excessive stirring may cause the turbidity of the water body to increase, affecting the living environment of aquatic organisms. Traditional jet disturbance devices usually have only one jet port, a single water flow impact direction, and a narrow disturbance range. When managing riverbed sediment, this single jet port device is difficult to make the water flow reach every corner of the river when facing complex river terrain. The water flow is easily blocked in the bends, narrow sections and areas near the shore of the river, causing these places to become disturbance dead spots. Pollutants in the bottom mud cannot be effectively treated and accumulate over a long period of time, continuously polluting the water body.
[0004] When collecting sediment, it often contains various impurities, such as branches, stones, weeds, and particles of different sizes. During operation, it is difficult for existing collection devices to effectively separate sediment and impurities, and a large amount of impurities will be sucked in along with the sediment. The mixing of these impurities increases the difficulty and cost of subsequent sediment treatment. In subsequent sediment treatment links, such as dehydration and solidification, impurities may damage equipment, affect the treatment effect, and may also cause the treated sediment to fail to meet emission standards and require secondary treatment. Summary of the invention
[0005] In order to solve the problems mentioned in the above background technology, the present invention provides an integrated system for ecological purification of suspended matter eluting in water.
[0006] In order to achieve the above object, the present invention adopts the following technical solutions:
[0007] An integrated ecological purification system for eluting suspended matter in water bodies comprises a suspended matter catcher, a treatment agent mixer, a flocculation sedimentation tank and a plate and frame filter press, wherein the suspended matter catcher comprises a lifting bracket, the lifting bracket is installed on a fishing boat, a fixed shaft and a rotating shaft are respectively provided on the lifting bracket, a plurality of mounting frames are fixed on the rotating shaft, a vertical shaft is rotatably mounted on the mounting frame, a disturbance spiral belt is provided at the bottom end of the vertical shaft, a fan-shaped frame is fixed on the fixed shaft, the rotating shaft passes through the center of the fan-shaped frame, a first helical gear and a second helical gear are rotatably mounted on the outside of the top end of the vertical shaft through a one-way bearing, and a first helical gear and a second helical gear are respectively rotatably mounted on the outside of the top end of the vertical shaft, a first helical gear and a second helical gear are respectively provided on one side of the fan-shaped frame close to the vertical shaft, the first helical gear is meshed with the first helical gear, and the second helical gear is meshed with the second helical gear.
[0008] Preferably, the rotating shaft is driven to reciprocate by a rotating motor, and a plurality of vertically arranged stirring branches are fixed on the disturbance spiral belt.
[0009] Preferably, a worm is provided outside the vertical shaft above the disturbance spiral belt, a slow stirring rod is rotatably mounted on the mounting frame, a worm wheel is fixed on the slow stirring rod, and the worm wheel and the worm are meshed with each other.
[0010] Preferably, the interior of the vertical shaft is hollow, and a jet pipe interface is provided at the top of the vertical shaft. The jet pipe interface is connected to a jet pump through a joint and a hose, and the jet pump draws clean water treated in a flocculation sedimentation tank into the vertical shaft.
[0011] Preferably, a spray head is provided at the bottom end of the vertical shaft, and a plurality of spray heads are provided, and the plurality of spray heads are distributed in a circular array at the bottom end of the vertical shaft.
[0012] Preferably, a plurality of stirring blades are fixed to the outside of the slow stirring rod, and the plurality of vertical axes are equidistantly distributed along the extension direction of the rotating axis.
[0013] Preferably, the interior of the fixed shaft is hollow, and a suction pipe interface is provided at one end of the fixed shaft, the suction pipe interface is connected to a suction pump, and the suction pump sucks water into the flocculation sedimentation tank.
[0014] Preferably, the fixed shaft is provided with a plurality of suction water inlets, and a filter screen is installed outside the suction water inlet, and a solid collection container is fixed on the mounting frame.
[0015] Preferably, a strip scraper is fixed above the solid collection container, a side of the filter screen cover close to the strip scraper is a curved surface, and the strip scraper is in contact with the surface of the filter screen cover.
[0016] Preferably, a discharge port is provided on one side of the solid collection container, and the discharge port is away from the disturbing spiral belt. A discharge screw is rotatably installed in the solid collection container, and one end of the discharge screw extends to the outside of the solid collection container through the discharge port. A first pulley is fixed on one of the slow stirring rods, and a second pulley is fixed on the output shaft of the discharge screw. A belt is sleeved between the outside of the first pulley and the second pulley.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] 1. Efficient sediment disturbance: The unique structural design of the suspended matter catcher drives the mounting frame and the vertical axis to swing through the reciprocating rotation of the rotating shaft. With the cooperation of the one-way bearing and the arc-shaped bevel teeth on the fan-shaped frame, the vertical axis can rotate forward and reverse, and the rotation speed and number of turns are different. On the one hand, it improves the disturbing effect of the disturbance spiral belt and the stirring branch on the river water, expands the stirring coverage and changes the stirring angle, and improves the sediment disturbance efficiency; on the other hand, it drives the disturbance spiral belt to rotate more circles in a specific direction, pushing the mud-water mixture upward, facilitating subsequent suction, and effectively solving the problem of limited stirring range and inability to flexibly adjust the stirring intensity of traditional stirring equipment.
[0019] 2. Precise layered mixing: When the vertical axis rotates, the worm gear drives the slow stirring rod to slowly rotate forward and reverse, which reduces the stirring force for shallow water bodies and avoids excessive stirring. Different stirring forces are used according to the needs of water bodies at different depths, which not only prevents damage to shallow aquatic habitats and aquatic plants, but also realizes reasonable distribution of power, reduces energy consumption, improves energy utilization efficiency, and makes up for the shortcomings of traditional equipment in layered mixing.
[0020] 3. Powerful auxiliary disturbance: The vertical shaft is hollow inside and connected to a jet pump. Multiple jet heads are arranged in a circular array at the bottom. The jet heads eject high-pressure water flow to assist in the disturbance of the bottom mud, and the reciprocating swing of the vertical shaft changes the position and direction of the jet flow, expands the disturbance range, and improves the disturbance effect, overcoming the defects of the traditional jet disturbance device with a single water flow impact direction and a narrow disturbance range.
[0021] 4. Effective impurity treatment: A filter screen is installed outside the suction water inlet on the fixed shaft to prevent large particles of impurities from entering. The solid collection container on the mounting frame cooperates with the strip scraper to clean the impurities on the surface of the filter screen in time to prevent clogging. At the same time, the solid collection container automatically discharges through the discharge screw, and the discharge port is far away from the disturbing spiral belt to prevent the collected impurities from being stirred into the water again, solving the problems of the existing collection device being difficult to separate the bottom mud and impurities, and the impurities easily damaging the subsequent treatment equipment, reducing the difficulty and cost of treatment.
[0022] 5. Overall purification advantage: The integrated system works together through suspended matter catchers, treatment agent mixers, flocculation sedimentation tanks and plate and frame filter presses, from sediment disturbance, impurity filtration and collection to mud and water purification, forming a complete and efficient water suspended matter elution ecological purification process, which significantly improves water quality and helps repair the water ecosystem. It has high social use value and broad application prospects. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0024] Figure 1 It is a schematic diagram of the process of the present invention;
[0025] Figure 2 This is a schematic diagram of the suspended matter catcher of the present invention from a main perspective;
[0026] Figure 3 It is a schematic diagram of a suspended matter catcher from a top view of the present invention;
[0027] Figure 4 A first-view stereoscopic view of the suspended matter catcher of the present invention;
[0028] Figure 5 A second perspective stereoscopic view of the suspended matter catcher of the present invention;
[0029] Figure 6 It is a first-view enlarged detail view of the position of the disturbing spiral ribbon in the suspended matter catcher of the present invention;
[0030] Figure 7 It is a second-angle enlarged detail view of the position of the disturbing spiral ribbon in the suspended matter catcher of the present invention;
[0031] Figure 8 This is a first viewing angle diagram of the relative position relationship between the solid collection container and the fixed axis of the present invention;
[0032] Fig. 9 A second viewing angle diagram of the relative position relationship between the solid collection container and the fixed axis of the present invention;
[0033] In the figure: 1. suspended matter catcher; 101. lifting bracket; 2. treatment agent mixer; 3. flocculation sedimentation tank; 4. plate and frame filter press; 5. fixed shaft; 501. filter screen; 502. fan-shaped frame; 5021. first bevel gear; 5022. second bevel gear; 6. rotating shaft; 601. rotating motor; 602. mounting frame; 603. vertical shaft; 6031. worm; 6032. disturbance spiral belt; 6033. stirring branch; 6034. first bevel gear; 6035. second bevel gear; 6036. injection head; 604. slow stirring rod; 6041. stirring blade; 6042. worm wheel; 6043. first pulley; 7. solid collection container; 701. discharge screw; 702. discharge port; 703. strip scraper; 704. second pulley. DETAILED DESCRIPTION
[0034] In order to make the purpose, technical solution and advantages of the embodiments of the present invention clearer, the technical solution in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0035] Example 1
[0036] Reference Figure 1-9 , an integrated system for eluting suspended matter from water bodies and purifying the environment, comprising a suspended matter catcher 1, a treatment agent dispenser 2, a flocculation sedimentation tank 3 and a plate-frame filter press 4, wherein the suspended matter catcher 1 comprises a lifting bracket 101, the lifting bracket 101 is installed on a fishing boat, a fixed shaft 5 and a rotating shaft 6 are respectively provided on the lifting bracket 101, a plurality of mounting brackets 602 are fixed on the rotating shaft 6, a vertical shaft 603 is rotatably installed on the mounting bracket 602, and a disturbance screw belt 603 is provided at the bottom end of the vertical shaft 603 2. A fan-shaped frame 502 is fixed on the fixed shaft 5. The rotating shaft 6 passes through the center of the fan-shaped frame 502. The top of the vertical shaft 603 is rotatably mounted with a first bevel gear 6034 and a second bevel gear 6035 through a one-way bearing. The side of the fan-shaped frame 502 close to the vertical shaft 603 is provided with a first bevel gear 5021 and a second bevel gear 5022 distributed in an arc shape. The first bevel gear 5021 is meshed with the first bevel gear 6034, and the second bevel gear 5022 is meshed with the second bevel gear 6035.
[0037] The suspended matter catcher 1 is installed on the fishing boat, and the suspended matter catcher 1 extends into the water bottom. The bottom mud is disturbed by the suspended matter catcher 1, and then the mud-water mixture is filtered and sucked into the flocculation sedimentation tank 3. The treatment agent dispenser 2 is provided with a dehydrating agent and a flocculant. The flocculant is polyaluminum chloride, which is transported to the flocculation sedimentation tank 3. The dehydrating agent is polyacrylamide, which is transported to the plate and frame filter press 4. By adding polyaluminum chloride, the suspended particles are condensed into larger flocs, which accelerates the sedimentation process and improves the sedimentation efficiency. The treated clean water is discharged back into the river water, and the sediment is filtered through the plate and frame filter press 4.
[0038] The rotating shaft 6 is driven to reciprocate by a rotating motor 601, and a plurality of vertically arranged stirring branches 6033 are fixed on the disturbance spiral belt 6032;
[0039] The reciprocating rotation of the rotating shaft 6 can drive the mounting frame 602 and the rotating shaft 6 on the mounting frame 602 to swing back and forth as a whole. When the rotating shaft 6 swings back and forth, the first bevel gear 6034 moves along the first bevel gear 5021, and the second bevel gear 6035 moves along the second bevel gear 5022. Due to the existence of the one-way bearing and the transmission directions of the two one-way bearings are opposite, when the rotating shaft 6 swings back and forth as a whole, at the same time, only one of the first bevel gear 6034 and the second bevel gear 6035 will drive the vertical shaft 603 to rotate. Since the diameters of the first bevel gear 5021 and the second bevel gear 5022 are different, when the rotating shaft 6 swings back and forth, the forward and reverse rotation speeds and the number of revolutions of the rotating shaft 6 are different.
[0040] On the one hand, it can drive the rotating shaft 6 to rotate forward and reverse, thereby improving the disturbing effect of the disturbance belt 6032 and the stirring branch 6033 on the river water, and improving the efficiency of the sediment disturbance. The swinging back and forth of the rotating shaft 6 can increase the stirring coverage of the rotating shaft 6, and can continuously change the stirring angle to improve the stirring effect.
[0041] On the other hand, due to the different rotation speeds and numbers of forward and reverse rotations, the disturbance screw belt 6032 can be driven to rotate more circles in one direction. The direction with more rotation circles is the opposite direction of pushing the water body to flow upward, thereby pushing the mud-water mixture upward as a whole to facilitate suction.
[0042] Example 2
[0043] Reference Figure 1-9The difference between this embodiment and the first embodiment is that a worm 6031 is provided on the outside of the vertical shaft 603 above the disturbance spiral belt 6032, a slow stirring rod 604 is rotatably mounted on the mounting frame 602, a plurality of stirring blades 6041 are fixed on the outside of the slow stirring rod 604, a plurality of vertical shafts 603 are equidistantly distributed along the extension direction of the rotating shaft 6, a worm wheel 6042 is fixed on the slow stirring rod 604, and the worm wheel 6042 and the worm 6031 are meshed with each other;
[0044] When the vertical shaft 603 rotates, the worm wheel 6042 can be meshed with the worm 6031 to drive the slow stirring rod 604 to slowly rotate forward and reverse, so that the stirring force for the shallow water body is smaller. Different stirring forces are used according to the needs of water bodies of different depths, thereby avoiding energy waste caused by excessive stirring of the shallow water body. Reasonable distribution of power enables the system to reduce energy consumption and improve energy utilization efficiency while meeting the purification needs. Shallow water bodies are the habitats and breeding places of many aquatic organisms, such as fish eggs and young fish often gather here, and aquatic plants are also mostly distributed in this area. Smaller stirring force can avoid direct harm to aquatic organisms, reduce physical damage to aquatic plants, maintain their normal growth, and protect the habitats of aquatic organisms and the integrity of the ecosystem.
[0045] Among them, the interior of the vertical shaft 603 is hollow, and a jet pipe interface is provided at the top of the vertical shaft 603. The jet pipe interface is connected to the jet pump through a joint and a hose. The jet pump sucks the clean water treated by the flocculation sedimentation tank 3 into the vertical shaft 603. A spray head 6036 is provided at the bottom of the vertical shaft 603, and there are multiple spray heads 6036. The multiple spray heads 6036 are distributed in a circular array at the bottom of the vertical shaft 603. High-pressure water flow is ejected through the spray head 6036 to assist in disturbing the bottom mud. Due to the reciprocating swing of the vertical shaft 603, the position and jet direction of the spray head 6036 can be continuously changed, the disturbance range is larger, and the disturbance effect is better.
[0046] Example 3
[0047] Reference Figure 1-9The difference between this embodiment and embodiment 1 is that the difference between this embodiment and embodiment 2 is that the fixed shaft 5 is hollow inside, and a suction pipe interface is provided at one end of the fixed shaft 5, the suction pipe interface is connected to the suction pump, and the suction pump sucks the water into the flocculation sedimentation tank 3, and the fixed shaft 5 is provided with multiple suction water inlets, and a filter screen cover 501 is installed on the outside of the suction water inlet, and a solid collection container 7 is fixed on the mounting frame 602. The disturbance spiral belt 6032 and the stirring branch 6033 strongly stir the bottom mud and other materials at the bottom of the water body, so that the pollutants originally deposited at the bottom are mixed with water to form a mud-water mixture, and these mixtures gradually float up under the stirring action. The floating muddy and water mixture is immediately captured by the suction water inlet on the fixed shaft 5, and rapidly flows into the interior of the fixed shaft 5 under the negative pressure generated by the suction pump. When passing through the filter screen 501, larger particles of impurities, such as branch fragments, sand and gravel particles, and larger blocks of organic debris, are blocked by the filter screen 501 and retained on the surface of the screen, while the relatively clear muddy water that has been initially filtered continues to pass through the fixed shaft 5 and is transported to the flocculation sedimentation tank 3 for further purification treatment.
[0048] A strip scraper 703 is fixed above the solid collection container 7, and a side of the filter screen cover 501 close to the strip scraper 703 is an arc surface, and the strip scraper 703 is in contact with the surface of the filter screen cover 501;
[0049] The solid collection container 7 is used to receive the filtered solid impurities. Since the solid collection container 7 is fixed to the mounting frame 602, it will swing back and forth with the vertical axis 603. During the swinging of the vertical axis 603, the strip scraper 703 will clean and scrape the filtered matter back and forth along the outer surface of the strip scraper 703, which can prevent the filter cover 501 from being clogged due to excessive filtered matter adhering to the surface, thereby reducing the filtering efficiency.
[0050] A discharge port 702 is provided on one side of the solid collection container 7, and the discharge port 702 is away from the disturbance spiral belt 6032. A discharge screw 701 is rotatably installed in the solid collection container 7, and one end of the discharge screw 701 extends to the outside of the solid collection container 7 through the discharge port 702. A first pulley 6043 is fixed on one of the slow stirring rods 604, and a second pulley 704 is fixed on the output shaft of the discharge screw 701. A belt is sleeved between the first pulley 6043 and the outside of the second pulley 704.
[0051] Through the transmission of the belt, the rotation of the slow stirring rod 604 will drive the discharge screw 701 to rotate. When the discharge screw 701 rotates back and forth, it rotates more circles in one direction, and this direction is the direction of pushing the solid filtrate toward the discharge port 702, so that the solid filtrate can be gradually discharged from the discharge port 702. Since the discharge port 702 is far away from the disturbance screw belt 6032, the collected solid filtrate is prevented from being stirred into the water again due to the continuous stirring of the disturbance screw belt 6032 during the subsequent processing and being sucked back to the filter screen cover 501. The stability and efficiency of the entire filtration and collection process are greatly improved.
[0052] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the referred device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting the present invention.
[0053] In the present invention, unless otherwise clearly specified and limited, the terms "set", "install", "connect", "connect", "fix" and the like should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral one; it can be a mechanical connection, a direct connection, or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0054] The control method of the present invention is automatic control through a controller. The control circuit of the controller can be implemented by simple programming by technicians in this field. The provision of power is also common knowledge in this field. The present invention is mainly used to protect mechanical devices, so the present invention will no longer explain the control method and circuit connection in detail.
[0055] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.
Claims
1. An integrated system for eluting suspended matter from water bodies and for ecological purification, comprising a suspended matter catcher (1), a treatment agent dispenser (2), a flocculation sedimentation tank (3) and a plate-and-frame filter press (4), characterized in that: The suspended matter catcher (1) comprises a lifting bracket (101), the lifting bracket (101) being installed on a fishing boat, the lifting bracket (101) being provided with a fixed shaft (5) and a rotating shaft (6), a plurality of mounting brackets (602) being fixed on the rotating shaft (6), a vertical shaft (603) being rotatably mounted on the mounting bracket (602), a disturbance spiral belt (6032) being provided at the bottom end of the vertical shaft (603), a fan-shaped bracket (502) being fixed on the fixed shaft (5), and a rotating shaft (6) being provided on the rotating shaft (6). The first bevel gear (6034) and the second bevel gear (6035) are rotatably mounted on the top of the vertical shaft (603) through the center of the circle of the fan-shaped frame (502) and through a one-way bearing, respectively. The first bevel gear (5021) and the second bevel gear (5022) are respectively arranged on one side of the fan-shaped frame (502) close to the vertical shaft (603) in an arc shape. The first bevel gear (5021) is meshed with the first bevel gear (6034), and the second bevel gear (5022) is meshed with the second bevel gear (6035).
2. The integrated system for removing suspended solids from water according to claim 1 is characterized by: The rotating shaft (6) is driven to reciprocate by a rotating motor (601), and a plurality of vertically arranged stirring branches (6033) are fixed on the disturbance spiral belt (6032).
3. The integrated system for removing suspended solids from water according to claim 2 is characterized by: A worm (6031) is provided outside the vertical shaft (603) above the disturbance spiral belt (6032), a slow stirring rod (604) is rotatably mounted on the mounting frame (602), a worm wheel (6042) is fixed on the slow stirring rod (604), and the worm wheel (6042) and the worm (6031) are meshed with each other.
4. The integrated system for removing suspended solids from water according to claim 3 is characterized by: The vertical shaft (603) is hollow inside, and a jet pipe interface is provided at the top of the vertical shaft (603). The jet pipe interface is connected to a jet pump through a joint and a hose. The jet pump draws clean water treated in the flocculation sedimentation tank (3) into the vertical shaft (603).
5. The integrated system for removing suspended solids from water according to claim 4 is characterized by: The bottom end of the vertical shaft (603) is provided with a spray head (6036), and there are multiple spray heads (6036), and the multiple spray heads (6036) are distributed in a circular array at the bottom end of the vertical shaft (603).
6. The integrated system for removing suspended solids from water according to claim 5 is characterized by: A plurality of stirring blades (6041) are fixed to the outside of the slow stirring rod (604), and a plurality of vertical shafts (603) are distributed at equal distances along the extension direction of the rotating shaft (6).
7. The integrated system for removing suspended solids from water according to claim 6 is characterized by: The interior of the fixed shaft (5) is hollow, and a suction pipe interface is provided at one end of the fixed shaft (5). The suction pipe interface is connected to a suction pump, and the suction pump sucks water into the flocculation sedimentation tank (3).
8. The integrated system for removing suspended solids from water according to claim 7 is characterized by: The fixed shaft (5) is provided with a plurality of suction water inlets, and a filter screen (501) is installed outside the suction water inlet, and a solid collection container (7) is fixed on the mounting frame (602).
9. The integrated system for removing suspended solids from water according to claim 8, characterized in that: A strip scraper (703) is fixed above the solid collection container (7), and a side of the filter screen cover (501) close to the strip scraper (703) is a curved surface, and the strip scraper (703) is in contact with the surface of the filter screen cover (501).
10. The integrated system for removing suspended solids from water according to claim 9, characterized in that: A discharge port (702) is provided on one side of the solid collection container (7), and the discharge port (702) is away from the disturbance spiral belt (6032). A discharge screw (701) is rotatably installed in the solid collection container (7), and one end of the discharge screw (701) extends to the outside of the solid collection container (7) through the discharge port (702). A first pulley (6043) is fixed on one of the slow stirring rods (604), and a second pulley (704) is fixed on the output shaft of the discharge screw (701), and a belt is sleeved between the first pulley (6043) and the outside of the second pulley (704).
Citation Information
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