Environment-friendly water treatment equipment

By designing environmentally friendly water treatment equipment with filtering and stirring structures, the problems of low treatment efficiency and uneven mixing of reagents in traditional equipment were solved, and efficient and uniform removal effects of sewage treatment were achieved.

CN223480957UActive Publication Date: 2025-10-28SHENYANG GREEN STAR ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202422542592.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-22
Publication Date
2025-10-28
Estimated Expiration
2034-10-22

AI Technical Summary

Technical Problem

Traditional environmentally friendly water treatment equipment has limitations in treatment efficiency and effectiveness, making it difficult to comprehensively and effectively remove diverse pollutants in sewage. In addition, failure to evenly mix chemical agents will result in poor removal effects.

Method used

An environmentally friendly water treatment equipment was designed, which includes a filtration structure, an adsorption structure and a stirring structure. The filter frame and filter plate intercept solid particles, the activated carbon balls adsorb organic matter and heavy metals, and the stirring blades ensure that the reagent and sewage are evenly mixed to achieve full reaction.

Benefits of technology

It improves the efficiency and effect of sewage treatment, ensures uniform distribution of chemicals, enhances the ability to remove pollutants, and facilitates the cleaning of filter plates and activated carbon balls to maintain efficient operation of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses environment-friendly water treatment equipment, which relates to the technical field of water treatment equipment and comprises a treatment box, a filter structure, an adsorption structure and a stirring structure, a first control valve is opened, sewage is poured from a feeding pipe, the sewage passes through a first filter plate, at the moment, the first filter plate can intercept solid particles in the sewage, the sewage continues to flow downwards into an adsorption frame and a funnel, and activated carbon balls on a second filter plate can adsorb pollutants such as organic matter, heavy metal and peculiar smell in the sewage, so that the water quality is effectively improved; meanwhile, pathogens in water are removed, an electromagnetic valve is opened, and sewage in the adsorption frame and the funnel can enter the stirring box through a conveying pipe; a chemical is poured through a chemical adding pipe, then a second motor is started to drive stirring blades to rotate, the operation is beneficial to uniformly mixing the chemical, ensuring that the chemical is fully mixed with sewage, promoting uniform distribution of the chemical and improving the reaction efficiency of the chemical, and treated water can flow out through a discharging pipe by opening a second control valve.
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Description

Technical Field

[0001] This utility model relates to the field of water treatment equipment technology, specifically an environmentally friendly water treatment device. Background Technology

[0002] Water pollution refers to the increase in the concentration of harmful substances in water bodies, leading to water quality deterioration and failure to meet the needs of ecosystems and human use. Major sources of water pollution include industrial wastewater, the runoff of agricultural fertilizers and pesticides, urban sewage, and the dumping of solid waste. Water pollution poses a serious threat to human health, potentially causing waterborne diseases (such as cholera and hepatitis) and affecting drinking water safety. Simultaneously, water pollution has a profound impact on the ecological environment, destroying aquatic habitats, reducing biodiversity, and disrupting the food chain. Long-term water pollution not only affects the balance of natural ecosystems but also threatens economic development and social stability. Therefore, water pollution control has become a crucial global issue. In water pollution control, environmentally friendly... The advantages of water treatment equipment are becoming increasingly apparent. They can effectively improve the efficiency and sustainability of water treatment. In this process, the use of environmentally friendly materials, technologies and methods can reduce the negative impact on the environment and improve the efficiency of water resource utilization. However, traditional environmentally friendly water treatment usually uses a single physical or chemical method to remove pollutants from wastewater. This method has certain limitations in terms of treatment efficiency and effectiveness, and it is difficult to comprehensively and effectively remove the diverse pollutants in wastewater. In addition, when adding chemical agents to wastewater, if the agents are not fully mixed with the wastewater, the concentration of the agents may be too high in some areas and too low in others. This will significantly reduce the removal effect of the agents, resulting in some pollutants not being effectively removed. Utility Model Content

[0003] The purpose of this invention is to provide an environmentally friendly water treatment device to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, this utility model provides the following technical solution:

[0005] An environmentally friendly water treatment device includes a treatment tank, a filter structure, an adsorption structure, and a stirring structure. The upper part of the inner walls on both sides of the treatment tank is provided with a first sluice groove, and the lower part of the first sluice groove is provided with a second sluice groove. The filter structure is slidably connected in the first sluice groove, and the adsorption structure is slidably connected in the second sluice groove. A funnel is horizontally fixedly connected inside the treatment tank. A stirring box is set below the funnel and inside the treatment tank. A stirring structure is rotatably connected inside the stirring box.

[0006] As a further embodiment of this utility model: the filter structure includes a filter frame, a slider, a lead screw, a first motor, a first support block, a slide rod, and a first filter plate. The filter frame has sliders fixedly connected to both sides, corresponding to the first slide groove, and the sliders are slidably connected to the first slide groove. The filter frame has a first filter plate fixedly connected to the bottom. A slide rod is slidably connected to one side of the slider, and a lead screw is threadedly connected to the other side of the slider. One side of the lead screw passes through one side of the processing box and is fixedly connected to the power output shaft of the first motor. The first motor has a first support block fixedly connected to the bottom. The lead screw is rotatably connected to the processing box, and the slide rod is fixedly connected to the processing box.

[0007] As a further embodiment of this utility model: the adsorption structure includes an adsorption frame, a second filter plate, activated carbon balls, a pull plate, and a slide frame. The adsorption frame is fixedly connected to both sides with slide frames corresponding to the second slide groove, and the slide frames are slidably connected to the second slide groove. The bottom of the adsorption frame is fixedly connected to the second filter plate, and activated carbon balls are placed on the second filter plate. A pull plate is fixedly connected to a groove on one side of the adsorption frame.

[0008] As a further embodiment of this utility model: the stirring structure includes a second support block, a second motor, a connecting shaft, a fixed shaft, stirring blades, and through holes. The second motor is fixedly connected to the top of the second support block. The power output shaft of the second motor is fixedly connected to the connecting shaft. The connecting shaft extends through one side of the processing box away from the second motor and into its interior. The connecting shaft is rotatably connected to the processing box. Several fixed shafts are fixedly connected to the connecting shaft at equal intervals. Each fixed shaft is fixedly connected to three stirring blades, and each stirring blade has three through holes.

[0009] As a further embodiment of this utility model: a top plate is fixedly connected to the top of the processing box, a feed pipe is fixedly connected to the top center of the top plate, a first control valve is fixedly connected to the feed pipe, a conveying pipe is fixedly connected to the bottom of the funnel, and a solenoid valve is fixedly connected to the conveying pipe.

[0010] As a further embodiment of this utility model: support plates are fixedly connected to the lower parts of both sides of the processing box, a transparent cabinet door is hinged to the lower edge of one side of the processing box, a handle is fixedly connected to the transparent cabinet door, a discharge pipe is fixedly connected to the upper part of the support plate on one side, a second control valve is fixedly connected to the discharge pipe, and a dosing pipe is fixedly connected to the upper part of the discharge pipe.

[0011] Compared with the prior art, the beneficial effects of this utility model are:

[0012] 1. In use, firstly, open the first control valve and pour sewage into the feed pipe. The sewage will pass through the first filter plate, which will trap solid particles in the sewage. The sewage will then continue to flow into the adsorption frame and funnel. At this time, the activated carbon balls on the second filter plate will adsorb pollutants such as organic matter, heavy metals and odors in the sewage, thereby effectively improving water quality, reducing turbidity, and removing pathogens in the water. After adsorption is completed, open the solenoid valve, and the sewage in the adsorption frame and funnel will enter the mixing tank through the conveying pipe.

[0013] 2. Pour the chemical into the dosing pipe, then turn on the second motor to drive the connecting shaft to rotate, which in turn drives several fixed shafts to rotate, thereby driving several stirring blades to rotate. This operation helps to evenly mix the chemical, ensure that the chemical and sewage are fully mixed, promote the uniform distribution of the chemical, and improve the reaction efficiency of the chemical. Secondly, through the stirring of the stirring blades, the contact area between the sewage and the chemical increases, thereby accelerating the reaction rate and helping to remove pollutants in the water more quickly. Open the second control valve, and the treated water will flow out through the discharge pipe.

[0014] 3. Turn on the first motor to drive the lead screw to rotate. The rotation of the lead screw, combined with the sliding of the slide bar and slider, causes the two sliders to move in the first slide groove. This process causes the filter frame and the first filter plate to move as well. When the filter frame and the first filter plate are moved out from the side of the processing box, the operator can easily clean the solid impurities on the first filter plate, thereby maintaining its good filtration performance.

[0015] 4. Pull the pull plate. The pull plate, through the sliding engagement of the slide and the second slide groove, successfully slides the adsorption frame out of the treatment box. This operation greatly facilitates the cleaning and replacement of new activated carbon balls, thereby ensuring that the water treatment system can maintain the best adsorption effect and continuously improve water quality. Pull the handle on the transparent cabinet door to open the transparent cabinet door. This operation is conducive to cleaning the inside of the mixing tank. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of an environmentally friendly water treatment device.

[0017] Figure 2 This is a schematic diagram of the side connection structure of the treatment tank in an environmentally friendly water treatment device.

[0018] Figure 3 This is a schematic diagram of the internal structure of the treatment tank in an environmentally friendly water treatment device.

[0019] Figure 4 This is a schematic diagram of the filtration and adsorption structures in an environmentally friendly water treatment device.

[0020] Figure 5This is a schematic diagram of the stirring structure in an environmentally friendly water treatment device.

[0021] In the diagram: 1. Processing box; 2. Transparent cabinet door; 3. Support plate; 4. Top plate; 5. Filtration structure; 51. Filter frame; 52. Slider; 53. Lead screw; 54. First motor; 55. First support block; 56. Slide rod; 57. First filter plate; 6. Adsorption structure; 61. Adsorption frame; 62. Second filter plate; 63. Activated carbon ball; 64. Pull plate; 65. Slide frame; 7. Stirring structure; 71. Second support block; 72. Second motor; 73. Connecting shaft; 74. Fixed shaft; 75. Stirring blade; 76. Through hole; 8. Dosing pipe; 9. Feed pipe; 10. First control valve; 11. Second control valve; 12. Discharge pipe; 13. First chute; 14. Second chute; 15. Funnel; 16. Solenoid valve; 17. Conveying pipe; 18. Mixing box. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] Example 1

[0024] Reference Figure 1 , Figure 2 , Figure 3 and Figure 4This embodiment provides an environmentally friendly water treatment device, including a treatment tank 1, a filter structure 5, an adsorption structure 6, and a stirring structure 7. The upper part of the inner walls on both sides of the treatment tank 1 is provided with a first sluice groove 13, and the lower part of the first sluice groove 13 is provided with a second sluice groove 14. The filter structure 5 is slidably connected within the first sluice groove 13, and the adsorption structure 6 is slidably connected within the second sluice groove 14. A funnel 15 is horizontally fixedly connected inside the treatment tank 1. A stirring tank 18 is arranged below the funnel 15 and inside the treatment tank 1, and a stirring structure 7 is rotatably connected inside the stirring tank 18. A top plate 4 is fixedly connected to the top of the treatment tank 1, and a feed pipe 9 is fixedly connected to the top center of the top plate 4. A first control valve 10 is fixedly connected to the feed pipe 9. The bottom of the funnel 15... A conveying pipe 17 is fixedly connected, and a solenoid valve 16 is fixedly connected to the conveying pipe 17. When the first control valve 10 is opened, sewage is poured into the feed pipe 9, and the sewage will pass through the first filter plate 57. At this time, the first filter plate 57 will trap solid particles in the sewage, while the sewage continues to flow down into the adsorption frame 61 and the funnel 15. When the solenoid valve 16 is opened, the sewage in the adsorption frame 61 and the funnel 15 will enter the mixing tank 18 through the conveying pipe 17. Support plates 3 are fixedly connected to the lower parts of both sides of the treatment tank 1. A transparent cabinet door 2 is hinged at the lower edge of one side of the treatment tank 1. A handle is fixedly connected to the transparent cabinet door 2. Pulling the handle on the transparent cabinet door 2 will open the transparent cabinet door 2, which is beneficial for cleaning the mixing tank 18. Inside, a discharge pipe 12 is fixedly connected to the upper part of the support plate 3 on one side. A second control valve 11 is fixedly connected to the discharge pipe 12, and a dosing pipe 8 is fixedly connected to the upper part of the discharge pipe 12. When the second control valve 11 is opened, the treated water will flow out through the discharge pipe 12. The filter structure 5 includes a filter frame 51, a slider 52, a lead screw 53, a first motor 54, a first support block 55, a slide rod 56, and a first filter plate 57. Slider blocks 52 corresponding to the first slide groove 13 are fixedly connected to both sides of the filter frame 51, and the sliders 52 are slidably connected to the first slide groove 13. The first filter plate 57 is fixedly connected to the bottom of the filter frame 51. A slide rod 56 is slidably connected to the slider 52 on one side, and a threaded connection is made to the slider 52 on the other side. A lead screw 53 extends through one side of the processing box 1 and is fixedly connected to the power output shaft of the first motor 54. A first support block 55 is fixedly connected to the bottom of the first motor 54. The lead screw 53 is rotatably connected to the processing box 1, and the slide rod 56 is fixedly connected to the processing box 1. When the first motor 54 is turned on, it drives the lead screw 53 to rotate. The rotation of the lead screw 53, combined with the sliding of the slide rod 56 and the slider 52, causes the two sliders 52 to move within the first slide groove 13. This process causes the filter frame 51 and the first filter plate 57 to move as well. When the filter frame 51 and the first filter plate 57 are moved out from the side of the processing box 1, the operator can easily clean the solid impurities on the first filter plate 57, thereby maintaining its good filtration performance.

[0025] Example 2

[0026] Reference Figure 4-5 This embodiment is based on the previous embodiment, but differs in that the adsorption structure 6 includes an adsorption frame 61, a second filter plate 62, activated carbon balls 63, a pull plate 64, and a slide 65. The adsorption frame 61 has slides 65 fixedly connected to both sides, corresponding to the second slide groove 14, and the slides 65 are slidably connected to the second slide groove 14. The bottom of the adsorption frame 61 is fixedly connected to the second filter plate 62, on which activated carbon balls 63 are placed. A pull plate 64 is fixedly connected to a groove on one side of the adsorption frame 61. The activated carbon balls 63 on the second filter plate 62 adsorb pollutants such as organic matter, heavy metals, and odors from the wastewater, thereby effectively improving water quality. Pulling the pull plate 64, through the sliding cooperation between the slide 65 and the second slide groove 14, successfully slides the adsorption frame 61 out of the treatment tank 1. This operation greatly facilitates cleaning and replacing new activated carbon balls 63, thereby ensuring that the water treatment system can maintain optimal adsorption effect and continuously improve water quality. The stirring structure 7 includes a second support block 71. The second support block 71 has a second motor 72, a connecting shaft 73, a fixed shaft 74, stirring blades 75, and through holes 76. The second motor 72 is fixedly connected to the top of the second support block 71. The power output shaft of the second motor 72 is fixedly connected to the connecting shaft 73. The side of the connecting shaft 73 away from the second motor 72 passes through the treatment tank 1 and extends into it. The connecting shaft 73 is rotatably connected to the treatment tank 1. Several fixed shafts 74 are fixedly connected to the connecting shaft 73 at equal intervals. Each fixed shaft 74 is fixedly connected to three stirring blades 75. Each stirring blade 75 has three through holes 76. When the second motor 72 is turned on, it drives the connecting shaft 73 to rotate, which in turn drives the several fixed shafts 74 to rotate, thereby driving the several stirring blades 75 to rotate. This operation is conducive to uniformly mixing the agent, ensuring that the agent and the sewage are fully mixed, promoting the uniform distribution of the agent, and improving the reaction efficiency of the agent. Secondly, through the stirring of the stirring blades 75, the contact area between the sewage and the agent increases, thereby accelerating the reaction rate and helping to remove pollutants in the water more quickly.

[0027] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0028] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. An environmentally friendly water treatment device, comprising a treatment tank (1), a filter structure (5), an adsorption structure (6), and a stirring structure (7), characterized in that, The upper part of the inner wall of both sides of the processing box (1) is provided with a first slid groove (13), and the lower part of the first slid groove (13) is provided with a second slid groove (14). A filter structure (5) is slidably connected in the first slid groove (13), and an adsorption structure (6) is slidably connected in the second slid groove (14). A funnel (15) is horizontally fixedly connected inside the processing box (1). A stirring box (18) is provided below the funnel (15) and inside the processing box (1). A stirring structure (7) is rotatably connected inside the stirring box (18).

2. The environmentally friendly water treatment equipment according to claim 1, characterized in that, The filter structure (5) includes a filter frame (51), a slider (52), a lead screw (53), a first motor (54), a first support block (55), a slide rod (56), and a first filter plate (57). The filter frame (51) has sliders (52) fixedly connected to both sides, corresponding to the first slide groove (13), and the sliders (52) are slidably connected to the first slide groove (13). The filter frame (51) has a first filter plate (57) fixedly connected to the bottom. A slide rod (56) is slidably connected to one side of the slider (52), and a lead screw (53) is threadedly connected to the other side of the slider (52).

3. The environmentally friendly water treatment equipment according to claim 1, characterized in that, The adsorption structure (6) includes an adsorption frame (61), a second filter plate (62), activated carbon balls (63), a pull plate (64), and a slide (65). The adsorption frame (61) is fixedly connected to both sides of a slide (65) corresponding to the second slide groove (14), and the slide (65) is slidably connected to the second slide groove (14). The bottom of the adsorption frame (61) is fixedly connected to the second filter plate (62), and activated carbon balls (63) are placed on the second filter plate (62). A pull plate (64) is fixedly connected to a groove on one side of the adsorption frame (61).

4. The environmentally friendly water treatment equipment according to claim 1, characterized in that, The stirring structure (7) includes a second support block (71), a second motor (72), a connecting shaft (73), a fixed shaft (74), stirring blades (75), and a through hole (76). The second motor (72) is fixedly connected to the top of the second support block (71). The power output shaft of the second motor (72) is fixedly connected to the connecting shaft (73). The connecting shaft (73) extends through one side of the processing box (1) and into its interior on the side away from the second motor (72).

5. The environmentally friendly water treatment equipment according to claim 1, characterized in that, The processing box (1) is fixedly connected to a top plate (4), and a feed pipe (9) is fixedly connected to the middle of the top of the top plate (4). A first control valve (10) is fixedly connected to the feed pipe (9). A conveying pipe (17) is fixedly connected to the bottom of the funnel (15), and a solenoid valve (16) is fixedly connected to the conveying pipe (17).

6. The environmentally friendly water treatment equipment according to claim 1, characterized in that, The lower sides of the treatment box (1) are fixedly connected to support plates (3). A transparent cabinet door (2) is hinged at the lower edge of one side of the treatment box (1). A handle is fixedly connected to the transparent cabinet door (2). A discharge pipe (12) is fixedly connected to the upper part of the support plate (3) on one side. A second control valve (11) is fixedly connected to the discharge pipe (12). A dosing pipe (8) is fixedly connected to the upper part of the discharge pipe (12).

7. The environmentally friendly water treatment equipment according to claim 2, characterized in that, One side of the lead screw (53) passes through one side of the processing box (1) and is fixedly connected to the power output shaft of the first motor (54). The bottom of the first motor (54) is fixedly connected to the first support block (55). The lead screw (53) is rotatably connected to the processing box (1), and the slide rod (56) is fixedly connected to the processing box (1).

8. The environmentally friendly water treatment equipment according to claim 4, characterized in that, The connecting shaft (73) is rotatably connected to the processing box (1). Several fixed shafts (74) are fixedly connected to the connecting shaft (73) at equal intervals. Each fixed shaft (74) is fixedly connected to three stirring blades (75), and each stirring blade (75) is provided with three through holes (76).