CN115041492A - Automatic intelligent classification device for on-site treatment of municipal solid waste - Google Patents

Automatic intelligent classification device for on-site treatment of municipal solid waste Download PDF

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Publication number
CN115041492A
CN115041492A CN202110249971.XA CN202110249971A CN115041492A CN 115041492 A CN115041492 A CN 115041492A CN 202110249971 A CN202110249971 A CN 202110249971A CN 115041492 A CN115041492 A CN 115041492A
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China
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water
water bath
conveyor belt
pipeline
light
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CN202110249971.XA
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布莱克·安格斯
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Huaxin Energy Technology Beijing Co ltd
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Huaxin Energy Technology Beijing Co ltd
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Priority to CN202110249971.XA priority Critical patent/CN115041492A/en
Publication of CN115041492A publication Critical patent/CN115041492A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B09DISPOSAL OF SOLID WASTE; RECLAMATION OF CONTAMINATED SOIL
    • B09BDISPOSAL OF SOLID WASTE NOT OTHERWISE PROVIDED FOR
    • B09B3/00Destroying solid waste or transforming solid waste into something useful or harmless
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B09DISPOSAL OF SOLID WASTE; RECLAMATION OF CONTAMINATED SOIL
    • B09BDISPOSAL OF SOLID WASTE NOT OTHERWISE PROVIDED FOR
    • B09B5/00Operations not covered by a single other subclass or by a single other group in this subclass

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  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Processing Of Solid Wastes (AREA)

Abstract

The automatic intelligent sorting device for in-situ treatment of solid garbage in city features that it provides a clean and harmless place for sorting garbage, and it includes unloading cabin, water bath, low-speed conveyer belt, sorting unit, container, water level gauge, chemical water sampler, oil-gravity separator, chemical dosing point, water feeder, pump, water filter, purified water distributor, heavy-liquid separator, scraper, heavy-solid garbage separator and light-solid garbage separator.

Description

Automatic intelligent classification device for on-site treatment of municipal solid waste
The technical field is as follows:
the invention relates to the technical field of intelligent manufacturing, environmental protection and resource recycling, in particular to an automatic intelligent in-situ treatment technology of a green garbage classification machine, which is a very safe and effective automatic intelligent classification device for in-situ treatment of municipal solid garbage.
Background art:
at present, most of existing garbage classification equipment is similar equipment such as garbage classification boxes arranged in a community, and has the practical problems of weak classification capability, few classification varieties, poor classification quality and incapability of completing large-scale and harmless treatment of garbage classification, in order to overcome the defect, an industrial automatic artificial intelligent garbage washing harmless classification complete set device (patent number ZL 201320622326.9; the name of a utility model: a municipal solid garbage treatment device; country: China; grant issue date: 2014 3, 26) is invented and created, the scale of the complete set device can be large or small according to the quantity of garbage generated in population scale, the complete set device is installed and operated on site, the device purifies waste gas from garbage to the clean air standard, classifies and cleans the garbage to the commercially acceptable standard after harmless garbage, separates, recovers and packages the garbage to the commercially acceptable standard, the invention provides a safe and controllable garbage classification product which removes or packages almost all pollutants, toxic and harmful components, produces products which are clean or cleaner than original reusable materials, has product standards which exceed international material or product supply standards, and provides an automatic intelligent classification device for on-site treatment of municipal solid garbage for further refining and optimizing the device.
The invention content is as follows:
1. the invention provides an urban solid garbage treatment device (patent number: ZL 201320622326.9; utility model name: urban solid garbage treatment device; country: China; grant issue date: 2014 3, 26), which is a garbage classification harmless on-site treatment center and a water washing solid garbage sorting plant, and in order to further enhance the performance of the device, the invention provides an automatic intelligent classification device for on-site treatment of urban solid garbage, which is characterized in that: (1) the optimization and refinement of the municipal solid waste treatment device are provided, and the municipal solid waste treatment device is specifically described in a utility model patent (patent number ZL 201320622326.9; utility model name: municipal solid waste treatment device; country: China; grant issue date: 3/26/2014). (2) May be a completely separate device. (3) Can be used for the existing waste incineration power plant and the waste treatment adding equipment (4) of the waste treatment plant, can be used for the adding equipment of the waste treatment of the existing waste landfill, and carries out harmless treatment and classification on the existing accumulated waste.
2. The invention is realized in this way, it includes the municipal solid waste on-the-spot treatment automatic intelligent classification device, its characteristic is on the basis of municipal solid waste processing unit (patent: ZL 201320622326.9), it is safe and suitable for any refuse treatment site, offer the technical support for optimizing the refuse management, it features according to the concrete requirement of the field, according to the population quantity, the refuse treatment scale can be large or small. The invention comprises an automatic intelligent classification device for on-site treatment of municipal solid waste, which is characterized in that: the device is characterized in that: the device comprises an unloading cabin, an unloading water inlet device, a water bath tank, a fabric bag removing device, a low-speed conveyor belt, a sorting device, a container box, a large-opening grid, a water level gauge, a test water sampling device, an oil gravity separator, a chemical dosing point device, a water feeder, a pump, a water filter, a purified water distribution system device, a heavy-duty liquid separator, a scraper, a water bath heavy-duty solid garbage separator, a water bath light-duty solid garbage separator, a conveyor belt supporting roller, a garbage feeding hopper, a magnetic separator, an artificial intelligent camera, an artificial intelligent automatic mechanical arm, an artificial intelligent system, an artificial intelligent linker, a water inlet gas detector, a water bath tank gas detector, a chemical monitor, an artificial intelligent monitoring controller, a gantry crane, a light fine grain backflow water pipe, a light fine grain backflow pump and a light fine grain backflow filter, slight granule drain pipe, purified water supply pump, purified water filter, the no reflux valve of purified water, the water treatment air-blower, the downspout, strain the back blast pipe, the purified water overflow pipe, medium-sized hopper lifting machine, heavy feed bin, medium-sized compost storehouse, light-duty compost storehouse, medium-sized compost storehouse waste material conveyor, the container storage point, water treatment facilities, light-duty breaker, heavy breaker, wherein: the water inlet device is connected with the water bath tank, the fabric bag removing device is arranged above the water bath tank, the fixed water level in the water bath tank is marked by a water level gauge, the chemical water sampling equipment is positioned in the water bath tank and is connected with the artificial intelligent monitoring controller through a line, the oil gravity separator is positioned in the water bath tank, the chemical dosing point equipment is positioned in the water bath tank and is connected with the artificial intelligent monitoring controller through a line, the water feeder is positioned in the water bath tank, the pump is connected with the water feeder through a pipeline, the water filter is connected with the pump through a pipeline, the water distribution system device is connected with the water filter through a pipeline, and the purified water distribution system device comprises a pipeline at a cargo unloading compartment, a pipeline at a rotating electric brush at a dry side, a pipeline at a rotating electric brush at a wet side, a pipeline at a heavy conveyor, a pipeline at a heavy elevator, a pipeline at a light elevator, a pipeline at a heavy elevator, The pipeline of light conveyor department, pipeline of light body tank flow department, heavy liquid separator and water bath are connected through the pipeline, the scraper is located in the water bath, the scraper links to each other with the water bath bottom and runs in the bottom of water bath, a part of the heavy solid garbage separation of water bath is located the water bath, another part of the heavy solid garbage separation of water bath is located the top of low-speed conveyer belt, heavy solid garbage separation of water bath transports heavy wastes to the low-speed conveyer belt, a part of the light solid garbage separation of water bath is located the water bath, another part of the light solid garbage separation of water bath is located the top of low-speed conveyer belt, the light solid garbage separation of water bath transports light wastes to the low-speed conveyer belt, the wastes are promoted to the low-speed conveyer belt from the water bath, the low-speed conveyer belt subassembly includes: a conveyor belt, a conveyor belt supporting roller, a garbage feeding hopper, a magnetic separator, an artificial intelligence camera, an artificial intelligence automatic mechanical arm, an artificial intelligence system connected with the artificial intelligence automatic mechanical arm through an artificial intelligence linker, the artificial intelligence system connected with an artificial intelligence monitoring controller through an artificial intelligence linker, a water inlet gas detector connected with the artificial intelligence monitoring controller, a water bath gas detector connected with the artificial intelligence monitoring controller, a chemical monitor connected with the artificial intelligence monitoring controller, the artificial intelligence system connected with a mechanical component and a detection component of the municipal solid garbage in-situ processing automatic intelligent classification device through an artificial intelligence linker, wastes move along the conveyor belt, the conveyor belt is supported by the conveyor belt supporting roller, the garbage feeding hopper puts various wastes on the conveyor belt at fixed points, the magnetic separator is connected with the low-speed conveyor belt, the magnetic separator sucks out metal objects from the conveyor belt by magnetic force and puts the metal objects into the container box, the artificial intelligent camera is connected with the artificial intelligent system and is used for identifying the properties, materials and positions of the wastes, the artificial intelligent automatic mechanical arm utilizes artificial intelligent to separate the materials and puts the materials into the container box, the light fine grain backflow water pipe is connected with the water bath through a pipeline, the light fine grain backflow pump is connected with the medium-sized composting bin through a pipeline, the light fine grain backflow filter is connected with the light fine grain backflow pump through a pipeline, the light fine grain drain pipe passes through the water bath and is connected with the water bath light solid garbage separator through a pipeline, the purified water supply pump is arranged in the water treatment device, the purified water filter is connected with the purified water supply pump through a pipeline, the purified water non-backflow valve is connected with the purified water filter through a pipeline, and the water treatment device is connected with the water treatment device through a pipeline, the rainwater pipe is connected with the water treatment device through a pipeline, the filtered exhaust pipe is connected with the water treatment device through a pipeline, the purified water overflow pipe is connected with the water treatment device through a pipeline, the medium-sized hopper elevator is connected with the medium-sized composting bin, the heavy waste bin and the light-sized composting bin are positioned beside the medium-sized composting bin, the storage point of the container box is positioned in the unloading bin, the container box is stored and stacked at the storage point of the container box, the water treatment device is connected with the water bath through a pipeline, the light-sized crushing device is connected with the end part of the low-speed conveyor belt, the light-sized crushing device is positioned below the end part of the low-speed conveyor belt, the heavy-sized crushing device is connected with the medium-sized composting bin, the garbage cleaning and unloading bin is connected with the water bath, the bottom ends of the two ends of the water bath are connected with the low-speed conveyor belt, the low-speed conveyor belt extends out of the water bath tank from the water, the low-speed conveyor belt is positioned beside the sorting device, different wastes are carried out from two ends of the water bath tank, floating wastes in the water bath tank flow to one end of the water bath tank, waste liquid enters the water treatment system after being filtered by the water bath light solid waste separator, non-floating wastes are pushed to the water bath heavy solid waste separator at the other end of the water bath tank by the scraper, the water bath heavy solid waste separator classifies, filters and lifts the wastes to the low-speed conveyor belt and allows liquid to pass through to the heavy liquid water treatment system, heavy wastes and light wastes are thrown onto the heavy or light low-speed conveyor belt, the sorting device is a component part of the low-speed conveyor belt, sorted materials are thrown into the container box, and solid wastes in the container box are sorted; performing innocent treatment; after compressed and packaged, the product is sold as a product, which can be classified into a recycled product, a renewable resource and an agricultural use product.
3. The invention has the advantages of providing a large-scale industrial mechanical automation garbage harmless intelligent classification technology, reducing the dependence on landfill sites and incinerators for a long time in garbage management, solving the trouble of garbage remote transportation and landfill site management, reducing the pollution to the environment and air, and converting waste garbage into resources.
Description of the drawings:
the invention is further described below with reference to the accompanying drawings.
FIG. 1 is a side view of the automatic intelligent municipal solid waste sorting apparatus according to the invention.
FIG. 2 is an end view of the interior of the automated intelligent municipal solid waste sorting apparatus of the invention for in situ treatment.
FIG. 3 is an end view of the automated intelligent municipal solid waste sorting apparatus of the invention for in situ treatment.
FIG. 4 is a top view of the automatic intelligent municipal solid waste sorting apparatus according to the present invention.
FIG. 5 is a plan view of the automatic intelligent sorting apparatus for on-site treatment of municipal solid waste according to the invention.
FIG. 6 is a plan view of the low-speed conveyor belt of the automatic intelligent sorting device for the in-situ treatment of municipal solid waste according to the invention.
FIG. 7 is a process flow diagram of the water system of the automatic intelligent classification device for in-situ treatment of municipal solid waste according to the invention.
In the figure, 1-unloading cabin, 2-water bath, 2.1-fabric bag removing device, 3-low speed conveyor belt, 4-sorting device, 5-container box, 6-large-mouth grid, 10-water level gauge, 11-laboratory water sampling equipment, 12-oil gravity separator, 13-chemical dosing point equipment, 14-water feeder, 15-pump, 16-water filter, 17-purified water distribution system device (A-unloading cabin pipeline, B-dry side rotating brush pipeline, C-wet side rotating brush pipeline, D-heavy conveyor pipeline, E-heavy elevator pipeline, F-light elevator pipeline, G-light conveyor pipeline, H-light body trough flow pipeline), 18-heavy liquid separator, 19-scraper, 20-water bath heavy solid waste separator, 21-water bath light solid waste separator, 53-conveyor belt, 54-conveyor belt supporting roller, 55-waste feed hopper, 56-magnetic separator, 57-artificial intelligence camera, 58-artificial intelligence automatic robot arm, 69-artificial intelligence system, 70-artificial intelligence linker, 79-water inlet gas detector, 80-water bath gas detector, 81-chemical monitor, 82-artificial intelligence monitoring controller, 97-gantry crane, 103-light fine grain reflux water pipe, 104-light fine grain reflux pump, 105-light fine grain reflux filter, 106-light fine grain drain pipe, 107-purified water supply pump, 108-purified water filter, 109-purified water non-return valve, 110-water treatment blower, 111-rainwater pipe, 112-filtered exhaust pipe, 113-purified water overflow pipe, 132-medium hopper elevator, 133-heavy waste bin, 134-medium compost bin, 135-light compost bin, 138-medium compost bin waste conveying device, 144-container storage point, 146-water treatment device, 147-light crushing device and 148-heavy crushing device.
The specific implementation mode is as follows:
as shown in fig. 1, 2, 3, 4, 5, 7, the water inlet device is connected with the water bath 2, the fabric bag removing device 2.1 is above the water bath 2, the fixed water level in the water bath 2 is indicated by a water level gauge 10, the test water sampling device 11 is located in the water bath 2, the test water sampling device 11 is connected with the artificial intelligence monitoring controller 82 through a line, the oil gravity separator 12 is in the water bath 2, the chemical dosing device 13 is located in the water bath 2, the chemical dosing device 13 is connected with the artificial intelligence monitoring controller 82 through a line, the water feeder 14 is located in the water bath 2, the pump 15 is connected with the water feeder 14 through a pipe, the water filter 16 is connected with the pump 15 through a pipe, the water distribution system device 17 is connected with the water filter 16 through a pipe, and the purified water distribution system device 17 includes: the system comprises a cargo unloading compartment pipeline A, a dry side rotating electric brush pipeline B, a wet side rotating electric brush pipeline C, a heavy conveyor pipeline D, a heavy elevator pipeline E, a light elevator pipeline F, a light conveyor pipeline G and a light body trough flow pipeline H, wherein a heavy liquid separator 18 is connected with a water bath tank 2 through pipelines, a scraper 19 is located in the water bath tank 2, and the scraper 19 is connected with the bottom of the water bath tank 2 and runs at the bottom of the water bath tank 2.
As shown in fig. 1, 2, 3, 4, 5 and 7, a part of the water bath heavy solid waste separator 20 is positioned in the water bath 2, another part of the water bath heavy solid waste separator 20 is positioned above the low-speed conveyor belt 3, and the water bath heavy solid waste separator 20 conveys heavy waste onto the low-speed conveyor belt 3.
As shown in fig. 1, 2, 3, 4, 5 and 7, a part of the water bath light solid garbage separator 21 is positioned in the water bath 2, another part of the water bath light solid garbage separator 21 is positioned above the low speed conveyor belt 3, and the water bath light solid garbage separator 21 conveys the light waste onto the low speed conveyor belt 3.
As shown in fig. 1, 2, 3, 4, 5, 6, 7, waste is lifted from the water bath 2 to the low speed conveyor 3, the low speed conveyor 3 assembly comprising: a conveyor belt 53, a conveyor belt supporting roller 54, a garbage feed hopper 55, a magnetic separator 56, an artificial intelligence camera 57, an artificial intelligence automated robot 58, an artificial intelligence system 69 connected with the artificial intelligence automated robot 58 through an artificial intelligence linker 70, the artificial intelligence system 69 connected with an artificial intelligence monitoring controller 82 through an artificial intelligence linker 70, a water inlet gas detector 79 connected with the artificial intelligence monitoring controller 82, a water bath gas detector 80 connected with the artificial intelligence monitoring controller 82, a chemical monitor 81 connected with the artificial intelligence monitoring controller 82, the artificial intelligence system 69 connected with the municipal solid garbage in-situ treatment automated intelligent sorting apparatus mechanical components and detection components through an artificial intelligence linker 70, the wastes moving along the conveyor belt 53, the conveyor belt 53 supported by the conveyor belt supporting roller 54, the garbage feeding hopper 55 puts various wastes on the conveyor belt 53 at a fixed point, the magnetic separator 56 is connected with the low-speed conveyor belt 3, the magnetic separator 56 sucks out metal objects from the conveyor belt 53 by magnetic force and puts the metal objects into the container 5, the artificial intelligence camera 57 is connected with the artificial intelligence system 69 and used for identifying the properties, the materials and the positions of the wastes, the artificial intelligence automatic mechanical arm 58 puts the sorted materials into the container 5 by the artificial intelligence, and the wastes are lifted to the low-speed conveyor belt 3 from the water bath 2.
As shown in fig. 1, 2, 3, 4, 5, 7, a light fine particle reflux water pipe 103 is connected to the water bath 2 through a pipe, a light fine particle reflux pump 104 is connected to the middle compost bin 134 through a pipe, a light fine particle reflux filter 105 is connected to the light fine particle reflux pump 104 through a pipe, a light fine particle drain pipe 106 is connected to the water bath light solid waste separator 21 through a pipe through the water bath 2, a purified water supply pump 107 is provided in the water treatment apparatus 146, a purified water filter 108 is connected to the purified water supply pump 107 through a pipe, a purified water non-reflux valve 109 is connected to the purified water filter 108 through a pipe, a water treatment blower 110 is connected to the water treatment apparatus 146 through a pipe, a rainwater pipe 111 is connected to the water treatment apparatus 146 through a pipe, a filtered exhaust pipe 112 is connected to the water treatment apparatus 146 through a pipe, and a purified water overflow pipe 113 is connected to the water treatment apparatus 146 through a pipe.
As shown in fig. 2, 3 and 5, the medium hopper lift 132 is connected to the medium compost bin 134, and the heavy waste bin 133 and the light compost bin 135 are located beside the medium compost bin 134.
As shown in fig. 2, 3 and 5, the container box storage point 144 is located in the unloading compartment 1, and the container boxes 5 are stored and stacked in the container box storage point 144.
As shown in fig. 1, 2, 3, 4, 5, a water treatment device 146 is connected to the water bath 2 via a pipe, a light weight crushing device 147 is connected to an end of the low speed conveyor belt 3, and the light weight crushing device 147 is located below the end of the low speed conveyor belt 3.
As shown in fig. 1, 2, 3, 4, 5, a heavy duty crushing device 148 is connected to the end of the low speed conveyor 3, the heavy duty crushing device 148 being located below the end of the low speed conveyor 3.
As shown in fig. 2, 3 and 5, the intermediate compost bin waste conveyor 138 is connected to the intermediate compost bin 134.
As shown in fig. 1, 2, 3, 4, 5, 7, a garbage disposal and unloading cabin 1 is connected with a water bath 2, the bottom ends of both ends of the water bath 2 are connected with a low-speed conveyor belt 3, the low-speed conveyor belt 3 extends out of the water bath 2 from the water, the low-speed conveyor belt 3 is positioned beside a sorting device 4, different wastes are carried out from both ends of the water bath 2, floating wastes in the water bath 2 flow to one end of the water bath 2, waste liquid enters a water treatment system after being filtered by a water bath light solid waste separator 21, non-floating wastes are pushed to the water bath heavy solid waste separator 20 at the other end of the water bath 2 by a scraper 19, the water bath heavy solid waste separator 20 sorts, filters, lifts to the low-speed conveyor belt 3 and allows liquid to pass through to the heavy liquid water treatment system, heavy wastes and light wastes are thrown onto the heavy or light low-speed conveyor belt 3, the sorting device 4 is a component of the low-speed conveyor belt 3, and sorted materials are put into the container box 5, and solid garbage in the container box is sorted; performing innocent treatment; after compressed and packaged, the product is sold as a product, which can be classified into a recycled product, a renewable resource and an agricultural use product.

Claims (1)

1. The utility model provides an automatic intelligent classification device of municipal solid waste on-site processing which characterized by: the device comprises an unloading cabin (1), an unloading water inlet device, a water bath (2), a fabric bag removing device (2.1), a low-speed conveyor belt (3), a sorting device (4), a container box (5), a large-opening grid (6), a water level gauge (10), a test water sampling device (11), an oil gravity separator (12), a chemical dosing point device (13), a water feeder (14), a pump (15), a water filter (16), a purified water distribution system device (17), a heavy-liquid separator (18), a scraper (19), a water bath heavy-type solid garbage separator (20), a water bath light-type solid garbage separator (21), a conveyor belt (53), a conveyor belt supporting roller (54), a garbage feeding hopper (55), a magnetic separator (56), an artificial intelligent camera (57), an artificial intelligent automatic mechanical arm (58) and an artificial intelligent system (69), an artificial intelligence linker (70), a water inlet gas detector (79), a water bath gas detector (80), a chemical monitor (81), an artificial intelligence monitoring controller (82), a gantry crane (97), a light fine particle backflow water pipe (103), a light fine particle backflow pump (104), a light fine particle backflow filter (105), a light fine particle drain pipe (106), a purified water supply pump (107), a purified water filter (108), a purified water non-backflow valve (109), a water treatment blower (110), a rain water pipe (111), a filtered exhaust pipe (112), a purified water overflow pipe (113), a medium-sized hopper lifter (132), a heavy waste bin (133), a medium-sized compost bin (134), a light-sized compost bin (135), a medium-sized compost bin waste conveying device (138), a container box storage point (144), a water treatment device (146), a light-sized crushing device (147), a heavy duty crushing device (148), wherein: the water inlet device is connected with the water bath (2), the fabric bag removing device (2.1) is arranged above the water bath (2), the fixed water level in the water bath (2) is marked by a water level gauge (10), the test water sampling device (11) is arranged in the water bath (2), the test water sampling device (11) is connected with the artificial intelligent monitoring controller (82) by a circuit, the oil gravity separator (12) is arranged in the water bath (2), the chemical dosing point device (13) is connected with the artificial intelligent monitoring controller (82) by a circuit, the water feeder (14) is arranged in the water bath (2), the pump (15) is connected with the water feeder (14) by a pipeline, the water filter (16) is connected with the pump (15) by a pipeline, the water distribution system device (17) is connected with the water filter (16) by a pipeline, the purified water distribution system device (17) comprises a pipeline (A) at a cargo unloading compartment, a pipeline (B) at a dry side rotary electric brush, a pipeline (C) at a wet side rotary electric brush, a pipeline (D) at a heavy conveyor, a pipeline (E) at a heavy elevator, a pipeline (F) at a light elevator, a pipeline (G) at a light conveyor and a pipeline (H) at a light trough flow, wherein a heavy liquid separator (18) is connected with a water bath (2) through pipelines, a scraper (19) is located in the water bath (2), the scraper (19) is connected with the bottom of the water bath (2) and runs at the bottom of the water bath (2), one part of a water bath heavy solid garbage separator (20) is positioned in the water bath (2), the other part of the water bath heavy solid garbage separator (20) is positioned above the low-speed conveyor belt (3), and the water bath heavy solid garbage separator (20) conveys heavy wastes to the low-speed conveyor belt (3), one part of the water bath light solid garbage separator (21) is positioned in the water bath (2), the other part of the water bath light solid garbage separator (21) is positioned above the low-speed conveyor belt (3), the water bath light solid garbage separator (21) conveys light wastes to the low-speed conveyor belt (3), the wastes are lifted to the low-speed conveyor belt (3) from the water bath (2), and the low-speed conveyor belt (3) component comprises: a conveyor belt (53), a conveyor belt supporting roller (54), a garbage feeding hopper (55), a magnetic separator (56), an artificial intelligence camera (57), an artificial intelligence automatic mechanical arm (58), an artificial intelligence system (69) connected with the artificial intelligence automatic mechanical arm (58) through an artificial intelligence linker (70), the artificial intelligence system (69) connected with an artificial intelligence monitoring controller (82) through the artificial intelligence linker (70), a water inlet gas detector (79) connected with the artificial intelligence monitoring controller (82), a water bath gas detector (80) connected with the artificial intelligence monitoring controller (82), a chemical monitor (81) connected with the artificial intelligence monitoring controller (82), the artificial intelligence system (69) connected with a mechanical component and a detection component of the municipal solid garbage in-situ processing automatic intelligent classification device through the artificial intelligence linker (70), the waste moves along a conveyor belt (53), the conveyor belt (53) is supported by a conveyor belt supporting roller (54), a garbage feed hopper (55) puts various wastes at a fixed point on the conveyor belt (53), a magnetic separator (56) is connected with a low-speed conveyor belt (3), the magnetic separator (56) sucks out metal objects from the conveyor belt (53) by magnetic force and puts the metal objects into a container box (5), an artificial intelligent camera (57) is connected with an artificial intelligent system (69) and is used for identifying the properties, the materials and the positions of the wastes, an artificial intelligent automatic mechanical arm (58) puts the metal objects into the container box (5) by using artificial intelligent separation materials, the wastes are lifted from a water bath (2) to the low-speed conveyor belt (3), a light fine grain backflow water pipe (103) is connected with the water bath (2) through a pipeline, a light fine grain backflow pump (104) is connected with a medium-sized compost bin (134) through a pipeline, a light fine particle reflux filter (105) is connected with a light fine particle reflux pump (104) through a pipeline, a light fine particle drain pipe (106) passes through the water bath (2) and is connected with a water bath light solid garbage separator (21) through a pipeline, a purified water supply pump (107) is arranged in a water treatment device (146), a purified water filter (108) is connected with a purified water supply pump (107) through a pipeline, a purified water non-reflux valve (109) is connected with the purified water filter (108) through a pipeline, a water treatment blower (110) is connected with the water treatment device (146) through a pipeline, a rainwater pipe (111) is connected with the water treatment device (146) through a pipeline, a filtered exhaust pipe (112) is connected with the water treatment device (146) through a pipeline, a purified water overflow pipe (113) is connected with the water treatment device (146) through a pipeline, a medium-sized hopper hoister (132) is connected with a medium-sized composting bin (134), the heavy-duty waste bin (133) and the light-duty compost bin (135) are positioned beside the medium-sized compost bin (134), the container box storage point (144) is positioned in the unloading cabin (1), the container box (5) is stored and stacked at the container box storage point (144), the water treatment device (146) is connected with the water bath (2) through a pipeline, the light-duty crushing device (147) is connected with the end of the low-speed conveyor belt (3), the light-duty crushing device (147) is positioned below the end of the low-speed conveyor belt (3), the heavy-duty crushing device (148) is connected with the end of the low-speed conveyor belt (3), the heavy-duty crushing device (148) is positioned below the end of the low-speed conveyor belt (3), the medium-sized compost bin waste conveying device (138) is connected with the medium-sized compost bin (134), the garbage clearing and unloading cabin (1) is connected with the water bath (2), and the bottom ends of the two ends of the water bath (2) are connected with the low-speed conveyor belt (3), the low-speed conveyor belt (3) extends out of the water bath (2) from the water, the low-speed conveyor belt (3) is positioned beside the sorting device (4), different wastes are carried out from two ends of the water bath (2), floating garbage in the water bath (2) flows to one end of the water bath (2), waste liquid enters a water treatment system after being filtered by a water bath light solid garbage separator (21), non-floating garbage is pushed to the water bath heavy solid garbage separator (20) at the other end of the water bath (2) by a scraper (19), the water bath heavy solid garbage separator (20) classifies, filters and lifts the wastes to the low-speed conveyor belt (3) and allows the liquid to pass through to reach a heavy liquid water treatment system, heavy wastes and light wastes are thrown onto the heavy or light low-speed conveyor belt (3), the sorting device (4) is a component of the low-speed conveyor belt (3), the sorted material is fed into a container (5) where the solid waste in the field is sorted; performing innocent treatment; after compressed and packaged, the product is sold as a product, which can be classified into a recycled product, a renewable resource and an agricultural use product.
CN202110249971.XA 2021-03-08 2021-03-08 Automatic intelligent classification device for on-site treatment of municipal solid waste Pending CN115041492A (en)

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Application Number Priority Date Filing Date Title
CN202110249971.XA CN115041492A (en) 2021-03-08 2021-03-08 Automatic intelligent classification device for on-site treatment of municipal solid waste

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Application Number Priority Date Filing Date Title
CN202110249971.XA CN115041492A (en) 2021-03-08 2021-03-08 Automatic intelligent classification device for on-site treatment of municipal solid waste

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CN115041492A true CN115041492A (en) 2022-09-13

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