Garden garbage fermentation fertilizer making device
By using the guide rail and telescopic frame structure and dynamic sealing design of the garden waste fermentation and composting device, the problems of limited compost bin volume and odor diffusion are solved, achieving flexible volume adjustment and efficient, odorless waste treatment.
Patent Information
- Application Number
- CN202511394254.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-28
- Publication Date
- 2025-11-18
AI Technical Summary
Existing compost bins have limited single-cycle processing capacity when dealing with garden waste, making it difficult to cope with fluctuations in waste production across different seasons, and the problem of odor diffusion is difficult to control.
A garden waste fermentation and fertilizer production device was designed. The device achieves volume adjustment through the combination of guide rail rod and socket splicing structure and telescopic frame. Combined with dynamic sealing structure and material turning component, it ensures sealing and automated turning. The device uses screw feeder and sealing mechanism to realize material transportation and cleaning.
It enables flexible expansion of volume based on waste volume, reduces odor emission, improves processing efficiency, lowers labor costs, and ensures uniform fermentation and residue-free discharge of materials.
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Figure CN120965385A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of fertilizer preparation devices, and in particular to a garden waste fermentation fertilizer preparation device. BACKGROUND
[0002] In the process of garden greening management, a large amount of organic waste such as branches, fallen leaves, and grass clippings will be generated. The treatment and resource utilization of these garden wastes have become an important issue in urban environmental management. At present, one of the common treatment methods is to ferment the garden waste to fertilizer to realize the recycling of resources.
[0003] However, the existing fertilizer preparation method has certain limitations: one traditional method of fertilizer preparation is to directly pile the garden waste outdoors for natural composting. This method is simple to operate and can handle a large amount of garden waste at one time, which is suitable for occasions with large amounts of waste. However, due to the lack of effective sealing measures, a large amount of odor gas such as ammonia and hydrogen sulfide will be released during the composting process, which not only affects air quality but also may interfere with the living environment of surrounding residents. Another common method is to use a compost bin for centralized fermentation. The compost bin has certain sealing and structural stability, which can control the spread of odor to a certain extent and improve environmental hygiene. However, due to the fixed volume of the compost bin, its single processing capacity is limited, making it difficult to cope with the fluctuation of garden waste production in different seasons, especially during the spring pruning peak or the autumn leaf concentration period. The waste production increases dramatically, and the compost bin often needs to be run multiple times, which increases the labor and time cost and reduces the overall processing efficiency. SUMMARY
[0004] Therefore, the present application provides a garden waste fermentation fertilizer preparation device, which can overcome the shortcomings of the existing compost bin in that its single processing capacity is limited and it is difficult to cope with the fluctuation of garden waste production in different seasons.
[0005] The technical solution of the present application is: a garden waste fermentation fertilizer preparation device, comprising: two fixed frames, which are symmetrically arranged left and right; a door plate symmetrically connected to the fixed frame; a lock installed on the side of the door plate; a guide rail symmetrically laid between the two fixed frames, and the guide rail is uniformly spaced apart with mounting holes, one end of the guide rail is connected with a plug rod, and the other end of the guide rail is provided with a plug hole, and the plug rod inserted into the plug hole can splice the two guide rails; an installation frame arranged on the top of the guide rail; an electric wheel symmetrically installed on both sides of the installation frame; a telescopic frame arranged on the guide rail, and the two ends of the telescopic frame are respectively connected with the fixed frame and the installation frame; a limiting plate symmetrically arranged on the inner side of the guide rail; a material turning assembly arranged on the installation frame for turning the material placed on the inner side of the limiting plate; and a discharging assembly arranged on the installation frame for discharging the fermented fertilizer.
[0006] Further, the telescopic frame comprises: sliding blocks, which are connected to the guide rails at intervals; a first connecting rod, which is connected to the leftmost and rightmost sliding blocks and has circular holes at intervals; a second connecting rod, which is connected to the remaining sliding blocks; and an elastic film, which is connected between the inner sides of the first connecting rod and the second connecting rod.
[0007] Further, the material turning assembly comprises: a first electric sliding rail, which is installed on the top of the mounting frame; a moving rod, which is connected to the sliding block of the first electric sliding rail; a guide pipe, which is connected to the moving rod and penetrates the top of the mounting frame; a driving motor, which is installed inside the guide pipe; and a screw rod, which is connected to the output shaft of the driving motor.
[0008] Further, the material discharging assembly comprises: a second electric sliding rail, which is installed on the side of the moving rod; a lifting pipe, which is connected to the sliding block of the second electric sliding rail and is slidably connected to the guide pipe, and the lifting pipe has a notch; a screw feeder, which is installed on the lifting pipe and has a feeding port that is in communication with the lifting pipe; and a sealing mechanism, which is arranged on the mounting frame and is used for sealing the gap between the mounting frame and the lifting pipe.
[0009] Further, the sealing mechanism comprises: a sliding plate, which is slidably connected to the mounting frame; a guide ring, which is connected to the sliding plate and has an inner wall that is slidably connected to the lifting pipe; and a telescopic baffle, which has two ends connected to the sliding plate and the mounting frame, respectively.
[0010] Further, the device further comprises: hoses, which are symmetrically connected to the elastic film and the inner wall of the mounting frame, respectively; square tubes, which are arranged between the end portions of adjacent two hoses and keep in communication; a water tank, which is connected to the top of the left fixing frame; a peristaltic pump, which is installed on the side of the water tank and keeps in communication; and a shunt pipe, which is connected to the peristaltic pump and keeps in communication, and the end portion of the shunt pipe is connected to the end portion of the leftmost hose and keeps in communication.
[0011] Further, the device further comprises: a storage tank, which is connected to the side of the mounting frame; a pumping pump, which is installed on the side of the storage tank and has a feeding port that is connected to the storage tank and keeps in communication; a fixed pipe, which is connected to the discharge port of the pumping pump and keeps in communication; and a spray head, which is installed on the sliding plate and has an end portion that is connected to the fixed pipe and keeps in communication.
[0012] Further, the device further comprises: fixed rods, which are symmetrically connected to the inner wall of the mounting frame; and a brush plate, which is connected to the bottom of the fixed rod and is in contact with the limiting plate.
[0013] The beneficial effects are: 1, the plug rod and the plug hole splicing structure of the guide rail, cooperate with the telescopic frame composed of the sliding block, the connecting rod and the elastic film, can realize the stepless adjustment of the length of the fermentation cavity, the design can flexibly expand the volume according to the garden waste yield, effectively cope with seasonal waste quantity fluctuation, improve single processing capacity, can significantly reduce the time cost of manual batch processing.
[0014] 2, the closed space formed by the fixed frame, the mounting frame and the telescopic frame, combined with the hose water injection sealing system to form a dynamic sealing structure, can maintain sealing continuity during fermentation, reduce odor gas diffusion, and significantly improve the surrounding air quality.
[0015] 3, the first electric sliding rail and the electric wheel can control the screw rod to move forward and backward, and the driving motor drives the screw rod to rotate, can automatically turn over the fermentation material uniformly, cooperate with the notch of the lifting pipe and the screw feeder to form a material lifting-conveying channel, can automatically discharge the fermented material, at the same time, the brush plate moves with the mounting frame, can automatically clean the limiting plate, ensure that there is no residue in the discharge. DETAILED DESCRIPTION
[0016] Figure 1 It is a three-dimensional structure schematic diagram of the present application.
[0017] Figure 2 It is a specific structure schematic diagram of the guide rail of the present application.
[0018] Figure 3 It is a mounting schematic diagram of the limiting plate of the present application.
[0019] Figure 4 It is a specific structure schematic diagram of the telescopic frame of the present application.
[0020] Figure 5 It is a mounting schematic diagram of the material turning assembly and the discharging assembly of the present application.
[0021] Figure 6 It is a mounting schematic diagram of the driving motor and the screw rod of the present application.
[0022] Figure 7 It is a cooperation schematic diagram of the screw rod and the lifting pipe of the present application.
[0023] Figure 8 It is a mounting schematic diagram of the hose and the water tank of the present application.
[0024] Figure 9 It is a separation structure schematic diagram of the hose and the square tube of the present application.
[0025] Figure 10 It is a mounting schematic diagram of the peristaltic pump and the shunt pipe of the present application.
[0026] Figure 11This is a schematic diagram showing the installation of the material pump, fixed pipe, nozzle, fixed rod, and brush plate of the present invention.
[0027] Component names and numbers in the diagram: 1-Fixed frame, 2-Door panel, 3-Latch, 4-Guide rail, 401-Mounting hole, 402-Insertion rod, 403-Insertion hole, 5-Mounting frame, 6-Electric wheel, 7-Telescopic frame, 701-Slider, 702-First connecting rod, 703-Round hole, 704-Second connecting rod, 705-Elastic membrane, 8-Limiting plate, 9-First electric slide rail, 10-Moving rod, 11-Guide tube 12-Drive motor, 13-Screw rod, 14-Second electric slide rail, 15-Lifting pipe, 1501-Notch, 16-Screw feeder, 17-Sliding plate, 18-Guide ring, 19-Telescopic baffle, 20-Hose, 21-Square tube, 22-Water tank, 23-Peristaltic pump, 24-Diverter pipe, 25-Storage bin, 26-Suction pump, 27-Fixed pipe, 28-Nozzle, 29-Fixed rod, 30-Brush plate. Detailed Implementation
[0028] Example: A device for fermenting garden waste into fertilizer, such as Figures 1-7 As shown, the assembly includes a fixed frame 1, door panels 2, latches 3, guide rails 4, mounting frames 5, electric wheels 6, telescopic frames 7, limit plates 8, a tilting assembly, and a discharging assembly. Two fixed frames 1 are symmetrically arranged. Through holes are provided on the lower front and rear sides of each fixed frame 1. Bolts are passed through these holes and driven into the ground to fix the fixed frame 1 to the ground. Two door panels 2 are rotatably connected to each fixed frame 1, and latches 3 are installed on the door panels 2. Guide rails 4 are symmetrically laid between the two fixed frames 1, with three mounting holes 401 spaced apart on each guide rail 4. Bolts are passed through these mounting holes 401 and driven into the ground to fix the guide rail 4 to the ground. A plug rod 402 is connected to the right end of each guide rail 4, and a plug hole 403 is provided on the left end of each guide rail 4. When two guide rails 4 are horizontally joined, the plug rod 402 on the left guide rail 4... 02 can be inserted into the insertion hole 403 on the right guide rail 4, thereby guiding and stabilizing the guide rail 4. An installation frame 5 is provided between the top of the front and rear guide rails 4. Electric wheels 6 are symmetrically installed on the lower part of the front and rear sides of the installation frame 5. The side of the electric wheel 6 contacts the side of the guide rail 4 to guide the movement of the installation frame 5. A telescopic frame 7 is provided between the top of the front and rear guide rails 4. The left and right sides of the telescopic frame 7 are respectively connected to the fixed frame 1 and the installation frame 5, so that the telescopic frame 7 can adapt to the movement of the installation frame 5. Two limiting plates 8 are provided between the front and rear guide rails 4. The limiting plates 8 can be fixed to the ground by bolts. The installation frame 5 is provided with a turning component for turning the material placed inside the limiting plate 8. The installation frame 5 is provided with a discharge component for conveying and discharging the fermented fertilizer.
[0029] like Figure 4As shown, the telescopic frame 7 is composed of eighteen sliders 701, two first connecting rods 702, seven second connecting rods 704 and an elastic film 705. The eighteen sliders 701 are symmetrically arranged front and back, and are respectively slidably connected to the guide rails 4 on the front and back sides. Corresponding sliders 701 on the front and back sides form a group. The two first connecting rods 702 are respectively connected to the two groups of sliders 701 on the leftmost and rightmost sides. The two first connecting rods 702 are both provided with a plurality of circular holes 703 at intervals. The side surfaces of the fixed frame 1 and the mounting frame 5 are also provided with circular holes 703. Screws are passed through the circular holes 703 and tightened, so as to respectively fix the two first connecting rods 702 on the side surfaces of the fixed frame 1 and the mounting frame 5. The seven second connecting rods 704 are respectively connected to the remaining seven groups of sliders 701. The elastic film 705 is connected between the inner sides of the two first connecting rods 702 and the seven second connecting rods 704. The two telescopic frames 7 can also be transversely spliced by passing the screws through the circular holes 703 and tightening. Since the elastic film 705 can freely expand and contract, the telescopic frame 7 can adaptively expand and contract following the movement of the mounting frame 5.
[0030] As shown in Figure 5 and Figure 6 , the material turning assembly comprises a first electric sliding rail 9, a moving rod 10, a guide pipe 11, a driving motor 12 and a spiral rod 13. The first electric sliding rail 9 is installed on the top right side of the mounting frame 5. A square hole is formed on the top left side of the mounting frame 5. The moving rod 10 is connected to the slider of the first electric sliding rail 9. The guide pipe 11 is connected to the upper part of the moving rod 10, and the lower end of the guide pipe 11 penetrates the square hole on the top left side of the mounting frame 5. The driving motor 12 is installed on the inside of the lower side of the guide pipe 11. The spiral rod 13 is connected to the output shaft of the driving motor 12.
[0031] As shown in Figure 5 and Figure 7 , the discharging assembly comprises a second electric sliding rail 14, a lifting pipe 15, a spiral feeder 16 and a sealing mechanism. The second electric sliding rail 14 is installed on the left side of the moving rod 10. The lifting pipe 15 is connected to the slider of the second electric sliding rail 14. The lifting pipe 15 is sleeved on the outer wall of the guide pipe 11. A notch 1501 is formed on the left lower part of the lifting pipe 15. The spiral feeder 16 is installed on the front upper part of the lifting pipe 15, and the feeding port of the spiral feeder 16 is in communication with the lifting pipe 15. The mounting frame 5 is provided with a sealing mechanism for sealing the square hole. The sealing mechanism comprises a sliding plate 17, a guide ring 18 and an extendable baffle 19. The sliding plate 17 is slidably connected in the square hole of the mounting frame 5. The guide ring 18 is connected to the sliding plate 17. The inner wall of the guide ring 18 is slidably connected with the outer wall of the lifting pipe 15. The extendable baffles 19 are connected between the front and back sides of the sliding plate 17 and the front and back sides of the inner wall of the square hole.
[0032] When the device needs to be used, first, a proper number of guide rails 4 can be selected according to needs, and two guide rails 4 with appropriate lengths can be transversely spliced through the plug-in cooperation of the insertion rods 402 and the insertion holes 403, and then the two guide rails 4 are installed on the ground through bolts, and then two limiting plates 8 are installed on the ground, so that the limiting plates 8 are located on the inner sides of the guide rails 4, and then all the sliding blocks 701 of the two telescopic frames 7 are sequentially sleeved on the guide rails 4 from the ends of the guide rails 4, that is, the telescopic frames 7 are installed on the guide rails 4, and then the two fixed frames 1 are installed on the ground through bolts and are located at the left and right ends of the guide rails 4, respectively, and then the mounting frame 5 is installed on the guide rails 4, and then the two first connecting rods 702 on the telescopic frame 7 are connected with the fixed frame 1 and the mounting frame 5, respectively, through bolts; then the lock catch 3 is opened, and the door plate 2 is rotated to open, at this time, the transport vehicle can be controlled to enter the telescopic frame 7 from the fixed frame 1, and the materials to be fermented and the fungicides are laid between the two limiting plates 8, then the door plate 2 is rotated to close, and the lock catch 3 is buckled, that is, a closed space is formed between the fixed frame 1, the mounting frame 5 and the telescopic frame 7, so that the materials can be fermented in the closed space, thereby preventing the spread of odor, and in the process of material fermentation, the mounting frame 5 can be driven to move left and right intermittently along the guide rail 4 through the electric wheel 6, and the telescopic frame 7 located on the left and right sides of the mounting frame 5 can be adaptively telescopic, so as to always ensure the sealing performance of the closed space, the mounting frame 5 can drive the screw rod 13 to move left and right intermittently, and at the same time, the moving rod 10 can be driven to reciprocate forward and backward through the first electric sliding rail 9, the moving rod 10 can drive the guide pipe 11 and the second electric sliding rail 14 to reciprocate forward and backward, the guide pipe 11 can drive the driving motor 12 and the screw rod 13 to reciprocate forward and backward, and the second electric sliding rail 14 can drive the lifting pipe 15, the sliding plate 17 and the guide ring 18 to reciprocate forward and backward, and the telescopic baffle 19 is adaptively telescopic, so that the telescopic baffle 19 can always block the square hole on the left top of the mounting frame 5, thereby ensuring the sealing performance of the closed space, and at the same time, the screw rod 13 can be driven to rotate through the driving motor 12, when the screw rod 13 moves to contact the materials, the materials can be stirred and thrown upwards, so that the materials can be fully mixed with the fungicides to promote the fermentation of the materials.When the material fermentation is completed, the lifting pipe 15 can be driven to move downward by the second electric slide rail 14, and then the lifting pipe 15 is sleeved outside the screw rod 13. Then the screw rod 13 is driven to move forward and backward by the first electric slide rail 9 and the electric wheel 6, and the screw rod 13 is driven to rotate by the driving motor 12. The fermented material can enter the inside of the lifting pipe 15 through the gap 1501, and the screw rod 13 can convey the material in the lifting pipe 15 upward to the screw feeder 16. At the same time, the screw feeder 16 is started, and a transport vehicle is arranged below the discharge port of the screw feeder 16. The screw feeder 16 can convey the material in the lifting pipe 15 forward, so that the material falls on the transport vehicle. When the transport vehicle moves left and right with the installation frame 5, the transport vehicle needs to move synchronously to continuously receive the material. When the amount of material to be processed is too much, the number of guide rails 4 and telescopic frames 7 can be increased to increase the processing capacity of the device.
[0033] As shown in Figures 8-10 The device also includes a hose 20, a square tube 21, a water tank 22, a peristaltic pump 23 and a shunt pipe 24. The lower part of the front and rear sides of the inner wall of each elastic film 705 is connected with the hose 20, and the lower part of the front and rear sides of the inner wall of the installation frame 5 is also connected with the hose 20. The left end of the leftmost hose 20 and the right end of the rightmost hose 20 are closed, and the right end of the leftmost hose 20 and the left end of the rightmost hose 20 are open. The left and right ends of the remaining hoses 20 are open. The end portions of adjacent two hoses 20 are sleeved with the square tube 21 and kept in communication. The hose 20 is tightly attached to the outer wall of the square tube 21 by its own elasticity, so as to realize the sealing effect. The top of the left fixed frame 1 is connected with the water tank 22. The left lower part of the water tank 22 is installed with the peristaltic pump 23 and kept in communication. The left end of the leftmost hose 20 is connected with the peristaltic pump 23 through the shunt pipe 24 and kept in communication.
[0034] In the initial state, the water tank 22 is filled with an appropriate amount of water. When the material is fermented in the above-mentioned closed space, the water in the water tank 22 can be conveyed into each hose 20 through the cooperation of the peristaltic pump 23, the shunt pipe 24 and the square tube 21, so that the hose 20 is in an inflated state. At this time, through the gravity of the water in the hose 20, the lower end of the elastic film 705 can be kept in a vertical state and attached to the side of the guide rail 4, so as to prevent the odor from being emitted outward from the gap between the elastic film 705 and the guide rail 4. When the installation frame 5 needs to move left and right, the water in each hose 20 can be pumped back into the water tank 22 through the cooperation of the peristaltic pump 23, the shunt pipe 24 and the square tube 21, so that the hose 20 is in a flat state. At this time, the hose 20 can adaptively deform with the stretching and contraction of the elastic film 705, so as not to affect the movement of the installation frame 5.
[0035] As shown in Figure 11As shown, the installation frame 5 is connected with the storage tank 25 on the upper front side, the left lower side of the storage tank 25 is connected with the pumping device 26, the feeding port of the pumping device 26 is connected with the storage tank 25 and keeps in communication, the discharging port of the pumping device 26 is connected with the fixed pipe 27 and keeps in communication, the left part of the sliding plate 17 is connected with the spray head 28, and the rear end of the fixed pipe 27 is connected with the top of the spray head 28 and keeps in communication.
[0036] In the initial state, the storage tank 25 is filled with a proper amount of bacteria agent, when it is needed to spray the bacteria agent on the material, the installation frame 5 can be controlled to move left and right along the guide rail 4, and the sliding plate 17 can be controlled to reciprocate forward and backward in the square hole on the installation frame 5, the sliding plate 17 can drive the spray head 28 to move forward and backward, left and right, at the same time, the pumping device 26 can be controlled to pump the bacteria agent in the storage tank 25, and the bacteria agent can be delivered to the spray head 28 through the fixed pipe 27, the spray head 28 can uniformly spray the bacteria agent on the material, without manual operation, time and labor are saved.
[0037] As shown in the drawings, Figure 11 As shown, the installation frame 5 is connected with the storage tank 25 on the upper front side, the left lower side of the storage tank 25 is connected with the pumping device 26, the feeding port of the pumping device 26 is connected with the storage tank 25 and keeps in communication, the discharging port of the pumping device 26 is connected with the fixed pipe 27 and keeps in communication, the left part of the sliding plate 17 is connected with the spray head 28, and the rear end of the fixed pipe 27 is connected with the top of the spray head 28 and keeps in communication. When the fermented material is delivered out of the discharging assembly, the installation frame 5 can drive the fixed rod 29 and the brush plate 30 to move left and right, the brush plate 30 can scrape off the material adhered to the side of the limiting plate 8, and ensure that the fermented material can be completely discharged.
Claims
1. A garden waste fermentation and fertilizer production device, comprising: two fixed frames (1) arranged symmetrically on the left and right sides; a door panel (2) symmetrically rotatably connected to the fixed frames (1); and a latch (3) installed on the side of the door panel (2); characterized in that, It also includes: a guide rail (4), symmetrically laid between two fixed frames (1), and the guide rail (4) has evenly spaced mounting holes (401), one end of the guide rail (4) is connected to a plug rod (402), and the other end of the guide rail (4) has a plug hole (403), and the plug rod (402) can be inserted into the plug hole (403) to splice the two guide rails (4); a mounting frame (5), set on the top of the guide rail (4); an electric wheel (6), symmetrically installed on both sides of the mounting frame (5); a telescopic frame (7), set on the guide rail (4), and the two ends of the telescopic frame (7) are respectively connected to the fixed frame (1) and the mounting frame (5); a limiting plate (8), symmetrically set on the inner side of the guide rail (4); a turning component, set on the mounting frame (5), used to turn over the material placed inside the limiting plate (8); and a discharge component, set on the mounting frame (5), used to transport and discharge the fermented fertilizer.
2. The garden waste fermentation and fertilizer production device according to claim 1, characterized in that, The telescopic frame (7) includes: a slider (701) that is slidably connected to the guide rail (4) at intervals; a first connecting rod (702) that is connected to the leftmost and rightmost sliders (701), and the first connecting rod (702) has a circular hole (703) spaced apart; a second connecting rod (704) that is connected to the remaining sliders (701); and an elastic membrane (705) that is connected between the inner sides of the first connecting rod (702) and the second connecting rod (704).
3. The garden waste fermentation and fertilizer production device according to claim 1, characterized in that, The material turning assembly includes: a first electric slide rail (9), installed on the top of the mounting frame (5); a moving rod (10), connected to the slider of the first electric slide rail (9); a guide tube (11), connected to the moving rod (10), and the guide tube (11) passes through the top of the mounting frame (5); a drive motor (12), installed inside the guide tube (11); and a screw rod (13), connected to the output shaft of the drive motor (12).
4. The garden waste fermentation and fertilizer production device according to claim 3, characterized in that, The discharge assembly includes: a second electric slide rail (14), installed on the side of the moving rod (10); a lifting tube (15), connected to the slider of the second electric slide rail (14), and the lifting tube (15) is slidably connected to the guide tube (11), and a notch (1501) is opened on the lifting tube (15); a screw feeder (16), installed on the lifting tube (15), and the feed inlet of the screw feeder (16) is connected to the lifting tube (15); and a sealing mechanism, set on the mounting frame (5), for sealing the gap between the mounting frame (5) and the lifting tube (15).
5. A garden waste fermentation and fertilizer production device according to claim 4, characterized in that, The sealing mechanism includes: a sliding plate (17) which is slidably connected to the mounting frame (5); a guide ring (18) which is connected to the sliding plate (17), and the lifting pipe (15) is slidably connected to the inner wall of the guide ring (18); and a telescopic baffle (19) which is connected to the sliding plate (17) and the mounting frame (5) at both ends respectively.
6. The garden waste fermentation and fertilizer production device according to claim 1, characterized in that, It also includes: hoses (20), which are symmetrically connected to the inner walls of the elastic membrane (705) and the mounting frame (5); square tubes (21), which are set between the ends of two adjacent hoses (20) and keep them connected; water tank (22), which is connected to the top of the left fixed frame (1); peristaltic pump (23), which is installed on the side of the water tank (22) and keeps it connected; and diverter pipe (24), which is connected to the peristaltic pump (23) and keeps it connected, and the end of the diverter pipe (24) is connected to the end of the leftmost hose (20) and keeps it connected.
7. A garden waste fermentation and fertilizer production device according to claim 5, characterized in that, It also includes: a storage tank (25), connected to the side of the mounting frame (5); a pump (26), installed on the side of the storage tank (25), with the inlet of the pump (26) connected to and in communication with the storage tank (25); a fixed pipe (27), connected to and in communication with the outlet of the pump (26); and a nozzle (28), installed on the sliding plate (17), with the end of the fixed pipe (27) connected to and in communication with the nozzle (28).
8. A garden waste fermentation and fertilizer production device according to claim 1, characterized in that, It also includes: a fixing rod (29), symmetrically connected to the inner wall of the mounting frame (5); a brush plate (30), connected to the bottom of the fixing rod (29), and the brush plate (30) is in contact with the limiting plate (8).