Waste biomass harmless treatment system based on traditional Chinese medicine processing technology

By combining components such as a flipping motor and a dispersing motor, the problem of uneven mixing in the harmless composting of biomass waste from traditional Chinese medicine processing was solved, achieving uniform mixing of waste and uniformity of composting location, thus improving processing efficiency and effectiveness.

CN121471002APending Publication Date: 2026-02-06YUNNAN LUHUA ENVIRONMENTAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202511894054.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-16
Publication Date
2026-02-06

AI Technical Summary

Technical Problem

In the harmless composting treatment of waste biomass generated during the processing of traditional Chinese medicine, uneven temperature is caused by different positions of the mixed materials, and the fixed position of the replenishing materials affects the composting speed and efficiency.

Method used

The mixing component, which uses a rotating motor to drive the rotating treatment tank and the opposing stirring motor, together with a dispersing motor and a guide auger, achieves uniform mixing of waste materials; the multi-hole dispersing frame is driven by a dispersing motor and a belt drive box, combined with a liquid injection pump and an exhaust fan, to adjust the composting position and temperature; the crushing and dewatering component uses a crushing motor and a fixed electromagnet to achieve crushing and dewatering of waste materials.

Benefits of technology

It achieves uniform mixing of waste and uniformity of composting location, improves composting efficiency and harmless treatment effect, ensures the crushing and dehydration effect of waste, and improves treatment efficiency.

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Abstract

The invention discloses a waste biomass harmless treatment system based on a traditional Chinese medicine processing technology, and relates to the technical field of waste treatment, one end of a supporting operation frame is provided with an overturning motor through a motor base, an output shaft of the overturning motor is connected with an overturning treatment barrel in a clamped mode, and the two ends of the overturning treatment barrel are each provided with a stirring motor through a motor base; a discharging treatment pipe is connected to the middle of the side end of the overturning treatment barrel in a penetrating mode, a separate mixing treatment box is connected to the bottom end of the supporting operation frame in a clamped mode, a downward feeding treatment hopper is installed at the bottom end of the inner side of the supporting operation frame, a porous discharging box is connected to the inner side of the separate mixing treatment box in a clamped mode, and a guiding auger is rotationally connected to the inner side of the porous discharging box; through multi-section stirring and mixing, uniform material laying and multi-group matched material pushing during composting, the position of the internal composting material is turned, cut and adjusted, and through position switching treatment, the uniformity of multi-position composting is ensured, and the pollution-free treatment effect is improved.
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Description

Technical Field

[0001] This invention relates to the field of waste treatment technology, specifically to a waste biomass harmless treatment system based on traditional Chinese medicine processing technology. Background Technology

[0002] Traditional Chinese medicine processing refers to a traditional pharmaceutical technique that involves processing Chinese medicinal materials in various ways according to the theories of traditional Chinese medicine, the needs of syndrome differentiation and treatment, the properties of the medicines themselves, and the different requirements of dispensing and preparation. The waste biomass generated after processing Chinese medicinal materials is diverse and constitutes an important part of the solid waste of the Chinese medicine industry. It is mainly divided into waste generated from screening, waste generated during the cutting process, waste generated during the processing process, and waste generated during the production of prepared Chinese medicines.

[0003] However, when performing harmless composting of waste, the temperature of the compost mixture varies due to its different locations, and the location of the replenishing materials is fixed. This results in uneven composting speed during continuous composting, affecting the actual harmless treatment effect and efficiency. Summary of the Invention

[0004] This invention provides a waste biomass harmless treatment system based on traditional Chinese medicine processing technology. It can effectively solve the problem mentioned in the background art that when harmlessly composting waste, the temperature of the compost mixture varies due to different locations, and the location of the replenishing material is fixed, resulting in uneven composting speed during continuous composting, which affects the actual harmless treatment effect and efficiency.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a waste biomass harmless treatment system based on traditional Chinese medicine processing technology, including a support frame, wherein a mixing component is provided on the side of the support frame; The mixing component includes a flipping motor; One end of the support frame is equipped with a tilting motor via a motor mount, and the output shaft of the tilting motor is engaged with a tilting processing bucket. Both ends of the tilting processing tank are equipped with opposing stirring motors via motor mounts, and the output shafts of the opposing stirring motors are snapped into opposing stirring and mixing frames. A discharge pipe is connected through the middle of the side end of the tilting processing barrel; The bottom end of the support operation frame is snapped with a mixing and processing box, and the bottom inner side of the support operation frame is equipped with a bottom feeding hopper; The mixing and processing box is fitted with a perforated discharge box inside, and a guide auger is rotatably connected to the inside of the perforated discharge box. A dispersing motor is installed at one end of the mixing and processing box, corresponding to the position of the guide auger, via a motor mount. The mixing and processing box is symmetrically and equidistantly connected to lifting hydraulic cylinders on its side ends, and a pressing and limiting frame is installed on the top of the multiple lifting hydraulic cylinders.

[0006] According to the above technical solution, the flipping processing bucket is rotatably installed inside the support operation frame, and the two mixing frames are rotatably fitted together.

[0007] According to the above technical solution, the bottom end of the feeding hopper is placed inside the porous discharge box, and the output shaft of the dispersing motor is engaged with one end of the guide auger.

[0008] According to the above technical solution, a number of belt drive boxes are equidistantly clamped to the top of the pressing and limiting frame, and a stirring motor is installed at the top of the pressing and limiting frame corresponding to the input shaft position of the belt drive box through a motor mount. The output shaft of the belt drive box is snapped with a multi-hole agitator, and a liquid injection operation tube is sleeved on the side end of the multi-hole agitator. One end of the mixing and processing box is equipped with a guide motor via a motor mount, and the output shaft of the guide motor is engaged with a guide screw. A guide tilting frame is mounted on the side end of the guide screw via a screw seat; The top of the mixing and processing box is equidistantly connected with several exhaust pipes, and an exhaust fan is installed inside the exhaust pipes. An isolation mesh plate is installed at the top inner side of the exhaust pipe; One end of the support frame is equipped with a water storage box, and a betting fixing pipe is connected through one side of the top of the water storage box. A liquid injection pump is installed at one end of the water storage tank, corresponding to the position of the liquid injection operation pipe, via a motor mount. A processing valve is embedded at one end of the discharge processing pipe, the liquid injection operation pipe, and the betting fixing pipe.

[0009] According to the above technical solution, the porous mixing rack is rotatably installed inside the mixing and processing tank, and one end of the liquid injection operation pipe is installed through the inside of the water storage tank.

[0010] According to the above technical solution, one end of the injection operation tube is connected to one end of the injection pump via an adapter; The input terminals of the flipping motor, the stirring motor, the dispersing motor, the lifting hydraulic cylinder, the separating stirring motor, the guide motor, the exhaust fan, the injection pump, and the processing valve are all electrically connected to the output terminal of the external controller. The input terminal of the external controller is electrically connected to the output terminal of the external power supply.

[0011] According to the above technical solution, a crushing and detaching component is provided on the side end of the support operation frame; The fragmentation assembly includes a separation and fixing box; The top of the support frame is equipped with a separation and fixing box, and the two ends of the separation and fixing box are symmetrically equipped with inlet and outlet hydraulic cylinders. One end of each of the two inlet and outlet hydraulic cylinders is equipped with a compression processing plate, and one end of the compression processing plate is connected to a drain operation pipe. A filter screen is embedded inside the draining operation pipe; One end of the support operating frame is snapped with a processing electric push rod, and a processing lifting plate is installed at the top of the processing electric push rod. The top of the lifting plate is fitted with a lifting elastic tube. The top of the separation and fixing box is equidistantly clamped with several crushing and processing barrels, and the two ends of the separation and fixing box are symmetrically installed with opening and closing electric push rods; One end of the opening and closing electric actuator is equipped with an opening and closing limiting plate, and the top of the crushing and processing barrel is symmetrically connected with a feeding operation pipe. A crushing motor is mounted on the top center of the crushing barrel via a motor mount, and a crushing and cutting frame is mounted on the output shaft of the crushing motor. According to the above technical solution, the extrusion plate is slidably installed inside the separation fixing box, and one end of the drain operation pipe is installed through the top of the water storage fixing box.

[0012] According to the above technical solution, a processing scraper is rotatably connected to the inner side of the crushing and processing barrel, and a fixed electromagnet is sleeved on the inner side of the processing scraper. A fixed valve is embedded at one end of the draining operation pipe, the lifting elastic pipe and the feeding operation pipe. The processing lifting plate is slidably installed on the side of the support operation frame, and the opening and closing limiting plate is slidably combined with the crushing and processing barrel.

[0013] According to the above technical solution, the side end of the fixed electromagnet is attached to the side end of the crushing and cutting frame; The input terminals of the inlet / outlet hydraulic cylinder, the processing electric push rod, the opening / closing electric push rod, the crushing motor, the fixed electromagnet, and the fixed valve are all electrically connected to the output terminal of the external controller.

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. Equipped with a mixing component, the tilting motor drives the tilting processing tank to tilt back and forth, which in turn drives the opposing stirring mixing frame to rotate. The two sets of opposing stirring mixing frames rotating in different directions push the mixed waste material and continuously tumble it during mixing, breaking up the waste material and pushing multiple sets of different waste materials to mix evenly. The mixture is then pushed evenly along the porous discharge box by a dispersing motor and a guide auger, spreading it evenly inside the mixing and processing box. Through the cooperation of the two mixing processes and the internal dispersing discharge, the material is evenly mixed and dispersed, improving the uniformity of the material distribution. The multi-hole mixing frame is driven to rotate by a mixing motor and belt drive box. The multi-hole mixing frame continuously turns the compost material. Water is injected into the multi-hole mixing frame in conjunction with a liquid injection pump, liquid injection operation pipe and water storage tank. The mixing and water injection are carried out simultaneously. Air exchange and internal temperature control are carried out by exhaust fan and exhaust pipe. The lifting hydraulic cylinder drives the pressing and limiting frame to move. The guide motor and guide screw drive the turning frame to move. Through multi-stage mixing, uniform material spreading and multi-group material pushing during composting, the position of the compost material inside can be turned and adjusted. The position switching process ensures the uniformity of composting in multiple positions and improves the effect of pollution-free treatment.

[0015] 2. Equipped with a crushing and dewatering component, waste is fed into the crushing and processing barrel through the feeding operation pipe. The crushing motor drives the crushing and cutting frame to crush the waste at high speed. With the help of a fixed electromagnet, the processing scraper and the crushing and cutting frame are magnetically engaged. The processing scraper pushes and scrapes away the waste adhering to the inner wall simultaneously. Through the simultaneous operation of cutting and cleaning, the waste is fully crushed. The simultaneous operation of multiple sets improves the crushing efficiency and effect. The inlet and outlet hydraulic cylinders drive the extrusion plate to move. The extrusion plate pushes the waste in both directions to extrude and dehydrate it. The reciprocating movement of the extrusion plate achieves preliminary mixing of the waste. Through independent crushing and centralized dehydration and mixing, the particle size and moisture content of the waste can be controlled, which facilitates subsequent waste processing. The multi-stage processing works together to improve the actual processing efficiency and effect.

[0016] In summary, by combining the mixing and crushing components, by integrating multiple crushing and continuous mixing processes, and by independently operating the uniform bottom discharge, the uniformity of mixing among various materials and the synchronicity of the overall fermentation speed of the materials can be ensured when composting waste from traditional Chinese medicine processing. This effectively improves the efficiency of actual composting and the effect of harmless treatment. Attached Figure Description

[0017] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention and do not constitute a limitation thereof.

[0018] In the attached diagram: Figure 1 This is a three-dimensional structural schematic diagram of the present invention; Figure 2 This is a schematic diagram of the structure of the mixing component of the present invention; Figure 3 This is a schematic diagram of the installation structure of the mixing and processing box of the present invention; Figure 4This is a schematic diagram of the installation structure of the bottom-feeding processing bucket of the present invention; Figure 5 This is a schematic diagram of the installation structure of the pressing and limiting frame of the present invention; Figure 6 This is a schematic diagram of the installation structure of the guide screw of the present invention; Figure 7 This is a schematic diagram of the structure of the fragmentation component of the present invention; Figure 8 This is a schematic diagram of the installation structure of the pulverizing and processing barrel of the present invention; Figure 9 This is a schematic diagram of the mounting structure of the fixed valve of the present invention; Numbered in the diagram: 1. Support frame; 2. Mixing components; 201. Tilting motor; 202. Tilting treatment tank; 203. Stirring motor; 204. Stirring and mixing rack; 205. Discharge treatment pipe; 206. Dividing and mixing treatment box; 207. Lower feeding treatment hopper; 208. Multi-hole discharge box; 209. Guide auger; 210. Dispersing motor; 211. Lifting hydraulic cylinder; 212. Pressing and limiting frame; 213. Belt drive box; 214. Dividing and stirring motor; 215. Multi-hole dividing and stirring frame; 216. Liquid injection operation pipe; 217. Guide motor; 218. Guide screw; 219. Guide tilting frame; 220. Exhaust fixing pipe; 221. Exhaust fan; 222. Isolation mesh plate; 223. Water storage fixing box; 224. Injection fixing pipe; 225. Liquid injection pump; 226. Treatment valve; 3. Crushing and shredding assembly; 301. Separation and fixing box; 302. Inlet and outlet hydraulic cylinder; 303. Crushing and processing plate; 304. Drainage operation pipe; 305. Filter screen plate; 306. Processing electric actuator; 307. Processing lifting plate; 308. Lifting elastic tube; 309. Crushing and processing barrel; 310. Opening and closing electric actuator; 311. Opening and closing limiting plate; 312. Feeding operation pipe; 313. Crushing motor; 314. Crushing and cutting frame; 315. Processing scraper; 316. Fixed electromagnet; 317. Fixed valve. Detailed Implementation

[0019] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the present invention.

[0020] Example: Figure 1-9 As shown, the present invention provides a technical solution, a waste biomass harmless treatment system based on traditional Chinese medicine processing technology, including a support operation frame 1, and a mixing component 2 is provided on the side of the support operation frame 1. The mixing assembly 2 includes a tilting motor 201, a tilting processing tank 202, a stirring motor 203, a stirring mixing frame 204, a discharge processing pipe 205, a mixing and processing box 206, a bottom feeding processing hopper 207, a perforated discharge box 208, a guide auger 209, a dispersing motor 210, a lifting hydraulic cylinder 211, a pressing and limiting frame 212, a belt drive box 213, a mixing motor 214, a perforated mixing frame 215, a liquid injection operation pipe 216, a guide motor 217, a guide screw 218, a guide tilting frame 219, an exhaust fixing pipe 220, an exhaust fan 221, an isolation mesh plate 222, a water storage fixing box 223, a betting fixing pipe 224, a liquid injection pump 225, and a processing valve 226. One end of the support frame 1 is equipped with a tilting motor 201 via a motor mount, and the output shaft of the tilting motor 201 is snapped into a tilting processing bucket 202. Both ends of the tilting processing tank 202 are equipped with opposing stirring motors 203 via motor mounts. The output shafts of the opposing stirring motors 203 are snapped with opposing stirring and mixing frames 204. The tilting processing tank 202 is rotatably mounted inside the support operation frame 1. The two opposing stirring and mixing frames 204 rotate and fit together to achieve steady tilting and mixing, ensuring the uniformity of the mixture. A discharge pipe 205 is connected through the middle of the side end of the tilting processing tank 202; A mixing and processing box 206 is snapped into the bottom end of the support operation frame 1, and a lower feeding processing bucket 207 is installed on the bottom inner side of the support operation frame 1. A perforated discharge box 208 is snapped into the inner side of the mixing and processing box 206. A guide auger 209 is rotatably connected to the inner side of the perforated discharge box 208. The bottom end of the lower feeding hopper 207 is placed inside the perforated discharge box 208. The output shaft of the dispersing motor 210 is snapped into one end of the guide auger 209 to achieve fixed discharge and dispersion processing, ensuring the uniformity of feeding and the stability of feeding dispersion. A dispersing motor 210 is installed at one end of the mixing and processing box 206, corresponding to the position of the guide auger 209, via a motor mount. The side end of the mixing and processing box 206 is symmetrically and equidistantly connected to lifting hydraulic cylinders 211, and the top of the multiple lifting hydraulic cylinders 211 is equipped with a pressing and limiting frame 212. A number of belt drive boxes 213 are equidistantly connected to the top of the pressing and limiting frame 212. A stirring motor 214 is installed at the top of the pressing and limiting frame 212 corresponding to the input shaft position of the belt drive box 213 via a motor mount. The output shaft of the belt drive box 213 is snapped with a multi-hole mixing frame 215. The multi-hole mixing frame 215 is rotatably installed inside the mixing and processing box 206 to achieve the stability of dispersing and stirring materials and turning materials. The side end of the multi-hole mixing frame 215 is sleeved with a liquid injection operation pipe 216. One end of the mixing and processing box 206 is equipped with a guide motor 217 via a motor mount, and the output shaft of the guide motor 217 is engaged with a guide screw 218. A guide tilting frame 219 is mounted on the side end of the guide screw 218 via a screw seat; Several exhaust pipes 220 are equidistantly connected to the top of the mixing and processing box 206, and an exhaust fan 221 is installed inside the exhaust pipes 220. An isolation mesh plate 222 is installed at the top inner side of the exhaust pipe 220; One end of the support frame 1 is equipped with a water storage box 223, and a betting fixing pipe 224 is connected through one side of the top of the water storage box 223. A liquid injection pump 225 is installed at one end of the water storage tank 223 corresponding to the position of the liquid injection operation pipe 216 via a motor mount. One end of the liquid injection operation pipe 216 is installed through the inside of the water storage tank 223. One end of the liquid injection operation pipe 216 is connected to one end of the liquid injection pump 225 via an adapter to achieve stable water supply treatment. A processing valve 226 is embedded at one end of the discharge processing pipe 205, the liquid injection operation pipe 216 and the betting fixing pipe 224; To ensure stable operation of the equipment, the input terminals of the tilting motor 201, the stirring motor 203, the dispersing motor 210, the lifting hydraulic cylinder 211, the dispersing motor 214, the guide motor 217, the exhaust fan 221, the injection pump 225, and the processing valve 226 are all electrically connected to the output terminal of the external controller. The input terminal of the external controller is electrically connected to the output terminal of the external power supply.

[0021] The side end of the support frame 1 is equipped with a crushing and dismantling component 3; The crushing assembly 3 includes a separation fixing box 301, an inlet / outlet hydraulic cylinder 302, a crushing processing plate 303, a drain operation pipe 304, a water filter plate 305, a processing electric push rod 306, a processing lifting plate 307, a lifting elastic tube 308, a crushing processing barrel 309, an opening / closing electric push rod 310, an opening / closing limiting plate 311, a feeding operation pipe 312, a crushing motor 313, a crushing and cutting frame 314, a processing scraper 315, a fixed electromagnet 316, and a fixed valve 317. A separation and fixing box 301 is installed at the top of the support operating frame 1, and inlet and outlet hydraulic cylinders 302 are symmetrically installed at both ends of the separation and fixing box 301. Two hydraulic cylinders 302 are equipped with a squeezing plate 303 at one end. A draining operation pipe 304 is connected through one end of the squeezing plate 303. The squeezing plate 303 is slidably installed inside the separation fixing box 301. One end of the draining operation pipe 304 is installed through the top of the water storage fixing box 223 to achieve steady drainage, slag removal and material discharge. A filter screen 305 is embedded inside the drain operation pipe 304; One end of the support operation frame 1 is connected to a processing electric push rod 306. A processing lifting plate 307 is installed at the top of the processing electric push rod 306. The processing lifting plate 307 is slidably installed on the side of the support operation frame 1 to achieve guided alignment processing. The top of the lifting plate 307 is fitted with a lifting elastic tube 308; Several crushing barrels 309 are equidistantly clamped to the top of the separation and fixing box 301, and opening and closing electric push rods 310 are symmetrically installed at both ends of the separation and fixing box 301. An opening and closing electric actuator 310 is equipped with an opening and closing limiting plate 311 at one end. The opening and closing limiting plate 311 is slidably combined with the crushing and processing barrel 309 to ensure the stability of opening and closing material discharge. A feeding operation pipe 312 is symmetrically connected through the top of the crushing and processing barrel 309. A crushing motor 313 is mounted on the top center of the crushing barrel 309 via a motor base, and a crushing and cutting frame 314 is mounted on the output shaft of the crushing motor 313. A processing scraper 315 is rotatably connected to the inner side of the crushing and processing barrel 309. A fixed electromagnet 316 is sleeved on the inner side of the processing scraper 315. The side end of the fixed electromagnet 316 is attached to the side end of the crushing and cutting frame 314, realizing the combined connection between the crushing and cutting frame 314 and the processing scraper 315. A fixed valve 317 is embedded at one end of the draining operation pipe 304, the lifting elastic pipe 308 and the feeding operation pipe 312. To ensure stable operation of the equipment, the input terminals of the inlet / outlet hydraulic cylinder 302, the processing electric push rod 306, the opening / closing electric push rod 310, the crushing motor 313, the fixed electromagnet 316, and the fixed valve 317 are all electrically connected to the output terminal of an external controller.

[0022] The working principle and usage process of this invention are as follows: When processing waste materials after traditional Chinese medicine processing, the operator opens the feeding operation pipe 312 through the fixed valve 317. At this time, the waste material enters the inner side of the crushing and processing barrel 309 through the feeding operation pipe 312. When the waste material is fed in, the crushing motor 313 drives the crushing and cutting frame 314 to rotate at high speed. The fed material comes into contact with the crushing and cutting frame 314 and is crushed into small pieces under the action of the high-speed cutting blades. When a certain amount is cut or a large amount of waste material adheres to the inner wall of the crushing and processing barrel 309, the fixed electromagnet 316 is connected to the crushing and cutting frame 314. The magnetic attraction causes the processing scraper 315 and the crushing and cutting frame 314 to magnetically engage. The crushing motor 313 slowly drives the crushing and cutting frame 314 and the processing scraper 315 to rotate slowly. The slow scraping motion removes the waste fragments adhering to the inner wall. In conjunction with the opening and closing electric push rod 310, the opening and closing limiting plate 311 moves along the crushing and processing barrel 309, and the waste is fed from the crushing and processing barrel 309 into the inner side of the separation and fixing box 301. After the feeding is completed, the opening and closing limiting plate 311 is reset by the opening and closing electric push rod 310, and the rising crushing and processing process is repeated to achieve continuous crushing and processing of waste. Waste enters the inner side of the separation and fixing box 301. When the waste has a high water content, the hydraulic cylinder 302 drives the extrusion plate 303 to move along the separation and fixing box 301. The extrusion plate 303 pushes the waste bidirectionally, squeezing it. At this time, the water in the waste is discharged into the water storage box 223 through the drain operation pipe 304, and is blocked by the filter screen plate 305 to achieve steady separation. After the waste is dehydrated, the processing electric push rod 306 drives the processing lifting plate 307 to move along the support operation frame 1, inserting the lifting elastic tube 308 into the drain. Inside the material processing pipe 205, the lifting elastic pipe 308 is opened by the fixed valve 317 and the discharge processing pipe 205 is opened by the processing valve 226. The extrusion hydraulic cylinder 302 drives the extrusion processing plate 303 to move back and forth along the separation fixed box 301 to disperse the waste material and push the waste material along the lifting elastic pipe 308 to the inside of the tilting processing bucket 202. After the waste material is fed, the processing electric push rod 306 drives the processing lifting plate 307 and the lifting elastic pipe 308 to reset. The processing valve 226 closes the discharge processing pipe 205 and the fixed valve 317 closes the lifting elastic pipe 308. The tilting motor 201 drives the tilting treatment tank 202 to tilt back and forth. At the same time, the stirring motor 203 drives the stirring mixing frame 204 to rotate along the tilting treatment tank 202. The two sets of stirring mixing frames 204 rotating in different directions push the mixed waste material in the tilting treatment tank 202, breaking up the waste material and pushing multiple sets of different waste materials to mix evenly. After the material is fully broken up and evenly mixed, the discharge treatment pipe 205 is opened through the treatment valve 226. The mixed material is fed into the inner side of the lower feeding hopper 207 through the discharge treatment pipe 205. The dispersing motor 210 drives the guide auger 209 to rotate along the perforated discharge box 208. The guide auger 209 drives the mixed material to move along the perforated discharge box 208. The mixed material is discharged out at multiple positions through the discharge port of the perforated discharge box 208, so that the mixed material is evenly spread on the inner side of the mixing treatment box 206. At this time, the heat and moisture of the mixed material itself are used for composting. During the composting process, the multi-hole mixing frame 215 is rotated by the mixing motor 214 and belt drive box 213. The multi-hole mixing frame 215 continuously turns the compost. During the turning process, water is drawn from the water storage tank 223 by the injection pump 225 and injection operation pipe 216. The water flows into the multi-hole mixing frame 215 through the injection operation pipe 216 and is eventually discharged through the multi-hole mixing frame 215. The water enters the compost and, together with the stirring, achieves water replenishment for compost fermentation. The lifting hydraulic cylinder 211 drives the pressing restraint frame 212 to rise, thereby raising the multi-hole mixing frame 215 from the mixing position. The mixture is pulled out from the inside of the processing box 206, and then the guide motor 217 drives the guide screw 218 to rotate. The guide screw 218 drives the guide turning frame 219 to move along the mixing processing box 206. The guide turning frame 219 moves back and forth and pushes the mixture to turn over. At this time, the exhaust fan 221 and the exhaust fixed pipe 220 are used to extract the fermentation gas inside and inject air into the inside of the mixing processing box 206 to adjust the internal reaction environment. During the composting process, the position of the compost is continuously changed to ensure the uniformity of composting in multiple locations and improve the effect of pollution-free treatment.

[0023] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A waste biomass harmless treatment system based on traditional Chinese medicine processing technology, comprising a support operating frame (1), characterized in that: The side end of the support operation frame (1) is provided with a mixing component (2); The mixing component (2) includes a flip motor (201); One end of the support operation frame (1) is equipped with a flip motor (201) via a motor base, and the output shaft of the flip motor (201) is snapped into a flip processing bucket (202). Both ends of the flipping processing tank (202) are equipped with a stirring motor (203) via a motor mount, and the output shaft of the stirring motor (203) is snapped with a stirring mixing frame (204). A discharge pipe (205) is connected through the middle of the side end of the overturning processing tank (202). The bottom end of the support operation frame (1) is snapped with a mixing and processing box (206), and the bottom end of the inner side of the support operation frame (1) is equipped with a bottom feeding hopper (207). The mixing and processing box (206) is fitted with a perforated discharge box (208) on its inner side, and a guide auger (209) is rotatably connected to the inner side of the perforated discharge box (208). A dispersing motor (210) is installed at one end of the mixing and processing box (206) at the position corresponding to the guide auger (209) via a motor mount. The mixing and processing box (206) is symmetrically and equidistantly connected to lifting hydraulic cylinders (211) on its side end, and a pressing and limiting frame (212) is installed on the top of the multiple lifting hydraulic cylinders (211).

2. The waste biomass harmless treatment system based on traditional Chinese medicine processing technology according to claim 1, characterized in that, The flipping processing tank (202) is rotatably installed inside the support operation frame (1), and the two mixing racks (204) are rotatably fitted together.

3. The waste biomass harmless treatment system based on traditional Chinese medicine processing technology according to claim 1, characterized in that, The bottom of the feed hopper (207) is placed inside the porous discharge box (208), and the output shaft of the dispersing motor (210) is engaged with one end of the guide auger (209).

4. The waste biomass harmless treatment system based on traditional Chinese medicine processing technology according to claim 1, characterized in that, The top of the pressing and limiting frame (212) is equidistantly connected to several belt drive boxes (213), and a stirring motor (214) is installed at the top of the pressing and limiting frame (212) corresponding to the input shaft position of the belt drive box (213) via a motor mount. The output shaft of the belt drive box (213) is snapped with a multi-hole agitator (215), and the side end of the multi-hole agitator (215) is sleeved with a liquid injection operation tube (216). One end of the mixing and processing box (206) is equipped with a guide motor (217) via a motor mount, and the output shaft of the guide motor (217) is engaged with a guide screw (218). The guide screw (218) is equipped with a guide tilting frame (219) on its side via a screw seat. The top of the mixing and processing box (206) is connected by several exhaust pipes (220) at equal intervals, and an exhaust fan (221) is installed inside the exhaust pipes (220). An isolation mesh plate (222) is installed at the top inner side of the exhaust fixing pipe (220); A water storage box (223) is installed at one end of the support operation frame (1), and a betting fixing pipe (224) is connected through one side of the top of the water storage box (223). A liquid injection pump (225) is installed at one end of the water storage tank (223) at the position corresponding to the liquid injection operation pipe (216) via a motor mount. A processing valve (226) is embedded at one end of the discharge processing pipe (205), the liquid injection operation pipe (216), and the betting fixing pipe (224).

5. The waste biomass harmless treatment system based on traditional Chinese medicine processing technology according to claim 4, characterized in that, The porous mixing rack (215) is rotatably installed inside the mixing and processing box (206), and one end of the liquid injection operation pipe (216) is installed through the water storage box (223).

6. The waste biomass harmless treatment system based on traditional Chinese medicine processing technology according to claim 4, characterized in that, One end of the injection operation tube (216) is connected to one end of the injection pump (225) via an adapter; The input terminals of the flipping motor (201), the stirring motor (203), the dispersing motor (210), the lifting hydraulic cylinder (211), the mixing motor (214), the guide motor (217), the exhaust fan (221), the injection pump (225), and the processing valve (226) are all electrically connected to the output terminal of the external controller. The input terminal of the external controller is electrically connected to the output terminal of the external power supply.

7. The waste biomass harmless treatment system based on traditional Chinese medicine processing technology according to claim 6, characterized in that, The side end of the support operation frame (1) is provided with a crushing component (3); The fragmentation assembly (3) includes a separation and fixing box (301); The top of the support operating frame (1) is equipped with a separation fixing box (301), and the two ends of the separation fixing box (301) are symmetrically equipped with inlet and outlet hydraulic cylinders (302). One end of each of the two inlet and outlet hydraulic cylinders (302) is equipped with a compression processing plate (303), and one end of the compression processing plate (303) is connected through a drain operation pipe (304). A filter screen (305) is embedded inside the drain operation pipe (304). One end of the support operation frame (1) is connected to a processing electric push rod (306), and a processing lifting plate (307) is installed at the top of the processing electric push rod (306). The top of the processing lifting plate (307) is sleeved with a lifting elastic tube (308). The top of the separation and fixing box (301) is equidistantly fitted with several crushing and processing barrels (309), and the two ends of the separation and fixing box (301) are symmetrically installed with opening and closing electric push rods (310). One end of the opening and closing electric actuator (310) is equipped with an opening and closing limiting plate (311), and the top of the crushing and processing barrel (309) is symmetrically connected with a feeding operation pipe (312). The crushing and processing barrel (309) has a crushing motor (313) mounted on the top center via a motor base, and the output shaft of the crushing motor (313) is equipped with a crushing and cutting frame (314).

8. The waste biomass harmless treatment system based on traditional Chinese medicine processing technology according to claim 7, characterized in that, The extrusion plate (303) is slidably installed inside the separation fixing box (301), and one end of the drain operation pipe (304) is installed through the top of the water storage fixing box (223).

9. The waste biomass harmless treatment system based on traditional Chinese medicine processing technology according to claim 7, characterized in that, The inner side of the crushing and processing barrel (309) is rotatably connected to a processing scraper (315), and a fixed electromagnet (316) is sleeved on the inner side of the processing scraper (315). A fixed valve (317) is embedded at one end of each of the drain operation pipe (304), the lifting elastic pipe (308), and the feeding operation pipe (312). The processing lifting plate (307) is slidably installed on the side of the support operation frame (1), and the opening and closing limiting plate (311) is slidably combined with the crushing and processing barrel (309).

10. The waste biomass harmless treatment system based on traditional Chinese medicine processing technology according to claim 9, characterized in that, The side end of the fixed electromagnet (316) is attached to the side end of the crushing and cutting frame (314); The input ends of the inlet / outlet hydraulic cylinder (302), the processing electric push rod (306), the opening / closing electric push rod (310), the crushing motor (313), the fixed electromagnet (316), and the fixed valve (317) are all electrically connected to the output end of the external controller.