Fertilizer taking forestry waste as raw material and production system thereof
By using the separation technology of cone magnets and motor-driven in the fertilizer production system, the problem of difficult separation of metal impurities in forestry waste is solved, and efficient metal removal and equipment maintenance costs are achieved.
Patent Information
- Application Number
- CN202510511064.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-23
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2045-04-23
AI Technical Summary
Forestry waste is often mixed with metal impurities in fertilizer production, which affects the quality of fertilizers and equipment maintenance costs. It is difficult for existing production systems to effectively remove metal impurities.
A fertilizer production system including conical magnets and motor-driven is designed to separate the crushed debris by magnetic separation, automatically separate metal impurities from non-metals, and use wiping bristles to clean the metal on the magnet.
It realizes efficient separation and cleaning of metal impurities in forestry waste, improves the quality of fertilizer products, and reduces equipment wear and maintenance costs.
Smart Images

Figure CN120023013A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of fertilizers, and in particular to a fertilizer using forestry waste as raw materials and a production system thereof. Background Art
[0002] As a rich renewable resource, forestry waste has broad application prospects in fertilizer production. Using forestry waste to produce fertilizer can not only achieve resource recycling, but also reduce environmental pollution. However, during the collection and processing of forestry waste, metal impurities are often mixed in. These metal impurities not only affect the quality of fertilizer products, but also cause wear and even damage to production equipment, increasing maintenance costs. The current production system is difficult to remove metal impurities. Summary of the invention
[0003] In view of the above technical problems, the present invention aims to provide a fertilizer using forestry waste as raw materials and a production system thereof. To solve the above technical problems, the present invention adopts the following technical solutions:
[0004] A fertilizer production system using forestry waste as raw materials comprises a device body, which is provided with an adsorption chamber, an adjustment chamber and a transmission chamber, the adsorption chamber and the adjustment chamber are connected, the adsorption chamber is connected with the transmission chamber through a connecting channel, a crusher is fixedly connected to the inner wall of the adsorption chamber, a displacement rack is slidably connected to the inner wall of the transmission chamber, a moving seat is fixedly connected to the left end of the displacement rack, the left end of the displacement rack extends into the connecting channel, the moving seat is located in the adsorption chamber, a first gear is rotatably connected to the top wall of the moving seat, a conical magnet is fixedly connected to the top wall of the first gear, a blocking member is connected to the inner wall of the connecting channel, a sliding seat is slidably connected to the inner wall of the transmission chamber, the sliding seat is connected to the inner wall of the transmission chamber through a second elastic member, a wiping strip is connected to the sliding seat, wiping bristles are arranged on the wiping strip, an extension block is fixedly connected to the bottom wall of the sliding seat, a fixed rack is fixedly connected to the inner wall of the transmission chamber, a metal box is detachably connected to the inner wall of the transmission chamber, a motor body is connected to the bottom wall of the transmission chamber, a second gear is fixedly connected to the rotor of the motor body, and the second gear and the displacement rack are meshed.
[0005] Preferably, a slider is fixedly connected to the wiping strip, and the slider is slidably connected to the sliding seat. The slider is connected to the sliding seat through a first elastic member, a first permanent magnet is fixedly connected to the upper end of the wiping strip, a magnet mounting plate is fixedly connected to the top wall of the transmission cavity, and two or more second permanent magnets are fixedly connected to the bottom wall of the magnet mounting plate.
[0006] Preferably, the bottom wall of the movable seat is inlaid with a first permanent magnet plate, the motor mounting plate is slidably connected to the bottom wall of the transmission chamber, the second permanent magnet plate is fixedly connected to the motor mounting plate, the motor mounting plate is connected to the inner wall of the transmission chamber through a fourth elastic member, the motor body is fixedly connected to the motor mounting plate, the bottom wall of the transmission chamber is fixedly connected to an electromagnet, the inner wall of the transmission chamber is fixedly connected to a first fixed plate and a second fixed plate, the first fixed plate is rotatably connected to a third gear, the top wall of the third gear is fixedly connected to a first transmission wheel, the top wall of the second fixed plate is rotatably connected to a fourth gear, the top wall of the fourth gear is fixedly connected to a second transmission wheel, the second transmission wheel is connected to the first transmission wheel through a transmission belt, the inner wall of the transmission chamber is slidably connected to a detection box, and the left wall of the detection box extends to the inner wall of the crusher A detection chamber is provided on the detection box, a rod mounting plate is fixedly connected to the inner wall of the detection chamber, a rotating rod is rotatably connected to the top wall of the rod mounting plate, a stirring blade is fixedly connected to the rotating rod, the upper end of the rotating rod extends above the detection box, a fifth gear is fixedly connected to the upper end of the rotating rod, the fifth gear and the fourth gear are meshed, a pH detector and a heater are fixedly connected to the inner wall of the detection chamber, a first discharge valve is provided between the bottom wall of the detection chamber and the bottom wall of the detection box, an extension plate is fixedly connected to the outer wall of the detection box, a strip hole is provided on the extension plate, the strip hole is inclined, a lifting plate is slidably connected to the inner wall of the transmission chamber, a third permanent magnet plate is fixedly connected to the top wall of the lifting plate, the bottom wall of the lifting plate is connected to the bottom wall of the transmission chamber through a third elastic member, a rolling bar is rotatably connected to the lifting plate, and the rolling bar is slidably connected to the inner wall of the strip hole.
[0007] Preferably, an electric valve is fixedly connected to the inner wall of the transmission cavity, a liquid outlet pipe is fixedly connected to the electric valve, a valve button is movably connected to the electric valve, the electric valve is connected to an external liquid supply system, and one end of the liquid outlet pipe extends to above the detection cavity.
[0008] Preferably, a collecting groove is provided on the bottom wall of the transmission cavity.
[0009] Preferably, two regulating boxes are inlaid on the inner wall of the regulating cavity.
[0010] Preferably, a mixing and stirring rod is rotatably connected to the inner wall of the regulating chamber.
[0011] Preferably, a second discharge valve is provided between the bottom wall of the regulating chamber and the bottom wall of the device body.
[0012] Preferably, a guide rail is fixedly connected to the inner wall of the transmission cavity, the lifting plate is slidably connected to the guide rail, the blocking member is an electric door, and the transmission cavity is connected to the outer wall of the device body through a rack channel.
[0013] A fertilizer using forestry waste as raw material, including fertilizer produced by utilizing the fertilizer production system using forestry waste as raw material.
[0014] The present invention has the following beneficial effects:
[0015] The invention can automatically separate metal and non-metal objects from crushed debris by means of a conical magnet, and can drive a motor body to enable the wiping brush to clean the metal on the conical magnet. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The present invention is further described using the accompanying drawings, but the embodiments in the accompanying drawings do not constitute any limitation to the present invention. A person skilled in the art can obtain other drawings based on the following drawings without creative work.
[0017] Figure 1 It is a structural schematic diagram of a fertilizer production system using forestry waste as raw materials according to the present invention;
[0018] Figure 2 It is a front view of a device body in a fertilizer production system using forestry waste as raw materials according to the present invention;
[0019] Figure 3 The present invention Figure 2 A schematic diagram of the structure of the middle cone magnet and the first gear;
[0020] Figure 4 The present invention Figure 2 The enlarged view of point A in the middle;
[0021] Figure 5 The present invention Figure 4 A top view of the motor mounting plate and electromagnet;
[0022] Figure 6 The present invention Figure 2 The enlarged view of point B in the middle;
[0023] Figure 7 The present invention Figure 6 Schematic diagram of the structure of the middle extension plate and the lifting plate.
[0024] 1. Device body; 2. Adsorption chamber; 3. Adjustment chamber; 4. Transmission chamber; 5. Connection channel; 6. Pulverizer; 7. Conical magnet; 8. First gear; 9. Moving seat; 10. First permanent magnet plate; 11. Displacement rack; 12. Wiping strip; 13. Wiping brush; 14. Extension block; 15. First permanent magnet block; 16. Sliding seat; 17. Sliding block; 18. First elastic member; 19. Second elastic member; 20. Magnet mounting plate; 21. Second permanent magnet block; 22. Fixed rack; 23. Metal box; 24. Rack channel; 25. Motor mounting plate; 26. Second permanent magnet plate; 27. Motor body; 28. Second gear; 29. First fixed plate; 30. Third gear; 31. First transmission driving wheel; 32, transmission belt; 33, second transmission wheel; 34, fourth gear; 35, second fixed plate; 36, detection box; 37, detection chamber; 38, first discharge valve; 39, pH detector; 40, heater; 41, rod mounting plate; 42, rotating rod; 43, stirring blade; 44, fifth gear; 45, extension plate; 46, strip hole; 47, lifting plate; 48, third permanent magnet plate; 49, rolling bar; 50, third elastic member; 51, electric valve; 52, liquid outlet pipe; 53, valve button; 54, mixing stirring rod; 55, regulating box; 56, second discharge valve; 57, electromagnet; 58, fourth elastic member; 59, collecting tank; 60, guide rail; 61, blocking member. DETAILED DESCRIPTION
[0025] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only 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.
[0026] In the description of the present invention, it should be noted that the terms "vertical", "upper", "lower", "horizontal", etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, "first", "second", "third", and "fourth" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0027] In the description of the present invention, it is also necessary to explain that, unless otherwise clearly specified and limited, the terms "set", "install", "connect", and "connect" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection, it can be a mechanical connection, it can be an electrical connection, it can be a direct connection, it can be connected through an intermediate medium, and it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0028] like Figures 1 - 7 As shown, a fertilizer production system using forestry waste as raw materials includes a device body 1, on which an adsorption chamber 2, an adjustment chamber 3 and a transmission chamber 4 are opened, the adsorption chamber 2 and the adjustment chamber 3 are connected, the adsorption chamber 2 is connected with the transmission chamber 4 through a connecting channel 5, the inner wall of the adsorption chamber 2 is fixedly connected with a pulverizer 6, the inner wall of the transmission chamber 4 is slidably connected with a displacement rack 11, the left end of the displacement rack 11 is fixedly connected with a moving seat 9, the left end of the displacement rack 11 extends into the connecting channel 5, the moving seat 9 is located in the adsorption chamber 2, the top wall of the moving seat 9 is rotatably connected with a first gear 8, the top wall of the first gear 8 is fixedly connected with A conical magnet 7, a blocking member 61 is connected to the inner wall of the connecting channel 5, a slide seat 16 is slidably connected to the inner wall of the transmission chamber 4, the slide seat 16 is connected to the inner wall of the transmission chamber 4 through a second elastic member 19, a wiping strip 12 is connected to the slide seat 16, and wiping bristles 13 are provided on the wiping strip 12, an extension block 14 is fixedly connected to the bottom wall of the slide seat 16, a fixed rack 22 is fixedly connected to the inner wall of the transmission chamber 4, a metal box 23 is detachably connected to the inner wall of the transmission chamber 4, a motor body 27 is connected to the bottom wall of the transmission chamber 4, a second gear 28 is fixedly connected to the rotor of the motor body 27, and the second gear 28 is meshed with the displacement rack 11.
[0029] The slide 16 is connected to the inner wall of the transmission cavity 4 through the second elastic member 19 and can perform reciprocating motion, so that the metal impurities on the surface of the conical magnet 7 are cleaned through the wiping strip 12 and the wiping bristles 13. The cleaned metal impurities fall into the metal box 23, which is easy to disassemble and recycle.
[0030] The rotor of the motor body 27 is meshed with the displacement rack 11 through the fixed second gear 28, thereby realizing precise movement control of the rack.
[0031] The device achieves efficient separation of metal impurities in forestry waste by combining magnetic separation and mechanical transmission. At the same time, the automatic cleaning function of the wiping strip 12 and the wiping bristles 13 ensures the continuous operation capability of the device and reduces the need for manual maintenance.
[0032] According to an optional embodiment of the present invention, a slider 17 is fixedly connected to the wiping strip 12, and the slider 17 is slidably connected to the sliding seat 16. The slider 17 is connected to the sliding seat 16 through a first elastic member 18. A first permanent magnet block 15 is fixedly connected to the upper end of the wiping strip 12, and a magnet mounting plate 20 is fixedly connected to the top wall of the transmission chamber 4, and two or more second permanent magnet blocks 21 are fixedly connected to the bottom wall of the magnet mounting plate 20.
[0033] The facing surfaces of the first permanent magnet block 15 and the second permanent magnet block 21 have the same polarity, so that the first permanent magnet block 15 is repelled by the magnetic repulsion of the second permanent magnet block 21 .
[0034] According to an optional embodiment of the present invention, the bottom wall of the movable seat 9 is inlaid with a first permanent magnet plate 10, the motor mounting plate 25 is slidably connected to the bottom wall of the transmission chamber 4, the second permanent magnet plate 26 is fixedly connected to the motor mounting plate 25, the motor mounting plate 25 is connected to the inner wall of the transmission chamber 4 through a fourth elastic member 58, the motor body 27 is fixedly connected to the motor mounting plate 25, the bottom wall of the transmission chamber 4 is fixedly connected to an electromagnet 57, the inner wall of the transmission chamber 4 is fixedly connected to a first fixing plate 29 and a second fixing plate 35, the first fixing plate 29 is rotatably connected to a third gear 30, the top wall of the third gear 30 is fixedly connected to a first transmission wheel 31, the top wall of the second fixing plate 35 is rotatably connected to a fourth gear 34, the top wall of the fourth gear 34 is fixedly connected to a second transmission wheel 33, the second transmission wheel 33 is connected to the first transmission wheel 31 through a transmission belt 32, the inner wall of the transmission chamber 4 is slidably connected to a detection box 36, and the left wall of the detection box 36 extends to the inner wall of the crusher 6, The detection box 36 is provided with a detection chamber 37, the inner wall of the detection chamber 37 is fixedly connected with a rod mounting plate 41, the top wall of the rod mounting plate 41 is rotatably connected with a rotating rod 42, a stirring blade 43 is fixedly connected to the rotating rod 42, the upper end of the rotating rod 42 extends above the detection box 36, the upper end of the rotating rod 42 is fixedly connected with a fifth gear 44, the fifth gear 44 is meshed with the fourth gear 34, the inner wall of the detection chamber 37 is fixedly connected with a pH detector 39 and a heater 40, the bottom wall of the detection chamber 37 and the detection box 36 are fixedly connected. A first discharge valve 38 is provided between the bottom walls, an extension plate 45 is fixedly connected to the outer wall of the detection box 36, a strip hole 46 is opened on the extension plate 45, the strip hole 46 is inclined, a lifting plate 47 is slidably connected to the inner wall of the transmission chamber 4, a third permanent magnet plate 48 is fixedly connected to the top wall of the lifting plate 47, the bottom wall of the lifting plate 47 is connected to the bottom wall of the transmission chamber 4 through a third elastic member 50, a rolling bar 49 is rotatably connected to the lifting plate 47, and the rolling bar 49 is slidably connected to the inner wall of the strip hole 46.
[0035] The probe of the pH detector 39 is in contact with the liquid to detect the pH of the liquid so that the user can quickly know the pH status of the liquid. The heater 40 can realize the function of quickly heating the liquid to increase the immersion amount of the substance on the sample in the liquid.
[0036] According to an optional embodiment of the present invention, an electric valve 51 is fixedly connected to the inner wall of the transmission chamber 4, a liquid outlet pipe 52 is fixedly connected to the electric valve 51, a valve button 53 is movably connected to the electric valve 51, the electric valve 51 is connected to an external liquid supply system, and one end of the liquid outlet pipe 52 extends to the top of the detection chamber 37. After the valve button 53 is pressed, the electric valve 51 will open for a period of time and then automatically close.
[0037] According to an optional embodiment of the present invention, a collecting groove 59 is provided on the bottom wall of the transmission cavity 4 . The collecting groove 59 can collect the liquid and sample discharged from the detection box 36 .
[0038] According to an optional embodiment of the present invention, two regulating substance boxes 55 are inlaid on the inner wall of the regulating chamber 3. The two regulating substance boxes 55 are filled with alkaline regulating substance and acidic regulating substance respectively.
[0039] According to an optional embodiment of the present invention, the inner wall of the regulating chamber 3 is rotatably connected with a mixing and stirring rod 54. The mixing and stirring rod 54 is driven by a driving component connected thereto.
[0040] According to an optional embodiment of the present invention, a second discharge valve 56 is provided between the bottom wall of the regulating chamber 3 and the bottom wall of the device body 1 .
[0041] According to an optional embodiment of the present invention, the inner wall of the transmission chamber 4 is fixed with a guide rail 60, the lifting plate 47 is slidably connected to the guide rail 60, and the transmission chamber 4 is connected to the outer wall of the device body 1 through the rack channel 24. The rack channel 24 facilitates the movement of the displacement rack 11.
[0042] A fertilizer using forestry waste as raw material, including fertilizer produced by utilizing the fertilizer production system using forestry waste as raw material.
[0043] Implementation process: Collect forestry waste through the following channels:
[0044] Collect branches, bark, sawdust and wood chips at the forestry logging site after logging;
[0045] Waste generated from garden maintenance, branches, leaves and grass clippings generated from tree branch pruning and greening maintenance;
[0046] Waste collection from forestry processing plants, scraps, sawdust and shavings generated by wood processing plants.
[0047] The collected waste is put into the crusher 6 for crushing into debris. When the debris passes through the conical magnet 7, the conical magnet 7 will absorb the metal on the debris, and the remaining debris falls into the adjustment chamber 3. When the metal on the conical magnet 7 needs to be cleaned, the blocking member 61 is opened, the motor body 27 is turned on, and the rotor of the motor body 27 drives the second gear 28 to rotate, and the second gear 28 drives the displacement rack 11 to move right, so that the moving seat 9, the first gear 8, and the conical magnet 7 move right. When the conical magnet 7 and the wiping bristles 13 are against each other, the moving seat 9 and the extension block 14 are against each other, so that the moving seat 9 can push the extension block 14 and the slide seat 16 to move right, and the first gear 8 and the fixed rack 22 are meshed, and the first gear 8 is driven by the fixed rack 22 to rotate. The conical magnet 7 rotates on the wiping bristles 13, and the wiping bristles 13 clean the surface of the conical magnet 7, causing the metal to fall into the metal box 23. When the wiping strip 12 moves to the right, the first permanent magnet block 15 will be repelled by the magnetic repulsion of all the second permanent magnet blocks 21, so that the wiping strip 12, the wiping bristles 13, and the slider 17 overcome the elastic force of the first elastic member 18 and move downward. When the first permanent magnet block 15 runs between the two second permanent magnet blocks 21, it is not subjected to the magnetic repulsion. The wiping strip 12 moves up and resets under the elastic force of the first elastic member 18, so that the wiping strip 12 and the wiping bristles 13 are reciprocated up and down, which can not only improve the metal cleaning quality of the surface of the conical magnet 7, but also make the metal adhering to the wiping bristles 13 shake off into the metal box 23.
[0048] The first permanent magnet plate 10 moves rightward to above the third permanent magnet plate 48, and the magnetic repulsion of the first permanent magnet plate 10 repels the third permanent magnet plate 48, so that the lifting plate 47 and the rolling bar 49 overcome the elastic force of the third elastic member 50 and move downward, and the rolling bar 49 slides in the bar-shaped hole 46, thereby driving the extension plate 45 and the detection box 36 to move leftward, and the fifth gear 44 and the fourth gear 34 are disengaged, and the detection chamber 37 on the detection box 36 moves leftward to the adsorption chamber 2, and the detection chamber 37 collects samples of the debris, and the motor body 27 is reversed, so that the displacement rack 11, the moving seat 9, and the conical magnet 7 move leftward. The sliding seat 16 and the wiping strip 12 are moved to the left and reset under the elastic force of the second elastic member 19. After the first permanent magnetic plate 10 is separated from the third permanent magnetic plate 48, the lifting plate 47 is moved upward and reset under the elastic force of the third elastic member 50. The rolling bar 49 drives the extension plate 45 and the detection box 36 to move right, and the fifth gear 44 and the fourth gear 34 are re-engaged. The detection box 36 presses the valve button 53, and the valve button 53 is opened for a period of time, so that the external liquid supply system adds liquid to the detection chamber 37 through the electric valve 51 and the liquid outlet pipe 52, and the heater 40 and the electromagnet 57 are turned on. 0 heats the liquid to increase the immersion amount and immersion efficiency of the substance on the sample in the liquid. The magnetic attraction of the electromagnet 57 causes the second permanent magnet plate 26 and the motor mounting plate 25 to overcome the elastic force of the fourth elastic member 58 and move forward, so that the meshing object of the second gear 28 is switched to the third gear 30. The second gear 28 drives the third gear 30, the first transmission wheel 31, the transmission belt 32, the second transmission wheel 33, the fourth gear 34, the fifth gear 44, the rotating rod 42, and the stirring blade 43 to rotate. The stirring blade 43 stirs the liquid and the sample to further increase the immersion efficiency of the substance on the sample in the liquid. The immersion amount and immersion efficiency, the pH detector 39 can detect the pH of the liquid in real time, so that the user can quickly know the pH of the sample, thereby controlling which valve of the regulator box 55 is opened, adding alkaline regulators or acidic regulators to the debris in the regulating chamber 3, and the driving component controls the mixing and stirring rod 54 to rotate so that the debris and the alkaline regulator or acidic regulator are evenly mixed, thereby adjusting the pH of the debris in the regulating chamber 3. The above operation can be repeated multiple times, and the pH of the debris is sampled multiple times to detect the pH, and the average value is obtained before the pH of the debris in the regulating chamber 3 is adjusted.
[0049] Closing the blocking member 61 again can prevent debris from entering the transmission chamber 4, opening the first discharge valve 38 can discharge the liquid and sample in the detection chamber 37 into the collection tank 59, and opening the second discharge valve 56 can discharge the debris from the second discharge valve 56 to the outside of the device body 1, and then carry out subsequent steps such as primary fermentation, secondary fermentation, granulation, drying, testing, and packaging.
[0050] The present invention can automatically separate metal and non-metal materials from the crushed debris through the conical magnet 7, and by driving a motor body 27, the wiping bristles 13 can clean the metal on the conical magnet 7, and the shaking can prevent excessive metal residue on the wiping bristles 13, and the detection box 36 can automatically collect samples of the debris during cleaning, and the stirring blades 43 and the heater 40 can increase the immersion amount and immersion efficiency of the material on the sample in the liquid, and the two adjustment boxes 55 can adjust the pH of the debris in the adjustment chamber 3 for subsequent operations.
[0051] The components, modules, mechanisms and devices not described in detail in the present invention are all universal standard parts or components known to those skilled in the art, and their structures and principles can be known to those skilled in the art through technical manuals or conventional experimental methods.
[0052] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the present invention, rather than to limit the scope of protection of the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solution of the present invention can be modified or replaced by equivalents without departing from the essence and scope of the technical solution of the present invention.
Claims
1. A fertilizer production system using forestry waste as raw materials, characterized in that: The device comprises a device body (1), the device body (1) is provided with an adsorption chamber (2), an adjustment chamber (3) and a transmission chamber (4), the adsorption chamber (2) and the adjustment chamber (3) are connected, the adsorption chamber (2) and the transmission chamber (4) are connected via a connecting passage (5), a crusher (6) is fixedly connected to the inner wall of the adsorption chamber (2), a displacement rack (11) is slidably connected to the inner wall of the transmission chamber (4), a moving seat (9) is fixedly connected to the left end of the displacement rack (11), the left end of the displacement rack (11) extends into the connecting passage (5), the moving seat (9) is located in the adsorption chamber (2), a first gear (8) is rotatably connected to the top wall of the moving seat (9), a conical magnet (7) is fixedly connected to the top wall of the first gear (8), and the connecting passage (5) is connected to the inner wall of the transmission chamber (4). The inner wall of the channel (5) is connected to a blocking member (61); the inner wall of the transmission chamber (4) is slidably connected to a slide seat (16); the slide seat (16) is connected to the inner wall of the transmission chamber (4) via a second elastic member (19); a wiping strip (12) is connected to the slide seat (16); the wiping strip (12) is provided with wiping bristles (13); an extension block (14) is fixedly connected to the bottom wall of the slide seat (16); a fixed rack (22) is fixedly connected to the inner wall of the transmission chamber (4); a metal box (23) is detachably connected to the inner wall of the transmission chamber (4); the bottom wall of the transmission chamber (4) is connected to a motor body (27); a second gear (28) is fixedly connected to a rotor of the motor body (27); and the second gear (28) is meshed with the displacement rack (11).
2. A fertilizer production system using forestry waste as raw materials according to claim 1, characterized in that: A slider (17) is fixedly connected to the wiping strip (12), the slider (17) is slidably connected to the slide seat (16), the slider (17) is connected to the slide seat (16) via a first elastic member (18), a first permanent magnet (15) is fixedly connected to the upper end of the wiping strip (12), a magnet mounting plate (20) is fixedly connected to the top wall of the transmission cavity (4), and two or more second permanent magnets (21) are fixedly connected to the bottom wall of the magnet mounting plate (20).
3. A fertilizer production system using forestry waste as raw materials according to claim 2, characterized in that: The bottom wall of the movable seat (9) is inlaid with a first permanent magnet plate (10), the motor mounting plate (25) is slidably connected to the bottom wall of the transmission cavity (4), the motor mounting plate (25) is fixedly connected to a second permanent magnet plate (26), the motor mounting plate (25) is connected to the inner wall of the transmission cavity (4) via a fourth elastic member (58), the motor body (27) is fixedly connected to the motor mounting plate (25), the bottom wall of the transmission cavity (4) is fixedly connected to an electromagnet (57), the inner wall of the transmission cavity (4) is fixedly connected to a first fixing plate (29) and a second fixing plate (35), the first fixing plate (29) and the second fixing plate (35) are fixedly connected to the first fixing plate (35), and the second fixing plate (35) is fixedly connected to the first fixing plate (35). A third gear (30) is rotatably connected to the plate (29), a first transmission wheel (31) is fixedly connected to the top wall of the third gear (30), a fourth gear (34) is rotatably connected to the top wall of the second fixed plate (35), a second transmission wheel (33) is fixedly connected to the top wall of the fourth gear (34), the second transmission wheel (33) is connected to the first transmission wheel (31) via a transmission belt (32), a detection box (36) is slidably connected to the inner wall of the transmission cavity (4), a left wall of the detection box (36) extends to the inner wall of the pulverizer (6), and a detection cavity is provided on the detection box (36) (37), the inner wall of the detection chamber (37) is fixedly connected to a rod mounting plate (41), the top wall of the rod mounting plate (41) is rotatably connected to a rotating rod (42), a stirring blade (43) is fixedly connected to the rotating rod (42), the upper end of the rotating rod (42) extends above the detection box (36), the upper end of the rotating rod (42) is fixedly connected to a fifth gear (44), the fifth gear (44) and the fourth gear (34) are meshed, the inner wall of the detection chamber (37) is fixedly connected to a pH detector (39) and a heater (40), a bottom wall of the detection chamber (37) and a bottom wall of the detection box (36) are provided between A first discharge valve (38) is provided, an extension plate (45) is fixedly connected to the outer wall of the detection box (36), a strip hole (46) is formed on the extension plate (45), the strip hole (46) is arranged obliquely, a lifting plate (47) is slidably connected to the inner wall of the transmission chamber (4), a third permanent magnet plate (48) is fixedly connected to the top wall of the lifting plate (47), a bottom wall of the lifting plate (47) is connected to the bottom wall of the transmission chamber (4) via a third elastic member (50), a rolling bar (49) is rotatably connected to the lifting plate (47), and the rolling bar (49) is slidably connected to the inner wall of the strip hole (46).
4. A fertilizer production system using forestry waste as raw materials according to claim 3, characterized in that: An electric valve (51) is fixedly connected to the inner wall of the transmission chamber (4), a liquid outlet pipe (52) is fixedly connected to the electric valve (51), a valve button (53) is movably connected to the electric valve (51), the electric valve (51) is connected to an external liquid supply system, and one end of the liquid outlet pipe (52) extends to the top of the detection chamber (37).
5. A fertilizer production system using forestry waste as raw materials according to claim 4, characterized in that: The bottom wall of the transmission chamber (4) is provided with a collecting groove (59).
6. A fertilizer production system using forestry waste as raw materials according to claim 5, characterized in that: Two regulating material boxes (55) are inlaid on the inner wall of the regulating chamber (3).
7. A fertilizer production system using forestry waste as raw materials according to claim 6, characterized in that: The inner wall of the regulating chamber (3) is rotatably connected to a mixing and stirring rod (54).
8. The fertilizer production system using forestry waste as raw materials according to claim 7 is characterized in that: A second discharge valve (56) is provided between the bottom wall of the regulating chamber (3) and the bottom wall of the device body (1).
9. A fertilizer production system using forestry waste as raw materials according to claim 8, characterized in that: The inner wall of the transmission chamber (4) is fixedly connected to a guide rail (60), the lifting plate (47) is slidably connected to the guide rail (60), the blocking member (61) is an electric door, and the transmission chamber (4) is connected to the outer wall of the device body (1) through a rack channel (24).
10. A fertilizer made from forestry waste, characterized in that: It includes fertilizer produced by the fertilizer production system using forestry waste as raw materials as described in any one of claims 1-9.
Citation Information
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