Organic garbage regeneration system
By designing an organic waste regeneration system, solid-liquid separation is achieved using lifting parts, extrusion parts and liquid discharge parts, the problem of low recycling rate of kitchen waste and feed waste is solved, and the practicality and efficiency of waste disposal is improved.
Patent Information
- Application Number
- CN202421957820.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-13
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-08-13
AI Technical Summary
The existing technology cannot effectively deal with kitchen waste and feed waste, resulting in low recycling rate, single function, high transportation costs, difficulty in picking up, and serious land occupation problems.
Design an organic waste regeneration system, including a treatment box, recycling bin, separation mechanism and recycling mechanism, and realize solid-liquid separation through lifting parts, extrusion parts and liquid discharge parts, and use motors and electric push rods to separate, extrude and crush garbage, so as to achieve separation and regeneration of solids and liquids.
It realizes the separation and recycling of solid and liquid waste, improves the utilization rate of garbage, reduces transportation costs, solves the land occupation problem, and improves the practicality of garbage disposal.
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Figure CN223043301U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of organic waste regeneration, and particularly relates to an organic waste regeneration system. Background Art
[0002] The kitchen waste and feed waste collected from cities and farms have gradually filled the landfill piles in each city. The recycling of waste can reduce the use of land, which is also an urgent problem to be solved at present.
[0003] For example, a municipal domestic waste treatment system is disclosed in the Chinese utility model patent publication number (CN202290714U). The municipal domestic waste treatment system includes a waste treatment center located in the suburbs of the city, a plurality of waste treatment single machines distributed in the concentrated waste generation areas, and a plurality of waste treatment stations located in communities. At least one waste treatment single machine is also arranged in the waste treatment station. This utility model solves the problems that the existing method still adopts the way of first concentrating the waste of a city in a cleaning building and then transporting it to the waste treatment center by a garbage truck for treatment, but in this way, a large amount of waste needs to be transported, and the transportation cost is very high; in addition, it is very difficult to sort the waste when a large amount of waste is concentrated together. However, the existing technology solves the problems of waste treatment distribution and land occupation, but lacks the treatment of existing kitchen waste and feed waste, cannot recycle the waste, has low utilization rate, single function, and affects the practicability. Content of the Utility Model
[0004] Aiming at the deficiencies of the prior art, the utility model provides an organic waste regeneration system, which has the advantages of being able to treat kitchen waste and feed waste, etc., and solves the problems that the existing technology solves the problems of waste treatment distribution and land occupation, but lacks the treatment of existing kitchen waste and feed waste, cannot recycle the waste, has low utilization rate, single function, and affects the practicability.
[0005] To achieve the above object, the utility model provides the following technical solution: an organic waste regeneration system, including a treatment tank, a recycling tank is fixed on the right side of the treatment tank, a feed pipe is communicated on the left side of the treatment tank, a separation mechanism for solid-liquid separation of organic waste is arranged on the treatment tank, and a recycling mechanism for crushing and recycling the separated organic waste is arranged on the recycling tank;
[0006] The separation mechanism includes two lifting parts, an extrusion part, and a liquid discharging part. Both of the two lifting parts are arranged on the treatment tank and are symmetrically distributed about the central axis of the treatment tank, and are used for fishing out the solid waste in the organic waste. The extrusion part is arranged on the treatment tank and is used for extruding the fished-out solid waste. The liquid discharging part is arranged on the treatment tank and is used for discharging the separated liquid out of the treatment tank.
[0007] The beneficial effects of adopting the above further solution are as follows: the solid waste and liquid waste in the garbage can be separated and recycled respectively, enabling the garbage to be fully utilized.
[0008] Further, the lifting member includes a mounting frame, a first motor, a first rotating rod, a winding roller, two limiting rings, a traction rope, a filter plate, and a limiting plate. The mounting frame is fixed to the upper surface of the treatment tank. One end of the first rotating rod is fixed to the output shaft of the first motor, and the other end of the first rotating rod is rotatably connected to the right inner wall of the mounting frame through a bearing. The winding roller is fixed to the outer side of the first rotating rod. The two limiting rings are fixed to the outer side of the winding roller and are symmetrically distributed about the central axis of the limiting ring. The traction rope is wound around the outer side of the winding roller, and one end is fixed to the winding roller. The other end of the traction rope penetrates and extends into the interior of the treatment tank and is fixed to the filter plate. The limiting plate is fixed to the left inner wall of the treatment tank.
[0009] The beneficial effects of adopting the above further solution are as follows: the liquid waste and solid waste in the organic garbage can be initially separated.
[0010] Further, the extrusion member includes a first electric push rod, a first connecting rod, and a pressing plate. The first electric push rod is fixed to the upper surface of the treatment tank. One end of the first connecting rod is fixed to the output shaft of the first electric push rod, and the other end of the first connecting rod is fixed to the upper surface of the pressing plate.
[0011] The beneficial effects of adopting the above further solution are as follows: the liquid in the solid waste is completely extruded to facilitate the recycling of the solid waste.
[0012] Further, the liquid discharging member includes a liquid discharging pipe and a liquid discharging valve. One end of the liquid discharging pipe is communicated with the left side of the treatment tank, and the liquid discharging valve is communicated with the outer side of the liquid discharging pipe.
[0013] The beneficial effects of adopting the above further solution are as follows: the liquid waste can be collected together for unified recycling.
[0014] Further, the recycling mechanism includes a pushing member, a crushing member, and a discharging member. The pushing member is arranged on the treatment tank, the crushing member is arranged on the recycling tank, and the discharging member is arranged on the recycling tank.
[0015] The beneficial effects of adopting the above further solution are as follows: the solid waste is quickly crushed, improving the utilization rate of the solid waste.
[0016] Further, the pushing member includes a second electric push rod, a second connecting rod, and a pushing plate. The second electric push rod is fixed to the left side of the treatment tank. One end of the second connecting rod is fixed to the output shaft of the second electric push rod, and the other end of the second connecting rod is fixed to the pushing plate. Communication ports are provided on both the right side of the treatment tank and the left side of the recycling tank.
[0017] The beneficial effect of adopting the above further solution is that it is convenient to transfer the solid waste after solid-liquid separation from the treatment box to the recycling box.
[0018] Further, the crushing member includes a second motor, a second rotating rod, a plurality of connecting blocks, and a plurality of crushing blades. The second motor is fixed to the upper surface of the recycling box. One end of the second rotating rod is fixed to the second motor. A plurality of the connecting blocks are all fixed to the outer side of the second rotating rod and are equally spaced. A plurality of the crushing blades are respectively fixed to the outer sides of each connecting block.
[0019] The beneficial effect of adopting the above further solution is that the solid waste is fully crushed.
[0020] Further, the discharging member includes a material passing pipe, a material passing valve, a discharging pipe, a third motor, a third rotating rod, and rotating blades. One end of the material passing pipe is communicated with the bottom end of the recycling box. The other end of the material passing pipe is communicated with the outer side of the discharging pipe. The material passing valve is communicated with the outer side of the material passing pipe. The third motor is fixed to the discharging pipe. One end of the third rotating rod is fixed to the output shaft of the third motor. The rotating blades are fixed to the outer side of the third rotating rod.
[0021] The beneficial effect of adopting the above further solution is that the crushed solid waste can be discharged from the recycling box to avoid blockage.
[0022] Compared with the prior art, the technical solution of the present application has the following beneficial effects:
[0023] 1. For this organic waste regeneration system, through the cooperation of the first motor, the first rotating rod and the winding roller can be driven to rotate, so as to wind and lower the traction rope, so as to drive the filter plate to move. Through the cooperation of the filter plate, the solid waste can be filtered out, so that the organic waste can be solid-liquid separated. Through the cooperation of the first electric push rod, the pressing plate can be driven to move, so as to squeeze the solid waste on the filter plate, so that the liquid in the solid waste can be completely discharged.
[0024] 2. For this organic waste regeneration system, through the cooperation of the second electric push rod, the second connecting rod and the pushing plate can be driven to move, so as to push the solid waste after solid-liquid separation into the recycling box for recycling. Through the cooperation of the second motor, the second rotating rod and the connecting blocks can be driven to rotate, so that the crushing blades can crush the solid waste, which is convenient for recycling. Through the cooperation of the third motor, the third rotating rod and the rotating blades can be driven to rotate, so as to export the treated waste. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 It is a schematic structural diagram of the present utility model;
[0026] Figure 2 Schematic diagram of the separation mechanism of the present utility model;
[0027] Figure 3 Schematic diagram of the recycling mechanism of the present utility model.
[0028] In the figure: 1, processing box; 2, recycling box; 3, feed pipe; 4, separation mechanism; 41, lifting member; 411, mounting bracket; 412, first motor; 413, first rotating rod; 414, winding roller; 415, limiting ring; 416, traction rope; 417, filter plate; 418, limiting plate; 42, squeezing member; 421, first electric push rod; 422, first connecting rod; 423, pressing plate; 43, liquid discharging member; 431, liquid discharge pipe; 432, liquid discharge valve; 5, recycling mechanism; 51, material pushing member; 511, second electric push rod; 512, second connecting rod; 513, push plate; 514, communication port; 52, crushing member; 521, second motor; 522, second rotating rod; 523, connecting block; 524, crushing blades; 53, discharging member; 531, material passing pipe; 532, material passing valve; 533, discharging pipe; 534, third motor; 535, third rotating rod; 536, rotating blades. Specific embodiments
[0029] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.
[0030] Please refer to Figure 1 , an organic waste recycling system in this embodiment includes a processing box 1. A recycling box 2 is fixed on the right side of the processing box 1. A feed pipe 3 is connected to the left side of the processing box 1. The collected garbage can be introduced into the processing box 1 through the feed pipe 3. A separation mechanism 4 for solid-liquid separation of organic waste is provided on the processing box 1, so that the solid waste and liquid waste in the garbage can be separated and recycled respectively, enabling the garbage to be fully utilized. A recycling mechanism 5 for crushing and recycling the separated organic waste is provided on the recycling box 2, which quickly crushes the solid waste and improves the utilization rate of the solid waste.
[0031] Please refer to Figure 2, in order to separate solid waste and liquid waste in the garbage and recycle them separately, so that the garbage can be fully utilized, the separation mechanism 4 in this embodiment includes two lifting members 41, a squeezing member 42, and a liquid discharging member 43. The two lifting members 41 are both arranged on the processing tank 1 and are symmetrically distributed about the central axis of the processing tank 1, and are used to fish out the solid waste in the organic waste, so that the liquid waste and solid waste in the organic waste can be initially separated. The squeezing member 42 is arranged on the processing tank 1 and is used to squeeze the fished-out solid waste to completely squeeze out the liquid in the solid waste for the recycling of the solid waste. The liquid discharging member 43 is arranged on the processing tank 1 and is used to discharge the separated liquid from the processing tank 1, so that the liquid waste can be collected together for unified recycling.
[0032] In this embodiment, the lifting member 41 includes a mounting frame 411, a first motor 412, a first rotating rod 413, a winding roller 414, two limiting rings 415, a traction rope 416, a filter plate 417, and a limiting plate 418. The mounting frame 411 is fixed to the upper surface of the processing tank 1. The shape of the mounting frame 411 is C-shaped and the opening faces upward. One end of the first rotating rod 413 is fixed to the output shaft of the first motor 412, and the output shaft of the first motor 412 drives the first rotating rod 413 to rotate. The other end of the first rotating rod 413 is rotatably connected to the right inner wall of the mounting frame 411 through a bearing. The winding roller 414 is fixed to the outside of the first rotating rod 413, and the first rotating rod 413 drives the winding roller 414 to rotate. The two limiting rings 415 are fixed to the outside of the winding roller 414 and are symmetrically distributed about the central axis of the limiting ring 415. The traction rope 416 is wound around the outside of the winding roller 414, and one end is fixed to the winding roller 414. The other end of the traction rope 416 penetrates and extends into the interior of the processing tank 1 and is fixed to the filter plate 417. The winding roller 414 winds up the traction rope 416, thereby driving the filter plate 417 to move. The filter plate 417 fishes up the solid waste in the garbage, and the liquid is filtered out. The limiting plate 418 is fixed to the left inner wall of the processing tank 1. The squeezing member 42 includes a first electric push rod 421, a first connecting rod 422, and a pressing plate 423. The first electric push rod 421 is fixed to the upper surface of the processing tank 1. One end of the first connecting rod 422 is fixed to the output shaft of the first electric push rod 421, and the output shaft of the first electric push rod 421 drives the first connecting rod 422 to move. The other end of the first connecting rod 422 is fixed to the upper surface of the pressing plate 423, and the first connecting rod 422 drives the pressing plate 423 to move to squeeze the garbage on the filter plate 417, so that the liquid existing in the garbage is completely squeezed out. The liquid discharging member 43 includes a liquid discharge pipe 431 and a liquid discharge valve 432. One end of the liquid discharge pipe 431 is communicated with the left side of the processing tank 1, and the liquid discharge valve 432 is communicated with the outside of the liquid discharge pipe 431. When the liquid discharge valve 432 is opened, the liquid garbage is discharged from the liquid discharge pipe 431 and can be recycled and processed into products such as natural gas.
[0033] Please refer to Figure 3 , in order to quickly crush solid waste and improve the utilization rate of solid waste, the recycling mechanism 5 in this embodiment includes a pusher 51, a crusher 52, and a discharge member 53. The pusher 51 is arranged on the treatment tank 1 to facilitate the transfer of the solid waste after solid-liquid separation from the treatment tank 1 into the recycling bin 2. The crusher 52 is arranged on the recycling bin 2 to fully crush the solid waste. The discharge member 53 is arranged on the recycling bin 2 to allow the crushed solid waste to pass out of the recycling bin 2 to avoid blockage.
[0034] In this embodiment, the pusher 51 includes a second electric push rod 511, a second connecting rod 512, and a push plate 513. The second electric push rod 511 is fixed to the left side of the treatment tank 1. One end of the second connecting rod 512 is fixed to the output shaft of the second electric push rod 511. The output shaft of the second electric push rod 511 drives the second connecting rod 512 to move. The other end of the second connecting rod 512 is fixed to the push plate 513. The second connecting rod 512 drives the push plate 513 to move. Communication ports 514 are provided on both the right side of the treatment tank 1 and the left side of the recycling bin 2. The push plate 513 pushes the solid waste on the filter plate 417 to the communication port 514, enabling the waste to enter the recycling bin 2. The inner bottom wall of the communication port 514 and the lower surface of the limiting plate 418 are at the same horizontal position. The crusher 52 includes a second motor 521, a second rotating rod 522, a plurality of connecting blocks 523, and a plurality of crushing blades 524. The second motor 521 is fixed to the upper surface of the recycling bin 2. One end of the second rotating rod 522 is fixed to the second motor 521. The output shaft of the second motor 521 drives the second rotating rod 522 to rotate. A plurality of connecting blocks 523 are all fixed to the outer side of the second rotating rod 522 and are equidistantly distributed. The second rotating rod 522 drives the connecting blocks 523 to rotate. A plurality of crushing blades 524 are respectively fixed to the outer side of each connecting block 523. The connecting blocks 523 drive the crushing blades 524 to rotate, completely crushing the waste inside the recycling bin 2 for recycling as products such as fertilizers. The discharge member 53 includes a material passing pipe 531, a material passing valve 532, a discharge pipe 533, a third motor 534, a third rotating rod 535, and a rotating blade 536. One end of the material passing pipe 531 is communicated with the bottom end of the recycling bin 2, and the other end of the material passing pipe 531 is communicated with the outer side of the discharge pipe 533. The material passing valve 532 is communicated with the outer side of the material passing pipe 531. After crushing is completed, the material passing valve 532 is opened, and the crushed waste enters the discharge pipe 533 through the material passing pipe 531. The third motor 534 is fixed to the discharge pipe 533. One end of the third rotating rod 535 is fixed to the output shaft of the third motor 534. The output shaft of the third motor 534 drives the third rotating rod 535 to rotate. The rotating blade 536 is fixed to the outer side of the third rotating rod 535. The third rotating rod 535 drives the rotating blade 536 to rotate, thereby discharging the waste in the discharge pipe 533.
[0035] The working principle of the above embodiment is as follows:
[0036] (1) First, pour the collected kitchen waste and feed waste into the feeding pipe 3. The waste enters the treatment tank 1. After pouring out the waste, turn on the first motor 412. The output shaft of the first motor 412 drives the first rotating rod 413 to rotate. The first rotating rod 413 drives the winding roller 414 to rotate. The winding roller 414 winds up the traction rope 416, thereby driving the filter plate 417 to move. The filter plate 417 scoops up the solid waste in the waste, and the liquid is filtered out. At this time, turn on the first electric push rod 421. The output shaft of the first electric push rod 421 drives the first connecting rod 422 to move. The first connecting rod 422 drives the pressing plate 423 to move, squeezing the waste on the filter plate 417 so that the liquid existing in the waste is completely squeezed out. Open the drain valve 432, and the liquid waste is discharged from the drain pipe 431 and can be recycled into products such as natural gas.
[0037] (2) After the solid-liquid separation is completed, turn on the second electric push rod 511. The output shaft of the second electric push rod 511 drives the second connecting rod 512 to move. The second connecting rod 512 drives the push plate 513 to move. The push plate 513 pushes the solid waste on the filter plate 417 to the communication port 514, so that the waste enters the recycling box 2. Turn on the second motor 521. The output shaft of the second motor 521 drives the second rotating rod 522 to rotate. The second rotating rod 522 drives the connecting block 523 to rotate. The connecting block 523 drives the crushing blades 524 to rotate, so that the waste inside the recycling box 2 is completely crushed for recycling as products such as fertilizers. After the crushing is completed, open the material passing valve 532. The crushed waste enters the discharge pipe 533 through the material passing pipe 531. Turn on the third motor 534. The output shaft of the third motor 534 drives the third rotating rod 535 to rotate. The third rotating rod 535 drives the rotating blades 536 to rotate, thereby discharging the waste in the discharge pipe 533.
Claims
1. An organic waste regeneration system, comprising a processing box (1), characterized in that: A recovery box (2) is fixed to the right side of the processing box (1), a feed pipe (3) is connected to the left side of the processing box (1), a separation mechanism (4) for performing solid-liquid separation on the organic waste is provided on the processing box (1), and a recovery mechanism (5) for crushing and recovering the separated organic waste is provided on the recovery box (2); The separation mechanism (4) comprises two lifting members (41), an extrusion member (42), and a liquid discharge member (43); the two lifting members (41) are both arranged on the processing box (1) and are symmetrically distributed about the central axis of the processing box (1) and are used to remove solid waste from organic waste; the extrusion member (42) is arranged on the processing box (1) and is used to squeeze the removed solid waste; and the liquid discharge member (43) is arranged on the processing box (1) and is used to discharge separated liquid out of the processing box (1).
2. The organic waste recycling system according to claim 1, characterized in that: The lifting member (41) comprises a mounting frame (411), a first motor (412), a first rotating rod (413), a winding roller (414), two limiting rings (415), a traction rope (416), a filter plate (417), and a limiting plate (418); the mounting frame (411) is fixed to the upper surface of the processing box (1); one end of the first rotating rod (413) is fixed to the output shaft of the first motor (412); the other end of the first rotating rod (413) is rotatably connected to the right inner wall of the mounting frame (411) via a bearing; The winding roller (414) is fixed to the outer side of the first rotating rod (413); the two limiting rings (415) are fixed to the outer side of the winding roller (414) and are symmetrically distributed with respect to the central axis of the limiting rings (415); the traction rope (416) is wound around the outer side of the winding roller (414) and one end is fixed to the winding roller (414); the other end of the traction rope (416) passes through and extends to the interior of the processing box (1) and is fixed to the filter plate (417); the limiting plate (418) is fixed to the left inner wall of the processing box (1).
3. The organic waste recycling system according to claim 1, characterized in that: The extrusion member (42) comprises a first electric push rod (421), a first connecting rod (422), and a pressing plate (423); the first electric push rod (421) is fixed to the upper surface of the processing box (1); one end of the first connecting rod (422) is fixed to the output shaft of the first electric push rod (421); and the other end of the first connecting rod (422) is fixed to the upper surface of the pressing plate (423).
4. The organic waste recycling system according to claim 1, characterized in that: The liquid discharge member (43) comprises a liquid discharge pipe (431) and a liquid discharge valve (432); one end of the liquid discharge pipe (431) is in communication with the left side of the processing box (1); and the liquid discharge valve (432) is in communication with the outside of the liquid discharge pipe (431).
5. The organic waste recycling system according to claim 1, characterized in that: The recycling mechanism (5) comprises a pushing member (51), a crushing member (52), and a discharging member (53); the pushing member (51) is arranged on the processing box (1), the crushing member (52) is arranged on the recycling box (2), and the discharging member (53) is arranged on the recycling box (2).
6. The organic waste recycling system according to claim 5, characterized in that: The pusher (51) comprises a second electric push rod (511), a second connecting rod (512), and a push plate (513); the second electric push rod (511) is fixed to the left side of the processing box (1); one end of the second connecting rod (512) is fixed to the output shaft of the second electric push rod (511); the other end of the second connecting rod (512) is fixed to the push plate (513); and a connecting port (514) is provided on the right side of the processing box (1) and the left side of the recovery box (2).
7. The organic waste recycling system according to claim 5, characterized in that: The crushing member (52) comprises a second motor (521), a second rotating rod (522), a plurality of connecting blocks (523), and a plurality of crushing blades (524); the second motor (521) is fixed to the upper surface of the recovery box (2); one end of the second rotating rod (522) is fixed to the second motor (521); the plurality of connecting blocks (523) are all fixed to the outer side of the second rotating rod (522) and are equidistantly distributed; and the plurality of crushing blades (524) are respectively fixed to the outer side of each connecting block (523).
8. The organic waste recycling system according to claim 5, characterized in that: The discharge member (53) comprises a feed pipe (531), a feed valve (532), a discharge pipe (533), a third motor (534), a third rotating rod (535), and a rotating blade (536); one end of the feed pipe (531) is in communication with the bottom end of the recovery box (2); the other end of the feed pipe (531) is in communication with the outside of the discharge pipe (533); the feed valve (532) is in communication with the outside of the feed pipe (531); the third motor (534) is fixed to the discharge pipe (533); one end of the third rotating rod (535) is fixed to the output shaft of the third motor (534); and the rotating blade (536) is fixed to the outside of the third rotating rod (535).
Citation Information
Patent Citations
System for treating municipal solid waste
CN202290714U