Waste oil recovery system, oil receiver user side system and oil supplier user side system

Through the integration of the oil quantity monitoring device and terminal system, the efficient and low-cost operation of the waste oil recovery system is achieved, the problems of high and low efficiency of waste oil recovery are solved, and the route and data interaction process of the waste oil recovery task are optimized.

CN120297957APending Publication Date: 2025-07-11成都连上科技有限公司
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Patent Information

Application Number
CN202310964154.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-08-02
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

In the prior art, waste oil recovery costs are high and inefficient, and repair shops need to transport waste engine oil separately, resulting in high and inefficient costs.

Method used

The current oil volume of waste oil recycling barrel is collected through the oil quantity monitoring device. The first user terminal reports the data to the server. The server integrates the data to formulate the oil collection task. The second user terminal performs the oil collection task. The third user terminal provides waste oil recycling price information to optimize the task route. The second user terminal directly reports the oil supply and oil collection data, and the data carries a digital signature to ensure reliability.

Benefits of technology

It improves waste oil recovery efficiency, reduces the number of transportation times and costs, simplifies the data reporting process, and ensures the reliability and accuracy of the data.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a waste oil recovery system, an oil receiver user side system and an oil supplier user side system, the waste oil recovery system comprises an oil mass monitoring device, a server, a first user terminal and a second user terminal, the oil mass monitoring device is in communication connection with the first user terminal, and the first user terminal and the second user terminal are respectively in communication connection with the server; the oil quantity monitoring device is used for collecting the current oil quantity of the waste oil recovery barrel and transmitting the current oil quantity to the first user terminal, the first user terminal is used for sending the distribution position and the current oil quantity of the waste oil recovery barrel to the server, and the server formulates an oil recovery task according to the distribution position and the current oil quantity of the waste oil recovery barrel; and sending the oil receiving task to the second user terminal. The waste oil recovery efficiency can be improved, and the recovery cost can be reduced.
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Description

Technical Field

[0001] The present invention relates to the technical field of waste recycling, and particularly relates to a waste oil recycling system, an oil receiving party user terminal system, and an oil supplying party user terminal system. Background Art

[0002] Waste recycling can not only solve the problem of waste treatment, but also create new value, which is very meaningful in the contemporary era of various resource shortages. For example, the recycling of waste oil, by regenerating waste oil into finished oil, can not only alleviate the contradiction between the shortage of petroleum and the growing demand, but also create objective economic benefits. Therefore, the recycling of waste oil is of great significance. Generally, places that generate waste oil, such as repair shops and 4S stores, do not have the conditions to regenerate waste oil into finished oil. Therefore, after collecting waste oil, it is necessary to transport the waste oil to a special waste oil treatment party, such as an oil refinery, for treatment and then generate finished oil. The traditional waste oil recycling method is that repair shops collect waste oil in simple oil drums. After collecting to a certain extent, they notify the oil refinery to pick it up. Since each repair shop is independent and the time to pick up waste oil is different, it is necessary to transport separately each time, resulting in high costs and low efficiency. Summary of the Invention

[0003] The purpose of the present invention is to improve the problems of high cost and low efficiency in waste oil recycling in the prior art, and provide a waste oil recycling system, an oil receiving party user terminal system, and an oil supplying party user terminal system.

[0004] In order to achieve the above invention purpose, the embodiments of the present invention provide the following technical solutions: A waste oil recycling system includes an oil quantity monitoring device, a server, a first user terminal, and a second user terminal. The oil quantity monitoring device is communicatively connected to the first user terminal, and the first user terminal and the second user terminal are respectively communicatively connected to the server. The oil quantity monitoring device is used to collect the current oil quantity of the waste oil recycling barrel and transmit it to the first user terminal. The first user terminal is used to send the distribution position and the current oil quantity of the waste oil recycling barrel to the server. The server formulates an oil collection task according to the distribution position and the current oil quantity of the waste oil recycling barrel, and sends the oil collection task to the second user terminal.

[0005] In the above solution, the current oil volume in the waste oil recovery barrel is collected by the oil volume monitoring device, eliminating the need for manual observation at all times. The first user terminal reports the distribution location of the waste oil recovery barrel and its current oil volume to the server. The first user terminal can be held by each oil supply user. For example, each repair shop reports the oil volume data it has collected to the server. After receiving the data, the server integrates all the data, makes a unified plan, formulates an oil collection task, and then sends it to the second user terminal, and the affiliated user of the second user terminal executes the oil collection task. Since the oil collection task is formulated by integrating several pieces of data, the oil collection task includes several collection points (such as repair shops). That is, executing one oil collection task can collect the waste engine oil collected by multiple collection points. Therefore, the efficiency is high, and the collection volume of each task is large, reaching the transportation saturation state. Therefore, the collection frequency can be greatly reduced, and the cost can be reduced accordingly.

[0006] The first user terminal can also be held by the user who specifically manages the waste oil recovery barrel. That is, the repair shop does not need to handle the waste oil recovery event, thus reducing the pressure on the repair shop. The second user terminal can be held by the oil collection user who conducts waste oil treatment. That is, when the oil collection party executes one oil collection task, it can involve several repair shops, rather than being limited to only one repair shop in the traditional way. Therefore, the cost is reduced, and the waste oil recovery volume of the oil collection party can also be increased. The second user terminal can also be held by the transportation user who specifically executes the oil collection task. That is, the oil collection party that conducts waste oil treatment does not need to collect oil everywhere, thus reducing the workload and cost of the oil collection party.

[0007] Furthermore, to solve the problem of how to further reduce the waste oil recovery cost, the embodiments of the present invention provide the following technical solutions: It further includes a third user terminal communicatively connected to the server, which is used to send the waste oil recovery price information of the recovery point on the current day to the server. The server formulates an oil collection task based on the distribution location of the waste oil recovery barrel, its current oil volume, the waste oil recovery price information of the recovery point on the current day, and the location information.

[0008] The oil collection task can be based on only which collection points to collect waste oil, or can also include transporting the collected waste oil to which refineries for treatment. In the above solution, by sending the waste oil recovery price information of the recovery point on the current day to the server through the third user terminal, the server can formulate an oil collection task based on the waste oil recovery price information and location information of the recovery point on the current day. That is, the oil collection task not only considers the location of the recovery point to determine which repair shops' waste oil can be recycled this time to make the transportation route the shortest, that is, the transportation cost is the lowest, but also considers the recovery prices of each oil collection party to determine which recovery point or points to transport to can obtain a higher selling amount. That is, multiple factors are comprehensively considered to formulate a more reasonable oil collection task to reduce the waste oil recovery cost.

[0009] Further, to solve the problem of how to improve the convenience of obtaining data on recyclables (such as waste oil), the embodiments of the present invention provide the following solutions: The second user terminal is used to send oil collection data to the server, and the oil collection data includes the oil price and oil volume data of the oil supply party and the oil price and oil volume data of the oil collection party.

[0010] The above solution is particularly applicable when the second user terminal is held by the transportation party user who performs the oil collection task. The transportation party user directly reports the oil price and oil volume data of the oil supply party and the oil price and oil volume data of the oil collection party through the second user terminal, without the need for the oil supply party and the oil collection party to separately report the corresponding data, which simplifies the data reporting process and enhances the convenience of the server to obtain oil collection data. Moreover, the second user terminal can choose to report the oil price and oil volume data of the oil supply party and the oil price and oil volume data of the oil collection party separately, or can choose to report all the data at the same time. When reporting at the same time, the number of interactions with the server can be reduced by half, thereby reducing the communication pressure. It is easy to understand that the oil price and oil volume of the oil supply party not only include the oil price data and oil volume data, but also include the identity identifier of the oil supply party, and the oil price and oil volume of the oil collection party not only include the oil price data and oil volume data, but also include the identity identifier of the oil collection party, so as to avoid data confusion and achieve cost settlement.

[0011] Further, to solve the problem of how to further improve the reliability of the reported data, the embodiments of the present invention provide the following technical solutions: The oil collection data carries a digital signature.

[0012] In the above solution, the oil collection data to be reported needs to be signed and confirmed by the oil supply party or the oil collection party, and the signed and confirmed oil collection data can be reported to the server. The data with a digital signature is the data confirmed by both parties, with high reliability and good accuracy.

[0013] On the other hand, the embodiments of the present invention also provide an oil collection party user terminal system, including: A user center module, used to record the basic information of the oil collection party user; A recycling data reporting module, used to report the oil price and oil volume data of the oil collection party to the server.

[0014] To solve the problem of how to further reduce the cost of waste oil recycling, the above oil collection party user terminal system further includes a price data reporting module, used to report the daily waste oil recycling price information of the recycling point to the server.

[0015] To solve the problem of how to save the settlement record, the above oil collection party user terminal system further includes an electronic wallet module, used to obtain the settlement fee information. Through the electronic wallet module, not only can the settlement fee query be realized, but also the historical data record can be realized, which is convenient for viewing or tracing at any time.

[0016] On the other hand, an embodiment of the present invention further provides an oil supply user terminal system, including: A user center module for recording the basic information of oil supply users; An oil barrel data reporting module for reporting the distribution location and current oil volume of waste oil recycling barrels to the server.

[0017] Compared with the prior art, in the waste oil recycling system of the present invention, several first user terminals report the distribution location and current oil volume of the waste oil recycling barrels to the server, and the server integrates all the data to formulate an oil collection task. The oil collection task includes several collection points (such as repair shops), that is, one oil collection task can collect the waste oil collected at multiple collection points. Therefore, the efficiency is high, and the collection volume of each task is large, which can reach the transportation saturation state. Therefore, the collection frequency can be greatly reduced, and the cost can be reduced accordingly. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the present invention, and therefore should not be regarded as limiting the scope. For those of ordinary skill in the art, other related drawings can be obtained based on these drawings without creative efforts.

[0019] Figure 1 It is a schematic structural diagram of the waste oil recycling system in Embodiment 1.

[0020] Figure 2 It is a schematic structural diagram of the waste oil recycling system in Embodiment 2.

[0021] Figure 3 It is a block diagram of the composition of the oil supply user terminal system in Embodiment 3.

[0022] Figure 4 It is a block diagram of the composition of the oil collection user terminal system in Embodiment 4. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0023] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. The components of the embodiments of the present invention described and illustrated here can be arranged and designed in various different configurations. Therefore, the detailed description of the embodiments of the present invention provided in the drawings below is not intended to limit the scope of the claimed invention, but merely represents the selected embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative efforts fall within the scope of protection of the present invention. Embodiment 1:

[0024] Please refer to Figure 1 In this embodiment, an waste oil recovery system is provided, which includes an oil quantity monitoring device, a server, a first user terminal, and a second user terminal. The oil quantity monitoring device is communicatively connected to the first user terminal, and the first user terminal and the second user terminal are respectively communicatively connected to the server.

[0025] An oil quantity acquisition device is installed on the waste oil recovery barrel for acquiring the current oil quantity in the waste oil recovery barrel. As an example of an implementable manner, the oil quantity acquisition device may be a liquid level sensor, which determines the oil quantity by acquiring the height of the liquid level in the waste oil recovery barrel. At this time, the oil quantity can be understood as the height of the waste engine oil at the liquid level in the waste oil recovery barrel. The oil quantity acquisition device needs to establish a communication connection with the first user terminal through a communication module. Both the communication module and the oil quantity acquisition device need power to work. The communication module and the power supply can be integrated with the oil quantity acquisition device as a whole, or can be separate independent components installed on the waste oil recovery barrel.

[0026] The first user terminal obtains the distribution position and the current oil quantity of the waste oil recovery barrel from the oil quantity acquisition device. As an implementation manner, the waste oil recovery barrel or the oil quantity acquisition device can regularly send the current oil quantity data to the first user terminal. The data carries the waste oil recovery barrel code or the oil quantity acquisition device code. The distribution position of the waste oil recovery barrel can be determined through the code. Therefore, the distribution position of the waste oil recovery barrel does not necessarily refer to specific position information, but can also be information that can characterize the position, such as the waste oil recovery barrel code or the oil quantity acquisition device code. As another implementation manner, it can also be that the first user terminal requests the current oil quantity data from the waste oil recovery barrel.

[0027] The server is used to obtain the distribution position and the current oil quantity of the waste oil recovery barrel from the first user terminal. The server can actively request the oil barrel data (including the oil barrel distribution position and the current oil quantity) from the first user terminal. A more preferred implementation manner is that the first user terminal reports the oil barrel data to the server, because the user can selectively report or not report, and can also choose to report all or part of the oil barrel data of the waste oil recovery barrels, which is more flexible. For example, choose to report the oil barrel data of the waste oil recovery barrels with the current oil quantity exceeding the set threshold, and do not report the other oil barrel data. The purpose of data reporting is to facilitate the server to arrange the oil collection task. If the oil quantity in the waste oil recovery barrel is too small, there is no need for recovery. Therefore, only reporting the oil barrel data of the waste oil recovery barrels with the current oil quantity exceeding the set threshold can maximize the storage capacity of the waste oil recovery barrels and also achieve the purpose of timely data reporting and timely arrangement of the oil collection task.

[0028] It should be understood that the first user terminal can be one, managing several waste oil recovery barrels distributed at multiple waste oil collection points (such as repair shops). The first user terminal can be multiple, held by different users. After the server receives the data reported by each first user terminal, it formulates an oil collection task based on the distribution locations of all waste oil recovery barrels and their current oil volume, and sends the oil collection task to the second user terminal.

[0029] Firstly, the current oil volume in the waste oil recovery barrel is collected by using the oil volume monitoring device, and there is no need for manual observation at any time, so that the oil volume can be automatically collected; secondly, the first user terminal can be held by each oil supplier user, for example, each repair shop reports the oil volume data collected by itself to the server, and the server integrates all the data after receiving the data, makes a unified plan, and formulates the oil collection task. Since the oil collection task is formulated by integrating several pieces of data, the oil collection task includes several collection points (such as repair shops), that is, executing an oil collection task can collect waste engine oil collected by multiple collection points, so the efficiency is high, and the collection volume of each task is large, which can reach the transportation saturation state, so the number of collections can be greatly reduced, thereby reducing the recycling cost.

[0030] It is easy to understand that the first user terminal can be held by users of various oil suppliers (such as repair shops), or by users who specialize in managing waste oil recovery barrels, that is, the repair shop does not need to handle waste oil recovery events, thereby reducing the pressure on the repair shop. The second user terminal can be held by users of the oil receiver who handle waste oil, or by users of the transporter who specializes in performing oil collection tasks, that is, the oil receiver who handles waste oil does not need to collect oil everywhere, thereby reducing the workload and cost of the oil receiver. Embodiment 2:

[0031] See also Figure 2 Compared with Example 1, in this embodiment, the waste oil recovery system also includes a third user terminal connected to the server for communication, and is used to send the waste oil recovery price information of the recovery point on the same day to the server. The server formulates the oil collection task according to the distribution location of the waste oil recovery barrels and their current oil volume, the waste oil recovery price information of the recovery point on the same day, and the location information.

[0032] The oil collection task can only include the process of collecting waste oil from multiple collection points. In this case, the oil collection task only involves collection points. The oil collection task can also include both the process of collecting waste oil from multiple collection points and transporting the collected waste oil to recycling points such as refineries. In this case, the oil collection task involves both collection points and recycling points. When formulating an oil collection task, you can arbitrarily select the collection points and recycling points involved in this oil collection task, but this may result in higher transportation costs.

[0033] In this embodiment, it is preferred that the third user terminal is held by the oil collection party user who conducts waste oil treatment. The oil collection party user sends the daily waste oil recovery price information of the recovery point to the server through the third user terminal, so that the server can formulate an oil collection task based on the daily waste oil recovery price information and location information of the recovery point. That is, the oil collection task not only considers the location of the recovery point to determine which repair shops' waste oil to recover this time and which recovery point to transport to can make the transportation route the shortest, that is, the transportation cost is the lowest, but also considers the recovery prices of each oil collection party to determine which recovery point or points to transport to can obtain a higher selling amount. That is, this solution can comprehensively consider various factors to formulate a more reasonable oil collection task and reduce the waste oil recovery cost.

[0034] In addition, in this embodiment, it is preferred that the second user terminal is held by the transportation party user who specifically executes the oil collection task. As an implementation method, the oil price and oil volume data of the oil supply party can be reported by the oil supply party user through the user terminal, and the oil price and oil volume data of the oil collection party can be reported by the oil collection party user through the user terminal. The disadvantage of this method is that there are more objects communicating with the server and the data interaction process is complex. In this embodiment, it is preferred to use another implementation method, that is, the transportation party user sends the oil collection data to the server through the second user terminal, and the oil collection data includes the oil price and oil volume data of the oil supply party and the oil price and oil volume data of the oil collection party, so as to improve the convenience of the server to obtain the oil collection data.

[0035] In addition, in order to ensure the reliability of the oil collection data and avoid filling errors, the oil collection data carries a digital signature. That is, before reporting the oil collection data, the oil supply party user or the oil collection party user needs to confirm the signature. Only the oil collection data after signature confirmation can be reported to the server. The data with a digital signature is the data confirmed by both parties and has high reliability. Embodiment 3:

[0036] An oil collection party user terminal system is provided in the embodiment. This system is a software system and can be developed into an independent application program or embedded as a small program in application programs such as WeChat. This program is mainly provided for the oil collection party user to use. For example, it is integrated into the third user terminal to provide technical support for the intelligent recovery of waste oil, improve the efficiency of waste oil recovery, and reduce costs.

[0037] Please refer to Figure 3 , the oil collection party user terminal system includes: a user center module, a recovery data reporting module, a price data reporting module, and an e-wallet module.

[0038] The user center module is used to record the basic information of the oil collection party user, such as account number, address, login password and other information.

[0039] The recovered data reporting module is used to report the oil price and oil volume data of the oil receiver to the server, so that the server can perform corresponding settlements with the oil receiver according to the oil price and oil volume data of the oil receiver. However, as described in Embodiment 2, the oil price and oil volume data of the oil receiver can also be reported by the transportation user through the second user terminal. Therefore, the recovered data reporting module can be configured as an optional component.

[0040] The price data reporting module is used to report the daily waste oil recovery price information of the recovery point to the server, so that the server can formulate a more reasonable oil receiving task to reduce the recovery cost. However, the price data reporting module is an optional configuration component, and this module can also be not configured without considering the cost.

[0041] The e-wallet module is used to obtain the settlement fee information. The fee settlement can be executed by the server or by the oil receiver user terminal system. Here, the method of directly obtaining the settlement fee information from the server is preferred. Through the e-wallet module, not only can the settlement fee query be realized, but also the historical data record can be realized, which is convenient for viewing or tracing at any time. Embodiment 4:

[0042] An oil supplier user terminal system is provided in the embodiment. This system is a software system, which can be developed into an independent application program or embedded as a small program in application programs such as WeChat. This program is mainly provided for oil supplier users. For example, it is integrated into the user terminal to provide technical support for the intelligent recovery of waste oil, improve the efficiency of waste oil recovery, and reduce costs.

[0043] As Figure 4 shown, the oil supplier user terminal system includes a user center module, an oil barrel data reporting module, and an e-wallet module.

[0044] The user center module is used to record the basic information of the oil supplier user, such as account number, address, login password and other information.

[0045] The oil barrel data reporting module is used to report the distribution location and current oil volume of the waste oil recovery barrels to the server, so that the server can formulate an oil receiving task according to the distribution location and current oil volume of the waste oil recovery barrels. However, as described in Embodiment 1, the distribution location and current oil volume of the waste oil recovery barrels can also be reported by the user who specifically manages the waste oil recovery barrels through the user terminal. Therefore, the oil barrel data reporting module can be configured as an optional component.

[0046] The e-wallet module is used to obtain the settlement fee information, which can not only realize the settlement fee query, but also realize the historical data record, which is convenient for viewing or tracing at any time.

[0047] As described above, it is only the specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention can easily think of changes or substitutions, which should all be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the protection scope of the claims.

Claims

1. An waste oil recovery system, characterized in that, It includes an oil quantity monitoring device, a server, a first user terminal, and a second user terminal. The oil quantity monitoring device is communicatively connected to the first user terminal, and the first user terminal and the second user terminal are respectively communicatively connected to the server; the oil quantity monitoring device is used to collect the current oil quantity of the waste oil recycling barrel and transmit it to the first user terminal, and the first user terminal is used to send the distribution location and its current oil quantity of the waste oil recycling barrel to the server. The server formulates an oil collection task based on the distribution location and its current oil quantity of the waste oil recycling barrel and sends the oil collection task to the second user terminal.

2. The waste oil recovery system according to claim 1, wherein, It further includes a third user terminal communicatively connected to the server, which is used to send the waste oil recycling price information of the recycling point on the current day to the server. The server formulates an oil collection task based on the distribution location and its current oil quantity of the waste oil recycling barrel, the waste oil recycling price information of the recycling point on the current day, and the location information.

3. The waste oil recovery system according to claim 1, wherein The second user terminal is used to send oil collection data to the server, and the oil collection data includes the oil price and oil quantity data of the oil supply party and the oil price and oil quantity data of the oil collection party.

4. The waste oil recovery system according to claim 3, characterized in that, The oil collection data carries a digital signature.

5. An oil collection party user terminal system, characterized in that, It includes: A user center module, which is used to record the basic information of the oil collection party user; A recycling data reporting module, which is used to report the oil price and oil quantity data of the oil collection party to the server.

6. The oil collection party user terminal system according to claim 5, characterized in that, It further includes a price data reporting module, which is used to report the waste oil recycling price information of the recycling point on the current day to the server.

7. The oil collection party user terminal system according to claim 5, wherein It further includes an e-wallet module, which is used to obtain settlement fee information.

8. An oil supply party user terminal system, characterized in that, It includes: A user center module, which is used to record the basic information of the oil supply party user; An oil barrel data reporting module, which is used to report the distribution location and its current oil quantity of the waste oil recycling barrel to the server.

9. The fuel supply user terminal system according to claim 8, characterized in that, It further includes an e-wallet module, which is used to obtain settlement fee information.