Filamentous algae cleaning method and oxygenation purifier
By setting up a cleaning mechanism and an oxygenation and purification device, the problems of irregular cleaning of filamentous algae and incomplete collection during the oxygenation process in the existing technology have been solved, achieving efficient cleaning and oxygenation purification of filamentous algae.
Patent Information
- Application Number
- CN202511878042.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-12
- Publication Date
- 2026-02-27
AI Technical Summary
Existing technologies cannot achieve timed cleaning of filamentous algae and effective collection and cleaning during the oxygenation process, leading to difficulties in wastewater treatment.
A method for cleaning filamentous algae was designed. By setting up a cleaning mechanism and an oxygenation cleaning mechanism, including steps such as measurement, location selection, setting up a guide and filter, connecting a drive mechanism, lateral movement and collection hopper, combined with an aerator, diversion pipe and purification screen, timed cleaning and oxygenation purification can be achieved.
It improves the cleaning efficiency and purification effect of filamentous algae, realizes effective collection during timed cleaning and oxygenation processes, and solves the problem of difficult cleaning of filamentous algae in sewage treatment.
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Figure CN121573740A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of sewage purification equipment, and particularly relates to a filamentous alga cleaning method and an oxygenation purifier. BACKGROUND
[0002] Algae are a kind of eukaryotic organisms in the kingdom of protists, mainly aquatic, and can perform photosynthesis. With the acceleration of industrialization in modern society, a large amount of wastewater is discharged into inland rivers, leading to increasingly serious eutrophication of inland water bodies, and a large amount of algae reproduce, among which a large amount of filamentous algae grow in the wastewater in sewage plants, making the treatment of wastewater more difficult. The existing filamentous alga cleaning method cannot perform timed filamentous alga cleaning work during the cleaning process and cannot collect and clean during the oxygenation process. SUMMARY
[0003] To solve the above technical problems, the present application provides a filamentous alga cleaning method and an oxygenation purifier, which sets a cleaning mechanism during use, facilitates timed cleaning work during use, sets an oxygenation cleaning mechanism during use, and facilitates cleaning during oxygenation.
[0004] A filamentous alga cleaning method specifically includes the following steps: Step one: measurement, when cleaning, use a measuring tool to measure the width and depth of the water area respectively; Step two: select a position, during the measurement process, select a position with a narrower and shallower water area for cleaning mechanism fixing work according to the needs of the cleaning process; In the first step of step two, select a water area position, fix a flow separation mechanism at the selected water area position, and use materials to separate the water area during the fixing of the flow separation mechanism; Second step, set the flow guide mechanism, set the flow guide plate during the flow separation process according to the needs of the working process, and facilitate water flow guiding work; Third step, bottom fixing, set a bottom separation installation mechanism during the flow separation process, and facilitate the purpose of fixing the mesh during cleaning; Step three: set the filter screen, according to the needs of the filtration and the characteristics of the filamentous algae, fix the filter screen at the selected position, and set the filter screen as a rotatable cleaning mechanism during the cleaning process; In the first step of step three, select the filter screen, select the appropriate filter screen according to the needs of the filtration; Second step, filter screen fixing, fix the selected filter screen, and set multiple meshes; Third step, water purification mechanism, a water source purification mesh is arranged at the rear end of the cleaning mesh to improve the purification effect; Fourth step, connecting drive mechanism, connecting the fixed mechanism of the cleaning mesh with the drive mechanism, facilitating the mesh rotation during the cleaning process; Step four: connecting the cleaning mechanism, after fixing the cleaning mesh, set the cleaning mechanism of filamentous algae at the appropriate position of the mechanism for fixing the filter screen; In the first step of step four, the horizontal mechanism is set at the appropriate position of the fixed mesh mechanism; In the second step, move the cleaning, set the horizontal moving mechanism to facilitate horizontal pushing and cleaning work on the filamentous algae on the mesh during the cleaning process; In the third step, collect and hold, and set a collecting bucket at the appropriate position of the horizontal cleaning mechanism to facilitate the collection and cleaning work during the horizontal cleaning of filamentous algae; Step five: rinse, after cleaning the filamentous algae, connect the rinse pipe with the water supply equipment pipeline to facilitate the mesh rinsing after cleaning; Step six: complete the cleaning, after cleaning the filamentous algae, rotate the rinsed mesh above the cleaning position to facilitate the replacement cleaning work, thereby completing the cleaning work of the filamentous algae.
[0005] Preferably, in step two, the second step sets the flow guide mechanism, uses a rectangular body, sets an arc-shaped stainless steel plate, and sets an eight-character.
[0006] Preferably, in step three, during the second step of fixing the filter screen, the mesh is fixed on the outer wall of the circular rotating pipe, and the mesh is set in a cross shape to facilitate the replacement cleaning work during the cleaning process.
[0007] Preferably, in step four, the second step of moving the cleaning, set the horizontal moving scraper, and the set scraper is the same width as the mesh and contacts.
[0008] An oxygenation purifier for a filamentous algae cleaning method includes an oxygenation machine, which is bolted in the middle position of the upper end of the mobile base; the bottom end of the mobile base is bolted with universal mobile wheels at the four corner positions respectively; the front surface of the oxygenation machine is connected with one end of the connecting hose at the upper middle position; the other end of the connecting hose is provided with a collectable cleaning oxygenation pipe structure.
[0009] Preferably, the collectable cleaning oxygenation pipe structure includes an oxygenation pipe, the rear end of which is threadedly connected with a shunt pipe from left to right in sequence; the left end of the oxygenation pipe is threadedly connected with a connecting pipe at the inner middle position; the rear end of the oxygenation pipe is bolted with a purification frame; the rear end inner wall of the purification frame is bolted with a purification mesh.
[0010] Compared with the prior art, the beneficial effects of the present application are: In the application, the oxygen increasing pipe, the shunt pipe, the connecting pipe, the purification frame and the purification mesh are arranged, which is beneficial to the oxygen increasing and purification.
[0011] The application provides a reasonable cleaning method process, which can clean the filamentous algae in the water source, and in the process of cleaning the filamentous algae, the mesh is arranged in a cross shape in the second step in step three and the fixing screen engineering, and the driving mechanism arranged in the fourth step in step three is convenient for mesh rotation replacement work in the process of cleaning the filamentous algae, thereby improving the cleaning efficiency of the filamentous algae. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 is a structural schematic diagram of the application.
[0013] Figure 2 is a structural schematic diagram of the application.
[0014] Figure 3 is a flowchart of the application.
[0015] Figure 4 is a selection position flowchart of the application.
[0016] Figure 5 is a setting filter screen flowchart of the application.
[0017] Figure 6 is a connection cleaning mechanism flowchart of the application.
[0018] In the drawings: 1, oxygen increasing machine, mobile base 2, universal mobile wheel 3, connecting hose 4, collectable and cleanable oxygen increasing pipe structure 5, oxygen increasing pipe 51, shunt pipe 52, connecting pipe 53, purification frame 54, purification mesh 55. DETAILED DESCRIPTION
[0019] The application will be specifically described below in combination with the drawings, such as the drawings Figure 1 to the drawings, Figure 4 as shown, a filamentous algae cleaning method specifically includes the following steps. S101: measuring, when cleaning, using a measuring tool to measure the width and depth of the water area respectively; S102: selecting a position, during the measurement, according to the needs of the cleaning process, selecting a position with narrower and shallower water area for cleaning mechanism fixing work; In S102, S201, selecting a water area position, fixing a shunt mechanism at the selected water area position, and using materials to separate the water area during the fixing of the shunt mechanism; S202, setting the flow guide mechanism, in the process of shunting according to the need of the working process setting flow guide plate, facilitate the water flow guide work; S203, the bottom fixed, in the process of shunting setting bottom separation installation mechanism, facilitate in the process of cleaning the purpose of mesh fixed; S103: setting filter screen, according to the need of filtering and the characteristics of filamentous algae, the filter screen is fixed in the selected position, and the filter screen is set as a rotatable cleaning mechanism during cleaning; In S103, S301, select filter screen, according to the need of filtering, select the appropriate filter screen; S302, filter screen fixed, the selected filter screen is fixed, and multiple screens are set; S303, water purification mechanism, water purification screen is provided at the rear end of the cleaning screen to improve the purification effect; S304, connecting the driving mechanism, connecting the driving mechanism of the cleaning screen fixing mechanism, facilitating the rotation of the screen during cleaning; S104: connecting cleaning mechanism, after fixing the cleaning screen, set the filamentous algae cleaning mechanism at the appropriate position of the filter screen fixing mechanism; In S104, S401, horizontal mechanism, set the horizontal mechanism at the appropriate position of the screen fixing mechanism; S402, moving cleaning, set the horizontal moving mechanism, facilitate the horizontal pushing cleaning work of the filamentous algae on the screen during cleaning; S403, collection and holding, and the collection bucket is provided at the appropriate position of the horizontal cleaning mechanism, facilitating the collection and cleaning work during horizontal cleaning of filamentous algae; S105: flushing, after cleaning the filamentous algae, connecting the flushing pipe with the water supply equipment pipeline, facilitating the screen flushing after cleaning; S106: complete cleaning, after cleaning the filamentous algae, rotating the clean screen to above the cleaning position, facilitating the replacement and cleaning work, thus completing the cleaning work of filamentous algae.
[0020] Preferably, in S102, S202 sets the flow guide mechanism, using rectangular and setting arc-shaped stainless steel plate and setting eight characters.
[0021] Preferably, in S103, during S302 filter screen fixing, the screen is fixed on the outer wall of the circular rotating pipe, and the screen is set in cross shape, facilitating the replacement and cleaning work during cleaning.
[0022] Preferably, in S104, the mobile cleaning in S402 is set, the transverse moving scraper is set, and the set scraper is the same as the width of the mesh and is in contact.
[0023] In the embodiment, the oxygenation purifier for the filamentous algae cleaning method is shown in the attached Figure 5 As shown, the oxygenation purifier for the filamentous algae cleaning method includes an oxygenation machine 1, a mobile base 2, universal mobile wheels 3, a connecting hose 4, and a collectable cleaning oxygenation pipe structure 5.
[0024] In the embodiment, the oxygenation purifier for the filamentous algae cleaning method is shown in the attached Figure 6 As shown, the oxygenation purifier for the filamentous algae cleaning method includes an oxygenation machine 1, a mobile base 2, universal mobile wheels 3, a connecting hose 4, and a collectable cleaning oxygenation pipe structure 5.
[0025] In the embodiment, specifically, the right end of the oxygenation pipe 51 is threadedly connected with an inclined T-shaped blocking block.
[0026] In the embodiment, specifically, the other end of the connecting hose 4 is sleeved on the left end outer wall of the connecting pipe 53. Working principle
[0027] In the application, when used, the mesh fixing mechanism is arranged at a selected appropriate position, the mesh used for filtering and cleaning is arranged in a cross shape, one end of the fixing mesh mechanism is connected with the driving mechanism after the mesh is fixed, the filamentous algae in the water source is cleaned through the rotating mesh during the cleaning process, the flushing pipe is arranged during the cleaning process, the flushing pipe is connected with the self-suction pump, the mesh is flushed after the transverse cleaning of the filamentous algae, the cleaning of the filamentous algae is realized, the oxygenation pipe 51 is fixed on the upper end of the cleaning mechanism during the cleaning process, the oxygen is output through the shunt pipe 52 during the cleaning process, the purpose of oxygenation is realized, the filtering work is performed through the purifying mesh 55 during the oxygenation process, the purpose of improving the purifying effect is achieved, and the purpose of cleaning and oxygenation purifying the filamentous algae is achieved.
[0028] Any design falling in the protection scope of the present application, which achieves the above technical effects by using the technical solutions of the present application or by using the technical solutions inspired by the technical solutions of the present application, is also within the protection scope of the present application.
Claims
1. An oxygenation and purification device, characterized in that, The system includes an aerator (1), a mobile base (2), casters (3), a connecting hose (4), and a structure for collecting and cleaning the aerator tube (5). The aerator (1) is bolted to the upper middle position of the mobile base (2). Casters (3) are bolted to the four corners of the bottom of the mobile base (2). One end of the connecting hose (4) is connected to the upper middle position of the front surface of the aerator (1). The other end of the connecting hose (4) is equipped with the structure for collecting and cleaning the aerator tube (5). The oxygenation tube structure (5) that can be collected and cleaned includes an oxygenation tube (51), a diversion tube (52), a connecting tube (53), a purification frame (54), and a purification mesh (55); the diversion tube (52) is threadedly connected to the rear end of the oxygenation tube (51) from left to right; the connecting tube (53) is threadedly connected to the middle position inside the left end of the oxygenation tube (51); the purification frame (54) is bolted to the rear end of the oxygenation tube (51); the purification mesh (55) is bolted to the inner wall of the rear end of the purification frame (54).
2. The oxygenation and purification device as described in claim 1, characterized in that, The right end of the oxygenation tube (51) is threaded with a T-shaped sealing block; the diversion tube (52) is arranged from left to right at the bottom of the purification frame (54).
3. The oxygenation and purification device as described in claim 1, characterized in that, The other end of the connecting hose (4) is sleeved on the outer wall of the left end of the connecting pipe (53).
4. A method for cleaning filamentous algae, comprising the following steps; Step 1: Measurement. During the cleaning process, use measuring tools to measure the width and depth of the water area. Step Two: Select a location. During the measurement process, select a location with a narrower and shallower water area to fix the cleaning mechanism, based on the needs of the cleaning process. In the first step of step two, select a water area location, fix the diversion mechanism at the selected water area location, and use materials to perform water separation work during the process of fixing the diversion mechanism; The second step is to set up a flow guiding mechanism. During the flow diversion process, a flow guide plate is set up according to the needs of the work process to facilitate the flow of water. The third step is bottom fixing. A bottom separation installation mechanism is set up during the diversion process to facilitate the fixing of the mesh during cleaning. Step 3: Set up the filter screen. Based on the filtration needs and the characteristics of filamentous algae, fix the filter screen in the selected position and set it as a rotatable cleaning mechanism during the cleaning process. In the first step of step three, select a filter screen. Choose a suitable filter screen according to the needs of filtration. The second step is to fix the filter screen. This involves fixing the selected filter screen in place and setting up multiple screen panels. The third step is the water purification mechanism, which has a water purification mesh installed at the rear end of the cleaning mesh to improve the purification effect. The fourth step is to connect the drive mechanism. Connect the fixing mechanism of the cleaning screen to the drive mechanism to facilitate the rotation of the screen during the cleaning process. Step 4: Connect the cleaning mechanism and fix the cleaning mesh. Then, set up the filamentous algae cleaning mechanism at the appropriate position of the filter mesh fixing mechanism. In the first step of step four, the horizontal mechanism is set at a suitable position on the fixed mesh mechanism; In the second step, a horizontal moving mechanism is set up to facilitate the horizontal pushing and cleaning of filamentous algae on the upper part of the mesh during the cleaning process. In the third step, the algae are collected and placed in a container, and a collection hopper is set at a suitable position in the horizontal cleaning mechanism to facilitate the collection and cleaning work during the horizontal cleaning of filamentous algae. Step 5: Rinse the screen and, after cleaning the filamentous algae, connect the water supply equipment pipe to the rinsing pipe to facilitate rinsing the screen after cleaning. Step Six: Complete the cleaning. After cleaning the filamentous algae, rotate the rinsed mesh above the cleaning position to facilitate replacement and cleaning, thus completing the cleaning of the filamentous algae.
5. The method for cleaning filamentous algae as described in claim 1, characterized in that, In step two, the flow guiding mechanism is set up by using a cuboid stainless steel plate with an arc shape and arranged in a figure-eight configuration.
6. The method for cleaning filamentous algae as described in claim 1, characterized in that, In step three, during the second step of fixing the filter screen, the screen is fixed to the outer wall of the circular rotating tube and arranged in a cross shape to facilitate replacement and cleaning during the cleaning process.