Renewable resource recovery method
Through the renewable resource recycling method of classified placement and measurement module pricing, the problems of low efficiency and insufficient residents' willingness in traditional methods are solved, and rapid fund allocation and equipment promotion are achieved.
Patent Information
- Application Number
- CN202510375691.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2025-07-11
AI Technical Summary
Traditional renewable resource recycling methods are inefficient and residents are not willing to place classified resources, making it difficult to widely promote equipment.
提供一种可再生资源回收方法,通过分类投放、计量模块计价和云服务器审核,生成订单并直接资金划拨,提升居民积极性和效率。
It has increased residents' willingness to classify and release renewable resources, expanded the scope of recycling, reduced the labor intensity of operators, and improved work efficiency.
Smart Images

Figure CN120297960A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of renewable resource recycling, and particularly relates to a method for recycling renewable resources. Background Art
[0002] The resources available to humans can be divided into two categories: one is non-renewable resources, and the other is renewable resources. Recyclable resources are a type of renewable resources. They are substances that can be repeatedly recycled and processed after being exploited, used once, and discarded in various activities such as human production, life, science and education, transportation, and national defense. It includes steel, non-ferrous metals, rare metals, alloys, inorganic non-metals, plastics, rubbers, fibers, paper, etc. produced from minerals as raw materials and then discarded, all of which are called recyclable resources. After being exploited and used once by humans, renewable resources can be naturally generated, grown, and reproduced cyclically through natural or artificial activities such as solar energy within one year or several decades, and some can even continuously increase in reserves. It includes surface water, soil, plants, animals, aquatic organisms, microorganisms, forests, grasslands, air, sunlight, climate resources, and marine resources, etc. However, the growth and reproduction of animals, plants, aquatic organisms, and microorganisms are restricted by the environmental impacts caused by humans. In daily life, many daily necessities can be recycled, such as waste paper, old mobile phones, steel, various metals, and plastics, etc. Traditional renewable resource recycling relies on manual door-to-door collection or transporting these resources to recycling stations for collection. This not only wastes a large amount of manpower and material resources but also has a low recycling efficiency and is very inconvenient.
[0003] In the prior art, a patent document with the publication number of "CN212889087U" discloses an intelligent renewable resource recycling and utilization device, including a recycling device body. On both sides of the center of the front end of the recycling device body, there are respectively arranged an aluminum can recycling electric door and a plastic bottle recycling electric door. One end of the fixed frame is fixedly connected to a receiving hopper at the center. On one side of the center of the fixed partition, there is installed a top electric cylinder corresponding to the receiving hopper. On the top of the support seat, there is installed a bottom electric cylinder corresponding to the top electric cylinder. The top ends of the piston rods of the top electric cylinder and the bottom electric cylinder are respectively fixedly connected to a first fixed clamp block and a second fixed clamp block. In the existing patent technology, renewable resource recycling and utilization devices generally have corresponding item classification and recycling treatment mechanisms. However, in the absence of economic interest compensation, residents have insufficient willingness to voluntarily classify and put renewable resources, resulting in difficulty in widely promoting and applying such devices. Summary of the Invention
[0004] To solve the above technical problems, the present invention provides a method for recycling renewable resources.
[0005] The present invention is achieved through the following technical solutions.
[0006] The present invention provides a renewable resource recycling method, comprising the following steps:
[0007] Step 1: The user classifies renewable resources in advance; the operator provides a recycling terminal and a cloud server, the cloud server is connected to the bank online trading platform, the recycling terminal includes an outer box and an inner box, the inner box is completely accommodated in the outer box, a first cabinet door is hinged on the surface of the outer box, a feeding hole is provided on the surface of the first cabinet door, and the position where the feeding hole is provided corresponds to the inner box. A motor, a sliding door, a pair of guide rails and a pair of sliders are further provided inside the first cabinet door. The guide rails are arranged on the upper and lower sides of the feeding hole respectively. The sliders are sleeved on the guide rails, and the sliding door is fixedly connected between the pair of sliders. A transmission device is further provided between the output shaft of the motor and the slider. A metering module is further provided at the bottom of the inner box. A session module, a storage module and a control module are further provided inside the first cabinet door. The control module is electrically connected to the control end of the motor, the metering module, the session module and the storage module respectively; a mapping database is established in the storage module, and category information and its corresponding unit price data are stored in the mapping database. The storage module is further used to summarize all category information together to form a category list and store it;
[0008] Step 2: The control module generates a two-dimensional code, embeds the consent item and the veto item into the two-dimensional code, and then the control module sends the two-dimensional code to the session module, and the session module displays it to the user;
[0009] Step 3: The user inputs the two-dimensional code image by scanning the code through the reading module built in the mobile terminal, and then obtains the consent item and the veto item in the two-dimensional code through the two-dimensional code decoding algorithm and extraction algorithm. When the user clicks the consent item, the reading module obtains the identity information stored by the user in the mobile terminal and sends the identity information to the control module through the wireless communication network;
[0010] Step 3: The control module generates a first interaction page, embeds the identity information from the mobile terminal and the category list extracted from the storage module into the first interaction page, and then the control module sends the first interaction page to the session module, and the session module displays it to the user;
[0011] Step 4: After the user clicks on the category information in the category list, the control module generates a second interaction page, initial weight data, weight data, and amount data, and sets the initial weight data, weight data, and amount data all to zero. Then, the category information selected by the user, the unit price data, weight data, and amount data extracted from the storage module are all embedded in the second interaction page. The control module then sends the second interaction page to the session module, and the session module displays it to the user. The control module also simultaneously drives the motor to start forward, causing the sliding door to move and the inner box to be exposed to the user;
[0012] Step 5: The user opens the item delivery door and puts the sorted renewable resources into the inner box. The metering module obtains the weight increment data of the inner box and the objects inside it, and forwards the increment data to the control module;
[0013] Step 6: The control module first subtracts the initial weight data generated by itself from the increment data from the metering module to obtain the weight data. When the weight data is positive, it multiplies the unit price data extracted from the storage module by the weight data to obtain the amount data. Then, it embeds the amount data, weight data, the self-generated end option, and continue option into the second interaction page and forwards it to the session module. The session module immediately updates the second interaction page and displays it to the user;
[0014] Step 7: When the user clicks on the end option, the control module drives the motor to start in reverse and makes the sliding door move in reverse, so that the sliding door blocks in front of the user. The control module also encapsulates the amount data, identity information, category information, unit price data, and increment data to generate an order file, and finally forwards the order file to the cloud server through the wireless communication network;
[0015] Step 8: The operator reviews the order file through the cloud server. When the operator agrees, the bank online trading platform transfers the corresponding funds to the user according to the identity information and amount data in the order file.
[0016] The renewable resource recycling method further includes the following steps: When performing Step 3, when the user clicks on the veto item, repeat Step 2.
[0017] The renewable resource recycling method further includes the following steps: When performing Step 7, when the user clicks on the continue option, repeat Steps 3 to 6.
[0018] The renewable resource recycling method further includes the following steps:
[0019] In Step 1, the mapping database also stores category information and its corresponding rate data;
[0020] In step six, when the weight data is negative, multiply the rate data extracted from the storage module by the weight data to obtain the amount data. After embedding the amount data, weight data, self-generated end option, and continue option into the second interaction page, forward it to the session module. The session module immediately updates the second interaction page and displays it to the user.
[0021] The renewable resource recycling method further includes the following steps:
[0022] A timer is also provided inside the first cabinet door. The control module is also electrically connected to the timer. A standby threshold is also stored in the storage module. Before step seven, the timer starts running and sends the timing data to the control module. The control module compares the timing data with the standby threshold. When the timing data is greater than the standby threshold, steps seven to eight are performed.
[0023] A bracket is also provided inside the outer box, and the inner box is supported on the bracket.
[0024] The identity information includes the user's name, user's mobile phone number, and user's WeChat ID.
[0025] A level gauge is also provided inside the inner box. A level threshold is also stored in the storage module. The level gauge is used to obtain the material level data inside the inner box and forward the level data to the control module. The control module also compares the level threshold in the storage module with the level data from the level gauge. When the level data is greater than the level threshold, the control module also sends a full tank prompt message to the cloud server.
[0026] A foreign object detector is also provided inside the first cabinet door. The foreign object detector is aligned with the gap between the sliding door and the feeding hole. When a foreign object blocks the gap between the sliding door and the feeding hole, the foreign object detector sends a pulse signal to the control module, and the control module immediately controls the motor to stop.
[0027] The beneficial effects of the present invention are as follows: By adopting the technical solution of the present invention, various renewable resources are collected in the inner box, and the change amount of the metering module and the preset unit price data in the storage module are used to immediately price the renewable resources put in by residents. After being reviewed and approved by the operator's background, the corresponding funds can be quickly allocated and refunded to residents, which is beneficial to improving the enthusiasm of residents for collecting and putting in renewable resources, increasing the willingness of residents to voluntarily classify and put in renewable resources, expanding and promoting the application scope of the renewable resource recycling method, reducing the labor intensity of the operator in recycling renewable resources, and improving the work efficiency of the operator. Description of the Drawings
[0028] Figure 1 is the process flow chart of the renewable resource recycling method of the present invention;
[0029] Figure 2 is the principle block diagram of the renewable resource recycling method of the present invention;
[0030] Figure 3 is the axonometric view of the recycling terminal of the present invention;
[0031] Figure 4 is the front view of the recycling terminal of the present invention;
[0032] Figure 5 is the present invention Figure 4 front view after the first cabinet door and the second cabinet door are opened in;
[0033] Figure 6 is the right view of the recycling terminal of the present invention;
[0034] Figure 7 is the present invention along Figure 6 cross-sectional view taken along the A-A plane in;
[0035] Figure 8 is the front view of the inner box of the present invention;
[0036] Figure 9 is the axonometric view of the bracket of the present invention.
[0037] In the figure: 1 - outer box, 2 - inner box, 3 - first cabinet door, 4 - feeding hole, 5 - motor, 6 - sliding door, 7 - guide rail, 8 - slider, 9 - transmission device, 10 - metering module, 12 - session module, 13 - storage module, 14 - driving wheel, 15 - driven wheel, 16 - transmission belt, 17 - second cabinet door, 18 - object throwing door, 19 - bracket, 20 - limit baffle, 21 - camera, 22 - level gauge, 23 - foreign object detector, 24 - control module, 25 - observation window, 26 - reading module. Detailed implementation manners
[0038] The technical solution of the present invention will be further described below, but the scope of protection is not limited thereto.
[0039] As Figures 1 to 9 shown, the present invention provides a renewable resource recycling method, including the following steps:
[0040] Step 1: The user classifies renewable resources in advance; the operator provides a recycling terminal and a cloud server. The cloud server is connected to the bank online trading platform. The recycling terminal includes an outer box 1 and an inner box 2. The inner box 2 is completely accommodated in the outer box 1. A first cabinet door 3 is hinged on the surface of the outer box 1. A feeding hole 4 is provided on the surface of the first cabinet door 3, and the position of the feeding hole 4 corresponds to that of the inner box 2. An electric motor 5, a sliding door 6, a pair of guide rails 7 and a pair of sliders 8 are also provided inside the first cabinet door 3. The guide rails 7 are arranged on the upper and lower sides of the feeding hole 4 respectively. The sliders 8 are sleeved on the guide rails 7. The sliding door 6 is fixedly connected between the pair of sliders 8. A transmission device 9 is also provided between the output shaft of the electric motor 5 and the slider 8. A metering module 10 is provided at the bottom of the inner box 2. A session module 12, a storage module 13 and a control module 24 are also provided inside the first cabinet door 3. The control module 24 is electrically connected to the control end of the electric motor 5, the metering module 10, the session module 12 and the storage module 13 respectively; A mapping database is established in the storage module 13, and category information and its corresponding unit price data are stored in the mapping database. The storage module 13 is also used to summarize all category information together to form a category table and store it;
[0041] Step 2: The control module 24 generates a two-dimensional code, embeds the consent item and the veto item into the two-dimensional code, and then the control module 24 sends the two-dimensional code to the session module 11, and the session module 11 displays it to the user;
[0042] Step 3: The user receives the two-dimensional code image input by scanning the code through the reading module 26 built in the mobile terminal, and then obtains the consent item and the veto item in the two-dimensional code through the two-dimensional code decoding algorithm and extraction algorithm. When the user clicks the consent item, the reading module obtains the identity information stored by the user in the mobile terminal and sends the identity information to the control module 24 through the wireless communication network;
[0043] Step 3: The control module 24 generates a first interaction page, embeds the identity information from the mobile terminal and the category table extracted from the storage module into the first interaction page, and then the control module 24 sends the first interaction page to the session module 11, and the session module 11 displays it to the user;
[0044] Step 4: When the user clicks on the category information in the category table, the control module 24 generates a second interaction page, initial weight data, weight data and amount data, and makes the initial weight data, weight data and amount data all equal to zero, and then embeds the category information selected by the user, the unit price data, weight data and amount data extracted from the storage module into the second interaction page. The control module 24 then sends the second interaction page to the session module 11, and the session module 11 displays it to the user. The control module 24 also simultaneously drives the electric motor 5 to start forward, moves the sliding door 6, and exposes the inner box 2 in front of the user;
[0045] Step 5: The user opens the throwing door 18 and puts the sorted renewable resources into the inner box 2. The metering module 10 obtains the weight increment data of the inner box 2 and the objects inside it, and forwards the increment data to the control module 24;
[0046] Step 6: The control module 24 first subtracts the initial weight data generated by itself from the increment data from the metering module 10 to obtain the weight data. When the weight data is positive, it multiplies the unit price data extracted from the storage module by the weight data to obtain the amount data, and embeds the amount data, weight data, the self-generated end option and continue option into the second interaction page, and then forwards it to the session module 12. The session module 12 immediately updates the second interaction page and displays it to the user;
[0047] Step 7: When the user clicks the end option, the control module 24 drives the motor 5 to start in reverse and makes the sliding door 6 move in reverse, so that the sliding door 6 blocks in front of the user. The control module 24 also encapsulates the amount data, identity information, category information, unit price data, and increment data to generate an order file, and finally forwards the order file to the cloud server through the wireless communication network;
[0048] Step 8: The operator reviews the order file through the cloud server. When the operator agrees, the bank online trading platform transfers the corresponding funds to the user according to the identity information and amount data in the order file.
[0049] Adopting the technical solution of the present invention, various renewable resources are collected through the inner box, and the metering module's change amount and the preset unit price data in the storage module are used to immediately price the renewable resources put by residents. After being reviewed and approved by the operator's background, the corresponding funds can be quickly transferred and refunded to residents, which is beneficial to enhancing the enthusiasm of residents for collecting and putting renewable resources, improving residents' willingness to voluntarily classify and put renewable resources, expanding and promoting the application scope of renewable resource recovery methods, reducing the labor intensity of the operator in recycling renewable resources, and improving the operator's work efficiency.
[0050] Specifically, the renewable resource recovery method further includes the following steps: When performing Step 3, when the user clicks the veto item, repeat Step 2. The renewable resource recovery method further includes the following steps: When performing Step 7, when the user clicks the continue option, repeat Steps 3 to 6.
[0051] In addition, the renewable resource recovery method further includes the following steps:
[0052] In Step 1, the mapping database also stores category information and its corresponding rate data;
[0053] In step six, when the weight data is negative, multiply the rate data retrieved from the storage module by the weight data to obtain the amount data. After embedding the amount data, the weight data, the self-generated end option, and the continue option into the second interaction page, forward it to the session module 12. The session module 12 immediately updates the second interaction page and displays it to the user.
[0054] With the technical solution of the present invention, when a user cheats and takes out the renewable resources put into the inner box again, the control module can judge the corresponding result according to the negative weight data, and thus impose a fine on the cheating user according to the product of the corresponding rate data and the weight data.
[0055] In addition, the renewable resource recycling method further includes the following steps:
[0056] A timer is further provided inside the first cabinet door 3, and the control module is also electrically connected to the timer. A standby threshold is stored in the storage module. Before step seven, the timer starts running and sends the timing data to the control module. The control module compares the timing data with the standby threshold. When the timing data is greater than the standby threshold, steps seven to eight are performed. The standby threshold is 10 minutes. The duration of step eight does not exceed 24 hours. With the technical solution of the present invention, when a user puts in renewable resources and forgets to continue with the corresponding operations, the control module can automatically close the cabinet door after the waiting time exceeds the standby threshold, avoiding losses of the materials in the inner box.
[0057] Specifically, a bracket 19 is also provided inside the outer box 1, and the inner box 2 is supported on the bracket 19. In step seven, if the operator disagrees, the operator can contact the user by calling or other means, inquire of the user, communicate and negotiate for handling. A camera 21 is also provided inside the outer box 1. The camera 21 is aligned at the delivery door 18, and the camera 21 is electrically connected to the control module 24. In step five, the camera 21 is used to obtain the video image of the user putting renewable resources into the inner box 2 and forward the video image to the control module 24; in step seven, the control module 24 also encapsulates the video image from the camera 21 into the order file; in step eight, the operator also reviews the video image in the order file. The mobile terminal is the user's smart phone, and the recognition module 26 is a WeChat mini-program embedded in the user's smart phone. The identity information includes the user's name, the user's mobile phone number, and the user's WeChat ID. The category information includes cardboard, iron blocks, mineral water bottles, plastic products, and foam. The conversation module 12 can be replaced by a touch screen. By adopting the technical solution of the present invention, the inner box is supported by the bracket, so that the middle position at the bottom of the inner box is in a suspended state. When the inner box is full of materials, the inner box can be conveniently taken out by a forklift, so as to quickly replace the empty inner box. By adopting the technical solution of the present invention, the camera 21 is used to monitor the entire behavior process of residents putting renewable resources in real time, avoiding residents from practicing fraud and facilitating the operator to trace back.
[0058] In addition, a level gauge 22 is also provided inside the inner box 2, and a level threshold is also stored in the storage module 13. The level gauge 22 is used to obtain the material level data inside the inner box 2 and forward the level data to the control module 24. The control module 24 also compares the level threshold in the storage module 13 with the level data from the level gauge 22. When the level data is greater than the level threshold, the control module 24 also sends a full tank prompt message to the cloud server.
[0059] In addition, a foreign object detector 23 is also provided inside the first cabinet door 3. The foreign object detector 23 is aligned at the gap between the sliding door 6 and the delivery hole 4. When a foreign object blocks the gap between the sliding door 6 and the delivery hole 4, the foreign object detector 23 sends a pulse signal to the control module 24, and the control module 24 immediately controls the motor 5 to stop.
Claims
1. A renewable resource recovery method, characterized in that: It includes the following steps: Step 1: The user classifies renewable resources in advance; the operator provides a recycling terminal and a cloud server, and the cloud server is connected to the bank online trading platform. The recycling terminal includes an outer box (1) and an inner box (2), and the inner box (2) is completely accommodated in the outer box (1). A first cabinet door (3) is hinged on the surface of the outer box (1), and a feeding hole (4) is provided on the surface of the first cabinet door (3), and the position of the feeding hole (4) corresponds to that of the inner box (2). A motor (5), a sliding door (6), a pair of guide rails (7) and a pair of sliders (8) are further provided in the first cabinet door (3). The guide rails (7) are arranged on the upper and lower sides of the feeding hole (4) respectively, the sliders (8) are sleeved on the guide rails (7), and the sliding door (6) is fixedly connected between the pair of sliders (8). A transmission device (9) is further provided between the output shaft of the motor (5) and the slider (8). A metering module (10) is further provided at the bottom of the inner box (2). A session module (12), a storage module (13) and a control module (24) are further provided in the first cabinet door (3). The control module (24) is electrically connected to the control end of the motor (5), the metering module (10), the session module (12) and the storage module (13) respectively; a mapping database is established in the storage module (13), and category information and its corresponding unit price data are stored in the mapping database. The storage module (13) is further used to summarize all category information together to form a category list and store it; Step 2: The control module (24) generates a two-dimensional code, embeds the consent item and the veto item into the two-dimensional code, and then the control module (24) sends the two-dimensional code to the session module (11), and the session module (11) displays it to the user; Step 3: The user scans the code through the reading module (26) built in the mobile terminal to receive the two-dimensional code image input, and then obtains the consent item and the veto item in the two-dimensional code through the two-dimensional code decoding algorithm and the extraction algorithm. When the user clicks the consent item, the reading module obtains the identity information stored by the user in the mobile terminal and sends the identity information to the control module (24) through the wireless communication network; Step 3: The control module (24) generates a first interaction page, embeds the identity information from the mobile terminal and the category list extracted from the storage module into the first interaction page, and then the control module (24) sends the first interaction page to the session module (11), and the session module (11) displays it to the user; Step 4: When the user clicks on the category information in the category list, the control module (24) generates a second interaction page, initial weight data, weight data, and amount data, and sets the initial weight data, weight data, and amount data to zero. Then, the category information selected by the user, the unit price data, weight data, and amount data extracted from the storage module are all embedded in the second interaction page. The control module (24) then sends the second interaction page to the session module (11), and the session module (11) displays it to the user. The control module (24) also simultaneously drives the motor (5) to start forward, moves the sliding door (6), and exposes the inner box (2) in front of the user; Step 5: The user opens the delivery door (18) and puts the sorted renewable resources into the inner box (2). The metering module (10) obtains the weight increment data of the inner box (2) and the objects inside it, and forwards the increment data to the control module (24); Step 6: The control module (24) first subtracts the initial weight data generated by itself from the increment data from the metering module (10) to obtain the weight data. When the weight data is positive, it multiplies the unit price data extracted from the storage module by the weight data to obtain the amount data. After embedding the amount data, weight data, self-generated end option, and continue option into the second interaction page, it forwards it to the session module (12). The session module (12) immediately updates the second interaction page and displays it to the user; Step 7: When the user clicks on the end option, the control module (24) drives the motor (5) to start in reverse and moves the sliding door (6) in the reverse direction, so that the sliding door (6) blocks in front of the user. The control module (24) also encapsulates the amount data, identity information, category information, unit price data, and increment data to generate an order file, and finally forwards the order file to the cloud server through the wireless communication network; Step 8: The operator reviews the order file through the cloud server. When the operator agrees, the bank online trading platform transfers the corresponding funds to the user according to the identity information and amount data in the order file.
2. The renewable resource recovery method according to claim 1, wherein: The renewable resource recycling method further includes the following steps: When performing Step 3, when the user clicks on the veto item, repeat Step 2.
3. The renewable resource recycling method according to claim 1, wherein: The renewable resource recycling method further includes the following steps: When performing Step 7, when the user clicks on the continue option, repeat Steps 3 to 6.
4. The renewable resource recovery method according to claim 1, wherein: The renewable resource recycling method further includes the following steps: In Step 1, the mapping database also stores category information and its corresponding rate data; In Step 6, when the weight data is negative, multiply the rate data extracted from the storage module by the weight data to obtain the amount data. After embedding the amount data, weight data, self-generated end option, and continue option into the second interaction page, forward it to the session module (12). The session module (12) immediately updates the second interaction page and displays it to the user.
5. The renewable resource recovery method according to claim 1, characterized in that: The renewable resource recycling method further includes the following steps: A timer is also provided inside the first cabinet door (3), and the control module is also electrically connected to the timer. A standby threshold is also stored in the storage module. Before performing step seven, the timer starts running and sends timing data to the control module. The control module compares the timing data with the standby threshold. When the timing data is greater than the standby threshold, steps seven to eight are performed.
6. The renewable resource recovery method according to claim 1, wherein: A bracket (19) is also provided inside the outer box (1), and the inner box (2) is supported on the bracket (19).
7. The renewable resource recycling method according to claim 1, wherein: The identity information includes the user's name, the user's mobile phone number, and the user's WeChat ID.
8. The renewable resource recycling method according to claim 1, wherein: A level gauge (22) is also provided inside the inner box (2), and a level threshold is also stored in the storage module (13). The level gauge (22) is used to obtain the material level data inside the inner box (2) and forward the level data to the control module (24). The control module (24) also compares the level threshold in the storage module (13) with the level data from the level gauge (22). When the level data is greater than the level threshold, the control module (24) also sends a full tank prompt message to the cloud server.
9. The renewable resource recovery method according to claim 1, wherein: A foreign object detector (23) is also provided inside the first cabinet door (3). The foreign object detector (23) is aligned with the gap between the sliding door (6) and the feeding hole (4). When a foreign object blocks the gap between the sliding door (6) and the feeding hole (4), the foreign object detector (23) sends a pulse signal to the control module (24), and the control module (24) immediately controls the motor (5) to stop.
Citation Information
Patent Citations
Intelligent renewable resource recycling equipment
CN212889087U