Farmland waste resource processor
By designing a farmland waste resource processing machine with multiple crushing plates and crushing rods, combining mobile filters and lifting boxes, wheels and self-priming pumps, as well as inclined discharge plates and heaters, the problems of low treatment efficiency, serious environmental pollution and serious resource waste in the prior art are solved, and efficient and general agricultural waste treatment effects are achieved.
Patent Information
- Application Number
- CN202422092939.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-28
AI Technical Summary
The existing farmland waste resource processing machines have low treatment efficiency, serious environmental pollution and serious resource waste.
A farmland waste resource treatment machine is designed, and two first motors drive multiple crushing plates on the two rotating rods to extrude, shear and impact crush the agricultural waste, and stir and crush the three second motors and three crushing rods. At the same time, a mobile filter net and a lifting box are arranged in the first frame and the second frame, combining the wheels and a self-priming pump to achieve efficient material treatment and impurity removal, and the discharge and heating are carried out simultaneously through the inclined discharge plate and the heater.
The equipment can adapt to agricultural waste of different types and hardness, expands the treatment range, improves processing efficiency, enhances the versatility and applicability of the equipment, effectively removes impurities, improves the purity and quality of materials, and saves processing time and space.
Smart Images

Figure CN223011465U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of agricultural waste treatment, in particular to a farmland waste resource processor. Background Technique
[0002] The farmland waste resource processor reflects the dual needs of agricultural sustainable development and environmental protection. In the northern region, especially in northern China, the agricultural planting area is vast. Along with the growth and harvest of crops, a large amount of farmland waste is generated, such as straws, stubbles, and other organic materials.
[0003] Due to the problems of low efficiency, serious environmental pollution, resource waste, etc. existing in the traditional treatment methods of farmland waste resource processors, such as incineration or natural composting, therefore, those skilled in the art provide a farmland waste resource processor to solve the problems proposed in the above background technique. Content of the Utility Model
[0004] The purpose of the utility model is to solve the deficiencies existing in the prior art, and a farmland waste resource processor is proposed. By using two first motors to drive multiple crushing and rolling discs on two rotating rods, the agricultural waste is subjected to extrusion, shearing, and impact crushing, which can adapt to different types and hardnesses of agricultural waste, expanding the processing range of the equipment. By using three second motors and three crushing rods, the materials can be efficiently stirred and crushed, adapting to different properties and components of agricultural waste, enhancing the versatility and applicability of the equipment. By setting a lifting box and a filter screen connected to a sliding box through sliders in the first frame and the second frame, the filter screen can move, more effectively removing impurities, improving the purity and quality of the materials. And through the combination of wheels and a self-priming pump, the storage and transfer of liquids are made more flexible and efficient. By setting an inclined discharge plate and arranging multiple heaters horizontally on the lower end face of the discharge plate, discharging and heating are carried out simultaneously, saving processing time and space, and improving the working efficiency of the equipment.
[0005] To achieve the above purpose, the utility model provides the following technical solution: A farmland waste resource processor, including a box body, an observation window is provided at the upper center of the front end face of the box body, a control panel is provided at the lower center of one side of the front end face of the box body, a feed hopper is provided at the center of the upper end face of the box body, a crushing structure is provided at the upper center of the inner part of the box body, a discharge and heating structure is provided inside the box body below the crushing structure, a first frame is provided at the lower center of the inner part of the box body, a second frame is provided at the lower center of the inner part of the first frame, an extrusion structure is provided at the upper center of the inner part of the first frame, a stirring structure is provided at the center of the inner part of the first frame, filter structures are provided below both the extrusion structure and the stirring structure, and a liquid storage structure is provided at the lower center of the inner part of the box body;
[0006] Through the above technical solution, by using two first motors to drive multiple crushing and grinding discs on two rotating rods to perform extrusion, shearing, and impact crushing on agricultural waste, it can adapt to different types and hardnesses of agricultural waste, expanding the processing range of the equipment. By using three second motors and three crushing rods, it can efficiently stir and crush materials, adapt to agricultural waste with different properties and compositions, and enhance the versatility and applicability of the equipment. By setting a lifting box and a filter screen connected to the sliding box through sliders within the first frame and the second frame, the filter screen can move, more effectively removing impurities, improving the purity and quality of the materials. And through the combination of wheels and a self-priming pump, the storage and transfer of liquids are made more flexible and efficient. By setting an inclined discharge plate and arranging multiple heaters horizontally on the lower end surface of the discharge plate, discharging and heating are carried out simultaneously, saving processing time and space and improving the working efficiency of the equipment.
[0007] Further, the crushing structure includes two first motors, two rotating rods, and multiple crushing and grinding discs. The two first motors are arranged at the upper parts on both sides of the rear end surface of the box body. The two rotating rods are arranged at the upper parts on both sides inside the box body. The output ends of the two first motors sequentially penetrate the rear end surface of the box body and lead to the inside of the box body, and the ends are respectively fixedly connected to one end of the two rotating rods. The multiple crushing and grinding discs are respectively arranged in a front-back arrangement on the outer side walls of the two rotating rods;
[0008] Through the above technical solution, when the equipment is started, the two first motors start to operate. The first motors drive the rotating rods to rotate. The rotation of the rotating rods causes the crushing and grinding discs to also rotate at high speed. When the agricultural waste enters the crushing area inside the box body, the two high-speed rotating crushing and grinding discs on both sides cooperate with each other to perform extrusion, shearing, and impact on the waste, thereby crushing the waste into smaller particles, which can adapt to different types and hardnesses of agricultural waste and expand the processing range of the equipment.
[0009] Further, the discharge and heating structure includes two discharge plates and multiple heaters. The two discharge plates are respectively arranged at the upper parts in the centers of the two inner side walls of the box body. The multiple heaters are respectively arranged in a horizontal arrangement on the lower end surfaces of the two discharge plates;
[0010] Through the above technical solution, the crushed agricultural waste falls onto the two discharge plates. The discharge plates are inclined, guiding the waste to move in a specific direction to achieve orderly discharging. During the discharging process, the multiple heaters are started, generating heat and transferring it to the waste located on the discharge plates to perform heating treatment on it. Discharging and heating are carried out simultaneously, saving processing time and space and improving the working efficiency of the entire equipment.
[0011] Further, the extrusion structure includes a plurality of electric telescopic rods and two extrusion plates. The plurality of electric telescopic rods are arranged in sequence front and back at the upper center of the inner side walls of the first frame, and the two extrusion plates are respectively arranged at the positions on both sides of the center inside the first frame at the output ends of the plurality of electric telescopic rods;
[0012] Through the above technical solution, when it is necessary to extrude the material, the plurality of electric telescopic rods are simultaneously started to extend. The output ends of the electric telescopic rods push the extrusion plates connected thereto to move towards the center inside the first frame. The two extrusion plates approach each other, applying pressure to the material between them to achieve the extrusion effect. The material after extrusion treatment is more conducive to subsequent processing and utilization, improving the overall effect of the entire agricultural waste resource utilization.
[0013] Further, the stirring structure includes three second motors and three crushing rods. The three second motors are arranged in sequence front and back at the lower center of one side wall of the box body, and the three crushing rods are arranged in sequence front and back at the center inside the first frame. The output ends of the three second motors sequentially penetrate one side wall of the box body and one side wall of the first frame and extend into the first frame, and the ends are respectively fixedly connected to one ends of the three crushing rods;
[0014] Through the above technical solution, when the stirring operation is started, the three second motors start to operate. The output ends of the motors drive the crushing rods connected thereto to rotate. The crushing rods rotate at a high speed at the center inside the first frame, stirring and crushing the material therein, capable of dealing with agricultural wastes of different properties and compositions, enhancing the versatility and applicability of the equipment.
[0015] Further, the two filtering structures include four sliding boxes, a plurality of sliders, two filter meshes and two lifting boxes. The four sliding boxes are divided into two groups of two each. The two groups of sliding boxes are respectively arranged at the upper center of the inner side walls of the first frame and the lower center of the inner side walls of the second frame. The plurality of sliders are arranged in sequence front and back at the center inside the four sliding boxes. The two lifting boxes are respectively arranged on the upper end surfaces of the sliders at the upper and lower positions. The two filter meshes are respectively arranged at the center inside the two lifting boxes;
[0016] Through the above technical solution, during the filtering process, the material passes through the two filter meshes for filtering. The filter meshes are installed inside the lifting boxes, and the lifting boxes are connected to the sliding boxes through the sliders. The sliders can slide inside the sliding boxes, enabling the lifting boxes and the filter meshes to move inside the first frame and the second frame, effectively removing impurities, improving the purity and quality of the material, and creating better conditions for subsequent processing and utilization.
[0017] Furthermore, the liquid storage structure includes a liquid storage tank, four wheels, a sieve mesh, and a self-priming pump. The liquid storage tank is arranged at the lower center inside the box body. The four wheels are arranged in a rectangular pattern on the lower end face of the liquid storage tank. The sieve mesh is arranged at the center of the upper end face of the liquid storage tank. The self-priming pump is arranged at the center of the lower inner wall of the liquid storage tank;
[0018] Through the above technical solution, during the operation of the equipment, the liquid filtered by the filtering structure flows into the liquid storage tank. The liquid first passes through the sieve mesh for further screening and filtering to remove possible remaining fine impurities. The four wheels below the liquid storage tank facilitate its flexible movement and position adjustment inside the box body. When it is necessary to extract the liquid in the liquid storage tank, the self-priming pump starts to pump out the liquid.
[0019] Furthermore, an interface pipe is fixedly connected to the output end of the self-priming pump;
[0020] Through the above technical solution, it is convenient to quickly and stably connect with external pipelines or equipment, reducing the risk of leakage.
[0021] The utility model has the following beneficial effects:
[0022] 1. In the utility model, in the agricultural waste resource processor, two first motors drive a plurality of crushing and rolling discs on two rotating rods to perform extrusion, shearing, and impact crushing on agricultural waste, which can adapt to different types and hardnesses of agricultural waste, expanding the processing range of the equipment. By using three second motors and three crushing rods, the materials can be efficiently stirred and crushed, adapting to different properties and compositions of agricultural waste, enhancing the versatility and applicability of the equipment.
[0023] 2. In the utility model, by arranging a lifting box and a filter screen connected to a sliding box through sliders in the first frame and the second frame, the filter screen can move, more effectively removing impurities, improving the purity and quality of the materials. And through the combination of the wheels and the self-priming pump, the storage and transfer of the liquid are made more flexible and efficient.
[0024] 3. In the utility model, by arranging an inclined discharge plate and arranging a plurality of heaters horizontally on the lower end face of the discharge plate, discharging and heating are carried out simultaneously, saving processing time and space and improving the working efficiency of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 is a three-dimensional view of an agricultural waste resource processor proposed by the utility model;
[0026] Figure 2 is a three-dimensional view of another perspective of an agricultural waste resource processor proposed by the utility model;
[0027] Figure 3 The front cross-sectional view of a farm waste resource processor proposed by the present utility model;
[0028] Figure 4 The side cross-sectional view of a farm waste resource processor proposed by the present utility model.
[0029] Legend:
[0030] 1. Box body; 2. Observation window; 3. Control panel; 4. Feeding hopper; 5. Crushing structure; 501. First motor; 502. Rotating rod; 503. Crushing and rolling disc; 6. Discharge heating structure; 601. Discharge plate; 602. Heater; 7. Stirring structure; 701. Second motor; 702. Crushing rod; 8. Extrusion structure; 801. Electric telescopic rod; 802. Extrusion plate; 9. Filtering structure; 901. Slide box; 902. Slide block; 903. Filter screen; 904. Lifting box; 10. Liquid storage structure; 1001. Liquid storage tank; 1002. Wheels; 1003. Sifting screen; 1004. Self-priming pump; 11. First frame; 12. Second frame. Specific implementation manners
[0031] 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 creative efforts shall fall within the protection scope of the present utility model.
[0032] Refer to Figures 1-4, an embodiment provided by the present utility model: a farm waste resource processor, including a box body 1, an observation window 2 is provided at the upper center of the front end face of the box body 1, a control panel 3 is provided at the lower center of one side of the front end face of the box body 1, a feeding hopper 4 is provided at the center of the upper end face of the box body 1, a crushing structure 5 is provided at the upper center of the inside of the box body 1, a discharging and heating structure 6 is provided inside the box body 1 below the crushing structure 5, a first frame 11 is provided at the lower center of the inside of the box body 1, a second frame 12 is provided at the lower center of the inside of the first frame 11, an extrusion structure 8 is provided at the upper center of the inside of the first frame 11, a stirring structure 7 is provided at the center of the inside of the first frame 11, filtering structures 9 are provided at the lower ends of the extrusion structure 8 and the stirring structure 7, a liquid storage structure 10 is provided at the lower center of the inside of the box body 1. Agricultural waste is put into the box body 1 through the feeding hopper 4, and first undergoes crushing treatment by the crushing structure 5. The crushed material falls into the discharging and heating structure 6 for heating and preliminary treatment. Then the material enters the first frame 11, and the extrusion structure 8 extrudes the material to squeeze out the liquid in it. The squeezed-out liquid passes through the filtering structure 9 for filtration to remove impurities. Then it is stirred by the stirring structure 7 to make its composition more uniform. The squeezed-out liquid passes through the filtering structure 9 for filtration to remove impurities. Finally, the filtered liquid flows into the liquid storage structure 10 for storage. The operator can observe the internal treatment situation through the observation window 2 and control the operation of the equipment through the control panel 3.
[0033] The crushing structure 5 includes two first motors 501, two rotating rods 502 and a plurality of crushing and rolling discs 503. The two first motors 501 are arranged at the upper sides of both ends of the rear end face of the box body 1. The two rotating rods 502 are arranged at the upper sides of both sides inside the box body 1. The output ends of the two first motors 501 sequentially penetrate through the rear end face of the box body 1 and lead to the inside of the box body 1, and the ends are respectively fixedly connected to one end of the two rotating rods 502. The plurality of crushing and rolling discs 503 are respectively arranged in a front-back arrangement on the outer side walls of the two rotating rods 502. When the equipment is started, the two first motors 501 start to operate. The first motors 501 drive the rotating rods 502 to rotate. The rotation of the rotating rods 502 causes the crushing and rolling discs 503 to rotate at a high speed accordingly. When the agricultural waste enters the crushing area inside the box body 1, the two crushing and rolling discs 503 rotating at a high speed on both sides cooperate with each other to extrude, shear and impact the waste, so as to crush the waste into smaller particles, which can adapt to different types and hardnesses of agricultural waste and expand the processing range of the equipment.
[0034] The discharging and heating structure 6 includes two discharging plates 601 and multiple heaters 602. The two discharging plates 601 are respectively arranged at the upper-middle positions of the two inner side walls of the box body 1. The multiple heaters 602 are respectively arranged horizontally on the lower end faces of the two discharging plates 601. The agricultural waste after crushing treatment falls onto the two discharging plates 601. The discharging plates 601 are inclined, guiding the waste to move in a specific direction to achieve orderly discharging. During the discharging process, the multiple heaters 602 are started, generating heat and transferring it to the waste on the discharging plates 601 to heat-treat it. Discharging and heating are carried out simultaneously, saving processing time and space and improving the working efficiency of the entire equipment.
[0035] The extrusion structure 8 includes multiple electric telescopic rods 801 and two extrusion plates 802. The multiple electric telescopic rods 801 are respectively arranged in the upper-middle positions of the two inner side walls of the first frame 11 in the front-back direction. The two extrusion plates 802 are respectively arranged at the positions near the two sides of the center inside the first frame 11 on the output ends of the multiple electric telescopic rods 801. When extrusion of the material is required, the multiple electric telescopic rods 801 are started and extended simultaneously. The output ends of the electric telescopic rods 801 push the extrusion plates 802 connected thereto to move towards the center inside the first frame 11. The two extrusion plates 802 approach each other, applying pressure to the material between them to achieve the extrusion effect. The material after extrusion treatment is more conducive to subsequent processing and utilization, enhancing the overall effect of the overall utilization of agricultural waste.
[0036] The stirring structure 7 includes three second motors 701 and three crushing rods 702. The three second motors 701 are respectively arranged in the lower-middle position of one side wall of the box body 1 in the front-back direction. The three crushing rods 702 are respectively arranged in the center inside the first frame 11 in the front-back direction. The output ends of the three second motors 701 sequentially penetrate one side wall of the box body 1 and one side wall of the first frame 11 and lead to the inside of the first frame 11, and the end parts are respectively fixedly connected to one end of the three crushing rods 702. When the stirring operation is started, the three second motors 701 start to operate. The output ends of the motors drive the crushing rods 702 connected thereto to rotate. The crushing rods 702 rotate at a high speed in the center inside the first frame 11 to stir and crush the material therein, being able to handle agricultural waste with different properties and compositions, enhancing the versatility and applicability of the equipment.
[0037] The two filtering structures 9 include four sliding boxes 901, multiple sliders 902, two filter meshes 903 and two lifting boxes 904. The four sliding boxes 901 are divided into two groups, with two in each group. The two groups of sliding boxes 901 are respectively arranged at the upper center of the inner side walls of the first frame 11 and the lower center of the inner side walls of the second frame 12. Multiple sliders 902 are respectively arranged in the center of the interiors of the four sliding boxes 901 in a front-back arrangement. The two lifting boxes 904 are respectively arranged on the upper end surfaces of the multiple sliders 902 at the upper and lower positions. The two filter meshes 903 are respectively arranged in the center of the interiors of the two lifting boxes 904. During the filtering process, the material passes through the two filter meshes 903 for filtering. The filter meshes 903 are installed inside the lifting boxes 904, and the lifting boxes 904 are connected to the sliding boxes 901 through the sliders 902. The sliders 902 can slide within the sliding boxes 901, enabling the lifting boxes 904 and the filter meshes 903 to move within the first frame 11 and the second frame 12, effectively removing impurities, improving the purity and quality of the material, and creating better conditions for subsequent processing and utilization.
[0038] The liquid storage structure 10 includes a liquid storage tank 1001, four wheels 1002, a sieve mesh 1003 and a self-priming pump 1004. The liquid storage tank 1001 is arranged at the lower center of the interior of the box body 1. The four wheels 1002 are arranged in a rectangular pattern on the lower end surface of the liquid storage tank 1001. The sieve mesh 1003 is arranged at the center of the upper end surface of the liquid storage tank 1001. The self-priming pump 1004 is arranged at the center of the lower inner wall of the liquid storage tank 1001. During the operation of the equipment, the liquid filtered by the filtering structure 9 flows into the liquid storage tank 1001. The liquid first passes through the sieve mesh 1003 for further screening and filtering to remove possible remaining fine impurities. The four wheels 1002 below the liquid storage tank 1001 facilitate its flexible movement and position adjustment within the box body 1. When it is necessary to extract the liquid in the liquid storage tank 1001, the self-priming pump 1004 is started to pump out the liquid. The output end of the self-priming pump 1004 is fixedly connected with an interface pipe, which facilitates quick and stable connection with external pipelines or equipment and reduces the risk of leakage.
[0039] Working principle: Agricultural waste is put into the box body 1 through the feeding hopper 4. By starting two first motors 501, the first motors 501 start to operate, driving the rotating rod 502 to rotate. The rotation of the rotating rod 502 causes the crushing and rolling disc 503 to rotate at a high speed accordingly. When the agricultural waste enters the crushing area inside the box body 1, the two high-speed rotating crushing and rolling discs 503 on both sides cooperate with each other to squeeze, shear and impact the waste, so as to crush the waste into smaller particles. The agriculturally waste after crushing treatment falls onto two discharge plates 601. The discharge plates 601 are inclined, guiding the waste to move in a specific direction to achieve orderly discharging. During the discharging process, multiple heaters 602 are started to generate heat and transfer it to the waste located on the discharge plates 601 for heat treatment. Then the material enters the first frame 11. Multiple electric telescopic rods 801 are started to extend simultaneously. The output ends of the electric telescopic rods 801 push the extrusion plates 802 connected to them to move towards the center inside the first frame 11. The two extrusion plates 802 approach each other, applying pressure to the material between them to achieve the extrusion effect and squeeze out the liquid in it. The squeezed-out liquid is filtered through the filter screen 903 to remove impurities.
[0040] By starting three second motors 701, the output ends of the motors drive the crushing rods 702 connected to them to rotate. The crushing rods 702 rotate at a high speed at the center inside the first frame 11 to stir and crush the material in it, making its components more uniform. The squeezed-out liquid is filtered through the filter screen 903 to remove impurities. Finally, the filtered liquid flows into the liquid storage tank 1001. The liquid first passes through the sieve mesh 1003 for further screening and filtering to remove possible remaining fine impurities. The four wheels 1002 under the liquid storage tank 1001 facilitate its flexible movement and position adjustment inside the box body 1. When it is necessary to pump out the liquid in the liquid storage tank 1001, the self-priming pump 1004 is started to pump out the liquid. The operator can observe the internal treatment situation through the observation window 2 and control the operation of the equipment through the control panel 3.
[0041] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A farmland waste resource processing machine, comprising a housing (1), characterized in that: An observation window (2) is provided at the upper center of the front end face of the box body (1); a control panel (3) is provided at the lower center of one side of the front end face of the box body (1); a feed hopper (4) is provided at the center of the upper end face of the box body (1); a crushing structure (5) is provided at the upper center of the box body (1); a discharge heating structure (6) is provided inside the box body (1) at the lower end of the crushing structure (5); a first frame (11) is provided at the lower center of the box body (1); a second frame (12) is provided at the lower center of the first frame (11); an extrusion structure (8) is provided at the upper center of the first frame (11); a stirring structure (7) is provided at the center of the first frame (11); filtering structures (9) are provided at the lower ends of the extrusion structure (8) and the stirring structure (7); and a liquid storage structure (10) is provided at the lower center of the box body (1).
2. The farmland waste resource processing machine according to claim 1, characterized in that: The crushing structure (5) comprises two first motors (501), two rotating rods (502) and a plurality of crushing and grinding discs (503); the two first motors (501) are arranged at the upper sides of the rear end surface of the casing (1); the two rotating rods (502) are arranged at the upper sides of the interior of the casing (1); the output ends of the two first motors (501) sequentially pass through the rear end surface of the casing (1) to the interior of the casing (1), and the ends are respectively fixedly connected to one end of the two rotating rods (502); and the plurality of crushing and grinding discs (503) are respectively arranged front and back on the outer side walls of the two rotating rods (502).
3. The farmland waste resource processing machine according to claim 1, characterized in that: The discharge heating structure (6) comprises two discharge plates (601) and a plurality of heaters (602), wherein the two discharge plates (601) are respectively arranged at the upper center of the two inner side walls of the box body (1), and the plurality of heaters (602) are respectively arranged transversely on the lower end surfaces of the two discharge plates (601).
4. The farmland waste resource processing machine according to claim 1, characterized in that: The extrusion structure (8) comprises a plurality of electric telescopic rods (801) and two extrusion plates (802); the plurality of electric telescopic rods (801) are arranged front and back at the upper center of the two inner side walls of the first frame (11); and the two extrusion plates (802) are arranged at the output ends of the plurality of electric telescopic rods (801) at the inner center of the first frame (11) and at both sides.
5. The farmland waste resource processing machine according to claim 1, characterized in that: The stirring structure (7) comprises three second motors (701) and three crushing rods (702); the three second motors (701) are arranged front to back at the lower center of a side wall of the box body (1); the three crushing rods (702) are arranged front to back at the center of the inside of the first frame (11); the output ends of the three second motors (701) sequentially penetrate the side wall of the box body (1) and the side wall of the first frame (11) to the inside of the first frame (11), and the ends are fixedly connected to one end of the three crushing rods (702).
6. The farmland waste resource processing machine according to claim 1, characterized in that: The two filtering structures (9) include four sliding boxes (901), a plurality of sliders (902), two filter screens (903) and two lifting boxes (904). The four sliding boxes (901) are grouped in pairs. The two groups of sliding boxes (901) are respectively arranged at the upper center of the two inner side walls of the first frame (11) and at the lower center of the two inner side walls of the second frame (12). The plurality of sliders (902) are respectively arranged in a front-to-back arrangement at the inner center of the four sliding boxes (901). The two lifting boxes (904) are respectively arranged on the upper end surfaces of the plurality of sliders (902) at the upper and lower positions. The two filter screens (903) are respectively arranged at the inner center of the two lifting boxes (904).
7. The farmland waste resource processing machine according to claim 1, characterized in that: The liquid storage structure (10) comprises a liquid storage tank (1001), four wheels (1002), a screen (1003) and a self-priming pump (1004); the liquid storage tank (1001) is arranged at the lower center of the box body (1); the four wheels (1002) are arranged in a rectangular shape on the lower end surface of the liquid storage tank (1001); the screen (1003) is arranged at the center of the upper end surface of the liquid storage tank (1001); and the self-priming pump (1004) is arranged at the center of the lower inner wall of the liquid storage tank (1001).
8. The farmland waste resource processing machine according to claim 7, characterized in that: The output end of the self-priming pump (1004) is fixedly connected with an interface pipe.