An intelligent processing system and method for recyclable material resource disposal
Through intelligent control systems and multi-stage sorting equipment, the recyclable materials are sorted in a refined manner, which solves the problems of low efficiency and high transportation costs of manual sorting and improves the efficiency of resource utilization.
Patent Information
- Application Number
- CN202311849517.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-29
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2043-12-29
AI Technical Summary
Existing methods for recyclable material sorting suffer from high labor intensity, low sorting efficiency, high transportation costs, and insufficient resource utilization.
The system employs an intelligent control system and multiple processing lines, combined with mechanical equipment for multi-stage sorting. Manual sorting is only performed for easy materials and the separation of impurities. The system includes mixed recyclable material sorting and processing lines, plastic bottle sorting and baling lines, waste paper baling and processing lines, waste metal baling and processing lines, waste glass crushing and processing lines, and foam cold pressing and processing lines, achieving refined sorting.
It improves the level of intelligence in sorting, reduces the intensity of sorting for workers, reduces transportation costs and floor space, and enhances sorting quality and resource utilization value.
Smart Images

Figure CN117548465B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of household garbage disposal, and in particular to an intelligent processing system and method for recyclable resource disposal. BACKGROUND
[0002] At present, household garbage is usually divided into recyclables, hazardous waste, kitchen waste and other waste (dry waste); among them, recyclables refer to waste suitable for recycling and reuse, including paper, plastic, metal, glass and fabric;
[0003] Compared with other household garbage, recyclables have a higher degree of reusability. If they are directly landfilled or incinerated like other household garbage, it will be a great waste of resources and increase the pressure of household garbage disposal, and easily cause secondary pollution of the environment; therefore, after fine sorting of recyclables, resource reuse can truly realize reduction and harmlessness.
[0004] The existing technology has the following disadvantages for fine sorting of recyclables:
[0005] 1. Multiple production lines mainly rely on manual sorting of various recyclables, and the production line is not intelligent enough, and the labor intensity of the sorting workers is high;
[0006] 2. The production line has low processing capacity and high unit sorting and disposal cost; at the same time, various intermediate sorting products are mainly transported by forklift or manually, which has high transportation cost and low economic efficiency;
[0007] 3. The composition of recyclables collected in China is complex, and most production lines only perform simple large-class rough sorting, the sorting degree of the production line is low, the resource utilization degree of recyclables is insufficient, and the resource utilization cost at the back end is high. SUMMARY
[0008] The present application relates to the technical field of household garbage disposal, and in particular to an intelligent processing system and method for recyclable resource disposal.
[0009] To achieve the above-mentioned purpose, the present application adopts the following technical solutions:
[0010] An intelligent processing system for recyclable resource disposal, comprising an intelligent control system, a plant sewage collection system, and a plurality of processing lines arranged in a recyclable sorting center;
[0011] The plurality of processing lines arranged in the recyclable sorting center include a mixed recyclable sorting processing line, a plastic bottle sorting and packaging line, a waste paper packaging processing line, a waste metal packaging processing line, a waste glass crushing processing line and a foam cold pressing processing line, which are used for fine sorting of mixed recyclables collected at the front end.
[0012] The intelligent control system is used for electrical control of multiple processing lines arranged in the recyclable material sorting center;
[0013] A method for disposing recyclable materials in the intelligent processing system for recyclable material resource treatment, comprising the following steps:
[0014] S1: mixed recyclable material pre-sorting;
[0015] After the mixed recyclable material is transported to the raw material yard of the mixed recyclable material sorting processing line, large miscellaneous materials that cannot enter the processing line are sorted out by the equipment in the yard, loaded onto the chain conveyor by the loader, and the chain conveyor delivers the received mixed recyclable material to the manual sorting place, and the high-quality wood and fabric are manually sorted out; the remaining mixed recyclable material is broken by the bag breaking machine and screened by the OCC screening machine into oversize and undersize;
[0016] The oversize is manually sorted out foam, sundries, and the remaining mixed recyclable material is corrugated paperboard; after manual sorting is completed, the foam is transferred to the foam cold pressing processing line, and the corrugated paperboard is transferred to the waste paper packing processing line;
[0017] The undersize is sorted out by a magnetic separator, three photoelectric sorting machines in turn to sort out ferromagnetic mixed scrap metal, PET bottles, HDPE bottles, and Tetra Pak; wherein the ferromagnetic mixed scrap metal is transferred to the scrap metal packing processing line; the PET bottles and HDPE bottles are transported to the PET bottle temporary storage bin and the HDPE bottle temporary storage bin respectively, and are transferred to the plastic bottle sorting and packing line; the remaining mixed recyclable material enters the air separator to sort into heavy substances and light substances;
[0018] The light substance is sorted out by the photoelectric sorting machine to sort out the light weight combustible material such as paper and plastic film; the paper is transferred to the waste paper packing processing line;
[0019] The heavy substance is sorted out by the eddy current sorting machine, the photoelectric sorting machine, and the manual sorting in turn to sort out non-ferrous metal, rubber, and glass material, and the remaining material is mixed combustible sundries such as miscellaneous plastic; the non-ferrous metal is transferred to the scrap metal packing processing line, and the glass is transferred to the waste glass crushing processing line;
[0020] After the processing of each processing line is completed, it is exported for resource treatment; at the same time, the material not entering the processing line is directly exported for resource treatment;
[0021] S2: processing the sorted foam;
[0022] The foam entering the foam cold pressing processing line is manually fed to the belt conveyor, conveyed to the crusher by the belt conveyor to break into foam blocks, conveyed to the storage room of the storage bin by the pneumatic conveying pipeline for temporary storage, and finally enters the cold pressing machine to compress into foam briquettes;
[0023] S3: processing the sorted waste paper;
[0024] The mixed paper entering the waste paper packing processing line is fed to the processing line by the chain conveyor, and then the corrugated paper is sorted out from the mixed material by manual operation. The remaining material is directly fed into the fully automatic packing machine to pack into waste paper blocks;
[0025] The corrugated paper entering the waste paper packing processing line is separately fed by the chain conveyor. After the mixed material is sorted out by manual operation, it is directly fed into the fully automatic packing machine to pack into waste paper blocks;
[0026] S4: processing the sorted plastic bottles;
[0027] The storage quantity of each bin is set in advance;
[0028] When the material in the PET bottle temporary storage bin reaches the storage quantity, the bin is opened, and the colored PET bottles are sorted out from the remaining material. The colored PET bottles and the mixed color PET bottles are respectively conveyed by air to the corresponding temporary storage bin;
[0029] At the same time, when the material in the HDPE bottle temporary storage bin reaches the storage quantity, the bin is opened, and the white HDPE bottles and the mixed color HDPE bottles are sorted out by the photoelectric sorting machine and are respectively conveyed by air to the corresponding temporary storage bin;
[0030] Further, the plastic bottle sorting and packing line can only pack one type of plastic bottle at a time, i.e., only one corresponding bin can be opened at a time;
[0031] When the sorted PET bottles are packed, the corresponding bin is opened, and the ferromagnetic metal, label paper, and bottle cap are sorted out in sequence by the magnetic sorting machine, the label removing machine, and the drum screen, and then are fed into the semi-automatic packing machine to pack into plastic bottle blocks;
[0032] When the sorted HDPE bottles are packed, the corresponding bin is opened, and the material is conveyed to the semi-automatic packing machine to pack into plastic bottle blocks;
[0033] S5: processing the sorted waste metal;
[0034] The ferromagnetic mixed waste metal entering the waste metal packing processing line is directly fed to the metal packing machine by the grab machine to pack into waste metal blocks;
[0035] The non-ferrous metal entering the waste metal packing processing line is first fed to the chain conveyor, and then the copper and aluminum materials are sorted out by the copper-aluminum color sorter. The remaining material is transferred to the raw material yard and packed together with the mixed waste metal for disposal. The sorted copper and aluminum are separately fed to the metal packing machine for packing;
[0036] S6: processing the sorted waste glass;
[0037] The glass entering the waste glass crushing treatment line is pre-separated in a stockyard, and the complete glass bottles are separated by manual separation; after the stockyard pre-separation, the materials are loaded onto the treatment line by a chain conveyor, and the non-glass sundries are separated by manual separation, and the remaining materials are crushed by a toothed roll crusher;
[0038] The materials crushed by the toothed roll crusher are separated by a magnetic separator to separate ferromagnetic metals, and then separated by an eddy current separator to separate non-ferrous metals, and finally classified and separated by a multi-pass color sorter to classify various pure color glasses, and the remaining materials are mixed color glasses; various glasses are temporarily stored in the stockyard, and then transported out for resource disposal.
[0039] Compared with the prior art, the beneficial effects of the present application are:
[0040] The intelligent processing system for resource disposal of recyclables and the working method thereof provided by the present application use multi-stage separation for recyclables, and mainly use mechanical equipment for intelligent separation, and manual separation is only used for the separation of some materials that are easy to separate and have low content and the separation of sundries, thereby improving the intelligent degree of the production line and reducing the sorting intensity of workers;
[0041] For various plastic bottles in the separation production line, because they have a large cavity volume and thus a very low bulk density, the existing separation production line mainly relies on collection frames and manual collection and transportation, which requires a large factory area for stacking and high manual transportation cost; the present method uses air conveying to convey the plastic bottles to each bin, thereby reducing the floor area of the production line and also reducing the transportation cost;
[0042] The present application optimizes the existing separation and disposal process, improves the separation quality of the production line, and realizes fine separation of recyclables; most of the existing recyclable separation production lines only perform simple and rough separation of large categories, which reduces the resource utilization value of various recyclables; when actually recycling resources at the back end, a large cost is still needed to remove impurities from various recyclables, thereby increasing the recycling cost. BRIEF DESCRIPTION OF DRAWINGS
[0043] Figure 1 The present application is applied to the processing line process flow diagram for separating mixed recyclables in the intelligent processing system for resource disposal of recyclables;
[0044] Figure 2 The present application is applied to the packing line process flow diagram for disposing plastic bottles in the intelligent processing system for resource disposal of recyclables;
[0045] Figure 3 The present application is applied to the packing line process flow diagram for disposing waste paper in the intelligent processing system for resource disposal of recyclables;
[0046] Figure 4A packing line process flow chart for disposing waste metal by the intelligent processing system for recyclable resource disposal of the application;
[0047] Figure 5 A packing line process flow chart for disposing waste glass crushing by the intelligent processing system for recyclable resource disposal of the application;
[0048] Figure 6 A packing line process flow chart for disposing foam by the intelligent processing system for recyclable resource disposal of the application; DETAILED DESCRIPTION
[0049] In order to have a further understanding of the object, structure, characteristics, and functions of the application, the following detailed description is given in conjunction with the embodiments.
[0050] As Figures 1-6 shown, an intelligent processing system for recyclable resource disposal includes an intelligent control system, a plant sewage collection system, and a plurality of processing lines arranged in a recyclable sorting center;
[0051] The plurality of processing lines arranged in the recyclable sorting center includes a mixed recyclable sorting processing line, a plastic bottle sorting and packing line, a waste paper packing processing line, a waste metal packing processing line, a waste glass crushing processing line, and a foam cold pressing processing line, which are used for fine sorting of mixed recyclables collected at the front end;
[0052] Further, the plurality of processing lines of the recyclable sorting center includes a chain conveyor, a bag breaking machine, an OCC screening machine, a magnetic separator, a photoelectric separator, an eddy current separator, an air separator, a vertical packing machine, a full-automatic packing machine, a metal packing machine, a crusher, and a cold pressing machine, etc.
[0053] The intelligent control system is used for electrical control of the plurality of processing lines arranged in the recyclable sorting center, is equipped with a remote control and an on-site control cabinet, and can be automatically controlled and manually controlled, wherein the manual control is prior to the automatic control; the control convenience is improved;
[0054] A method for disposing recyclables by the intelligent processing system for recyclable resource disposal, including the following steps:
[0055] S1: mixed recyclable pre-sorting;
[0056] After the mixed recyclables are transported to the raw material yard of the mixed recyclable sorting processing line, large miscellaneous items that cannot enter the processing line are sorted out by the equipment in the yard, and are fed to the chain conveyor by the loader, the chain conveyor transports the received mixed recyclables to the manual sorting place, and the high-quality wood and fabrics are manually sorted out;
[0057] Large sundries are sorted out by the device to avoid entering the processing line and affecting the stability of the processing line;
[0058] The remaining mixed recyclables are broken by the bag breaking machine and screened by the OCC screening machine into oversize and undersize;
[0059] The oversize is manually sorted out of foam and sundries, and the remaining mixed recyclables are corrugated paperboard; after manual sorting is completed, the foam is transferred to the foam cold pressing processing line, and the corrugated paperboard is transferred to the waste paper packaging processing line;
[0060] The undersize is sorted out of ferromagnetic mixed scrap metal, PET bottles, HDPE bottles, and Tetra Pak by a magnetic separator, three photoelectric sorting machines, respectively; among them, the ferromagnetic mixed scrap metal is transferred to the scrap metal packaging processing line; the PET bottles and HDPE bottles are transported to the PET bottle temporary storage bin and the HDPE bottle temporary storage bin, respectively, and are transferred to the plastic bottle sorting and packaging line; the Tetra Pak material is directly shipped for resource disposal, and the remaining mixed recyclables are separated into heavy and light materials by the air separator;
[0061] The light material is sorted out of light paper and plastic film by a photoelectric sorting machine; the light paper is transferred to the waste paper packaging processing line, and the plastic film is directly shipped for resource disposal;
[0062] The heavy material is sorted out of non-ferrous metal, rubber, and glass material by an eddy current separator, a photoelectric sorting machine, and manual sorting, and the remaining material is mixed combustible sundries such as miscellaneous plastic; the non-ferrous metal is transferred to the scrap metal packaging processing line, the glass is transferred to the waste glass crushing processing line, and the mixed combustible sundries such as miscellaneous plastic are directly shipped for resource disposal;
[0063] Preferably, a packaging machine can be arranged at the end of the multiple processing lines of the recyclable sorting center to package the sorted fabric, rubber, Tetra Pak, plastic film, low-value combustible mixed sundries, and other materials before shipping, thereby reducing the transportation cost.
[0064] S2: processing the sorted foam;
[0065] The foam entering the foam cold pressing processing line is manually fed to the belt conveyor, conveyed to the crusher by the belt conveyor to break into foam blocks, conveyed to the storage room of the storage bin by the pneumatic conveying pipeline for temporary storage, and finally compressed into foam briquettes by the cold press; after processing is completed, it is shipped for resource disposal;
[0066] The foam is compressed by the cold press to reduce the volume, which can reduce the transportation cost;
[0067] S3: processing the sorted waste paper;
[0068] The mixed paper entering the waste paper packaging treatment line is fed to the treatment line by the chain conveyor, and then the corrugated paper and sundries are sorted out by manual work, and the remaining material is directly fed into the full-automatic packaging machine to package into waste paper blocks;
[0069] The corrugated paper entering the waste paper packaging treatment line is separately fed by the chain conveyor, and after the sundries are sorted out by manual work, it is directly fed into the full-automatic packaging machine to package into waste paper blocks;
[0070] After the treatment is completed, the resources are transported for disposal;
[0071] S4: processing the sorted plastic bottles;
[0072] Further, if the plastic bottle sorting and packaging line contains the remaining mixed plastic bottles, sorting and packaging are carried out by the following method, specifically:
[0073] The plastic bottle sorting and packaging line includes a material sorting module, an HDPE bottle classification and sorting module, a PET bottle classification and sorting module, and a plastic bottle classification and packaging module.
[0074] The material sorting module sorts the plastic bottles in the plastic bottle sorting and packaging line by manual work, sorts out oil cans and sundries, and the remaining material is sorted out by a photoelectric sorting machine. PP bottles, oil cans and PP bottle materials sorted out are temporarily stored by air conveying to the oil can warehouse and the PP bottle warehouse; the remaining material is sorted out by the photoelectric sorting machine. HDPE bottle material, HDPE bottle is temporarily stored by air conveying to the HDPE bottle temporary storage warehouse, and the remaining material after sorting is temporarily stored by air conveying to the PET bottle temporary storage warehouse;
[0075] Further, when HDPE bottles need to be sorted, the HDPE bottle classification and sorting module sorts out white HDPE bottles from the HDPE bottle material, and the rest are colored HDPE bottles.
[0076] When PET bottles need to be sorted, the multi-channel photoelectric sorting machine of the PET bottle classification and sorting module sorts out green PET bottles, transparent PET bottles, brown PET bottles, blue PET bottles and other colored PET bottles, and the remaining material is colored PET bottles.
[0077] Preferably, the plastic bottle classification and packaging module includes five packaging modes, specifically: colored PET bottle packaging mode, oil can packaging mode, PP bottle packaging mode, white HDPE bottle packaging mode, and colored HDPE bottle packaging mode.
[0078] When a certain color of PET bottle needs to be packaged, the PET bottle packaging mode is used for packaging, specifically:
[0079] When the PET bottle needs to be packed, the PET bottle packing mode is used for packing, specifically:
[0080] When the PP bottle needs to be packed, the PP bottle packing mode is used for packing, specifically:
[0081] The PP bottle bin is opened, and the remaining bins are closed, and the PP bottle material is directly conveyed to the semi-automatic packing machine by the conveyor to pack into a package block;
[0082] When white HDPE is passed, the white HDPE bottle packing mode is used for packing, specifically:
[0083] When the white HDPE bottle needs to be packed, the white HDPE bottle bin is opened, and the remaining bins are closed, and the white HDPE bottle material is directly conveyed to the semi-automatic packing machine by the conveyor to pack into a package block;
[0084] When the colored HDPE is passed, the colored HDPE bottle packing mode is used for packing, specifically:
[0085] When the colored HDPE bottle needs to be packed, the remaining bins are closed, and the colored HDPE bottle material is directly conveyed to the semi-automatic packing machine by the conveyor to pack into a package block;
[0086] After processing is completed, the resources are transported for disposal;
[0087] Further, each plastic bottle bin is composed of a bin body, a feeding conveying pipeline, a fan, an electric valve arranged below the bin body, and a discharging conveyor arranged below the electric valve. The opening and closing of the entire bin is realized by controlling the opening and closing state of the electric valve. The discharging conveyor can be a belt conveyor or a screw conveyor.
[0088] The plastic bottle sorting and packing processing line takes each plastic bottle bin as a node and modularly segments the processing line. Each module can be randomly combined. According to the plastic bottle raw materials in the raw material yard and the sufficient condition of the material in each plastic bottle temporary storage bin, all modules can be opened, or part of the modules can be opened to reduce the idle running time and low processing capacity time of the equipment, thereby reducing the idle running loss of the equipment and improving the economic efficiency of the production line.
[0089] S5: processing the sorted scrap metal;
[0090] The ferromagnetic mixed scrap metal entering the scrap metal packing processing line is directly fed to the metal packing machine by the grab machine to pack into a scrap metal package block;
[0091] The non-ferrous metal entering the scrap metal packaging treatment line is firstly loaded onto the chain conveyor, and then the copper and aluminum materials are sorted out by the copper-aluminum color sorter, the remaining materials are transferred to the raw material yard and packaged together with mixed scrap metal for disposal, and the sorted copper and aluminum are separately loaded onto the metal packaging machine for packaging;
[0092] After the treatment is completed, the resources are transported out for disposal;
[0093] S6: treating and sorting the waste glass;
[0094] The glass entering the waste glass crushing treatment line is pre-selected in the yard, and the complete glass bottles are sorted out by manual work; after the yard pre-selection, the materials are loaded onto the treatment line by the chain conveyor, the non-glass sundries are sorted out by manual work, and the remaining materials enter the toothed roll crusher;
[0095] After the toothed roll crusher, the materials are sorted out by the magnetic separator, then sorted out by the eddy current separator, and finally classified and sorted by the multi-channel color sorter, and the remaining materials are the mixed color glass; the various types of glass are temporarily stored in the yard, and then transported out for resource utilization.
[0096] Through the classification and sorting of the waste glass, the resource utilization value is improved.
[0097] The present application has been described by the above-mentioned related embodiments, however, the above-mentioned embodiments are only examples for implementing the present application. It must be pointed out that the disclosed embodiments do not limit the scope of the present application. On the contrary, the changes and modifications made without departing from the spirit and scope of the present application are all within the scope of the patent protection of the present application.
Claims
1. A method of disposing of recyclables, characterized by: Comprising the following steps: S1: mixing recyclables pre-separation; After the mixed recyclables are transported to the raw material yard of the mixed recyclables sorting processing line, large sundries that cannot enter the processing line are sorted out by equipment in the raw material yard, loaded onto the chain conveyor by the loader, and the chain conveyor delivers the received mixed recyclables to the manual sorting place, and the high-quality wood and fabrics are manually sorted out; the remaining mixed recyclables are broken by the bag breaking machine and screened by the OCC screening machine into oversize and undersize; The oversize is manually sorted out foam, sundries, and the remaining mixed recyclables are corrugated paper; after manual sorting is completed, the foam is transferred to the foam cold pressing processing line, and the corrugated paper is transferred to the waste paper packaging processing line; The undersize is sorted out ferromagnetic mixed scrap metal, PET bottles, HDPE bottles, and Tetra Pak by a magnetic separator and three photoelectric separators in turn; among them, the ferromagnetic mixed scrap metal is transferred to the scrap metal packaging processing line; the PET bottles and HDPE bottles are transported to the PET bottle temporary storage bin and HDPE bottle temporary storage bin respectively, and are transferred to the plastic bottle sorting and packaging line; the remaining mixed recyclables are separated into heavy and light materials by the air separator; The light material is sorted out by the photoelectric separator, and the light material is sorted out by the photoelectric separator; the paper is transferred to the waste paper packaging processing line; The heavy material is sorted out non-ferrous metal, rubber and glass material by eddy current separator, photoelectric separator and manual sorting, and the remaining material is mixed combustible sundries; the non-ferrous metal is transferred to the scrap metal packaging processing line, and the glass is transferred to the waste glass crushing processing line; The material that does not enter the processing line is directly transported out for resource treatment; S2: processing the sorted foam; The foam entering the foam cold pressing processing line is manually loaded onto the belt conveyor, conveyed to the crusher by the belt conveyor, and conveyed to the storage bin storage room for temporary storage by the pneumatic conveying pipeline, and finally compressed into foam briquettes by the cold pressing machine; S3: processing the sorted waste paper; The paper entering the waste paper packaging processing line is loaded onto the processing line by the chain conveyor, and the corrugated paper and sundries are sorted out by hand, and the remaining material is directly packed into a waste paper package by the automatic packing machine; The corrugated paper entering the waste paper packaging processing line is separately loaded by the chain conveyor, and after manual sorting of sundries, it is directly packed into a waste paper package by the automatic packing machine; S4: processing the sorted plastic bottles; Each bin is set with a storage amount in advance; When the material in the PET bottle temporary storage bin reaches the storage amount, the bin is opened, and each color PET bottle is sorted out from the internal material, and the remaining material is a mixed color PET bottle; each color PET bottle and mixed color PET bottle is transported by air to the corresponding bin for temporary storage; At the same time, when the material in the HDPE bottle temporary storage bin reaches the storage amount, the bin is opened, and white HDPE bottles and mixed color HDPE bottles are sorted out by the photoelectric separator and transported by air to the corresponding bin for temporary storage; S5: processing the sorted scrap metal; The ferromagnetic mixed scrap metal entering the scrap metal packaging processing line is directly loaded onto the metal packaging machine by the grab machine to pack into a scrap metal package. Non-ferrous metals entering the scrap metal packaging line are first loaded onto the chain conveyor, and then copper and aluminum materials are sorted out by the copper-aluminum color sorter. The remaining materials are transferred to the raw material yard for packaging disposal together with ferromagnetic mixed scrap metals, and the sorted copper and aluminum are separately loaded into the metal packaging machine for packaging; S6: processing the sorted waste glass; Glass entering the waste glass crushing line is pre-sorted in the yard, and complete glass bottles are sorted out by hand. After yard pre-sorting, the materials are loaded onto the chain conveyor for processing line, non-glass impurities are sorted out by hand, and the remaining materials are crushed by the toothed roll crusher; After crushing by the toothed roll crusher, the materials are sorted out by the magnetic separator, and then sorted out by the eddy current separator. Finally, various pure color glasses are classified and sorted by the multi-channel color sorter, and the remaining materials are mixed color glass. Various glasses are temporarily stored in the yard after transfer, and then exported for resource disposal.
2. The method of claim 1, wherein: The plastic bottle sorting and packaging line can only package one type of plastic bottle at a time, i.e., only one corresponding bin can be opened at a time; When packaging the sorted PET bottles, the corresponding bin is opened, and the ferromagnetic metal, label paper, and bottle cap are sorted out in sequence by the magnetic separator, label remover, and drum screen, and then packaged into plastic bottle blocks by the semi-automatic packaging machine; When packaging the sorted HDPE bottles, the corresponding bin is opened, and the materials are transferred to the semi-automatic packaging machine for packaging into plastic bottle blocks.
3. An intelligent processing system for the resourceful disposal of recyclable materials for implementing the method of any one of claims 1-2, characterized by: It includes an intelligent control system, a plant sewage collection system, and various processing lines set in the recyclable material sorting center; The various processing lines set in the recyclable material sorting center include a mixed recyclable material sorting and processing line, a plastic bottle sorting and packaging line, a waste paper packaging processing line, a scrap metal packaging processing line, a waste glass crushing processing line, and a foam cold pressing processing line, which are used for fine sorting of mixed recyclable materials collected from the front end; The intelligent control system is used for electrical control of the various processing lines set in the recyclable material sorting center.
4. The intelligent processing system for recyclable material resource disposal according to claim 3, wherein: The intelligent control system is equipped with remote control and on-site control cabinets.
5. The intelligent processing system for recyclable material resource disposal according to claim 4, wherein: An emergency stop button or a pull rope switch is configured in each device of the sorting center.
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