A method, system and storage medium for the release of hazardous waste.

CN115358660BActive Publication Date: 2026-08-14SHANGHAI WAIGAOQIAO FREE TRADE ZONE ENVIRONMENTALPROTECTION SERVICE
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-26
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

由于危废品会破坏生态环境、影响人类健康以及制约可持续发展,从而带来了严重污染和潜在的严重影响,故需要对危废品进行集中放置,并将危废品从集中放置点统一运送至专用的处理场所进行处理

Benefits of technology

[0082]通过分析判断同一批次出库的危废品种类是否存在危废品反应组合,从而对同一批次出库的危废品在发生泄露时是否会发生相互反应并对外界环境产生污染进行判断,并根据判断结果对出库方案进行调整,使危废品从集中放置点中运出时不容易造成污染;

✦ Generated by Eureka AI based on patent content.

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Abstract

This application relates to a method, system, and storage medium for hazardous waste outbound processing, belonging to the field of hazardous waste treatment technology. The method includes: obtaining the types of hazardous waste outbound in the same batch; analyzing and determining whether a hazardous waste reaction combination exists among the types of hazardous waste outbound in the same batch based on the types of hazardous waste outbound in the same batch and a preset hazardous waste reaction combination; if yes, analyzing and determining an adjustment scheme for the hazardous waste reaction combination according to the correspondence between the preset hazardous waste reaction combination and adjustment measures; determining a preliminary hazardous waste outbound scheme according to the correspondence between the preset hazardous waste types and the hazardous waste outbound scheme, and adjusting the scheme to construct a final hazardous waste outbound scheme; if no, using the preliminary hazardous waste outbound scheme as the final hazardous waste outbound scheme; and executing the final hazardous waste outbound scheme. This application has the effect of making it less likely to cause pollution when hazardous waste is transported out of a centralized storage point.
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Description

Technical Field

[0001] This application relates to the field of hazardous waste treatment technology, and in particular to a method, system and storage medium for hazardous waste warehousing. Background Technology

[0002] Hazardous waste refers to articles that have one or more hazardous characteristics such as corrosivity, toxicity, flammability, reactivity, or infectivity, or articles that may have hazardous characteristics and may have harmful effects on the environment or human health, and which need to be managed as hazardous waste.

[0003] With industrial development, the amount of hazardous waste emitted during industrial production processes is increasing. Because hazardous waste damages the ecological environment, affects human health, and hinders sustainable development, resulting in serious pollution and potential severe impacts, it is necessary to centrally store hazardous waste and transport it from centralized storage points to dedicated treatment facilities for processing.

[0004] Regarding the aforementioned technologies, the inventors have discovered the following drawbacks: When transporting hazardous waste from centralized storage sites, due to the large variety of hazardous wastes, some may be prone to mutual reactions and cause pollution to the external environment. When transporting different hazardous wastes, if multiple hazardous wastes that are prone to mutual reactions are leaked simultaneously, it will lead to pollution of the external environment. For example, ozone and peroxyacetyl nitrate are generated by photochemical reactions of nitrogen monoxide and hydrocarbons in automobile exhaust. Summary of the Invention

[0005] To prevent pollution from occurring when hazardous waste is transported out of centralized storage points, this application provides a method, system, and storage medium for hazardous waste removal from storage.

[0006] Firstly, this application provides a method for the removal of hazardous waste from a warehouse, employing the following technical solution:

[0007] A method for removing hazardous waste from a warehouse includes:

[0008] Obtain the types of hazardous waste shipped out in the same batch;

[0009] Based on the types of hazardous wastes shipped out in the same batch and the preset hazardous waste reaction combinations, analyze and determine whether there are hazardous waste reaction combinations among the types of hazardous wastes shipped out in the same batch. A hazardous waste reaction combination is a combination of multiple types of hazardous wastes that react with each other.

[0010] If so, then based on the pre-defined correspondence between hazardous waste reaction combinations and adjustment measures, analyze and determine the adjustment scheme for the hazardous waste reaction combinations;

[0011] Based on the pre-defined correspondence between hazardous waste types and hazardous waste outbound plans, a preliminary hazardous waste outbound plan is determined, and an adjustment plan for hazardous waste reaction combinations is added to the hazardous waste outbound plan to form the final hazardous waste outbound plan.

[0012] If not, then based on the pre-defined correspondence between hazardous waste types and hazardous waste outbound plans, a preliminary hazardous waste outbound plan is determined, and the preliminary hazardous waste outbound plan is used as the final hazardous waste outbound plan.

[0013] Implement the final hazardous waste release plan.

[0014] By adopting the above technical solution, and by analyzing and judging whether there are hazardous waste reaction combinations among the types of hazardous waste leaving the same batch, it is possible to determine whether the hazardous waste leaving the same batch will react with each other and cause pollution to the external environment in the event of a leak. Based on the judgment results, the outbound plan can be adjusted so that the hazardous waste is less likely to cause pollution when it is transported out of the centralized storage point.

[0015] Optionally, the types of hazardous waste shipped in the same batch can be obtained as follows:

[0016] Identify the types of hazardous waste that are shipped out in the same batch;

[0017] Analyze whether the types of hazardous waste shipped from the same batch are completely identified;

[0018] If so, the type of hazardous waste in the same batch that was obtained and sent out will be taken as the type of hazardous waste in the same batch that was obtained and sent out.

[0019] If not, then obtain the origin of the hazardous waste;

[0020] Based on the correspondence between the source location and the pre-defined probability distribution of the existence forms of hazardous waste, the probability distribution of the existence forms of hazardous waste at the source location is analyzed and determined.

[0021] Based on the probability distribution of the existing forms of hazardous waste from the source and the pre-defined correspondence between the existing forms of hazardous waste and the detection scheme, the detection methods corresponding to the existing forms of hazardous waste are sorted in a forward order. The forward order is defined as a sorting method based on probability from largest to smallest.

[0022] Based on the forward order of the testing schemes, the remaining unidentified hazardous waste types are tested one by one using the testing schemes until all types of hazardous waste have been tested.

[0023] The types of remaining unidentified hazardous waste obtained from the detection are combined with the types of hazardous waste identified in the same batch that were shipped out, and these are considered as the types of hazardous waste shipped out in the same batch.

[0024] By adopting the above technical solution, the types of hazardous waste outgoing in the same batch are identified. When the types of hazardous waste outgoing in the same batch are not fully identified, the probability distribution of the existence forms of hazardous waste is understood by the origin of the hazardous waste. Then, based on the positive order of the probability of the existence forms of hazardous waste, the detection method corresponding to the existence form of hazardous waste is used to detect the types of hazardous waste until all types of hazardous waste are completely detected. This facilitates the subsequent adjustment of the outgoing plan based on the types of hazardous waste.

[0025] Optionally, analyzing and determining the probability distribution of the existing forms of hazardous waste at the source includes:

[0026] The number of sources of hazardous waste obtained;

[0027] If the number of hazardous waste sources is one, then based on the pre-defined correspondence between the source and the household that generates the hazardous waste, analyze and determine the household that generates the hazardous waste corresponding to the source.

[0028] Based on the correspondence between the household that generates hazardous waste in the source area and the probability distribution of the existence form of hazardous waste, analyze and determine the probability distribution of the existence form of hazardous waste corresponding to the household that generates hazardous waste in the source area.

[0029] If the number of sources of hazardous waste is at least two, then the percentage of hazardous waste from different sources is obtained.

[0030] Based on the pre-defined correspondence between the source and the household that generates hazardous waste, analyze and determine the household that generates hazardous waste corresponding to the source.

[0031] Based on the correspondence between the household that generates hazardous waste in the source area and the probability distribution of the existence form of hazardous waste, analyze and determine the probability distribution of the existence form of hazardous waste corresponding to the household that generates hazardous waste in the source area.

[0032] Based on the proportion of hazardous waste from different sources and the probability distribution of the existence forms of hazardous waste corresponding to the households that generate hazardous waste in each source, the probability distribution of the existence forms of hazardous waste in the overall source areas is analyzed and determined.

[0033] By adopting the above technical solution, when the number of hazardous waste sources is one, the household to which the hazardous waste belongs can be determined through source analysis. When the number of hazardous waste sources is at least two, the probability distribution of the existence form of hazardous waste in the overall source areas can be analyzed and determined by the proportion of hazardous waste from different source areas, thereby improving the accuracy of the probability distribution of the existence form of hazardous waste in the overall source areas.

[0034] Optionally, it also includes steps located between the formation and execution of the final hazardous waste evacuation plan, as follows:

[0035] Obtain the outdoor ambient temperature;

[0036] Based on the preset suitable temperature range for different types of hazardous waste, analyze and determine whether there are any types of hazardous waste that are affected by outdoor ambient temperature.

[0037] If so, then based on the correspondence between the types of hazardous waste and the preset insulation schemes, analyze and determine the insulation schemes for the corresponding types of hazardous waste, and add the insulation schemes for the hazardous waste to the final hazardous waste outbound scheme.

[0038] If not, the final hazardous waste outbound plan will remain unchanged.

[0039] By adopting the above technical solution, the outbound plan can be adjusted according to the outdoor temperature to determine whether there are any hazardous waste types affected by outdoor temperature. This makes it less likely for hazardous waste types affected by outdoor temperature to be affected by outdoor temperature after they are outbound, thereby reducing the risk of leakage of hazardous waste types affected by outdoor temperature and making it less likely for hazardous waste to cause pollution when it is transported out of the centralized storage point.

[0040] Optionally, a parallel solution is also available that incorporates the insulation solution for hazardous waste into the final hazardous waste outbound process, as detailed below:

[0041] Based on the pre-defined hazard levels of different hazardous waste types at different ambient temperatures, the degree of hazard caused by the influence of ambient temperature on different hazardous waste types is analyzed and determined.

[0042] Based on the pre-defined correspondence between hazardous waste reaction combinations and hazard levels, the hazard levels corresponding to the hazardous waste reaction combinations are analyzed and determined.

[0043] Based on the degree of hazard caused by the influence of ambient temperature on the type of hazardous waste and the degree of hazard corresponding to the reaction combination of hazardous waste, the comprehensive hazard degree of individual hazardous waste types is analyzed and calculated.

[0044] If the overall hazard level of a single hazardous waste type exceeds the preset hazard level, a notification message will be sent to the terminal held by the person in charge.

[0045] Conversely, no notification message will be sent.

[0046] By adopting the above technical solution, the comprehensive hazard level of individual hazardous waste types is analyzed and calculated based on the degree of hazard caused by the influence of ambient temperature on the type of hazardous waste and the degree of hazard corresponding to the reaction combination of hazardous waste. Based on the comprehensive hazard level of individual hazardous waste types, it is determined whether the person in charge needs to be notified, so that the person in charge can handle the waste when the comprehensive hazard level of individual hazardous waste types is high, thereby making it less likely to cause pollution when the hazardous waste is transported out of the centralized storage point.

[0047] Optionally, the comprehensive hazard level of individual hazardous waste types can be analyzed and calculated, including:

[0048] To obtain the degree of hazard caused by the influence of ambient temperature on the types of hazardous waste and the degree of hazard corresponding to the reaction combinations of hazardous waste;

[0049] The comprehensive hazard level of each individual hazardous waste type is calculated using a pre-defined formula. The pre-defined formula is as follows:

[0050] P0 = A*P1 + B*P2, A + B = 1;

[0051] Wherein, P0 represents the overall hazard level of a single hazardous waste type;

[0052] A is a coefficient representing the degree of hazard caused by the influence of ambient temperature on the type of hazardous waste;

[0053] P1 represents the degree of hazard caused by the influence of ambient temperature on the type of hazardous waste.

[0054] B is the coefficient representing the degree of hazard corresponding to the reaction combination of hazardous waste;

[0055] P2 represents the degree of hazard corresponding to the hazardous waste reaction combination.

[0056] By adopting the above technical solution, the comprehensive hazard level of individual hazardous waste types is calculated by applying a preset comprehensive hazard level calculation formula, thereby obtaining the comprehensive hazard level of individual hazardous waste types and improving the accuracy of the comprehensive hazard level of individual hazardous waste types.

[0057] Optionally, sending notification information to the terminal held by the person in charge includes:

[0058] To obtain the types of hazards caused by the influence of ambient temperature on the types of hazardous waste and the types of hazards corresponding to the reaction combinations of hazardous waste;

[0059] Based on the correspondence between the types of hazards caused by the influence of ambient temperature on the types of hazardous waste and the tolerance levels of different responsible persons for the types of hazards, the tolerance levels of different responsible persons for the types of hazards caused by the influence of ambient temperature on the types of hazardous waste are ranked in a positive order, and a first number value is assigned to each responsible person according to the positive order. The positive order is defined as a sorting method based on the tolerance level from large to small.

[0060] Based on the correspondence between the hazard type corresponding to the hazardous waste reaction combination and the tolerance level of different responsible persons for that hazard type, the tolerance level of different responsible persons for that hazard type corresponding to the hazardous waste reaction combination is ranked in a positive order, and a second number value is assigned to each of the different responsible persons according to the positive order.

[0061] Based on the correspondence between the first number value, the second number value, and the comprehensive number value of different responsible persons, the comprehensive number value of different responsible persons corresponding to the first number value and the second number value is analyzed and determined. The comprehensive number values ​​of different responsible persons are then sorted in a positive order, and the responsible person with the first comprehensive number value is selected to send a notification message to the terminal held by that responsible person.

[0062] By adopting the above technical solution, the tolerance levels of different responsible persons for the types of hazards caused by the influence of ambient temperature on the hazardous waste and the tolerance levels of the types of hazards corresponding to the reaction combinations of hazardous waste are positively ranked to obtain a first number value and a second number value. Then, based on the first number value and the second number value, a comprehensive number value is calculated. Finally, a notification message is sent to the responsible person with the first comprehensive number value, so that the responsible person who receives the notification message can tolerate the hazards and improve the job satisfaction of the responsible person.

[0063] Optionally, sending notification information to the terminal held by the person in charge includes:

[0064] Obtain the types of hazardous waste shipped in the same batch and the quantities of different types of hazardous waste shipped in the same batch;

[0065] Based on the correspondence between the types of hazardous wastes shipped out in the same batch, the quantities of different types of hazardous wastes shipped out in the same batch, and the preset shipping times of different types of hazardous wastes, the single-type shipping time corresponding to the quantities of different types of hazardous wastes shipped out in the same batch is analyzed and calculated.

[0066] Based on the correspondence between the types of hazardous waste shipped out in the same batch and the shipping time of each type, the total shipping time of hazardous waste shipped out in the same batch is analyzed and calculated.

[0067] Determine whether the total outbound time of the same batch of hazardous waste exceeds the preset operation reminder time;

[0068] If the total outbound time is greater than the preset operation reminder time, the difference between the total outbound time and the operation reminder time will be used as delay information, and the delay information will be output to delay the sending of the notification information to the terminal held by the person in charge.

[0069] Conversely, a notification message will be immediately sent to the terminal held by the person in charge.

[0070] By adopting the above technical solution, the outbound time of a single type of hazardous waste is analyzed and calculated based on the quantity of different types of hazardous waste in the same batch and the preset outbound time of different types of hazardous waste. Then, the total outbound time of the same batch of hazardous waste is calculated based on the outbound time of a single type and the types of hazardous waste in the same batch. It is then determined whether the total outbound time of the same batch of hazardous waste is greater than the preset operation reminder time, thereby reducing the operator's waiting time.

[0071] Secondly, this application provides a hazardous waste outbound system, which adopts the following technical solution:

[0072] A hazardous waste outbound system, comprising:

[0073] The acquisition module is used to: acquire the types of hazardous waste products shipped out in the same batch;

[0074] The analysis module is used to: analyze and determine whether there are hazardous waste reaction combinations among the types of hazardous wastes in the same batch of outbound products, based on the types of hazardous wastes and the preset hazardous waste reaction combinations;

[0075] The scheme construction module is used to: determine the preliminary hazardous waste outbound scheme based on the pre-set correspondence between hazardous waste types and hazardous waste outbound schemes, and supplement the hazardous waste outbound scheme with the adjustment scheme of hazardous waste reaction combination to form the final hazardous waste outbound scheme;

[0076] The scheme execution module is used to execute the final hazardous waste outbound scheme.

[0077] By adopting the above technical solution, the acquisition module acquires the types of hazardous waste in the same batch of outbound products, and the analysis module analyzes and judges whether there are hazardous waste reaction combinations in the same batch of outbound products. Then, the solution construction module constructs the final hazardous waste outbound solution, and finally, the solution execution module executes the final outbound solution, so that the hazardous waste is less likely to cause pollution when it is transported out of the centralized storage point.

[0078] Thirdly, this application provides a computer storage medium capable of storing corresponding programs, which facilitates the removal of hazardous waste from centralized storage points without causing pollution. The technical solution adopted is as follows:

[0079] A computer storage medium storing a computer program capable of being loaded by a processor and executed by any of the hazardous waste retrieval methods of the first aspect.

[0080] By adopting the above technical solution, and by storing a computer program that can be loaded by a processor and executed by any of the first aspect of the hazardous waste removal method, the hazardous waste is less likely to cause pollution when it needs to be transported out of the centralized storage point.

[0081] In summary, this application includes at least one of the following beneficial technical effects:

[0082] By analyzing and judging whether there are hazardous waste reaction combinations among the types of hazardous waste leaving the same batch, it is possible to determine whether the hazardous waste leaving the same batch will react with each other and cause pollution to the external environment in the event of a leak. Based on the judgment results, the outbound plan is adjusted so that the hazardous waste is less likely to cause pollution when it is transported out of the centralized storage point.

[0083] By identifying the types of hazardous waste in the same batch, when the types of hazardous waste in the same batch are not fully identified, the probability distribution of the existence forms of hazardous waste is understood by looking at the origin of the hazardous waste. Then, based on the positive order of the probability of the existence forms of hazardous waste, the detection method corresponding to the existence form of hazardous waste is used to detect the types of hazardous waste until all types of hazardous waste are completely detected. This makes it easier to adjust the outbound plan according to the types of hazardous waste in the future.

[0084] By determining whether there are any hazardous waste types affected by outdoor ambient temperature, the outbound plan can be adjusted accordingly. This ensures that hazardous waste types affected by outdoor ambient temperature are less likely to be affected by outdoor ambient temperature after being removed from the warehouse, thereby reducing the risk of leakage of such hazardous waste types and making it less likely to cause pollution when transporting hazardous waste from the centralized storage point. Attached Figure Description

[0085] Figure 1 This is a flowchart illustrating the method for releasing hazardous waste from the warehouse according to an embodiment of this application.

[0086] Figure 2 This is a flowchart illustrating a method for obtaining the types of hazardous waste shipped from the same batch, according to another embodiment of this application.

[0087] Figure 3 This is a flowchart of a method for analyzing and determining the probability distribution of the existing forms of hazardous waste from its source, according to another embodiment of this application.

[0088] Figure 4 This is a flowchart illustrating a method between the formation and execution of the final hazardous waste warehousing plan, according to another embodiment of this application.

[0089] Figure 5 This is a flowchart of a method in which a thermal insulation solution for hazardous waste is added to the final hazardous waste outbound process in parallel with another embodiment of this application.

[0090] Figure 6 This is a flowchart illustrating a method for analyzing and calculating the overall hazard level of a single hazardous waste type, according to another embodiment of this application.

[0091] Figure 7 This is another embodiment of the method flow for sending notification information to the terminal held by the person in charge. Figure 1 .

[0092] Figure 8 This is another embodiment of the method flow for sending notification information to the terminal held by the person in charge. Figure 2 .

[0093] Figure 9 This is a schematic diagram of the hazardous waste outbound system of this application.

[0094] Explanation of reference numerals in the attached diagram: 1. Acquisition module; 2. Analysis module; 3. Solution construction module; 4. Solution execution module. Detailed Implementation

[0095] To make the purpose, technical solution, and advantages of this application clearer, the following description is provided in conjunction with the appendix. Figure 1-9 The present application will be further described in detail below with reference to embodiments. It should be understood that the specific embodiments described herein are for illustrative purposes only and are not intended to limit the scope of the application.

[0096] This application discloses a method for the release of hazardous waste from a warehouse.

[0097] Reference Figure 1 A method for removing hazardous waste from a warehouse includes:

[0098] Step S100: Obtain the types of hazardous waste products shipped out in the same batch.

[0099] The term "types of hazardous waste leaving the warehouse in the same batch" refers to the types of hazardous waste placed at centralized storage points that are being released from the same batch. Hazardous waste is stored in containers, and its type is determined by obtaining the label or QR code on the container.

[0100] Step S200: Based on the types of hazardous wastes leaving the same batch and the preset hazardous waste reaction combinations, analyze and determine whether there are hazardous waste reaction combinations among the types of hazardous wastes leaving the same batch. If yes, proceed to step S300; if no, proceed to step S500.

[0101] Among them, a hazardous waste reaction combination is a combination of multiple types of hazardous waste that react with each other. Hazardous waste reaction combinations are retrieved from a database storing hazardous waste reaction combinations. By querying and comparing the types of hazardous waste in the same batch of outgoing hazardous waste in the database of hazardous waste reaction combinations, it is possible to determine whether there are combinations of hazardous waste that will react with each other within the same batch of outgoing hazardous waste.

[0102] When there are combinations of hazardous waste types that can cause hazardous waste reactions in the same batch of outbound hazardous waste, it indicates that transporting such combinations in the same batch is likely to cause pollution.

[0103] When there are no combinations of hazardous waste types that would cause a hazardous waste reaction among the hazardous waste types shipped out in the same batch, it means that the transportation of the same batch of hazardous waste is unlikely to cause pollution.

[0104] Step S300: Based on the pre-defined correspondence between hazardous waste reaction combinations and adjustment measures, analyze and determine the adjustment scheme for the hazardous waste reaction combinations.

[0105] When a combination of hazardous wastes reacts during transportation within the same batch, an adjustment plan corresponding to the hazardous waste reaction combination is determined. The adjustment plan is then used to adjust the outbound shipment of hazardous wastes from the same batch containing the hazardous waste reaction combination.

[0106] For example, mixing aluminum powder with acid will produce a very dangerous chemical reaction, releasing hydrogen gas into the air, which is a flammable gas. Therefore, the discharge procedures for both aluminum powder and acid must be adjusted.

[0107] Step S400: Based on the pre-defined correspondence between hazardous waste types and hazardous waste outbound plans, a preliminary hazardous waste outbound plan is determined, and an adjustment plan for hazardous waste reaction combinations is added to the hazardous waste outbound plan to construct the final hazardous waste outbound plan.

[0108] The hazardous waste outbound plan is retrieved from a database storing such plans. A preliminary outbound plan is derived by identifying the type of hazardous waste and adding adjustments to it to form the final outbound plan. This final plan allows adjustments to be made when combinations of hazardous waste reactions occur during transport within the same batch, minimizing the risk of contamination during outbound processing.

[0109] Step S500: Based on the pre-defined correspondence between hazardous waste types and hazardous waste outbound plans, a preliminary hazardous waste outbound plan is determined, and the preliminary hazardous waste outbound plan is used as the final hazardous waste outbound plan.

[0110] In cases where no hazardous waste reaction occurs during the transportation of the same batch, a preliminary hazardous waste outbound plan is determined based on the type of hazardous waste. This preliminary hazardous waste outbound plan aims to prevent the hazardous waste from causing pollution during outbound transportation and is thus adopted as the final hazardous waste outbound plan.

[0111] Step S600: Execute the final hazardous waste outbound plan.

[0112] The final hazardous waste removal plan refers to the final plan for removing hazardous waste from the centralized storage point. By implementing the final hazardous waste removal plan, the hazardous waste is removed from the centralized storage point.

[0113] The implementation principle of this embodiment is as follows: by judging whether there are hazardous waste reaction combinations among the types of hazardous waste products in the same batch, it can be determined whether there are combinations that will cause hazardous waste reactions among the types of hazardous waste products in the same batch. If there are combinations that will cause hazardous waste reactions, adjustments need to be made according to the combinations that will cause hazardous waste reactions, so that the hazardous waste products in the same batch are less likely to cause pollution when leaving the warehouse.

[0114] exist Figure 1 In step S100 of the illustrated embodiment, to further ensure the rationality of the types of hazardous waste obtained from the same batch of outgoing products, it is necessary to perform further separate analysis and calculation on the types of hazardous waste obtained from the same batch of outgoing products. Specifically, this is achieved through... Figure 2 The illustrated embodiments will be described in detail.

[0115] Reference Figure 2 Obtaining the types of hazardous waste shipped out in the same batch includes the following steps:

[0116] Step S110: Identify the types of hazardous waste products that are being shipped out in the same batch.

[0117] The system uses an image recognition device to identify labels or QR codes on containers and searches them against a pre-set database to determine the type of hazardous waste. The image recognition device can be a camera or a video camera.

[0118] Step S120: Analyze whether the types of hazardous waste in the same batch of outbound products have been completely identified. If yes, proceed to step S130; if no, proceed to step S140.

[0119] Among them, by identifying the hazardous waste products out of the same batch, each hazardous waste product corresponds to a type. If the hazardous waste product cannot be identified as belonging to the corresponding type, it means that the label or QR code on the container holding the hazardous waste product is missing or damaged, making it impossible to identify.

[0120] Step S130: The type of hazardous waste in the same batch that was obtained and sent out is taken as the type of hazardous waste in the same batch that was obtained and sent out.

[0121] When the types of hazardous waste products leaving the warehouse in the same batch can be fully identified, the types of hazardous waste products leaving the warehouse in the same batch are obtained, and the identified types are taken as the types of hazardous waste products leaving the warehouse in the same batch.

[0122] Step S140: Obtain the origin of the hazardous waste.

[0123] The origin of hazardous waste refers to the location before the hazardous waste is collected and placed at a centralized storage point.

[0124] Step S105: Based on the correspondence between the source location and the preset probability distribution of the existence form of hazardous waste, analyze and determine the probability distribution of the existence form of hazardous waste at the source location.

[0125] The "form of hazardous waste at the source" refers to whether the hazardous waste at the source exists in a solid, liquid, or gaseous form. The "probability distribution of the form of existence" refers to the probability of each form of hazardous waste at the source and its distribution. This probability distribution is retrieved from a database storing such information. The probability distribution of the form of hazardous waste at different sources is determined by identifying the origin of the hazardous waste.

[0126] Step S160: Based on the probability distribution of the existence forms of hazardous waste from the source and the pre-defined correspondence between the existence forms of hazardous waste and the detection schemes, the detection methods corresponding to the existence forms of hazardous waste are sorted in a positive order.

[0127] Here, forward sorting is defined as a sorting method based on probability from highest to lowest. Detection schemes are retrieved from a database storing these schemes. Different forms of hazardous waste correspond to different detection schemes. Since the forms of hazardous waste exhibit probability distributions, the detection schemes corresponding to different forms of hazardous waste are sorted.

[0128] Hazardous waste detection involves opening the container holding the waste to examine it. When the hazardous waste is in a solid state, image detection information is acquired, and the type of hazardous waste is determined by analyzing the correspondence between the image detection information and a pre-set database of solid hazardous wastes. The image detection information is acquired using a camera or video camera.

[0129] When hazardous waste exists in a liquid state, its liquid detection information is acquired, and the type of hazardous waste is determined by analyzing the correspondence between the liquid detection information and pre-set liquid hazardous waste in the database. The liquid detection information is obtained through a liquid detector.

[0130] When hazardous waste exists in a gaseous state, its gas detection information is acquired, and the type of hazardous waste is determined by analyzing the correspondence between the gas detection information and pre-set gaseous hazardous wastes in the database. The gas detection information is obtained through a gas detector.

[0131] Step S170: According to the forward sorting of the detection schemes, the remaining unidentified hazardous waste types are detected one by one using the detection schemes until the detection of all types of hazardous waste is completed.

[0132] Since each form of hazardous waste corresponds to a specific detection scheme, hazardous waste is detected according to the probability of its form of existence from highest to lowest, thereby improving detection efficiency.

[0133] Step S180: Combine the types of the remaining unidentified hazardous waste obtained from the detection with the types of hazardous waste identified in the same batch that were shipped out, and consider them as the types of hazardous waste shipped out in the same batch.

[0134] In this process, the types of remaining unidentified hazardous waste obtained from the detection are combined with the types of hazardous waste that were identified in the same batch of outbound products, thereby obtaining all types of hazardous waste that were outbound in the same batch.

[0135] The implementation principle of this embodiment is as follows: by identifying the hazardous waste products leaving the warehouse in the same batch, and according to the source of the hazardous waste products and the probability distribution of their existing forms, a detection scheme corresponding to the existing forms of the hazardous waste products is adopted to detect and obtain the types of the remaining unidentified hazardous waste products, and the types obtained by detection are merged with the types obtained by identification, thereby obtaining the types of hazardous waste products leaving the warehouse in the same batch.

[0136] exist Figure 2 In step S150 of the illustrated embodiment, to further ensure the rationality of the obtained probability distribution of the existence forms of hazardous waste from the source, it is necessary to perform further separate analysis and calculation on the probability distribution of the existence forms of hazardous waste from the source. Specifically, this is achieved through... Figure 3The illustrated embodiments will be described in detail.

[0137] Reference Figure 3 Analyzing and determining the probability distribution of the existing forms of hazardous waste at its source includes the following steps:

[0138] Step S151: Obtain the number of hazardous waste origins.

[0139] The number of hazardous waste sources refers to the total number of hazardous waste sources.

[0140] Step S152: If the number of hazardous waste sources is one, then based on the preset correspondence between the source and the household that generates the hazardous waste, analyze and determine the household that generates the hazardous waste corresponding to the source.

[0141] Among them, the households that generate hazardous waste are different in different source areas. When there is only one source area for hazardous waste, the household that generates hazardous waste corresponding to the source area is determined by the correspondence between the source area and the household that generates hazardous waste.

[0142] Step S153: Based on the correspondence between the household that generates hazardous waste in the source area and the probability distribution of the existence form of hazardous waste, analyze and determine the probability distribution of the existence form of hazardous waste corresponding to the household that generates hazardous waste in the source area.

[0143] The hazardous waste generated by different entities can exist in different forms. For example, machine processing plants generally generate solid hazardous waste, while power plants generally generate gaseous hazardous waste. By examining the entities that generate hazardous waste within the source area, we can understand the probability distribution of the forms in which hazardous waste exists.

[0144] Step S154: If the number of hazardous waste sources is at least two, then obtain the percentage of hazardous waste from different sources.

[0145] Among them, when the number of hazardous waste sources is at least two, the quantity of hazardous waste from different sources is different, thereby obtaining the proportion of hazardous waste from different sources.

[0146] Step S155: Based on the preset correspondence between the source and the household that generates hazardous waste, analyze and determine the household that generates hazardous waste corresponding to the source.

[0147] Among these methods, the origin of the hazardous waste is used to determine the household that generates the hazardous waste in that origin.

[0148] Step S156: Based on the correspondence between the household that generates hazardous waste in the source area and the probability distribution of the existence form of hazardous waste, analyze and determine the probability distribution of the existence form of hazardous waste corresponding to the household that generates hazardous waste in the source area.

[0149] Since the households that generate hazardous waste are different, the probability distribution of the existence form of the hazardous waste they generate is also different. By analyzing and determining the probability distribution of the existence form of hazardous waste corresponding to the households that generate hazardous waste in the source area through the correspondence between the households that generate hazardous waste in the source area and the probability distribution of the existence form of hazardous waste.

[0150] Step S157: Based on the proportion of hazardous waste from different sources and the probability distribution of the existence forms of hazardous waste corresponding to the households that generate hazardous waste in the source areas, analyze and determine the overall probability distribution of the existence forms of hazardous waste from the source areas.

[0151] Since the proportion of hazardous waste from different sources is different, the probability distribution of the existence form of hazardous waste corresponding to the households that generate hazardous waste in different sources is different. By analyzing the proportion of hazardous waste from different sources, the probability distribution of the existence form of hazardous waste in the overall source areas can be determined.

[0152] For example, there are two sources of hazardous waste. In one source, the probability distribution of the waste's form is as follows: solid hazardous waste has a probability of 0.2, liquid hazardous waste has a probability of 0.3, and gaseous hazardous waste has a probability of 0.5. In the other source, the probability distribution is as follows: solid hazardous waste has a probability of 0.4, liquid hazardous waste has a probability of 0.5, and gaseous hazardous waste has a probability of 0.1. Therefore, the overall probability distribution of the hazardous waste's form from all sources is as follows: solid hazardous waste has a probability of 0.3, liquid hazardous waste has a probability of 0.4, and gaseous hazardous waste has a probability of 0.3.

[0153] The implementation principle of this embodiment is as follows: The probability distribution of the existence forms of hazardous waste at each source is determined by the number of sources. When there is only one source, the probability distribution of the existence forms of hazardous waste is directly determined based on the households that generate the hazardous waste at that source. When there are at least two sources, the probability distribution of the existence forms of hazardous waste is determined based on the proportion of hazardous waste from different sources. This improves the accuracy of the probability distribution of the existence forms of hazardous waste.

[0154] exist Figure 1 In the illustrated embodiment, between steps S300 and S600, or between steps S500 and S600, to further ensure the rationality of the executed final hazardous waste outbound plan, a further separate analysis and calculation of the executed final hazardous waste outbound plan is required. Specifically, this is achieved through... Figure 4 The illustrated embodiments will be described in detail.

[0155] Reference Figure 4The steps between the formation and implementation of the final hazardous waste evacuation plan include:

[0156] Step S710: Obtain the outdoor ambient temperature.

[0157] The outdoor ambient temperature refers to the temperature outside the centralized placement point. The outdoor ambient temperature can be obtained using a thermometer or a temperature sensor.

[0158] Step S720: Based on the preset suitable temperature range for different types of hazardous waste, analyze and determine whether there are any types of hazardous waste affected by outdoor ambient temperature. If yes, proceed to step S730; if no, proceed to step S740.

[0159] The suitable temperature range for each type of hazardous waste is retrieved from a database storing this information. The suitable temperature range for a type of hazardous waste refers to the temperature range within which the waste remains in the same state. Determining whether any type of hazardous waste is affected by outdoor ambient temperature involves comparing the outdoor ambient temperature with the two extreme values ​​of the suitable temperature range for that type of hazardous waste.

[0160] When the outdoor ambient temperature is greater than the minimum value of the suitable temperature range for a particular type of hazardous waste, and less than the maximum value of the suitable temperature range for a particular type of hazardous waste, then that type of hazardous waste is not affected by the outdoor ambient temperature, and therefore there is no type of hazardous waste affected by the outdoor ambient temperature.

[0161] When the outdoor ambient temperature is lower than the minimum of the suitable temperature range for a particular type of hazardous waste, or when the outdoor ambient temperature is higher than the maximum of the suitable temperature range for a particular type of hazardous waste, the type of hazardous waste is affected by the outdoor ambient temperature, thus creating a type of hazardous waste that is affected by the outdoor ambient temperature.

[0162] For example, ether is used as an oil stain cleaner in the textile industry. Its boiling point is 34.5 degrees Celsius, which is the maximum value of the suitable temperature range for ether in the liquid state. Ether is highly volatile. When the outdoor temperature is 35 degrees Celsius, ether will evaporate into gas, which can easily lead to leakage and pollution.

[0163] Step S730: Based on the correspondence between the types of hazardous waste and the preset insulation schemes, analyze and determine the insulation schemes for the corresponding types of hazardous waste, and add the insulation schemes for the hazardous waste to the final hazardous waste outbound scheme.

[0164] When there are hazardous waste types affected by outdoor ambient temperature, the insulation plan is retrieved from a database containing these plans. By analyzing the correspondence between hazardous waste types and insulation plans, the appropriate insulation plan for each type of hazardous waste is determined. This leads to adjustments in the final hazardous waste outbound process, ensuring that insulated hazardous waste is properly insulated when it is outbound according to the final plan.

[0165] Step S740: Maintain the final hazardous waste outbound plan unchanged.

[0166] When there are no hazardous waste types affected by outdoor ambient temperature, the hazardous waste can be directly released from the warehouse, thus only needing to maintain the final hazardous waste release plan unchanged.

[0167] The implementation principle of this embodiment is as follows: by judging whether there are hazardous waste types that are affected by outdoor ambient temperature, if there are hazardous waste types that are affected by outdoor ambient temperature, insulation adjustments are made; if there are hazardous waste types that are not affected by outdoor ambient temperature, the final hazardous waste outbound plan is directly adopted for outbound processing.

[0168] exist Figure 4 In step S730 of the illustrated embodiment, to further ensure the rationality of the executed final hazardous waste outbound plan, a further separate analysis and calculation of the executed final hazardous waste outbound plan is required. Specifically, this is achieved through... Figure 5 The illustrated embodiments will be described in detail.

[0169] Reference Figure 5 The parallel approach to incorporating the insulation solution for hazardous waste into the final hazardous waste outbound process includes the following steps:

[0170] Step S810: Based on the preset hazard levels of different hazardous waste types at different ambient temperatures, analyze and determine the hazard levels caused by the influence of ambient temperature on different hazardous waste types.

[0171] The degree of hazard posed by different types of hazardous waste to ambient temperature refers to the extent of harm caused by the influence of ambient temperature on different types of hazardous waste. The degree of hazard posed by different types of hazardous waste at different ambient temperatures is retrieved from a database storing this information. The degree of hazard posed by different types of hazardous waste to ambient temperature is then analyzed and determined.

[0172] Step S820: Based on the preset correspondence between hazardous waste reaction combinations and hazard levels, analyze and determine the hazard level corresponding to the hazardous waste reaction combinations.

[0173] Specifically, the degree of hazard of hazardous waste in a reaction combination is analyzed and determined by the correspondence between the reaction combination of hazardous waste and the degree of hazard.

[0174] Step S830: Based on the degree of hazard caused by the influence of ambient temperature on the type of hazardous waste and the degree of hazard corresponding to the reaction combination of hazardous waste, the comprehensive hazard degree of a single type of hazardous waste is analyzed and calculated.

[0175] The overall hazard level of a single hazardous waste category refers to the overall hazard level of a single hazardous waste category. The overall hazard level of a single hazardous waste category is influenced by the hazard level resulting from the effect of ambient temperature on the hazardous waste category and the hazard level corresponding to the reaction combination of the hazardous wastes.

[0176] Step S840: Determine whether the overall hazard level of any single hazardous waste type exceeds the preset hazard level. If yes, proceed to step S850; if no, proceed to step S860.

[0177] The preset hazard level is retrieved from a database storing preset hazard levels. Determining whether the overall hazard level of a single hazardous waste type exceeds the preset hazard level involves checking whether the parameter value corresponding to the overall hazard level of the single hazardous waste type is greater than the parameter value corresponding to the preset hazard level.

[0178] Step S850: Send a notification message to the terminal held by the person in charge.

[0179] When the combined hazard level of a single hazardous waste type exceeds the preset hazard level, it indicates that the hazard level is high and the person in charge needs to be notified for handling.

[0180] Step S860: Do not send a notification message.

[0181] If the overall hazard level of a single hazardous waste type does not exceed the preset hazard level, it indicates that the hazard level is low and there is no need to notify the person in charge for handling.

[0182] The implementation principle of this embodiment is as follows: by analyzing and calculating the comprehensive hazard level of a single hazardous waste type based on the degree of hazard caused by the influence of ambient temperature on the type of hazardous waste and the degree of hazard corresponding to the reaction combination of hazardous waste, it is determined whether the comprehensive hazard level of a single hazardous waste type exceeds the preset hazard level, thereby determining whether it is necessary to notify the person in charge to handle the matter.

[0183] exist Figure 5 In step S730 of the illustrated embodiment, to further ensure the rationality of the comprehensive hazard level of the individual hazardous waste type calculated, a further individual analysis and calculation of the comprehensive hazard level of the individual hazardous waste type is required. Specifically, this is achieved through... Figure 6 The illustrated embodiments will be described in detail.

[0184] Reference Figure 6The analysis and calculation of the comprehensive hazard level of individual hazardous waste types includes the following steps:

[0185] Step S821: Obtain the degree of hazard caused by the influence of ambient temperature on the type of hazardous waste and the degree of hazard corresponding to the reaction combination of hazardous waste.

[0186] Step S822: Apply the preset comprehensive hazard degree calculation formula to calculate the comprehensive hazard degree of each individual hazardous waste type. The preset comprehensive hazard degree calculation formula is as follows:

[0187] P0 = A*P1 + B*P2, A + B = 1;

[0188] Wherein, P0 represents the overall hazard level of a single hazardous waste type;

[0189] A is a coefficient representing the degree of hazard caused by the influence of ambient temperature on the type of hazardous waste;

[0190] P1 represents the degree of hazard caused by the influence of ambient temperature on the type of hazardous waste.

[0191] B is the coefficient representing the degree of hazard corresponding to the reaction combination of hazardous waste;

[0192] P2 represents the degree of hazard corresponding to the hazardous waste reaction combination.

[0193] Among them, based on the impact of the degree of hazard caused by the influence of ambient temperature on the type of hazardous waste and the degree of hazard corresponding to the reaction combination of hazardous waste on the comprehensive hazard degree of individual hazardous waste types, the comprehensive hazard degree of individual hazardous waste types is calculated by applying a preset comprehensive hazard degree calculation formula, thereby improving the accuracy of the comprehensive hazard degree of individual hazardous waste types.

[0194] For example, when P1=3, P2=5, A=0.5, B=0.5.

[0195] At this point, P0 = A*P1 + B*P2 = 3*0.5 + 5*0.5 = 1.5 + 2.5 = 4.

[0196] The implementation principle of this embodiment is as follows: by applying a preset comprehensive hazard degree calculation formula, the comprehensive hazard degree of individual hazardous waste types is calculated, thereby improving the accuracy of the comprehensive hazard degree of individual hazardous waste types.

[0197] exist Figure 5 In step S840 of the illustrated embodiment, to further ensure the rationality of sending notification information to the terminal held by the person in charge, it is necessary to perform further separate analysis and calculation on sending notification information to the terminal held by the person in charge. Specifically, through... Figure 7 The illustrated embodiments will be described in detail.

[0198] Reference Figure 7 Sending notification information to the terminal held by the person in charge includes the following steps:

[0199] Step S841: Obtain the types of hazards caused by the influence of ambient temperature on the types of hazardous waste and the types of hazards corresponding to the reaction combinations of hazardous waste.

[0200] Among them, the types of hazards caused by the influence of ambient temperature on the types of hazardous waste and the types of hazards corresponding to the reaction combinations of hazardous waste include, but are not limited to, various odors and gases or substances generated that can easily cause allergies in the person in charge.

[0201] Step S842: Based on the correspondence between the types of hazards caused by the influence of ambient temperature on the types of hazardous waste and the tolerance levels of different responsible persons for the types of hazards, the tolerance levels of different responsible persons for the types of hazards caused by the influence of ambient temperature on the types of hazardous waste are sorted in a positive order, and a first number value is assigned to each responsible person according to the positive order.

[0202] Specifically, the tolerance levels of different responsible persons regarding the types of hazards caused by environmental temperature affecting different types of hazardous waste are retrieved from a database storing these tolerance levels. Forward sorting is defined as a ranking based on tolerance levels from highest to lowest. The tolerance levels of different responsible persons for each type of hazardous waste affected by environmental temperature are determined, and these tolerance levels are then forward-sorted, assigning a first number value based on the forward sorting. A larger first number value indicates a higher tolerance level for that type of hazard.

[0203] Step S843: Based on the correspondence between the hazard type corresponding to the hazardous waste reaction combination and the tolerance level of different responsible persons for the hazard type, the tolerance level of different responsible persons for the hazard type corresponding to the hazardous waste reaction combination is sorted in a positive order, and a second number value is assigned to each of the different responsible persons according to the positive order.

[0204] Specifically, the tolerance levels of different responsible persons for the hazard types corresponding to the hazardous waste reaction combinations are retrieved from a database storing these tolerance levels. The tolerance levels of different responsible persons for each hazard type corresponding to the hazardous waste reaction combination are determined, and these tolerance levels are then ranked in a positive order, assigning a second number value based on the ranking. A higher second number value indicates a higher tolerance level for that hazard type.

[0205] Step S844: Based on the correspondence between the first number value, the second number value, and the comprehensive number values ​​of different responsible persons, analyze and determine the comprehensive number values ​​of different responsible persons corresponding to the first number value and the second number value, sort the comprehensive number values ​​of different responsible persons in a forward order, and select the responsible person with the first comprehensive number value to send notification information to the terminal held by that responsible person.

[0206] The comprehensive number value is related to the first and second number values. The comprehensive number value is determined by analyzing the first and second number values. The comprehensive number value is used to assess the person in charge's tolerance for the types of hazards caused by the influence of ambient temperature on the types of hazardous waste and the types of hazards corresponding to the reaction combinations of hazardous waste. The higher the comprehensive number value, the higher the person in charge's tolerance for the two types of hazards. At this time, the person in charge with the highest comprehensive number value is selected to send a notification message to the terminal held by that person, so that the person in charge is less likely to experience allergic reactions and less likely to be affected by odors while working, thereby improving the person in charge's sense of well-being at work.

[0207] The implementation principle of this embodiment is as follows: By positively ranking the tolerance of different responsible persons to the types of hazards caused by the influence of ambient temperature on the types of hazardous waste and the types of hazards corresponding to the reaction combinations of hazardous waste, and assigning them a first number value and a second number value, a comprehensive number value is determined by analyzing the first number value and the second number value. The responsible person corresponding to the first one after positive ranking of the comprehensive number value receives the notification information, so that the responsible person who receives the notification information is less likely to experience allergic reactions and is less affected by odors when performing outbound operations.

[0208] exist Figure 5 In step S840 of the illustrated embodiment, to further ensure the rationality of sending notification information to the terminal held by the person in charge, it is necessary to perform further separate analysis and calculation on sending notification information to the terminal held by the person in charge. Specifically, through... Figure 8 The illustrated embodiments will be described in detail.

[0209] Reference Figure 8 Sending notification information to the terminal held by the person in charge includes the following steps:

[0210] Step S845: Obtain the types of hazardous waste products shipped out in the same batch and the quantities of different types of hazardous waste products shipped out in the same batch.

[0211] The types of hazardous waste shipped out in the same batch refer to the quantity of each type of hazardous waste included in the same batch. The quantity of different types of hazardous waste shipped out in the same batch refers to the quantity of the same type of hazardous waste within the same batch.

[0212] Step S846: Based on the types of hazardous wastes shipped out in the same batch, the quantities of different types of hazardous wastes shipped out in the same batch, and the pre-set correspondence between the shipping times of different types of hazardous wastes, analyze and calculate the single-type shipping time corresponding to the quantities of different types of hazardous wastes shipped out in the same batch.

[0213] The outbound times for different types of hazardous waste are retrieved from a database storing these times. By analyzing the types and quantities of different types of hazardous waste in the same batch, the outbound time for each type is calculated, thus determining the required outbound time for each type of hazardous waste.

[0214] Step S847: Based on the correspondence between the types of hazardous waste products leaving the warehouse in the same batch and the single-type departure time, analyze and calculate the total departure time of hazardous waste products leaving the warehouse in the same batch.

[0215] Among them, by analyzing the types of hazardous waste products released in the same batch and the release time of each type, the total release time of hazardous waste products released in the same batch can be calculated.

[0216] Step S848: Determine whether the total outbound time of the same batch of hazardous waste exceeds the preset operation reminder time. If yes, proceed to step S849; if no, proceed to step S84A.

[0217] Step S849: Use the difference between the total outbound time and the operation reminder time as delay information, and output the delay information to delay the sending of the notification information to the terminal held by the person in charge.

[0218] Specifically, if the total outbound time of hazardous waste in the same batch exceeds the preset operation reminder time, the person in charge will have to wait too long to perform the operation. The difference between the total outbound time and the operation reminder time is used as delay information, ensuring that the operation reminder is issued at the predetermined time, reducing the person in charge's waiting time at the outbound location and thus lowering the chance of contamination.

[0219] Step S84A: Immediately send a notification message to the terminal held by the person in charge.

[0220] If the total outbound time of hazardous waste in the same batch is not greater than the preset operation reminder time, then the person in charge can proceed with the operation.

[0221] The implementation principle of this embodiment is as follows: By analyzing the types of hazardous waste products leaving the warehouse in the same batch and the quantities of different types of hazardous waste products leaving the warehouse in the same batch, the time for leaving a single type of hazardous waste product is calculated. Based on the time for leaving a single type of hazardous waste product and the types of hazardous waste products leaving the warehouse in the same batch, the total time for leaving the warehouse in the same batch of hazardous waste products is calculated. Therefore, the time for sending notification information to the terminal held by the person in charge is adjusted according to the total time for leaving the warehouse of hazardous waste products, thereby reducing the waiting time of the person in charge and reducing the probability of the person in charge being contaminated.

[0222] Based on the same inventive concept, embodiments of the present invention provide a hazardous waste outbound system, comprising:

[0223] Module 1 is used to: obtain the types of hazardous waste products shipped out in the same batch;

[0224] Analysis module 2 is used to: analyze and determine whether there are hazardous waste reaction combinations among the types of hazardous wastes in the same batch of outbound products, based on the types of hazardous wastes and the preset hazardous waste reaction combinations.

[0225] The scheme construction module 3 is used to: determine the preliminary hazardous waste outbound scheme based on the pre-set correspondence between hazardous waste types and hazardous waste outbound schemes, and supplement the hazardous waste outbound scheme with the adjustment scheme of hazardous waste reaction combination to form the final hazardous waste outbound scheme;

[0226] The scheme execution module 4 is used to execute the final hazardous waste outbound scheme.

[0227] The implementation principle of this embodiment is as follows: The acquisition module 1 acquires the types of hazardous waste products in the same batch and outputs them to the analysis module 2. The analysis module 2 receives the types of hazardous waste products in the same batch and, based on the types of hazardous waste products in the same batch and the preset hazardous waste reaction combinations, analyzes and judges whether there are hazardous waste reaction combinations among the types of hazardous waste products in the same batch. The scheme construction module 3 constructs a final hazardous waste outbound scheme in both cases where there are hazardous waste reaction combinations among the types of hazardous waste products in the same batch. The final hazardous waste outbound scheme is then output to the scheme execution module 4. The scheme execution module 4 receives the final hazardous waste outbound scheme and executes it, thereby making it less likely for hazardous waste products to cause pollution when they are outbound.

[0228] Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the above-described division of functional modules is used as an example. In practical applications, the above functions can be assigned to different functional modules as needed, that is, the internal structure of the device can be divided into different functional modules to complete all or part of the functions described above. The specific working process of the system, device, and unit described above can be referred to the corresponding process in the foregoing method embodiments, and will not be repeated here.

[0229] This invention provides a computer storage medium storing a computer program that can be loaded by a processor and executed as a road stain cleaning method.

[0230] Computer storage media include, for example, USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, optical disks, and other media that can store program code.

[0231] Based on the same inventive concept, embodiments of the present invention provide a smart terminal, including a memory and a processor, wherein the memory stores a computer program that can be loaded by the processor and executed as a road stain cleaning method.

[0232] Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the above-described division of functional modules is used as an example. In practical applications, the above functions can be assigned to different functional modules as needed, that is, the internal structure of the device can be divided into different functional modules to complete all or part of the functions described above. The specific working process of the system, device, and unit described above can be referred to the corresponding process in the foregoing method embodiments, and will not be repeated here.

[0233] The above are all preferred embodiments of this application and are not intended to limit the scope of protection of this application. Any feature disclosed in this specification (including the abstract and drawings) may be replaced by other equivalent or similar features unless specifically stated otherwise. That is, unless specifically stated otherwise, each feature is only one example of a series of equivalent or similar features.

Claims

1. A method for the release of hazardous waste from a warehouse, characterized in that, include: Obtain the types of hazardous waste shipped out in the same batch; Based on the types of hazardous wastes shipped out in the same batch and the preset hazardous waste reaction combinations, analyze and determine whether there are hazardous waste reaction combinations among the types of hazardous wastes shipped out in the same batch. A hazardous waste reaction combination is a combination of multiple types of hazardous wastes that react with each other. If yes, then based on the pre-defined correspondence between hazardous waste reaction combinations and adjustment measures, analyze and determine the adjustment scheme for the hazardous waste reaction combinations; based on the pre-defined correspondence between hazardous waste types and hazardous waste outbound schemes, determine the preliminary hazardous waste outbound scheme, and supplement the hazardous waste outbound scheme with the adjustment scheme for the hazardous waste reaction combinations to construct the final hazardous waste outbound scheme; if no, then based on the pre-defined correspondence between hazardous waste types and hazardous waste outbound schemes, determine the preliminary hazardous waste outbound scheme, and use the preliminary hazardous waste outbound scheme as the final hazardous waste outbound scheme; execute the final hazardous waste outbound scheme; It also includes the steps between the formation and execution of the final hazardous waste outbound plan, specifically as follows: Obtain the outdoor ambient temperature; Based on the preset suitable temperature range for different types of hazardous waste, analyze and determine whether there are any types of hazardous waste that are affected by the outdoor ambient temperature; If yes, then based on the correspondence between the types of hazardous waste and the preset insulation schemes, analyze and determine the insulation schemes for the corresponding types of hazardous waste, and add the insulation schemes for the hazardous waste to the final hazardous waste outbound scheme; if no, then keep the final hazardous waste outbound scheme unchanged. This also includes a parallel scheme to supplement the final hazardous waste outbound process with the insulation plan for hazardous waste, as follows: Based on the pre-defined hazard levels of different hazardous waste types at different ambient temperatures, analyze and determine the hazard level of each hazardous waste type affected by ambient temperature; based on the pre-defined correspondence between hazardous waste reaction combinations and hazard levels, analyze and determine the hazard level corresponding to each hazardous waste reaction combination; based on the hazard levels of each hazardous waste type affected by ambient temperature and the hazard levels corresponding to each hazardous waste reaction combination, analyze and calculate the comprehensive hazard level of each individual hazardous waste type; if the comprehensive hazard level of any individual hazardous waste type exceeds the pre-defined hazard level, a notification message will be sent to the terminal held by the responsible person. Conversely, no notification message will be sent. The analysis and calculation of the comprehensive hazard level of individual hazardous waste types includes: obtaining the hazard level of each hazardous waste type affected by ambient temperature and the hazard level corresponding to the reaction combination of hazardous wastes; applying a preset comprehensive hazard level calculation formula to calculate the comprehensive hazard level of each individual hazardous waste type, where the preset comprehensive hazard level calculation formula is as follows: P0=A*P1+B*P2, A+B=1; where P0 is the comprehensive hazard level of an individual hazardous waste type; A is the coefficient of the hazard level of a hazardous waste type affected by ambient temperature; P1 is the hazard level of a hazardous waste type affected by ambient temperature; B is the coefficient of the hazard level corresponding to the reaction combination of hazardous wastes; P2 is the hazard level corresponding to the reaction combination of hazardous wastes.

2. The method for releasing hazardous waste from a warehouse according to claim 1, characterized in that, The acquisition of the types of hazardous waste in the same batch of outbound products includes: identifying the types of hazardous waste in the same batch of outbound products; analyzing whether all types of hazardous waste in the same batch of outbound products have been completely identified; if yes, then the identified types of hazardous waste in the same batch of outbound products are taken as the types of hazardous waste in the same batch of outbound products; if no, then the origin of the hazardous waste is acquired; based on the correspondence between the origin and the preset probability distribution of the existence forms of hazardous waste, the probability distribution of the existence forms of hazardous waste in the origin is analyzed and determined; based on the probability distribution of the existence forms of hazardous waste in the origin and the correspondence between the preset existence forms of hazardous waste and the detection scheme, the detection methods corresponding to the existence forms of hazardous waste are forward-sorted, defined as a sorting method based on probability from largest to smallest; based on the forward sorting of the detection schemes, the remaining unidentified types of hazardous waste are detected one by one using the detection schemes until the detection of all types of hazardous waste is completed. The types of remaining unidentified hazardous waste obtained from the detection are combined with the types of hazardous waste identified in the same batch that were shipped out, and these are considered as the types of hazardous waste shipped out in the same batch.

3. The method for releasing hazardous waste from a warehouse according to claim 2, characterized in that, The analysis to determine the probability distribution of the existence forms of hazardous waste from different sources includes: obtaining the number of hazardous waste source locations; if the number of hazardous waste source locations is one, then based on the pre-defined correspondence between source locations and the households that generate hazardous waste, analyzing and determining the household that generates hazardous waste corresponding to that source location; based on the correspondence between the household that generates hazardous waste from different sources and the probability distribution of the existence forms of hazardous waste, analyzing and determining the probability distribution of the existence forms of hazardous waste corresponding to the household that generates hazardous waste from different sources; if the number of hazardous waste source locations is at least two, then obtaining the proportion of hazardous waste from different source locations; based on the pre-defined correspondence between source locations and the households that generate hazardous waste, analyzing and determining the household that generates hazardous waste corresponding to that source location; based on the correspondence between the household that generates hazardous waste from different sources and the probability distribution of the existence forms of hazardous waste, analyzing and determining the probability distribution of the existence forms of hazardous waste corresponding to the household that generates hazardous waste from different sources. Based on the proportion of hazardous waste from different sources and the probability distribution of the existence forms of hazardous waste corresponding to the households that generate hazardous waste in each source, the probability distribution of the existence forms of hazardous waste in the overall source areas is analyzed and determined.

4. The method for releasing hazardous waste from a warehouse according to claim 1, characterized in that, Sending notification information to the terminal held by the responsible person includes: obtaining the types of hazards caused by the influence of ambient temperature on the types of hazardous waste and the types of hazards corresponding to the reaction combinations of hazardous waste; based on the correspondence between the types of hazards caused by the influence of ambient temperature on the types of hazardous waste and the preset tolerance levels of different responsible persons for the types of hazards, forward sorting is performed on the tolerance levels of different responsible persons for the types of hazards caused by the influence of ambient temperature on the types of hazardous waste, and assigning a first number value to each responsible person according to the forward sorting, defining the forward sorting as a sorting method based on the tolerance level from largest to smallest; based on the correspondence between the types of hazards corresponding to the reaction combinations of hazardous waste and the preset tolerance levels of different responsible persons for the types of hazards, forward sorting is performed on the tolerance levels of different responsible persons for the types of hazards corresponding to the reaction combinations of hazardous waste, and assigning a second number value to each responsible person according to the forward sorting; Based on the correspondence between the first number value, the second number value, and the comprehensive number value of different responsible persons, the comprehensive number value of different responsible persons corresponding to the first number value and the second number value is analyzed and determined. The comprehensive number values ​​of different responsible persons are then sorted in a positive order, and the responsible person with the first comprehensive number value is selected to send a notification message to the terminal held by that responsible person.

5. The method for releasing hazardous waste from a warehouse according to claim 1, characterized in that, Sending notification information to the terminal held by the person in charge includes: obtaining the types of hazardous waste and the quantities of different types of hazardous waste in the same batch; analyzing and calculating the single-type outbound time corresponding to the quantities of different types of hazardous waste in the same batch based on the correspondence between the types of hazardous waste, the quantities of different types of hazardous waste in the same batch, and the preset outbound time of different types of hazardous waste; analyzing and calculating the total outbound time of the same batch of hazardous waste based on the correspondence between the types of hazardous waste and the single-type outbound time; determining whether the total outbound time of the same batch of hazardous waste is greater than the preset operation reminder time; if the total outbound time is greater than the preset operation reminder time, the difference between the total outbound time and the operation reminder time is used as delay information, and the delay information is output to delay the sending of the notification information to the terminal held by the person in charge; otherwise, the notification information is sent to the terminal held by the person in charge immediately.

6. A hazardous waste outbound system, characterized in that, The system is used to execute a hazardous waste outbound method as described in claim 1, comprising: an acquisition module (1) for acquiring the types of hazardous waste outbound in the same batch; an analysis module (2) for analyzing and determining whether there is a hazardous waste reaction combination among the types of hazardous waste outbound in the same batch based on the types of hazardous waste outbound in the same batch and a preset hazardous waste reaction combination; a scheme construction module (3) for determining a preliminary hazardous waste outbound scheme based on the correspondence between the preset hazardous waste types and the hazardous waste outbound scheme, and supplementing the hazardous waste reaction combination adjustment scheme in the hazardous waste outbound scheme to construct a final hazardous waste outbound scheme; and a scheme execution module (4) for executing the final hazardous waste outbound scheme.

7. A computer storage medium, characterized in that, The computer program is stored that can be loaded by a processor and executed according to any one of claims 1 to 5.

Citation Information

Patent Citations

  • Hazardous waste compatibility system

    CN107705235A