Intensive pump station fertilizer lifting device
By designing an intensive pump station fertilizer lifting device, including mixing treatment tanks, fertilizer treatment boxes, fertilizer filling pipes, water pipes, display screens and diverting conveying pipes, the problems of insufficient mixing of fertilizers in the existing equipment and prone to blockage are solved, efficient fertilizer purification and water mixing are achieved, and the service life of the equipment is extended.
Patent Information
- Application Number
- CN202422168550.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-09-04
AI Technical Summary
In the fertilizer lifting device of the existing intensive pump station, the fertilizer may contain impurities and the water supply structure is not timely, resulting in insufficient mixing of fertilizers, which can easily lead to blockage, affecting the improvement efficiency and service life.
An intensive pump station fertilizer lifting device is designed, including a mixing treatment tank, fertilizer treatment box, fertilizer filling pipe, water pipe, display screen and diverting conveying pipe. The mixing treatment tanks arranged in three groups in a horizontal direction are carried out to mix fertilizer and water liquid, and the fertilizer treatment box is used for preliminary purification. The fertilizer mixed solution is transported through the diverted conveying pipe, and the water liquid is lifted through the water liquid pipe to ensure that the fertilizer particles are fully dissolved.
Through the design of this device, it can effectively remove impurities, ensure full mixing of fertilizer and water, avoid blockage, and improve efficiency and service life.
Smart Images

Figure CN222956324U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of lifting devices, in particular to a fertilizer lifting device for intensive pumping stations. Background Technique
[0002] An intensive pumping station is a pumping station design concept that is efficient and saves land resources. It concentrates multiple functional units in one plant area, with advantages such as small floor area, convenient operation, and safe and reliable water intake.
[0003] The fertilizer lifting device for intensive pumping stations is an efficient and land-saving device, specifically used for lifting and transporting fertilizers, playing an important role in modern agriculture, helping to improve agricultural production efficiency and fertilizer utilization rate. Existing fertilizers may contain impurities, and the water supply structure is not timely, resulting in insufficient fertilizer mixing, easy clogging, affecting the lifting efficiency and service life.
[0004] Therefore, aiming at the problems that existing fertilizers may contain impurities, and the water supply structure is not timely, resulting in insufficient fertilizer mixing, easy clogging, affecting the lifting efficiency and service life, an intensive pumping station fertilizer lifting device can be designed to increase the stirring component and the water supply treatment component, improve the overall mixing and lifting effect, and meet the overall fertilization performance. Content of the Utility Model
[0005] In order to overcome the problems that existing fertilizers may contain impurities, and the water supply structure is not timely, resulting in insufficient fertilizer mixing, easy clogging, affecting the lifting efficiency and service life.
[0006] The technical solution of the utility model is: an intensive pumping station fertilizer lifting device, including a mixing and treatment tank, a fertilizer treatment box, a fertilizer filling pipe, a water pipe, a display screen and a shunt conveying pipe; the mixing and treatment tank for mixing fertilizers and water is arranged horizontally in three groups. At the top of the three groups of mixing and treatment tanks, a fertilizer treatment box for preliminarily purifying a single fertilizer is connected. At both ends of the fertilizer treatment box, fertilizer filling pipes for filling fertilizers are provided. On the side end of the mixing and treatment tank, three groups of shunt conveying pipes for conveying the fertilizer mixed solution are linearly arranged. At the outer end of the fertilizer treatment box, a display screen for signal transmission and control is provided. At the lower side end of the mixing and treatment tank, a water pipe for guiding the water to be lifted is connected.
[0007] Preferably, through the fertilizer filling pipes arranged at both ends of the fertilizer treatment box, fertilizers can be filled. Through the shunt conveying pipes, three groups are linearly arranged at the side end of the mixing and treatment tank, which can be used to convey the fertilizer mixed solution. By using the display screen arranged at the outer end of the fertilizer treatment box, signal transmission and control can be carried out. Through the water pipe, which is connected at the lower side end of the mixing and treatment tank, the water can be guided to be lifted, which can improve the overall water flow guiding effect.
[0008] Preferably, a support plate is provided at the lower end of the mixing and treatment tank. A shock-absorbing bracket is circumferentially provided at the bottom of the support plate. A crushing frame is provided at the center of the mixing and treatment tank. A driving motor is provided at the lower end of the crushing frame. A first electromagnetic control valve connected to the fertilizer treatment tank is provided at the top of the mixing and treatment tank. An indicator light is provided at the outer end of the first electromagnetic control valve. Through the indicator light, it can be observed whether the overall operation is normal.
[0009] Preferably, second electromagnetic control valves connected to the fertilizer filling pipes are provided at both ends of the fertilizer treatment tank. A sealing cover plate is buckled on the top of the fertilizer treatment tank. A filter membrane is provided at the inner bottom of the fertilizer treatment tank. Refinement holes are distributed on the filter membrane. With the filter membrane and the refinement holes, purification and refinement can be carried out.
[0010] Preferably, three groups of rotating rods are horizontally provided on the sealing cover plate. A plurality of groups of stirring frames are circumferentially provided on the outer ends of the rotating rods from bottom to top. A first control motor is provided at the top of the rotating rod. A first signal receiver is provided at the center of the top of the first control motor. The first control motor drives the rotating rod to drive the stirring frame to rotate. A separation plate connected to the sealing cover plate is provided between the two rotating rods. Separation holes are distributed on the separation plate. Through the separation plate and the separation holes, filtration and separation operations can be carried out.
[0011] Preferably, a connection box is provided at one end of the water liquid pipe. A control pump is provided at the center of the connection box. A second control motor is provided at the top of the control pump. The second control motor drives the control pump to convey the water liquid. A first lifting pipe is provided at the end of the connection box far from the water liquid pipe. A second lifting pipe is provided at the lower end of the connection box. A second signal receiver is provided at the top of the second control motor. When conveying, the second control motor drives the control pump to convey the water liquid.
[0012] Preferably, a receiving end and a transmitting end are symmetrically provided on the display screen. A signal device is provided inside the receiving end and the transmitting end. Through the signal device, signal receiving and processing can be carried out.
[0013] Preferably, an extension pipe is provided at one end of the shunt conveying pipe. A flange is provided at the extending end of the extension pipe. Mounting holes are circumferentially provided near the edge of the flange. Through the mounting holes, the pipeline can be tightly connected to the flange.
[0014] The beneficial effects of the present utility model:
[0015] 1. Different from the existing fertilizers in the past that may contain impurities and the water supply structure is not timely, resulting in insufficient mixing of fertilizers, easy clogging, and affecting the improvement efficiency and service life, the mixing treatment tank is set horizontally in three groups and can be used for mixing fertilizers and water solutions. The fertilizer treatment tank is connected to the mixing treatment tank and can be used for preliminary purification of single fertilizers. The fertilizer filling pipes are arranged at both ends of the fertilizer treatment tank and can be used for filling fertilizers. The three shunt conveying pipes are linearly arranged at the side end of the mixing treatment tank and can be used for conveying the fertilizer mixed solution. The display screen is arranged at the outer end of the fertilizer treatment tank and can be used for signal transmission and control. The water solution pipe is connected to the lower side end of the mixing treatment tank and can be used for guiding the water solution to rise, which can improve the overall water flow guiding effect.
[0016] 2. When lifting, the second electromagnetic control valve opens, and fertilizers and mixed nutrient solutions are filled using the fertilizer filling pipes. The first signal receiver receives the control signal, and the first control motor drives the rotating rod to drive the stirring frame to rotate for fertilizer purification operation. As the solution passes through, the separation holes on the separation plate and the refined holes on the filter membrane form a two-way filtration to remove impurities. The first electromagnetic control valve, as the fertilizer solution enters the mixing treatment tank, drives the motor to drive the crushing frame to rotate. Synchronously, the second signal receiver receives the signal and controls the second control motor to drive the control pump to convey the water solution. The control pump controls the water solution to pass through the first lifting pipe and the second lifting pipe, extracts the water solution, and enters the mixing treatment tank through the water solution pipe for further stirring and mixing to ensure that the fertilizer particles are fully dissolved, and then are connected to the pipeline through the shunt conveying pipe and the extension pipe for transportation. Description of the Drawings
[0017] Figure 1 Shows the overall structural schematic diagram of the lifting device of the present utility model;
[0018] Figure 2 Shows the structural schematic diagram of the mixing treatment tank of the lifting device of the present utility model;
[0019] Figure 3 Shows the structural schematic diagram of the fertilizer treatment tank of the lifting device of the present utility model;
[0020] Figure 4 Shows the structural schematic diagram of the shunt conveying pipe of the lifting device of the present utility model.
[0021] Description of reference numerals: 1, mixing and treatment tank; 2, fertilizer treatment box; 3, fertilizer filling pipe; 4, water pipe; 5, display screen; 6, shunt conveying pipe; 101, driving motor; 102, first electromagnetic control valve; 103, indicator light; 104, shock absorption bracket; 105, support plate; 201, second electromagnetic control valve; 202, filter membrane; 203, refinement hole; 204, sealing cover plate; 205, first control motor; 206, first signal receiver; 207, separation plate; 208, separation hole; 209, rotating rod; 210, stirring frame; 401, connection box; 402, control pump; 403, second control motor; 404, first lifting pipe; 405, second lifting pipe; 406, second signal receiver; 501, receiving end; 502, transmitting end; 601, extension pipe; 602, mounting hole; 603, flange plate. Detailed implementation mode
[0022] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0023] Please refer to Figures 1-4 , the present utility model provides an embodiment: an intensive pumping station fertilizer lifting device, including a mixing and treatment tank 1, a fertilizer treatment box 2, a fertilizer filling pipe 3, a water pipe 4, a display screen 5 and a shunt conveying pipe 6; a mixing and treatment tank 1 for mixing fertilizer and water in a horizontal three-group setting, the tops of the three mixing and treatment tanks 1 are connected and provided with a fertilizer treatment box 2 for initially purifying a single fertilizer, both ends of the fertilizer treatment box 2 are provided with fertilizer filling pipes 3 for filling fertilizer, three shunt conveying pipes 6 for conveying the fertilizer mixed solution are linearly arranged on the side ends of the mixing and treatment tank 1, a display screen 5 for signal transmission and control is arranged on the outer end of the fertilizer treatment box 2, and a water pipe 4 for guiding the water to be lifted is connected and arranged on the lower side end of the mixing and treatment tank 1.
[0024] Please refer to Figures 2-3 , in this embodiment, a support plate 105 is arranged at the lower end of the mixing and treatment tank 1, shock absorption brackets 104 are circumferentially arranged at the bottom of the support plate 105, a crushing frame is arranged at the center of the mixing and treatment tank 1, a driving motor 101 is arranged at the lower end of the crushing frame, a first electromagnetic control valve 102 connected to the fertilizer treatment box 2 is arranged at the top of the mixing and treatment tank 1, an indicator light 103 is arranged at the outer end of the first electromagnetic control valve 102, through the indicator light 103, it can be observed that the overall operation is normal, second electromagnetic control valves 201 connected to the fertilizer filling pipes 3 are arranged at both ends of the fertilizer treatment box 2, a sealing cover plate 204 is buckled at the top of the fertilizer treatment box 2, a filter membrane 202 is arranged at the inner bottom of the fertilizer treatment box 2, and refinement holes 203 are distributed on the filter membrane 202, and purification and refinement can be carried out by using the filter membrane 202 and the refinement holes 203.
[0025] Please refer toFigures 3-4 , in this embodiment, three groups of rotating rods 209 are transversely arranged on the sealing cover plate 204. Multiple groups of stirring frames 210 are circumferentially arranged on the outer ends of the rotating rods 209 from bottom to top. A first control motor 205 is arranged on the top of the rotating rod 209. A first signal receiver 206 is arranged at the center of the top of the first control motor 205. The first control motor 205 drives the rotating rod 209 to drive the stirring frame 210 to rotate. A separation plate 207 connected to the sealing cover plate 204 is arranged between two groups of rotating rods 209. Separation holes 208 are distributed on the separation plate 207. Through the separation plate 207 and the separation holes 208, filtration and separation operations can be carried out. One end of the water liquid pipe 4 is provided with a connection box 401. A control pump 402 is arranged at the center of the connection box 401. A second control motor 403 is arranged on the top of the control pump 402. The second control motor 403 drives the control pump 402 to convey water liquid. One end of the connection box 401 away from the water liquid pipe 4 is provided with a first lifting pipe 404. The lower end of the connection box 401 is provided with a second lifting pipe 405. A second signal receiver 406 is arranged on the top of the second control motor 403. When conveying, the second control motor 403 drives the control pump 402 to convey water liquid. The models of the first signal receiver 206 and the second signal receiver 406 are HT9170D.
[0026] Please refer to Figures 1-4 , in this embodiment, a receiving end 501 and a transmitting end 502 are symmetrically arranged on the display screen 5. Signal devices are arranged inside the receiving end 501 and the transmitting end 502. Through the signal devices, signal receiving and processing can be carried out. One end of the shunt conveying pipe 6 is provided with an extension pipe 601. A flange 603 is arranged at the extending end of the extension pipe 601. Mounting holes 602 are circumferentially opened near the edge of the flange 603. Through the mounting holes 602, the pipeline can be tightly connected to the flange 603.
[0027] During operation, the second electromagnetic control valve 201 is opened, and fertilizers and mixed nutrient solutions are added through the fertilizer filling pipe 3. The first signal receiver 206 receives the control signal, and the first control motor 205 drives the rotating rod 209 to drive the stirring frame 210 to rotate for fertilizer purification operation. As the solution passes through, the separation holes 208 on the separation plate 207 and the refinement holes 203 on the filter membrane 202 form a two-way filtration to remove impurities. The first electromagnetic control valve 102, as the fertilizer solution enters the mixing and treatment tank 1, the drive motor 101 drives the crushing frame to rotate. Synchronously, the second signal receiver 406 receives the signal to control the second control motor 403 to drive the control pump 402 to convey water liquid. The control pump 402 controls the water liquid to pass through the first lifting pipe 404 and the second lifting pipe 405, extracts the water liquid to enter the mixing and treatment tank 1 through the water liquid pipe 4, and further stirs evenly to ensure that the fertilizer particles are fully dissolved and are conveyed through the shunt conveying pipe 6 and the extension pipe 601 to be connected to the pipeline.
[0028] Through the above steps, the fertilizer filling pipe 3 is provided at both ends of the fertilizer treatment tank 2 and can be used for filling fertilizers. The three shunt conveying pipes 6 are linearly arranged at the side end of the mixing treatment tank 1 and can be used for conveying the fertilizer mixed solution. The display screen 5 is provided at the outer end of the fertilizer treatment tank 2 and can be used for signal transmission and control. The water pipe 4 is communicated and arranged at the lower side end of the mixing treatment tank 1 and can be used for guiding the water liquid to be lifted, which can improve the overall water flow guiding effect.
Claims
1. An intensive pump station fertilizer lifting device, comprising a mixing treatment tank (1); characterized in that: The invention also comprises a fertilizer processing box (2), a fertilizer filling pipe (3), a water pipe (4), a display screen (5) and a diversion conveying pipe (6); three groups of mixing processing tanks (1) are arranged in a horizontal direction for mixing fertilizer and water, the tops of the three groups of mixing processing tanks (1) are connected to a fertilizer processing box (2) for preliminary purification of a single fertilizer, both ends of the fertilizer processing box (2) are provided with fertilizer filling pipes (3) for filling fertilizer, three groups of diversion conveying pipes (6) for conveying a fertilizer mixed solution are linearly arranged at the side ends of the mixing processing tank (1), a display screen (5) for signal transmission and control is arranged at the outer end of the fertilizer processing box (2), and a water pipe (4) for guiding water to be lifted is connected to the lower side ends of the mixing processing tank (1).
2. The intensive pump station fertilizer lifting device according to claim 1 is characterized in that: A support plate (105) is provided at the lower end of the mixing and processing tank (1), a shock-absorbing bracket (104) is provided in a circumferential direction at the bottom of the support plate (105), a crushing frame is provided at the center of the mixing and processing tank (1), a driving motor (101) is provided at the lower end of the crushing frame, a first electromagnetic control valve (102) connected to the fertilizer processing box (2) is provided at the top of the mixing and processing tank (1), and an indicator light (103) is provided at the outer end of the first electromagnetic control valve (102).
3. The intensive pump station fertilizer lifting device according to claim 1 is characterized in that: Both ends of the fertilizer processing box (2) are provided with a second electromagnetic control valve (201) connected to the fertilizer filling pipe (3); a sealing cover plate (204) is buckled on the top of the fertilizer processing box (2); a filter membrane (202) is provided at the bottom inside the fertilizer processing box (2); and fine holes (203) are distributed on the filter membrane (202).
4. The intensive pump station fertilizer lifting device according to claim 3 is characterized in that: Three groups of rotating rods (209) are transversely arranged on the sealing cover plate (204); multiple groups of stirring racks (210) are circumferentially arranged on the outer ends of the rotating rods (209) from bottom to top; a first control motor (205) is arranged on the top of the rotating rods (209); a first signal receiver (206) is arranged at the top center of the first control motor (205); the first control motor (205) drives the rotating rods (209) to drive the stirring racks (210) to rotate; a separation plate (207) connected to the sealing cover plate (204) is arranged between the two groups of rotating rods (209); and separation holes (208) are distributed on the separation plate (207).
5. The intensive pump station fertilizer lifting device according to claim 1 is characterized in that: A connection box (401) is provided at one end of the water-liquid pipe (4), a control pump (402) is provided at the center of the connection box (401), a second control motor (403) is provided at the top of the control pump (402), the second control motor (403) drives the control pump (402) to transport water, a first lifting pipe (404) is provided at one end of the connection box (401) away from the water-liquid pipe (4), a second lifting pipe (405) is provided at the lower end of the connection box (401), and a second signal receiver (406) is provided at the top of the second control motor (403).
6. The intensive pump station fertilizer lifting device according to claim 1 is characterized in that: A receiving end (501) and a transmitting end (502) are symmetrically arranged on the display screen (5), and annunciators are arranged inside the receiving end (501) and the transmitting end (502).
7. The intensive pump station fertilizer lifting device according to claim 1 is characterized in that: An extension pipe (601) is provided at one end of the flow-dividing conveying pipe (6), a flange (603) is provided at the extended end of the extension pipe (601), and a mounting hole (602) is circumferentially opened near the edge of the flange (603).