Method and related product for storing and monitoring hazardous waste liquid

Through the communication between servers and sensors and electronic equipment, the parameters of hazardous waste liquid and container parameters are monitored in real time, and the growth curve is predicted in combination with the output plan, the accuracy of hazardous waste liquid storage monitoring is solved, and the timely transportation of hazardous waste liquid and resource optimization is achieved.

CN114066255BActive Publication Date: 2025-08-05FUJIAN YU RONG TECH CO LTD
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Patent Information

Application Number
CN202111365325.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-11-17
Publication Date
2025-08-05
Estimated Expiration
2041-11-17

AI Technical Summary

Technical Problem

In the prior art, hazardous waste liquid storage monitoring relies on manual testing, which leads to the inability to accurately predict the amount of hazardous waste liquid in the storage container, which may lead to production stagnation or waste of transportation resources.

Method used

Through the communication between servers and sensors and electronic devices, the hazardous waste liquid parameters and container parameters are monitored in real time, combined with the output plan, predict the growth curve, determine the use of storage containers and send a transport strategy.

Benefits of technology

Accurate monitoring of hazardous waste liquid storage is achieved, avoiding production stagnation and waste of transportation resources, and ensuring timely transportation of hazardous waste liquid.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the present application provides a storage monitoring method and related products for hazardous waste liquids, the method comprising a server obtaining hazardous waste liquid parameters and container parameters of a hazardous waste liquid storage container from a sensor, determining the weight of hazardous waste liquid in the hazardous waste liquid storage container based on the hazardous waste liquid parameters and the container parameters, obtaining a first hazardous waste liquid output plan based on output information from a first electronic device, determining a growth curve of hazardous waste liquid in the hazardous waste liquid storage container within a preset time period based on the first hazardous waste liquid output plan, determining the usage of the hazardous waste liquid storage container based on the hazardous waste liquid weight and the growth curve, and sending the usage to a second electronic device, wherein the usage is used to indicate the hazardous waste liquid transfer strategy of the hazardous waste liquid disposal company. In this way, the weight of the hazardous waste liquid in the storage tank can be monitored in a timely and accurate manner, and the hazardous waste liquid output company will not be forced to stop production because the storage container is full.
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Description

Technical Field

[0001] The present application relates to the field of data processing, and specifically relates to a storage monitoring method for hazardous waste liquid and related products. Background Art

[0002] The production of electronic devices often generates large amounts of wastewater. Direct discharge of this wastewater can cause serious environmental pollution, so companies need to store and transfer this wastewater to specialized companies for transfer and treatment. To ensure timely removal of stored wastewater, personnel must regularly monitor storage tanks to determine the current volume. This not only wastes manpower and time, but also can lead to untimely transfers, disrupting normal production, or wastewater being transferred before sufficient storage space is available, wasting transportation resources. Summary of the Invention

[0003] The embodiments of the present application provide a storage monitoring method and related products for hazardous waste liquids, in order to improve the intelligence of the monitoring of hazardous waste liquid storage, so as to improve the rationality of the arrangement of transportation resources of hazardous waste liquid disposal companies and reduce the waste of transportation resources without delaying the production of hazardous waste liquid by enterprises.

[0004] In a first aspect, an embodiment of the present application provides a storage monitoring method for hazardous waste liquid, which is applied to a server of a hazardous waste liquid storage monitoring system. The hazardous waste liquid storage monitoring system includes the server, a first electronic device of a first user of a hazardous waste liquid production company, a second electronic device of a second user of a hazardous waste liquid disposal company, and a sensor located in a hazardous waste liquid storage container. The server is communicatively connected to the first electronic device, the second electronic device, and the sensor, respectively. The method includes:

[0005] obtaining hazardous waste liquid parameters from the sensor;

[0006] Obtaining container parameters of the hazardous waste liquid storage container;

[0007] Determining the weight of the hazardous waste liquid in the hazardous waste liquid storage container according to the hazardous waste liquid parameters and the container parameters;

[0008] Obtaining a first hazardous waste liquid output plan based on the output information from the first electronic device;

[0009] Determining a growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within a preset period of time according to the first hazardous waste liquid output plan, wherein the growth curve is used to indicate a weight change of the hazardous waste liquid in the hazardous waste liquid storage container within the preset period of time;

[0010] Determining the usage of the hazardous waste liquid storage container according to the weight of the hazardous waste liquid and the growth curve;

[0011] The usage status is sent to the second electronic device, where the usage status is used to indicate a hazardous waste liquid transfer strategy of the hazardous waste liquid disposal company.

[0012] In a second aspect, an embodiment of the present application provides a storage monitoring device for hazardous waste liquid, which is applied to a server of a hazardous waste liquid storage monitoring system. The hazardous waste liquid storage monitoring system includes the server, a first electronic device of a first user of a hazardous waste liquid production company, a second electronic device of a second user of a hazardous waste liquid disposal company, and a sensor located in a hazardous waste liquid storage container. The server is communicatively connected to the first electronic device, the second electronic device, and the sensor, respectively. The device includes:

[0013] A first acquiring unit, configured to acquire hazardous waste liquid parameters from the sensor;

[0014] A second acquiring unit, configured to acquire container parameters of the hazardous waste liquid storage container;

[0015] a first determining unit, configured to determine the weight of the hazardous waste liquid in the hazardous waste liquid storage container according to the hazardous waste liquid parameters and the container parameters;

[0016] a third acquiring unit, configured to acquire a first hazardous waste liquid output plan according to the output information from the first electronic device;

[0017] a second determining unit, configured to determine a growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within a preset period of time according to the first hazardous waste liquid output plan, wherein the growth curve is used to indicate a weight change of the hazardous waste liquid in the hazardous waste liquid storage container within the preset period of time;

[0018] a third determining unit, configured to determine a usage condition of the hazardous waste liquid storage container according to the weight of the hazardous waste liquid and the growth curve;

[0019] A sending unit is used to send the usage status to the second electronic device, where the usage status is used to indicate the hazardous waste liquid transfer strategy of the hazardous waste liquid disposal company.

[0020] In a third aspect, the present application provides a server, characterized in that it includes a processor, a memory, and one or more programs, wherein the one or more programs are stored in the memory and configured to be executed by the processor, and the program includes instructions for executing the steps in any method described in the first aspect or the second aspect above.

[0021] In a fourth aspect, an embodiment of the present application provides a computer-readable storage medium, wherein the computer-readable storage medium stores a computer program for electronic data exchange, wherein the computer program enables a computer to execute part or all of the steps described in any method of the first aspect or second aspect of the embodiment of the present application.

[0022] In a fifth aspect, an embodiment of the present application provides a computer program, wherein the computer program is operable to cause a computer to execute some or all of the steps described in any of the methods of the first or second aspects of the embodiments of the present application. The computer program can be a software installation package.

[0023] It can be seen that in the embodiment of the present application, the server obtains the hazardous waste liquid parameters from the sensor, and then obtains the container parameters of the hazardous waste liquid storage container, and then determines the weight of the hazardous waste liquid in the hazardous waste liquid storage container based on the hazardous waste liquid parameters and the container parameters, and then obtains the first hazardous waste liquid output plan based on the output information from the first electronic device, and then determines the growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within a preset time period based on the first hazardous waste liquid output plan, and then determines the usage of the hazardous waste liquid storage container based on the weight of the hazardous waste liquid and the growth curve, and finally sends the usage to the second electronic device, and the usage is used to indicate the hazardous waste liquid transfer strategy of the hazardous waste liquid disposal company. In this way, not only can the weight of the hazardous waste liquid in the storage tank be monitored in a timely and accurate manner, but the growth curve of the hazardous waste liquid can also be predicted, so that the hazardous waste liquid disposal company can transfer the hazardous waste liquid in a timely manner without wasting transportation resources, and will not force the hazardous waste liquid output company to stop production because the storage container is full. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0025] Figure 1a This is a structural diagram of a hazardous waste liquid storage monitoring system provided in an embodiment of the present application;

[0026] Figure 1b This is a schematic diagram of the structure of a server provided in an embodiment of the present application;

[0027] Figure 2a This is a flow chart of a storage monitoring method for hazardous waste liquid provided in an embodiment of the present application;

[0028] Figure 2b This is a schematic diagram of a growth curve of a hazardous waste liquid provided in an embodiment of the present application;

[0029] Figure 3 This is a structural diagram of a storage monitoring device for hazardous waste liquid provided in an embodiment of the present application;

[0030] Figure 4 This is a structural diagram of another storage monitoring device for hazardous waste liquid provided in an embodiment of the present application. DETAILED DESCRIPTION

[0031] In order to enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts shall fall within the scope of protection of the present invention.

[0032] The terms "first," "second," and the like in the specification and claims of this application and the accompanying drawings are used to distinguish between different objects, not to describe a particular order. Furthermore, the terms "including," "having," and any variations thereof, are intended to cover non-exclusive inclusions. For example, a process, method, system, product, or apparatus comprising a series of steps or elements is not limited to the listed steps or elements but may optionally include steps or elements not listed, or may optionally include other steps or elements inherent to the process, method, product, or apparatus.

[0033] References herein to "embodiments" mean that a particular feature, structure, or characteristic described in connection with the embodiments may be included in at least one embodiment of the present application. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor does it constitute an independent or alternative embodiment that is mutually exclusive of other embodiments. It is understood, both explicitly and implicitly, by those skilled in the art that the embodiments described herein may be combined with other embodiments.

[0034] Currently, hazardous waste liquid production companies store hazardous waste liquids generated during the production process in a single container. Hazardous waste liquid disposal company staff regularly inspect the hazardous waste liquid storage status of each container. Once the staff discovers that the weight of the hazardous waste liquid has reached the agreed-upon weight, they instruct the hazardous waste liquid disposal company to transfer the hazardous waste liquid. However, since these processes are manually determined and inspected, it is impossible to accurately predict the hazardous waste liquid storage volume of the storage container over a period of time. This may result in staff not promptly discovering that the weight of the hazardous waste liquid has reached the agreed-upon weight, or the transfer plan arranged by the staff not being accurately aligned with the hazardous waste liquid production volume of the hazardous waste liquid production company. This may force the hazardous waste liquid production company to halt production due to full storage containers, or result in waste of transportation resources for the hazardous waste liquid disposal company.

[0035] In response to the above problems, the present application provides a storage monitoring method and related products for hazardous waste liquid. In order to better understand the technical solutions of the embodiments of the present application, the hazardous waste liquid storage monitoring system that may be involved in the embodiments of the present application is first introduced below.

[0036] See also Figure 1a , Figure 1a It is a structural diagram of a hazardous waste liquid storage monitoring system provided in an embodiment of the present application. As shown in the figure, the hazardous waste liquid storage monitoring system 10 includes a server 101, a first electronic device 102, a second electronic device 103 and a sensor 103. The server 101 is respectively connected to the first electronic device 102, the second electronic device 103 and the sensor 104 for communication. Among them, the first electronic device 102 is the electronic device of the first user corresponding to the hazardous waste liquid production company, and the second electronic device 103 is the electronic device of the second user corresponding to the hazardous waste liquid disposal company. The second user may be an on-site staff assigned to the hazardous waste liquid production company. The sensor 104 is located in the hazardous waste liquid storage container and is used to detect the weight of the hazardous waste liquid in the hazardous waste liquid storage container in real time.

[0037] See also Figure 1b , Figure 1b This is a schematic diagram of the structure of a server provided in an embodiment of the present application. As shown in the figure, the server 20 can be used to implement the steps of the storage monitoring method for hazardous waste liquids. The server 20 includes a processor 110, a memory 120, a communication interface 130, and one or more programs 121. The one or more programs 121 are stored in the memory 120 and configured to be executed by the processor 110. The one or more programs 121 include instructions for executing any step of the following method embodiment.

[0038] The communication interface 130 is used to support communication between the server and the electronic devices and sensors. Among them, the processor 110 can be an application processor or a controller, for example, a central processing unit (CPU), a general-purpose processor, a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field programmable gate array (FPGA) or other programmable logic devices, transistor logic devices, hardware components or any combination thereof. It can implement or execute various exemplary logic blocks, units and circuits described in conjunction with the disclosure of this application. The processor 110 can also be a combination that implements computing functions, such as a combination of one or more microprocessors, a combination of a DSP and a microprocessor, and the like.

[0039] The memory 120 is used to store the program code and data of the server. The memory 120 can be a volatile memory or a non-volatile memory, or can include both volatile and non-volatile memories. Among them, the non-volatile memory can be a read-only memory (ROM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), an electrically erasable programmable read-only memory (EEPROM), or a flash memory. The volatile memory can be a random access memory (RAM), which is used as an external cache. By way of example and not limitation, many forms of random access memory (RAM) are available, such as static RAM (SRAM), dynamic random access memory (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDR SDRAM), enhanced SDRAM (ESDRAM), synchronous link DRAM (SLDRAM), and direct rambus RAM (DRRAM).

[0040] In combination with the above description, the following will explain the execution steps of the storage monitoring method for hazardous waste liquid from the perspective of the method embodiment. Figure 2a , Figure 2a This is a flow chart of a method for monitoring the storage of hazardous waste liquids provided in an embodiment of the present application. As shown in the figure, the method for monitoring the storage of hazardous waste liquids is applied to a server of a hazardous waste liquid storage monitoring system. The hazardous waste liquid storage monitoring system includes the server, a first electronic device of a first user of a hazardous waste liquid production company, a second electronic device of a second user of a hazardous waste liquid disposal company, and a sensor located in a hazardous waste liquid storage container. The server is communicatively connected to the first electronic device, the second electronic device, and the sensor, respectively. The method includes:

[0041] S201, obtaining hazardous waste liquid parameters from the sensor;

[0042] S202, obtaining the container parameters of the hazardous waste liquid storage container;

[0043] S203: Determine the weight of the hazardous waste liquid in the hazardous waste liquid storage container according to the hazardous waste liquid parameters and the container parameters.

[0044] The hazardous waste liquid parameters from the sensor can be acquired in real time or periodically. These parameters can include the hazardous waste liquid pressure, the hazardous waste liquid height h, and other parameters. The container parameters of the hazardous waste liquid storage container can include the container capacity and the cross-sectional area A of the container. Therefore, the weight G of the hazardous waste liquid can be: G = A × h × p × g, where p is the density of the hazardous waste liquid and g is the acceleration due to gravity. The hazardous waste liquid density and container parameters can be sent to the server by either the hazardous waste liquid disposal company or the hazardous waste liquid production company. Specifically, the hazardous waste liquid disposal company can regularly test the hazardous waste liquid density to determine the accuracy of the current density. When the hazardous waste liquid production company changes the raw material formula required for production, for example, changing the stripping liquid components from A and B to A and C, or changing the ratio of the components, the hazardous waste liquid production company needs to measure the new density and report it to the server promptly.

[0045] S204: Obtain a first hazardous waste liquid output plan based on the output information from the first electronic device.

[0046] The output information may be the production plan of a hazardous waste liquid production company. This production plan may include average daily output, production processes, and corresponding operating hours. Based on the output plan, the server determines which processes in the production process will generate hazardous waste liquid, then determines the corresponding time of generation and the weight of hazardous waste liquid generated by each process, thereby determining the first hazardous waste liquid output plan. Alternatively, the hazardous waste liquid production company may directly generate the hazardous waste liquid output plan and upload it to the server.

[0047] S205: Determine a growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within a preset period of time according to the first hazardous waste liquid output plan, wherein the growth curve is used to indicate a weight change of the hazardous waste liquid in the hazardous waste liquid storage container within the preset period of time;

[0048] S206, determining the usage of the hazardous waste liquid storage container according to the weight of the hazardous waste liquid and the growth curve;

[0049] S207: Send the usage status to the second electronic device, where the usage status is used to indicate a hazardous waste liquid transfer strategy of the hazardous waste liquid disposal company.

[0050] The length of the preset time period can be set by the second user of the hazardous waste liquid disposal company. That is, the second user can adjust the length of the preset time period as needed to obtain the changes in the hazardous waste liquid in the storage container over a period of time. The preset time period can also be fixed. That is, the server can set the changes in the hazardous waste liquid after a fixed period of time. For example, the server uses "days" as the unit and predicts the growth curve of the hazardous waste liquid in the hazardous waste liquid storage container two days later every day.

[0051] See also Figure 2b , Figure 2bIt is a schematic diagram of a growth curve of a hazardous waste liquid provided in an embodiment of the present application. As shown in the figure, the hazardous waste liquid growth curve in the figure includes a real growth curve and a predicted growth curve. The growth curve corresponding to the solid line part in the figure is the real growth curve, and the time corresponding to this growth curve has already occurred. The growth curve corresponding to the dotted line part in the figure is the predicted growth curve, and the time corresponding to the predicted growth curve is the time of the preset period, that is, the time that has not yet occurred. In the hazardous waste liquid growth curve, the growth rate and growth weight of the hazardous waste liquid can be seen. It can be seen from the figure that the weight of the hazardous waste liquid increased in the preset period is M. Point A and point B are also marked in the hazardous waste liquid growth curve in the figure, where point A is the preset weight point. This point can be the weight agreed upon by the hazardous waste liquid disposal company and the hazardous waste liquid output company. When the weight reaches this scale, the hazardous waste liquid disposal company is required to transport the hazardous waste liquid away. Specifically, determining the preset weight point may include: determining the first time it takes for the hazardous waste disposal company to reach the storage container; determining the first output weight of the hazardous waste within the first timeframe based on the first hazardous waste output plan; obtaining the zero weight cutoff point for the hazardous waste storage container, where the weight corresponding to the zero weight cutoff point represents the maximum weight of hazardous waste the container can store; and determining the preset weight point = zero weight cutoff point - first output weight - K, where K is an error value determined based on historical transfer records. K can be either positive or negative and can be corrected based on multiple historical transfer records. The weight of the hazardous waste corresponding to point B represents the maximum capacity of the storage container, i.e., the zero weight cutoff point. If the weight exceeds this point, the storage container will no longer be able to accept new hazardous waste. This growth curve provides an accurate and rapid understanding of the current hazardous waste storage situation, as well as the growth trend of hazardous waste over time and the storage status of the storage container. The server can analyze the acquired growth curve and generate a corresponding analysis report, and then send the analysis report and the growth curve to the first electronic device and the second electronic device, so that the staff of the hazardous waste liquid production company and the hazardous waste liquid disposal company can timely understand the current status of the hazardous waste liquid storage container, so as to adjust and arrange the work progress in advance.

[0052] It can be seen that in this example, the server obtains the hazardous waste liquid parameters from the sensor, and then obtains the container parameters of the hazardous waste liquid storage container, and then determines the weight of the hazardous waste liquid in the hazardous waste liquid storage container based on the hazardous waste liquid parameters and the container parameters, and then obtains the first hazardous waste liquid output plan based on the output information from the first electronic device, and then determines the growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within the preset time period based on the first hazardous waste liquid output plan, and then determines the usage of the hazardous waste liquid storage container based on the weight of the hazardous waste liquid and the growth curve, and finally sends the usage to the second electronic device, and the usage is used to indicate the hazardous waste liquid transfer strategy of the hazardous waste liquid disposal company. In this way, not only can the weight of the hazardous waste liquid in the storage tank be monitored in a timely manner, but the growth curve of the hazardous waste liquid can also be predicted, so that the hazardous waste liquid disposal company can transfer the hazardous waste liquid in a timely manner without wasting transportation resources, and will not force the hazardous waste liquid output company to stop production because the storage container is full.

[0053] In a possible example, determining the growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within a preset period of time based on the first hazardous waste liquid output plan includes: determining the production line corresponding to the hazardous waste liquid storage container; when the production lines include multiple lines, obtaining the hazardous waste liquid transfer plan for each production line; obtaining the hazardous waste liquid transfer duration for each production line; determining the hazardous waste liquid transfer volume of each production line within the preset period of time based on the first hazardous waste liquid output plan and the hazardous waste liquid transfer plan; and determining the growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within the preset period of time based on the hazardous waste liquid transfer volume and the hazardous waste liquid transfer duration.

[0054] A single hazardous waste storage container may be associated with multiple production lines, and each production line may have a different hazardous waste output plan. Each production line may also have a different hazardous waste transfer plan. The hazardous waste transfer plan involves transferring hazardous waste from its production site to the hazardous waste storage container. This transfer plan can include real-time transfer and delayed transfer. A real-time transfer plan involves transferring hazardous waste via pipelines to the storage container as soon as it is generated. Delayed transfer plans can include scheduled transfer and quantitative transfer. After production, hazardous waste can be stored at the production site and then transferred to the storage container after a preset time or until its weight reaches a certain threshold. The transfer duration for a real-time transfer plan is related to the length of the pipeline used to transfer the hazardous waste. For a delayed transfer plan, the transfer duration depends on the transfer conditions. For a scheduled transfer plan, the transfer duration includes the time interval between the current time and the preset time, as well as the time required to transfer the hazardous waste from the production site to the storage container. When the transfer plan is quantitative, the time required to reach a preset weight must be determined based on the hazardous waste liquid output plan. Therefore, the transfer duration includes the time required to reach the preset weight and the time required to travel from the hazardous waste liquid output site to the storage container. In specific implementation, the server can obtain hazardous waste liquid parameters from sensors in real time and then modify the hazardous waste liquid growth curve based on the determined hazardous waste liquid parameters.

[0055] It can be seen that in this example, determining the growth curve of hazardous waste liquid based on the transfer plan and transfer time of the specific production line can improve the accuracy of the prediction of the growth curve of hazardous waste liquid and improve the accuracy of monitoring the storage conditions of hazardous waste liquid storage containers.

[0056] In a possible example, the hazardous waste liquid transfer plan includes a real-time transfer plan. After determining the hazardous waste liquid transfer volume of each production line within the preset time period according to the first hazardous waste liquid output plan and the hazardous waste liquid transfer plan, the method further includes: dividing the preset time period to obtain multiple sub-time periods; determining the first hazardous waste liquid transfer volume of each production line within each sub-time period according to the first hazardous waste liquid output plan; determining the increase in hazardous waste liquid in the hazardous waste liquid storage container within the target sub-time period according to the weight of the hazardous waste liquid, and the target sub-time period is a sub-time period among the multiple sub-time periods whose corresponding time is before the current time; The weight of the hazardous waste liquid is used to determine the increase in the hazardous waste liquid in the hazardous waste liquid storage container within each sub-period; when the error between the increase in the hazardous waste liquid corresponding to the first sub-period and the total amount of hazardous waste liquid transferred is greater than a preset error, a verification request is sent to the first electronic device, and the first sub-period is any sub-period among the multiple sub-periods; a reply information from the second electronic device is obtained; the first hazardous waste liquid output plan is updated according to the reply information to obtain a second hazardous waste liquid output plan; and the hazardous waste liquid transfer volume of each production line within the preset period is updated according to the second hazardous waste liquid output plan and the hazardous waste liquid transfer plan.

[0057] Among them, when the hazardous waste liquid transfer plan for all production lines is a real-time transfer plan, the preset time period can be divided into multiple sub-periods, and then the total amount of hazardous waste liquid transferred in each sub-period is determined according to the hazardous waste liquid output plan. The hazardous waste liquid transfer weight at this time is predicted by the server. At the same time, the server will determine the actual increase in hazardous waste liquid in the completed sub-period based on the hazardous waste liquid parameters from the sensor. When there is a large error between the total amount of hazardous waste liquid transferred and the increase in hazardous waste liquid, it means that there is a deviation in the hazardous waste liquid transfer amount predicted according to the output plan. Therefore, the server can send a verification request to the electronic device of the hazardous waste liquid output company, so that the hazardous waste liquid output company can compare and verify the actual production volume corresponding to each production line with the production plan to update the production plan. The server can obtain a new hazardous waste liquid output plan based on the new production plan uploaded by the first electronic device, and then update the hazardous waste liquid transfer volume of each production line.

[0058] It can be seen that in this example, the server corrects the predicted hazardous waste liquid transfer volume according to the actual growth volume, which can improve the accuracy of the prediction of the hazardous waste liquid growth curve and improve the accuracy of monitoring the storage conditions of the hazardous waste liquid storage containers.

[0059] In a possible example, the hazardous waste liquid transfer plan includes a delayed transfer plan, which determines the growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within the preset time period based on the hazardous waste liquid transfer volume and the hazardous waste liquid transfer duration, including: determining the preset conditions for the delayed transfer; determining the output plan of each production line based on the first output plan; determining the hazardous waste liquid transfer time and the corresponding hazardous waste liquid transfer tons of each production line based on the output plan of each production line when the preset conditions are met; determining the corresponding arrival time of each production line based on the hazardous waste liquid transfer time of each production line and the hazardous waste liquid transfer duration of each production line; and determining the growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within the preset time period based on the arrival time of each production line and the corresponding hazardous waste liquid transfer tons of each production line.

[0060] Among them, the preset condition may include a time condition or a weight condition. The preset condition is a time condition, and the method further includes: determining the daily output of each production line according to the hazardous waste liquid output plan, and determining the first hazardous waste liquid output of each production line at the target moment corresponding to the time condition according to the daily output of each production line. The arrival time is the time when the hazardous waste liquid arrives at the hazardous waste liquid storage container. Therefore, at the moment corresponding to the arrival time, the increase in the hazardous waste liquid in the hazardous waste liquid growth container is the first hazardous waste liquid output. Even if hazardous waste liquid is produced after the current target moment and before the next target moment corresponding to the time condition, since the hazardous waste liquid is not transferred, the hazardous waste liquid in the hazardous waste liquid storage container will not increase. The preset condition is a weight condition, and the method also includes: determining the first moment when each production line meets the preset condition based on the daily output of each production line and the tons of hazardous waste liquid corresponding to the weight condition; determining the first moment corresponding to each production line as the transfer moment of each production line, and the tons of hazardous waste liquid corresponding to the weight condition as the transfer tons corresponding to each production line; and determining the arrival time based on the transfer moment and the transfer duration.

[0061] It can be seen that in this example, since the transfer plan is a delayed transfer, the weight of the hazardous waste liquid will increase significantly at a certain moment. Determining the exact arrival time and the corresponding transfer tonnage can accurately predict the trend of the hazardous waste liquid growth curve, improve the monitoring accuracy of the storage conditions of hazardous waste liquid storage containers, and facilitate hazardous waste liquid disposal companies to determine the hazardous waste liquid transfer plan in advance.

[0062] In a possible example, the hazardous waste liquid storage container includes multiple containers, and after determining the usage of the hazardous waste liquid storage container based on the weight of the hazardous waste liquid and the growth curve, the method also includes: when the usage of the first hazardous waste liquid storage container includes that the weight of the hazardous waste liquid in the first hazardous waste liquid storage container will be greater than the first preset weight within the preset time period, obtaining the usage of at least one second hazardous waste liquid storage container, the first hazardous waste liquid storage container and the at least one second hazardous waste liquid storage container are storage containers among the multiple hazardous waste liquid storage containers, the usage of the second hazardous waste liquid storage container includes that the weight of the hazardous waste liquid stored within the preset time period will not be greater than the second preset weight, and the production line corresponding to the at least one second hazardous waste liquid storage container includes at least one production line corresponding to the first hazardous waste liquid storage container; based on the usage of the at least one second hazardous waste liquid storage container and the hazardous waste liquid transfer amount of the production line corresponding to the first hazardous waste liquid storage container within the preset time period, updating the hazardous waste liquid storage plan of the production line corresponding to the first hazardous waste liquid storage container.

[0063] If the predicted weight of hazardous waste in the hazardous waste storage container exceeds a preset weight within a preset time period, the hazardous waste transfer plan needs to be adjusted to prevent the hazardous waste storage container from being overfilled. The first preset weight is the agreed-upon weight of hazardous waste that the hazardous waste disposal company must transfer. The hazardous waste in the second container must contain the same composition as the first container.

[0064] It can be seen that in this example, timely adjustment of the hazardous waste liquid transfer plan based on the usage of the hazardous waste liquid storage containers can avoid the hazardous waste liquid storage containers being full and affecting production, and can also reserve time for the hazardous waste liquid disposal company to transfer the hazardous waste liquid.

[0065] In a possible example, the hazardous waste liquid transfer plan of the production line corresponding to the first hazardous waste liquid storage container includes a real-time transfer plan and a delayed transfer plan. The hazardous waste liquid storage plan of the production line corresponding to the first hazardous waste liquid storage container is updated according to the usage of the at least one second hazardous waste liquid storage container and the hazardous waste liquid transfer amount of the production line corresponding to the first hazardous waste liquid storage container within the preset time period, including: determining the first moment when the weight of the hazardous waste liquid stored in the first hazardous waste liquid storage container within the preset time period is greater than the first preset weight; determining whether the hazardous waste liquid transfer moment of the first production line lags behind the first moment, and the first production line is the production line whose transfer plan is the delayed transfer plan among the production lines corresponding to the first hazardous waste liquid storage container; if so, updating the hazardous waste liquid transfer plan corresponding to the first production line according to the usage of the at least one second hazardous waste liquid storage container is to transfer the hazardous waste liquid in the first production line whose transfer moment lags behind the first moment to the second storage container, and transfer the hazardous waste liquid corresponding to the second production line to the first storage container, and the hazardous waste liquid transfer plan corresponding to the second production line is the real-time transfer plan.

[0066] Among them, since the hazardous waste liquid transfer plan includes both a real-time transfer plan and a delayed transfer plan, and since the delayed transfer plan will simultaneously transfer a large amount of hazardous waste liquid to the hazardous waste liquid storage container after arriving at the storage container, it is necessary to first determine whether, after the hazardous waste liquid storage container is predicted to reach the first preset weight, there is still hazardous waste liquid corresponding to the delayed transfer plan that will be transferred to the storage container within the preset time period. If so, all hazardous waste liquid that has not yet been transferred needs to be transferred to other storage containers, while the hazardous waste liquid corresponding to the real-time transfer plan will still be transferred to the original storage container. If the hazardous waste liquid corresponding to the delayed transfer plan does not need to be transferred after the first moment, there is no need to update the transfer plan. That is, at this time, within the preset time period, after the weight of the storage container reaches the first preset weight, only the hazardous waste liquid corresponding to the real-time transfer plan will be transferred to the hazardous waste liquid storage container.

[0067] It can be seen that in this example, adjusting the transfer plan of hazardous waste liquid according to the transfer plan and transfer situation of hazardous waste liquid can avoid the hazardous waste liquid storage container being full and affecting production, and can also reserve time for the hazardous waste liquid disposal company to transfer the hazardous waste liquid.

[0068] In a possible example, after sending the usage status of the hazardous waste liquid storage container to the second electronic device, the method further includes: when the usage status of the hazardous waste liquid storage container is that the weight of the hazardous waste liquid in the hazardous waste liquid storage container is greater than a third preset weight, determining the available time of the hazardous waste liquid storage container according to the growth curve; determining the estimated transfer time of the hazardous waste liquid in the hazardous waste liquid storage container according to the available time; and sending a hazardous waste liquid transfer reminder to the second electronic device according to the estimated transfer time.

[0069] Among them, the third preset weight can be the same as the above-mentioned first preset weight, and the available time at this time is the time required for the hazardous waste liquid to grow from the third preset weight to the weight zero point of the hazardous waste storage container. The third preset weight can also be a weight value less than the first preset weight, and the available time at this time is the time required for the hazardous waste liquid to grow from the third preset weight to the first preset weight. The third preset weight can be determined based on the transportation resource occupancy of the hazardous waste liquid disposal company. If transportation resources are in short supply, it can be determined that the third preset weight is equal to the first preset weight. If transportation resources are sufficient, it can be determined that the third preset weight is less than the first preset weight. After receiving the hazardous waste liquid transfer prompt, the second electronic device can generate a hazardous waste liquid transfer plan to transfer the hazardous waste liquid in the storage container.

[0070] It can be seen that in this example, based on the usage of hazardous waste liquid storage containers, the staff of the hazardous waste liquid disposal company are promptly prompted to generate a hazardous waste liquid transfer plan and arrange for the transfer of hazardous waste liquid in the storage containers. This will not waste transportation resources, nor will it force the hazardous waste liquid producing company to stop production because the storage containers are full.

[0071] With the above Figure 2a For details on the implementation examples, please refer to Figure 3 , Figure 3This is a structural diagram of a storage monitoring device for hazardous waste liquids provided in an embodiment of the present application. As shown in the figure, the storage monitoring device for hazardous waste liquids is applied to a server of a hazardous waste liquid storage monitoring system. The hazardous waste liquid storage monitoring system includes the server, a first electronic device of a first user of a hazardous waste liquid production company, a second electronic device of a second user of a hazardous waste liquid disposal company, and a sensor located in a hazardous waste liquid storage container. The server is communicatively connected with the first electronic device, the second electronic device, and the sensor respectively. The device 30 includes: a first acquisition unit 301 for acquiring hazardous waste liquid parameters from the sensor; a second acquisition unit 302 for acquiring container parameters of the hazardous waste liquid storage container; a first determination unit 303 for determining the hazardous waste liquid according to the hazardous waste liquid parameters and the container parameters. The weight of the hazardous waste liquid in the hazardous waste liquid storage container; a third acquisition unit 304, used to obtain a first hazardous waste liquid output plan based on the output information from the first electronic device; a second determination unit 305, used to determine a growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within a preset period of time based on the first hazardous waste liquid output plan, the growth curve being used to indicate the weight change of the hazardous waste liquid in the hazardous waste liquid storage container within the preset period of time; a third determination unit 306, used to determine the usage of the hazardous waste liquid storage container based on the weight of the hazardous waste liquid and the growth curve; a sending unit 307, used to send the usage to the second electronic device, the usage being used to indicate the hazardous waste liquid transfer strategy of the hazardous waste liquid disposal company.

[0072] In a possible example, in terms of determining the growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within the preset time period based on the first hazardous waste liquid output plan, the second determination unit 305 is specifically used to: determine the production line corresponding to the hazardous waste liquid storage container; when the production lines include multiple lines, obtain the hazardous waste liquid transfer plan for each production line; obtain the hazardous waste liquid transfer duration for each production line; determine the hazardous waste liquid transfer volume of each production line within the preset time period based on the first hazardous waste liquid output plan and the hazardous waste liquid transfer plan; determine the growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within the preset time period based on the hazardous waste liquid transfer volume and the hazardous waste liquid transfer duration.

[0073] In a possible example, the hazardous waste liquid transfer plan includes a real-time transfer plan, and after determining the hazardous waste liquid transfer amount of each production line within the preset time period according to the first hazardous waste liquid output plan and the hazardous waste liquid transfer plan, the second determination unit 305 is further used to: divide the preset time period to obtain multiple sub-time periods; determine the first hazardous waste liquid transfer amount of each production line in each sub-time period according to the first hazardous waste liquid output plan; determine the total amount of hazardous waste liquid transferred by multiple production lines in each sub-time period according to the first hazardous waste liquid transfer amount of each production line; determine the amount of hazardous waste liquid in the hazardous waste liquid storage container within the target sub-time period according to the weight of the hazardous waste liquid The growth amount of hazardous waste liquid, the target sub-period is a sub-period in the multiple sub-periods whose corresponding time is before the current time; when the error between the growth amount of hazardous waste liquid corresponding to the first sub-period and the total amount of hazardous waste liquid transferred is greater than the preset error, a verification request is sent to the first electronic device, and the first sub-period is any sub-period in the multiple sub-periods; a reply information is obtained from the second electronic device; the first hazardous waste liquid output plan is updated according to the reply information to obtain a second hazardous waste liquid output plan; the hazardous waste liquid transfer amount of each production line within the preset time period is updated according to the second hazardous waste liquid output plan and the hazardous waste liquid transfer plan.

[0074] In a possible example, the hazardous waste liquid transfer plan includes a delayed transfer plan. In terms of determining the growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within the preset time period based on the hazardous waste liquid transfer volume and the hazardous waste liquid transfer duration, the second determination unit 305 is specifically used to: determine the preset conditions for the delayed transfer; determine the output plan of each production line based on the first output plan; determine the hazardous waste liquid transfer time and the corresponding hazardous waste liquid transfer tons of each production line based on the output plan of each production line when the preset conditions are met; determine the corresponding arrival time of each production line based on the hazardous waste liquid transfer time of each production line and the hazardous waste liquid transfer duration of each production line; determine the growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within the preset time period based on the arrival time of each production line and the corresponding hazardous waste liquid transfer tons of each production line.

[0075] In a possible example, the hazardous waste liquid storage container includes multiple containers. After determining the usage of the hazardous waste liquid storage container based on the weight of the hazardous waste liquid and the growth curve, the device 30 is also used to: when the usage of the first hazardous waste liquid storage container includes that the weight of the hazardous waste liquid in the first hazardous waste liquid storage container will be greater than the first preset weight within the preset time period, obtain the usage of at least one second hazardous waste liquid storage container, the first hazardous waste liquid storage container and the at least one second hazardous waste liquid storage container are storage containers among the multiple hazardous waste liquid storage containers, the usage of the second hazardous waste liquid storage container includes that the weight of the hazardous waste liquid stored within the preset time period will not be greater than the second preset weight, and the production line corresponding to the at least one second hazardous waste liquid storage container includes at least one production line corresponding to the first hazardous waste liquid storage container; based on the usage of the at least one second hazardous waste liquid storage container and the hazardous waste liquid transfer amount of the production line corresponding to the first hazardous waste liquid storage container within the preset time period, update the hazardous waste liquid storage plan of the production line corresponding to the first hazardous waste liquid storage container.

[0076] In a possible example, the hazardous waste liquid transfer plan of the production line corresponding to the first hazardous waste liquid storage container includes a real-time transfer plan and a delayed transfer plan. In terms of updating the hazardous waste liquid storage plan of the production line corresponding to the first hazardous waste liquid storage container according to the usage of the at least one second hazardous waste liquid storage container and the hazardous waste liquid transfer amount of the production line corresponding to the first hazardous waste liquid storage container within the preset time period, the device 30 is further used to: determine the first moment when the weight of the hazardous waste liquid stored in the first hazardous waste liquid storage container within the preset time period is greater than the first preset weight; determine whether the hazardous waste liquid transfer time of the first production line lags behind the first moment, and the first production line is the production line whose transfer plan is the delayed transfer plan among the production lines corresponding to the first hazardous waste liquid storage container; if so, updating the hazardous waste liquid transfer plan corresponding to the first production line according to the usage of the at least one second hazardous waste liquid storage container is to transfer the hazardous waste liquid in the first production line whose transfer time lags behind the first moment to the second storage container, and transfer the hazardous waste liquid corresponding to the second production line to the first storage container, and the hazardous waste liquid transfer plan corresponding to the second production line is the real-time transfer plan.

[0077] In a possible example, after sending the usage status of the hazardous waste liquid storage container to the second electronic device, the device 30 is further used to: when the usage status of the hazardous waste liquid storage container is that the weight of the hazardous waste liquid in the hazardous waste liquid storage container is greater than a third preset weight, determine the available time of the hazardous waste liquid storage container according to the growth curve; determine the estimated transfer time of the hazardous waste liquid in the hazardous waste liquid storage container according to the available time; and send a hazardous waste liquid transfer reminder to the second electronic device according to the estimated transfer time.

[0078] In the case of integrated units, such as Figure 4 As shown, Figure 4 This is a schematic diagram of another storage monitoring device for hazardous waste liquids provided in an embodiment of the present application. Figure 4 In the embodiment, the storage monitoring device 400 for hazardous waste liquid includes: a processing module 402 and a communication module 401. The processing module 402 is used to control and manage the actions of the storage monitoring device for hazardous waste liquid, for example, the control and management of the first acquisition unit 301, the second acquisition unit 302, the first determination unit 303, the third acquisition unit 304, the second determination unit 305, the third determination unit 306 and the first sending unit 307 when executing relevant commands, and / or other processes for executing the technology described in this article. The communication module 401 is used to support the interaction between the storage monitoring device for hazardous waste liquid and other devices. Figure 4 As shown, the storage monitoring device for hazardous waste liquid may further include a storage module 403, and the storage module 403 is used to store program codes and data of the storage monitoring device for hazardous waste liquid.

[0079] The processing module 402 may be a processor or controller, such as a central processing unit (CPU), a general-purpose processor, a digital signal processor (DSP), an ASIC, an FPGA, or other programmable logic device, a transistor logic device, a hardware component, or any combination thereof. It may implement or execute the various exemplary logic blocks, modules, and circuits described in conjunction with the disclosure of this application. The processor may also be a combination that implements computing functions, such as a combination of one or more microprocessors, a combination of a DSP and a microprocessor, and the like. The communication module 401 may be a transceiver, an RF circuit, or a communication interface, and the like. The storage module 403 may be a memory.

[0080] Among them, all relevant contents of each scenario involved in the above method embodiment can be referred to the functional description of the corresponding functional module, and will not be repeated here. The above storage monitoring device 30 for hazardous waste liquid and the storage monitoring device 400 for hazardous waste liquid can both execute the above Figure 2a The storage monitoring method for hazardous waste liquids is shown.

[0081] The above embodiments can be implemented in whole or in part by software, hardware, firmware or any other combination. When implemented using software, the above embodiments can be implemented in whole or in part in the form of a computer program product. The computer program product includes one or more computer instructions or computer programs. When the computer instructions or computer program are loaded or executed on a computer, the process or function described in the embodiment of the present application is generated in whole or in part. The computer can be a general-purpose computer, a special-purpose computer, a computer network, or other programmable device. The computer instructions can be stored in a computer-readable storage medium or transmitted from one computer-readable storage medium to another computer-readable storage medium. For example, the computer instructions can be transmitted from one website, computer, server or data center to another website, computer, server or data center via wired or wireless means. The computer-readable storage medium can be any available medium that can be accessed by a computer or a data storage device such as a server or data center that contains one or more available media sets. The available medium can be a magnetic medium (for example, a floppy disk, a hard disk, a tape), an optical medium (for example, a DVD), or a semiconductor medium. The semiconductor medium can be a solid-state drive.

[0082] An embodiment of the present application also provides a computer storage medium, wherein the computer storage medium stores a computer program for electronic data exchange, and the computer program enables a computer to execute part or all of the steps of any method described in the above method embodiments, and the above computer includes an electronic device.

[0083] The present application also provides a computer program product comprising a non-transitory computer-readable storage medium storing a computer program, wherein the computer program is operable to cause a computer to perform some or all of the steps of any of the methods described in the above method embodiments. The computer program product may be a software installation package, and the computer may comprise an electronic device.

[0084] It should be understood that in the various embodiments of the present application, the size of the serial numbers of the above-mentioned processes does not mean the order of execution. The execution order of each process should be determined by its function and internal logic, and should not constitute any limitation on the implementation process of the embodiments of the present application.

[0085] In the several embodiments provided in this application, it should be understood that the disclosed methods, devices, and systems can be implemented in other ways. For example, the device embodiments described above are merely schematic; for example, the division of the units is merely a logical function division, and there may be other division methods in actual implementation; for example, multiple units or components may be combined or integrated into another system, or some features may be ignored or not executed. Another point is that the mutual coupling or direct coupling or communication connection shown or discussed may be through some interfaces, indirect coupling or communication connection of devices or units, which may be electrical, mechanical, or other forms.

[0086] The units described as separate components may or may not be physically separate, and the components shown as units may or may not be physical units, that is, they may be located in one place or distributed across multiple network units. Some or all of these units may be selected to achieve the purpose of this embodiment according to actual needs.

[0087] In addition, the functional units in various embodiments of the present invention may be integrated into a single processing unit, each unit may be physically included separately, or two or more units may be integrated into a single unit. The aforementioned integrated units may be implemented in the form of hardware or hardware plus software functional units.

[0088] The above-mentioned integrated unit implemented in the form of a software functional unit can be stored in a computer-readable storage medium. The above-mentioned software functional unit is stored in a storage medium and includes a number of instructions for causing a computer device (which can be a personal computer, server, or network device, etc.) to perform some steps of the method described in each embodiment of the present invention. The aforementioned storage medium includes: a USB flash drive, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, an optical disk, and other media that can store program code.

[0089] Although the present invention is disclosed above, it is not limited thereto. Any person skilled in the art may readily conceive of variations or substitutions, and may make various modifications and alterations without departing from the spirit and scope of the present invention. Combinations of the above-described functions and implementation steps, including software and hardware implementations, are all within the scope of protection of the present invention.

Claims

1. A storage monitoring method for hazardous waste liquid, characterized in that: A server is applied to a hazardous waste liquid storage monitoring system, the hazardous waste liquid storage monitoring system comprising the server, a first electronic device of a first user of a hazardous waste liquid production company, a second electronic device of a second user of a hazardous waste liquid disposal company, and a sensor located in a hazardous waste liquid storage container, the server being communicatively connected to the first electronic device, the second electronic device, and the sensor, respectively. The method comprises: obtaining hazardous waste liquid parameters from the sensor; Obtaining container parameters of the hazardous waste liquid storage container; Determining the weight of the hazardous waste liquid in the hazardous waste liquid storage container according to the hazardous waste liquid parameters and the container parameters; Obtaining a first hazardous waste liquid output plan based on the output information from the first electronic device; Determine a growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within a preset time period according to the first hazardous waste liquid output plan, the growth curve is used to indicate the weight change of the hazardous waste liquid in the hazardous waste liquid storage container within the preset time period, the growth curve is marked with a preset weight point, and the preset weight point is determined by the following steps: determine the first time it takes for the hazardous waste liquid disposal company to reach the hazardous waste liquid storage container, determine the first output weight of the hazardous waste liquid within the time range of the first time according to the first hazardous waste liquid output plan, obtain the weight zero boundary point of the hazardous waste liquid storage container, determine the preset weight point as the difference obtained by subtracting the first output weight and the error value from the weight zero boundary point, the error value is determined according to historical transfer records, and the weight corresponding to the weight zero boundary point is the maximum weight of hazardous waste liquid that the hazardous waste liquid storage container can store; Determining the usage of the hazardous waste liquid storage container according to the weight of the hazardous waste liquid and the growth curve; The usage status and the growth curve are sent to the second electronic device, where the usage status is used to indicate a hazardous waste liquid transfer strategy of the hazardous waste liquid disposal company.

2. The method according to claim 1, characterized in that The step of determining a growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within a preset period of time according to the first hazardous waste liquid output plan includes: Determine the production line corresponding to the hazardous waste liquid storage container; If there are multiple production lines, obtain the hazardous waste liquid transfer plan for each production line; Obtain the hazardous waste liquid transfer time for each production line; Determining the hazardous waste liquid transfer volume of each production line within the preset time period according to the first hazardous waste liquid output plan and the hazardous waste liquid transfer plan; A growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within the preset time period is determined according to the hazardous waste liquid transfer amount and the hazardous waste liquid transfer time.

3. The method according to claim 2, characterized in that The hazardous waste liquid transfer plan includes a real-time transfer plan. After determining the hazardous waste liquid transfer amount of each production line within the preset time period according to the first hazardous waste liquid output plan and the hazardous waste liquid transfer plan, the method further includes: Dividing the preset time period into multiple sub-time periods; Determining the first hazardous waste liquid transfer volume of each production line in each sub-period according to the first hazardous waste liquid output plan; Determine the total hazardous waste liquid transfer amount of the multiple production lines in each sub-period according to the first hazardous waste liquid transfer amount of each production line; Determining, based on the weight of the hazardous waste liquid, an increase in the hazardous waste liquid in the hazardous waste liquid storage container within a target sub-period, wherein the target sub-period is a sub-period of the multiple sub-periods whose corresponding time is before the current time; When the error between the increase in the hazardous waste liquid amount corresponding to a first sub-period and the total amount of hazardous waste liquid transferred is greater than a preset error, sending a verification request to the first electronic device, where the first sub-period is any one of the multiple sub-periods; Obtaining response information from the first electronic device; updating the first hazardous waste liquid output plan according to the response information to obtain a second hazardous waste liquid output plan; The hazardous waste liquid transfer volume of each production line within the preset time period is updated according to the second hazardous waste liquid output plan and the hazardous waste liquid transfer plan.

4. The method according to claim 2, characterized in that The hazardous waste liquid transfer scheme includes a delayed transfer scheme, and determining a growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within the preset time period according to the hazardous waste liquid transfer amount and the hazardous waste liquid transfer duration includes: Determining the preset conditions for the delayed transfer; Determining an output plan for each production line according to the first hazardous waste liquid output plan; Determine, based on the output plan of each production line, the hazardous waste liquid transfer time and the corresponding hazardous waste liquid transfer tonnage for each production line when the preset conditions are met; Determine the arrival time corresponding to each production line according to the hazardous waste liquid transfer time of each production line and the hazardous waste liquid transfer time of each production line; According to the arrival time of each production line and the hazardous waste liquid transfer tons corresponding to each production line, a growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within a preset time period is determined.

5. The method according to claim 2, characterized in that The hazardous waste liquid storage container includes a plurality of containers. After determining the usage of the hazardous waste liquid storage container according to the weight of the hazardous waste liquid and the growth curve, the method further includes: When the usage of the first hazardous waste liquid storage container includes that the weight of the hazardous waste liquid in the first hazardous waste liquid storage container will be greater than a first preset weight within the preset time period, obtaining the usage of at least one second hazardous waste liquid storage container, the first hazardous waste liquid storage container and the at least one second hazardous waste liquid storage container are storage containers among multiple hazardous waste liquid storage containers, the usage of the second hazardous waste liquid storage container includes that the weight of the hazardous waste liquid stored within the preset time period will not be greater than the second preset weight, and the production line corresponding to the at least one second hazardous waste liquid storage container includes at least one production line corresponding to the first hazardous waste liquid storage container; The hazardous waste liquid storage plan of the production line corresponding to the first hazardous waste liquid storage container is updated according to the usage of the at least one second hazardous waste liquid storage container and the hazardous waste liquid transfer volume of the production line corresponding to the first hazardous waste liquid storage container within the preset time period.

6. The method according to claim 5, characterized in that The hazardous waste liquid transfer plan for the production line corresponding to the first hazardous waste liquid storage container includes a real-time transfer plan and a delayed transfer plan. The updating of the hazardous waste liquid storage plan for the production line corresponding to the first hazardous waste liquid storage container according to the usage of the at least one second hazardous waste liquid storage container and the amount of hazardous waste liquid transferred by the production line corresponding to the first hazardous waste liquid storage container within the preset time period includes: Determining a first moment when the weight of the hazardous waste liquid stored in the first hazardous waste liquid storage container within the preset time period is greater than the first preset weight; Determining whether a hazardous waste liquid transfer time of a first production line lags behind the first time, where the first production line is a production line corresponding to the first hazardous waste liquid storage container and has a delayed transfer plan; If so, the hazardous waste liquid transfer plan corresponding to the first production line is updated according to the usage of the at least one second hazardous waste liquid storage container, that is, the hazardous waste liquid in the first production line whose transfer time lags behind the first time is transferred to the second storage container, and the hazardous waste liquid corresponding to the second production line is transferred to the first storage container. The hazardous waste liquid transfer plan corresponding to the second production line is a real-time transfer plan.

7. The method according to claim 1, characterized in that After sending the usage status of the hazardous waste liquid storage container to the second electronic device, the method further includes: When the usage condition of the hazardous waste liquid storage container is that the weight of the hazardous waste liquid in the hazardous waste liquid storage container is greater than a third preset weight, determining the usable time of the hazardous waste liquid storage container according to the growth curve; Determining an estimated transportation time of the hazardous waste liquid in the hazardous waste liquid storage container based on the available time; A hazardous waste liquid transfer reminder is sent to the second electronic device according to the estimated transfer time.

8. A storage monitoring device for hazardous waste liquid, characterized in that: A server for a hazardous waste liquid storage monitoring system includes the server, a first electronic device of a first user of a hazardous waste liquid production company, a second electronic device of a second user of a hazardous waste liquid disposal company, and a sensor located in a hazardous waste liquid storage container. The server is communicatively connected to the first electronic device, the second electronic device, and the sensor, respectively. The device includes: A first acquiring unit, configured to acquire hazardous waste liquid parameters from the sensor; A second acquiring unit, configured to acquire container parameters of the hazardous waste liquid storage container; a first determining unit, configured to determine the weight of the hazardous waste liquid in the hazardous waste liquid storage container according to the hazardous waste liquid parameters and the container parameters; a third acquiring unit, configured to acquire a first hazardous waste liquid output plan according to the output information from the first electronic device; a second determination unit, configured to determine a growth curve of the hazardous waste liquid in the hazardous waste liquid storage container within a preset period of time according to the first hazardous waste liquid output plan, the growth curve being used to indicate a weight change of the hazardous waste liquid in the hazardous waste liquid storage container within the preset period of time, the growth curve being marked with a preset weight point, the preset weight point being determined by: determining a first time required for the hazardous waste liquid disposal company to reach the hazardous waste liquid storage container, determining a first output weight of the hazardous waste liquid within the time range of the first time according to the first hazardous waste liquid output plan, obtaining a weight zero boundary point of the hazardous waste liquid storage container, determining the preset weight point as a difference obtained by subtracting the first output weight and an error value from the weight zero boundary point, the error value being determined based on historical transfer records, and the weight corresponding to the weight zero boundary point being the maximum weight of hazardous waste liquid that the hazardous waste liquid storage container can store; a third determining unit, configured to determine a usage condition of the hazardous waste liquid storage container according to the weight of the hazardous waste liquid and the growth curve; A sending unit is used to send the usage status and the growth curve to the second electronic device, where the usage status is used to indicate the hazardous waste liquid transfer strategy of the hazardous waste liquid disposal company.

9. A server, characterized in that: The method comprises a processor, a memory, and one or more programs, wherein the one or more programs are stored in the memory and configured to be executed by the processor, and the programs include instructions for executing the steps in the method according to any one of claims 1 to 7.

10. A computer-readable storage medium, characterized in that A computer program for electronic data exchange is stored, wherein the computer program enables a computer to execute the method according to any one of claims 1 to 7.

Citation Information

Patent Citations

  • Medical waste online monitoring and prediction method and system

    CN111739622A

  • Hazardous waste recovery device and hazardous waste recovery system

    CN213010006U