Efficient Washing Method, Device, Equipment and Storage Medium Based on Roasted Lithium Slag
By obtaining the material analyzer for roasted lithium slag, performing material analysis and drug configuration, and calculating the reaction cycle, the problem of low washing efficiency of roasted lithium slag is solved, and an efficient washing process is achieved.
Patent Information
- Application Number
- CN202211446479.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-18
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2042-11-18
AI Technical Summary
In the existing method of baking lithium slag washing, the chemical components of the washing drugs react with each other and cause the efficiency to decrease, and it is necessary to improve the washing efficiency of baking lithium slag.
By obtaining the material analyzer for roasting lithium slag, performing material analysis, querying the categories and quantity values of the materials to be washed, configuring the washing drugs, sorting the washing drugs, calculating the reaction cycle, and using the washing drugs to wash the roasted lithium slag.
The washing efficiency of roasted lithium residue is improved, the mutual reaction between washing drugs is avoided, and the efficient progress of the washing process is ensured.
Smart Images

Figure CN115831245B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of intelligent decision-making technology, and in particular to an efficient washing method, device, equipment and storage medium based on roasted lithium slag. Background Art
[0002] Calcined lithium slag, derived from the lithium salt production process, is divided into acidic and alkaline slag. For example, acidic lithium slag is the waste residue produced during the sulfuric acid process to produce lithium carbonate. It is produced after lithium concentrate undergoes processes such as high-temperature roasting and acidification roasting, atmospheric pressure water leaching, and liquid-solid separation. Using lithium slag to produce cement not only achieves the goal of comprehensively utilizing industrial waste residues, turning harm into benefit, but also increases cement production, reduces production costs, improves cement properties, adjusts cement grades, and improves cement stability. However, calcined lithium slag requires washing before use. Existing washing methods involve sequentially adding detergents to a reactor to wash the calcined lithium slag. However, the chemical components in the detergents react with each other, consuming the required amount of detergents, which in turn reduces the washing efficiency of the calcined lithium slag. Therefore, a method for improving the washing efficiency of the calcined lithium slag is needed. Summary of the Invention
[0003] The present invention provides a high-efficiency washing method, device, equipment and storage medium based on roasted lithium slag, the main purpose of which is to improve the washing efficiency of roasted lithium slag.
[0004] To achieve the above object, the present invention provides an efficient washing method based on calcined lithium slag, comprising:
[0005] Obtaining calcined lithium slag to be washed, creating a material analyzer for the calcined lithium slag, and performing material analysis on the calcined lithium slag using the material analyzer to obtain material data;
[0006] querying the material data for the material to be washed, obtaining the material category corresponding to the material to be washed, counting the quantity of the material to be washed, and configuring a washing agent for the material to be washed based on the material category and the quantity;
[0007] Sort the drugs in the cleaning drugs according to the quantity values to obtain a first sequence, perform elemental analysis on the cleaning drugs to obtain drug elements, mark the reactive elements in the drug elements with serial numbers according to a preset elemental reaction table to obtain a second sequence, and update the first sequence using the second sequence to obtain a target sequence;
[0008] The reaction cycle of each drug in the washing drug is calculated, and based on the reaction cycle and the target sequence, the roasted lithium slag is washed with the washing drug to obtain the washed lithium slag.
[0009] Optionally, the material analyzer for creating the roasted lithium slag includes:
[0010] Obtaining source data of the roasted lithium slag, and identifying a data category of each data in the source data;
[0011] According to the data category, construct an analysis project of the roasted lithium slag and obtain historical data of the roasted lithium slag;
[0012] Based on the analysis items and the historical data, a material analyzer for the roasted lithium slag is created.
[0013] The material analyzer is used to perform material analysis on the calcined lithium slag to obtain material data, including:
[0014] Sampling the calcined lithium slag to obtain a sampled material;
[0015] Performing material analysis on the sampled material using the material analyzer to obtain constituent elements of the sampled material;
[0016] According to the preset element-name relationship table, query the material name corresponding to the constituent element;
[0017] The material data is obtained by combining the material name and the constituent elements.
[0018] The step of configuring the cleaning agent for the material to be cleaned based on the material category and the quantity value includes:
[0019] Based on the material category, querying the detergent category corresponding to the material to be washed, and obtaining a reaction formula between the material to be washed and the detergent category;
[0020] According to the reaction formula, the loss ratio of the material to be washed and the detergent is calculated, and according to the loss ratio and the quantity value, the detergent for the material to be washed is configured.
[0021] The step of sorting the drugs in the washing drugs according to the quantity values to obtain a first sequence includes:
[0022] Sort the quantity values from largest to smallest to obtain a quantity sequence;
[0023] Obtaining the reaction environment of each drug in the washing drug, and calculating the complexity of each environment in the reaction environment;
[0024] The drugs in the washing drugs are sorted according to the complexity and the quantity sequence to obtain a first sequence.
[0025] The calculating the complexity of each environment in the reaction environment includes:
[0026] Performing attribute analysis on each drug in the washing drugs to obtain drug attributes;
[0027] Extracting characteristic attributes from the drug attributes and constructing an attribute graph corresponding to the characteristic attributes;
[0028] Calculating the complexity of the attribute graph using a preset complexity algorithm to obtain the graph complexity;
[0029] The complexity of the reaction environment corresponding to the drug is obtained according to the complexity of the graph.
[0030] The step of calculating the reaction cycle of each drug in the washing drug comprises:
[0031] Obtaining a value of the cleaning material corresponding to each of the cleaning drugs;
[0032] The drug and the corresponding washing material react according to a preset ratio, and the reaction time is recorded;
[0033] Acquiring the current environment of the washing material and querying the interference coefficient of the current environment on the drug reaction;
[0034] The reaction period of each drug is calculated by combining the interference coefficient, the value and the reaction time.
[0035] In order to solve the above problems, the present invention also provides an efficient washing device based on roasted lithium slag, the device comprising:
[0036] A material analysis module is used to obtain the calcined lithium slag to be washed, create a material analyzer for the calcined lithium slag, and perform material analysis on the calcined lithium slag using the material analyzer to obtain material data;
[0037] a drug configuration module, configured to query the material to be washed in the material data, obtain the material category corresponding to the material to be washed, count the quantity of the material to be washed, and configure the washing drug for the material to be washed based on the material category and the quantity;
[0038] a material sorting module, configured to sort the drugs in the detergent according to the quantity values to obtain a first sequence, perform elemental analysis on the detergent to obtain drug elements, mark the reactive elements in the drug elements according to a preset element reaction table to obtain a second sequence, and update the first sequence using the second sequence to obtain a target sequence;
[0039] The lithium slag washing module is used to calculate the reaction cycle of each drug in the washing drug, and based on the reaction cycle and the target sequence, wash the roasted lithium slag with the washing drug to obtain washed lithium slag.
[0040] In order to solve the above problem, the present invention further provides an electronic device, comprising:
[0041] at least one processor; and,
[0042] a memory communicatively connected to the at least one processor; wherein,
[0043] The memory stores a computer program that can be executed by the at least one processor. The computer program is executed by the at least one processor to enable the at least one processor to perform the above-mentioned efficient washing method based on roasted lithium slag.
[0044] In order to solve the above problems, the present invention also provides a storage medium, in which at least one computer program is stored. The at least one computer program is executed by a processor in an electronic device to implement the above-mentioned efficient washing method based on roasted lithium slag.
[0045] The present invention obtains the calcined lithium slag to be washed and creates a material analyzer for the calcined lithium slag. The material analyzer corresponding to the calcined lithium slag can be created based on the relevant information of the calcined lithium slag to be washed, so as to facilitate subsequent material analysis of the calcined lithium slag. The present invention provides a guarantee premise for the subsequent configuration of the washing drugs for the materials to be washed by querying the materials to be washed in the material data. The present invention sorts the drugs in the washing drugs according to the quantity values to obtain a first sequence. Sorting the washing drugs based on the quantity values can improve the subsequent washing efficiency of the washing drugs. In addition, the present invention calculates the reaction cycle of each drug in the washing drugs to obtain the reaction time of each drug in the washing drugs, thereby avoiding drugs that react with each other. Therefore, the embodiment of the present invention provides an efficient washing method, device, equipment and storage medium based on calcined lithium slag, which can improve the washing efficiency of calcined lithium slag. BRIEF DESCRIPTION OF THE DRAWINGS
[0046] Figure 1 A schematic flow chart of an efficient washing method based on calcined lithium slag provided in one embodiment of the present invention;
[0047] Figure 2 This is a functional module diagram of an efficient washing device based on roasted lithium slag provided by one embodiment of the present invention;
[0048] Figure 3A schematic structural diagram of an electronic device for implementing the efficient washing method based on roasted lithium slag provided in one embodiment of the present invention.
[0049] The purpose, features and advantages of the present invention will be further described with reference to the accompanying drawings and in conjunction with the embodiments. DETAILED DESCRIPTION
[0050] It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0051] The embodiment of the present application provides an efficient washing method based on roasted lithium slag. In the embodiment of the present application, the execution subject of the efficient washing method based on roasted lithium slag includes but is not limited to at least one of the electronic devices such as the server, the terminal, etc. that can be configured to execute the method provided by the embodiment of the present application. In other words, the efficient washing method based on roasted lithium slag can be executed by software or hardware installed on the terminal device or the server device, and the software can be a blockchain platform. The server includes but is not limited to: a single server, a server cluster, a cloud server or a cloud server cluster, etc. The server can be an independent server, or it can be a cloud server that provides basic cloud computing services such as cloud services, cloud databases, cloud computing, cloud functions, cloud storage, network services, cloud communications, middleware services, domain name services, security services, content delivery networks (CDNs), and big data and artificial intelligence platforms.
[0052] Reference Figure 1 FIG. 1 is a flow chart of an efficient washing method based on roasted lithium slag according to an embodiment of the present invention. In this embodiment, the efficient washing method based on roasted lithium slag includes steps S1 to S4:
[0053] S1. Obtaining calcined lithium slag to be washed, creating a material analyzer for the calcined lithium slag, and performing material analysis on the calcined lithium slag using the material analyzer to obtain material data.
[0054] The present invention obtains the roasted lithium slag to be washed and creates a material analyzer for the roasted lithium slag. The material analyzer corresponding to the roasted lithium slag can be created based on the relevant information of the roasted lithium slag to be washed, so as to facilitate subsequent material analysis of the roasted lithium slag.
[0055] The calcined lithium slag to be washed is lithium slag generated in the lithium salt production process and needs to be cleaned. The material analyzer is a virtual instrument for analyzing the calcined lithium slag, and can analyze the materials contained in the calcined lithium slag.
[0056] As an embodiment of the present invention, the creation of the material analyzer for the roasted lithium slag includes: obtaining source data of the roasted lithium slag, identifying the data category of each data in the source data, constructing an analysis project of the roasted lithium slag according to the data category, obtaining historical data of the roasted lithium slag, and creating the material analyzer for the roasted lithium slag based on the analysis project and the historical data.
[0057] Among them, the source data is the data used to generate the roasted lithium slag, the data category is the type of each data in the source data, the analysis item is the analysis category created based on the data category, and the historical data is all data before the roasted lithium slag.
[0058] Furthermore, the source data of the roasted lithium slag can be obtained through a database, the data category of each data in the source data can be identified through a cloud identifier, the construction of the analysis project can be achieved by programming corresponding instructions, the historical data of the roasted lithium slag can be obtained through a cloud storage, and the creation of a material analyzer for the roasted lithium slag can be achieved by creating a program, and the creation program is compiled with a script language.
[0059] The present invention uses the material analyzer to perform material analysis on the calcined lithium slag to obtain material data, so as to understand the additional material components contained in the calcined lithium slag, wherein the material data is the additional material information in the calcined lithium slag.
[0060] As an embodiment of the present invention, the material analysis of the calcined lithium slag using the material analyzer to obtain material data includes: material sampling of the calcined lithium slag to obtain sampled material, material analysis of the sampled material using the material analyzer to obtain constituent elements of the sampled material, querying the material name corresponding to the constituent element according to a preset element-name relationship table, and combining the material name and the constituent element to obtain material data.
[0061] Among them, the sampled material is the material obtained by sampling the roasted lithium slag, the constituent elements are the constituent elements of the sampled material, the element-name relationship table is a table containing the constituent elements and the corresponding material names, and the material name is the material name corresponding to the constituent element. Furthermore, the roasted lithium slag can be sampled by the Monte Carlo method, and the material name corresponding to the constituent element can be queried by a query function, such as a find function.
[0062] S2. Query the material data for the material to be washed, obtain the material category corresponding to the material to be washed, count the quantity of the material to be washed, and configure a washing agent for the material to be washed based on the material category and the quantity.
[0063] The present invention provides a guarantee premise for the subsequent configuration of washing drugs for the materials to be washed by querying the materials to be washed in the material data, wherein the materials to be washed are materials that need to be washed.
[0064] The present invention obtains the material category corresponding to the material to be washed and counts the quantity value of the material to be washed, so as to facilitate subsequent query of the washing drugs corresponding to the material to be washed and configure the washing drugs, wherein the material category is the type of the material to be washed, and the quantity value represents the weight and quantity of the drugs to be washed. Furthermore, the material category corresponding to the material to be washed can be obtained by querying the name corresponding to the material to be washed, and the quantity value of the material to be washed can be counted by a statistical function, and the statistical function includes a COUNTIF function.
[0065] The present invention configures the detergent for the material to be washed based on the material category and the quantity value, so as to facilitate the subsequent washing of the material to be washed by the detergent, wherein the detergent is used for the material to be washed.
[0066] As an embodiment of the present invention, configuring the detergent for the material to be washed based on the material category and the quantity value includes: based on the material category, querying the detergent category corresponding to the material to be washed, obtaining a reaction formula between the material to be washed and the detergent category, calculating the loss ratio of the material to be washed and the detergent according to the reaction formula, and configuring the detergent for the material to be washed according to the loss ratio and the quantity value.
[0067] Among them, the reaction formula is the reaction equation of the material to be washed and the category of detergent, and the loss ratio is the usage ratio value when the material to be washed reacts with the detergent. Furthermore, the category of detergent corresponding to the material to be washed can be searched and queried through the Internet of Things, the reaction formula of the material to be washed and the category of detergent can be obtained through relevant chemical equations, the loss ratio of the material to be washed and the detergent can be obtained through the reaction formula, and the dosage of the detergent can be configured according to the result of calculating the quantity value and the loss ratio.
[0068] S3. Sort the drugs in the detergent according to the quantity values to obtain a first sequence, perform elemental analysis on the detergent to obtain drug elements, and mark the reactive elements in the drug elements according to a preset element reaction table to obtain a second sequence. Update the first sequence using the second sequence to obtain a target sequence.
[0069] The present invention obtains a first sequence by sorting the drugs in the detergent according to the quantity value. Sorting the detergent drugs based on the quantity value can improve the subsequent washing efficiency of the detergent drugs, wherein the first sequence is obtained by sorting the drugs in the detergent according to the quantity value.
[0070] As an embodiment of the present invention, the medicines in the washing medicine are sorted according to the quantity values to obtain a first sequence, including: sorting the quantity values from large to small to obtain a quantity sequence, obtaining the reaction environment of each medicine in the washing medicine, calculating the complexity of each environment in the reaction environment, and sorting the medicines in the washing medicine according to the complexity and the quantity sequence to obtain the first sequence.
[0071] Among them, the quantity values in the quantity sequence correspond to serial numbers from large to small, the reaction environment is the environment required for the drug to react with the material to be washed, and the complexity is the complexity level corresponding to the environment. The higher the complexity, the more complex the reaction environment, and the corresponding chemical reaction is also more complex. Furthermore, the quantity values can be sorted from large to small through the above-mentioned sorting algorithm, and the reaction environment of each drug in the washing drug can be obtained through the environmental detector.
[0072] Furthermore, as an optional embodiment of the present invention, the calculation of the complexity of each environment in the reaction environment includes: performing attribute analysis on each drug in the washing drugs to obtain drug attributes, extracting characteristic attributes from the drug attributes, and constructing an attribute graph corresponding to the characteristic attributes, so as to facilitate a preset complexity algorithm to calculate the complexity of the attribute graph to obtain the graph complexity, and based on the graph complexity, obtain the complexity of the reaction environment corresponding to the drug.
[0073] Among them, the drug attributes are the properties corresponding to the drug, such as the color, shape and smell of the drug, the characteristic attributes are representative attributes among the drug attributes, the attribute graph is the graphical expression corresponding to the characteristic attributes, and the graphic complexity is the complexity corresponding to the attribute graph. Furthermore, the attribute graph corresponding to the characteristic attributes can be constructed through an image editor.
[0074] Furthermore, as an optional embodiment of the present invention, the preset complexity algorithm includes:
[0075]
[0076] Wherein, S represents the complexity of the attribute graph, L represents the total length of the attribute graph, A1 represents the coordinate difference value of adjacent coordinate points on the x-axis in the attribute graph, A2 represents the coordinate difference value of adjacent coordinate points on the y-axis in the attribute graph, and ∫()ds represents the integral value of adjacent coordinate points.
[0077] The present invention obtains drug elements by performing elemental analysis on the detergent, so as to understand all elements contained in the detergent, thereby facilitating subsequent inquiries about whether there are reactive elements, wherein the drug elements are constituent elements of the detergent. Furthermore, the detergent can be subjected to elemental analysis by an element analyzer.
[0078] The present invention obtains a second sequence by serially marking the reactive elements in the drug elements according to a preset element reaction table, thereby determining the reactive elements in the drug elements, thereby facilitating separate washing of the drugs and improving subsequent washing efficiency. The element reaction table includes a table of elements that can react with each other, and the second sequence is a sequence obtained after marking the reactive elements in the drug elements. Furthermore, the reactive elements in the drug elements can be serially marked using a serial number marking tool.
[0079] The present invention updates the first sequence through the second sequence to obtain a target sequence, which can sort the detergents corresponding to the elements that react separately, avoiding the consumption of the detergents. The target sequence is the corresponding order of the detergents when they are finally washed.
[0080] S4. Calculate the reaction cycle of each drug in the washing drugs, and based on the reaction cycle and the target sequence, wash the calcined lithium slag with the washing drugs to obtain washed lithium slag.
[0081] The present invention can obtain the reaction time of each drug in the washing medicine by calculating the reaction cycle of each drug in the washing medicine, thereby avoiding drugs that react with each other, wherein the reaction cycle is the reaction time of each drug in the washing medicine.
[0082] As an embodiment of the present invention, the calculation of the reaction cycle of each drug in the detergent includes: obtaining the numerical value of the detergent material corresponding to each drug in the detergent, reacting the drug and the corresponding detergent material according to a preset ratio, and recording the reaction time, obtaining the current environment of the detergent material, querying the interference coefficient of the current environment on the reaction of the drug, and combining the interference coefficient, the numerical value and the reaction time to calculate the reaction cycle of each drug.
[0083] Among them, the numerical value is the amount of washing material corresponding to each drug in the washing drugs, the reaction time is the time for the drug and the corresponding washing material to react in a certain proportion, the current environment is the environment in which the washing materials are currently located, and the interference coefficient represents the degree of interference of the current environment on the reaction of the drugs. Furthermore, the current environment of the washing materials can be obtained through the above-mentioned environmental detector, and the reaction period of each drug can be obtained by calculating the product of the interference coefficient, the numerical value and the reaction time.
[0084] The present invention washes the calcined lithium slag with the washing agent based on the reaction cycle and the target sequence to obtain washed lithium slag, thereby removing all impurities in the calcined lithium slag to obtain washed lithium slag, which is convenient for subsequent secondary utilization. The washed lithium slag is the lithium slag obtained after the calcined lithium slag is washed with the washing agent according to the target sequence and does not contain other impurities.
[0085] The present invention obtains the calcined lithium slag to be washed and creates a material analyzer for the calcined lithium slag. The material analyzer corresponding to the calcined lithium slag can be created based on the relevant information of the calcined lithium slag to be washed, so as to facilitate the subsequent material analysis of the calcined lithium slag. The present invention provides a guarantee premise for the subsequent configuration of the washing drugs for the materials to be washed by querying the materials to be washed in the material data. The present invention sorts the drugs in the washing drugs according to the quantity values to obtain a first sequence. The washing drugs are sorted based on the quantity values, which can improve the washing efficiency of the subsequent washing drugs. In addition, the present invention calculates the reaction cycle of each drug in the washing drugs to obtain the reaction time of each drug in the washing drugs, thereby avoiding drugs that react with each other. Therefore, an efficient washing method based on calcined lithium slag provided in an embodiment of the present invention can improve the washing efficiency of calcined lithium slag.
[0086] like Figure 2 1 is a functional module diagram of an efficient washing device based on roasted lithium slag provided by one embodiment of the present invention.
[0087] The high-efficiency calcined lithium slag cleaning device 100 described in the present invention can be installed in an electronic device. Depending on the functionality to be implemented, the high-efficiency calcined lithium slag cleaning device 100 can include a material analysis module 101, a drug configuration module 102, a material sorting module 103, and a lithium slag cleaning module 104. A module, also referred to as a unit, is a series of computer program segments that can be executed by an electronic device processor and perform a fixed function. These modules are stored in the electronic device's memory.
[0088] In this embodiment, the functions of each module / unit are as follows:
[0089] The material analysis module 101 is used to obtain the calcined lithium slag to be washed, create a material analyzer for the calcined lithium slag, and perform material analysis on the calcined lithium slag using the material analyzer to obtain material data;
[0090] The drug configuration module 102 is configured to query the material to be washed in the material data, obtain the material category corresponding to the material to be washed, count the quantity of the material to be washed, and configure the cleaning drug for the material to be washed based on the material category and the quantity;
[0091] The material sorting module 103 is configured to sort the drugs in the detergent according to the quantity values to obtain a first sequence, perform elemental analysis on the detergent to obtain drug elements, mark the reactive elements in the drug elements according to a preset element reaction table to obtain a second sequence, and update the first sequence using the second sequence to obtain a target sequence;
[0092] The lithium slag washing module 104 is configured to calculate a reaction cycle of each drug in the washing drugs, and based on the reaction cycle and the target sequence, wash the roasted lithium slag with the washing drugs to obtain washed lithium slag.
[0093] In detail, each module described in the high-efficiency washing device 100 based on roasted lithium slag in the embodiment of the present application adopts the same method as above when in use. Figure 1 The same technical means as the efficient washing method based on roasted lithium slag described in , and can produce the same technical effects, will not be repeated here.
[0094] like Figure 3 1 is a schematic structural diagram of an electronic device 1 for implementing an efficient washing method based on roasted lithium slag provided by an embodiment of the present invention.
[0095] The electronic device 1 may include a processor 10, a memory 11, a communication bus 12, and a communication interface 13. It may also include a computer program stored in the memory 11 and executable on the processor 10, such as a program for an efficient washing method based on roasted lithium slag.
[0096] In some embodiments, the processor 10 may be composed of an integrated circuit, such as a single packaged integrated circuit, or a plurality of packaged integrated circuits with the same or different functions, including one or more central processing units (CPUs), microprocessors, digital processing chips, graphics processors, and a combination of various control chips. The processor 10 is the control core (Control Unit) of the electronic device 1, connecting the various components of the entire electronic device using various interfaces and circuits. It executes or runs programs or modules stored in the memory 11 (e.g., executing a program for an efficient washing method based on roasted lithium slag), and calls data stored in the memory 11 to perform various functions of the electronic device and process data.
[0097] The memory 11 includes at least one type of readable storage medium, including a flash memory, a mobile hard disk, a multimedia card, a card-type memory (e.g., SD or DX memory), a magnetic memory, a magnetic disk, an optical disk, etc. In some embodiments, the memory 11 can be an internal storage unit of an electronic device, such as a mobile hard disk of the electronic device. In other embodiments, the memory 11 can also be an external storage device of the electronic device, such as a plug-in mobile hard disk, a smart memory card (SMC), a secure digital (SD) card, a flash card, etc. equipped on the electronic device. Furthermore, the memory 11 can also include both an internal storage unit of the electronic device and an external storage device. The memory 11 can not only be used to store application software and various types of data installed in the electronic device, such as the code of the program for the efficient washing method based on roasted lithium slag, but can also be used to temporarily store data that has been output or is about to be output.
[0098] The communication bus 12 may be a Peripheral Component Interconnect (PCI) bus or an Extended Industry Standard Architecture (EISA) bus. The bus may be divided into an address bus, a data bus, a control bus, etc. The bus is configured to enable communication between the memory 11 and at least one processor 10, etc.
[0099] The communication interface 13 is used for communication between the above-mentioned electronic device 1 and other devices, including a network interface and a user interface. Optionally, the network interface may include a wired interface and / or a wireless interface (such as a WI-FI interface, a Bluetooth interface, etc.), which is generally used to establish a communication connection between the electronic device and other electronic devices. The user interface may be a display (Display), an input unit (such as a keyboard (Keyboard)), optionally, the user interface may also be a standard wired interface, a wireless interface. Optionally, in some embodiments, the display may be an LED display, a liquid crystal display, a touch-sensitive liquid crystal display, and an OLED (Organic Light-Emitting Diode, organic light-emitting diode) touch device, etc. Among them, the display may also be appropriately referred to as a display screen or a display unit, for displaying information processed in the electronic device and for displaying a visual user interface.
[0100] Figure 3 Only the electronic device with components is shown, and it can be understood by those skilled in the art that Figure 3 The structure shown does not constitute a limitation on the electronic device 1 , and may include fewer or more components than shown in the figure, or combine certain components, or arrange the components differently.
[0101] For example, although not shown, the electronic device 1 may further include a power source (such as a battery) for powering the various components. Preferably, the power source may be logically connected to the at least one processor 10 via a power management device, thereby implementing functions such as charging management, discharging management, and power consumption management through the power management device. The power source may further include any components such as one or more DC or AC power sources, a recharging device, a power failure detection circuit, a power converter or inverter, a power status indicator, etc. The electronic device 1 may further include various sensors, Bluetooth modules, Wi-Fi modules, etc., which will not be described in detail here.
[0102] It should be understood that the embodiment is for illustration only and the scope of the patent application is not limited to this structure.
[0103] The program of the efficient washing method based on roasted lithium slag stored in the memory 11 of the electronic device 1 is a combination of multiple instructions. When running in the processor 10, it can achieve the following:
[0104] Obtaining calcined lithium slag to be washed, creating a material analyzer for the calcined lithium slag, and performing material analysis on the calcined lithium slag using the material analyzer to obtain material data;
[0105] querying the material data for the material to be washed, obtaining the material category corresponding to the material to be washed, counting the quantity of the material to be washed, and configuring a washing agent for the material to be washed based on the material category and the quantity;
[0106] Sort the drugs in the cleaning drugs according to the quantity values to obtain a first sequence, perform elemental analysis on the cleaning drugs to obtain drug elements, mark the reactive elements in the drug elements with serial numbers according to a preset elemental reaction table to obtain a second sequence, and update the first sequence using the second sequence to obtain a target sequence;
[0107] The reaction cycle of each drug in the washing drug is calculated, and based on the reaction cycle and the target sequence, the roasted lithium slag is washed with the washing drug to obtain the washed lithium slag.
[0108] Specifically, the specific implementation method of the processor 10 for the above instructions can refer to the description of the relevant steps in the corresponding embodiment of the accompanying drawings, which will not be repeated here.
[0109] Furthermore, if the modules / units integrated in the electronic device 1 are implemented as software functional units and sold or used as independent products, they can be stored in a storage medium. The storage medium can be volatile or non-volatile. For example, the medium can include: any entity or device capable of carrying the computer program code, a recording medium, a USB flash drive, a mobile hard drive, a magnetic disk, an optical disk, a computer memory, or a read-only memory (ROM).
[0110] The present invention further provides a storage medium, wherein the readable storage medium stores a computer program, and when the computer program is executed by a processor of an electronic device, the computer program can implement:
[0111] Obtaining calcined lithium slag to be washed, creating a material analyzer for the calcined lithium slag, and performing material analysis on the calcined lithium slag using the material analyzer to obtain material data;
[0112] querying the material data for the material to be washed, obtaining the material category corresponding to the material to be washed, counting the quantity of the material to be washed, and configuring a washing agent for the material to be washed based on the material category and the quantity;
[0113] Sort the drugs in the cleaning drugs according to the quantity values to obtain a first sequence, perform elemental analysis on the cleaning drugs to obtain drug elements, mark the reactive elements in the drug elements with serial numbers according to a preset elemental reaction table to obtain a second sequence, and update the first sequence using the second sequence to obtain a target sequence;
[0114] The reaction cycle of each drug in the washing drug is calculated, and based on the reaction cycle and the target sequence, the roasted lithium slag is washed with the washing drug to obtain the washed lithium slag.
[0115] In the several embodiments provided by the present invention, it should be understood that the disclosed devices, apparatuses, and methods can be implemented in other ways. For example, the device embodiments described above are merely illustrative. For example, the module division is merely a logical function division, and other division methods may be used in actual implementation.
[0116] The modules described as separate components may or may not be physically separate, and the components shown as modules may or may not be physical units, that is, they may be located in one place or distributed across multiple network elements. Some or all of the modules may be selected to achieve the purpose of the solution of this embodiment according to actual needs.
[0117] In addition, the functional modules in various embodiments of the present invention may be integrated into a single processing unit, each unit may exist physically 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 modules.
[0118] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention.
[0119] Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims rather than the foregoing description, and all changes that come within the meaning and range of equivalents of the claims are intended to be embraced therein. Any reference to a figure in a claim should not be construed as limiting the claim to which it relates.
[0120] The embodiments of the present application can acquire and process relevant data based on artificial intelligence technology. Artificial Intelligence (AI) is the theory, method, technology, and application system that uses digital computers or machines controlled by digital computers to simulate, extend, and expand human intelligence, perceive the environment, acquire knowledge, and use knowledge to achieve optimal results.
[0121] Furthermore, it is clear that the word "comprising" does not exclude other units or steps, and the singular does not exclude the plural. Multiple units or devices recited in a system claim may also be implemented by a single unit or device through software or hardware. Terms such as "first" and "second" are used to indicate names and do not imply any particular order.
[0122] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not limiting. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention.
Claims
1. An efficient washing method based on roasted lithium slag, characterized in that: The method comprises: Obtaining calcined lithium slag to be washed, creating a material analyzer for the calcined lithium slag, and performing material analysis on the calcined lithium slag using the material analyzer to obtain material data; querying the material data for the material to be washed, obtaining the material category corresponding to the material to be washed, counting the quantity of the material to be washed, and configuring a washing agent for the material to be washed based on the material category and the quantity; Sort the drugs in the cleaning drugs according to the quantity values to obtain a first sequence, perform elemental analysis on the cleaning drugs to obtain drug elements, mark the reactive elements in the drug elements with serial numbers according to a preset elemental reaction table to obtain a second sequence, and update the first sequence using the second sequence to obtain a target sequence; The reaction cycle of each drug in the washing drug is calculated, and based on the reaction cycle and the target sequence, the roasted lithium slag is washed with the washing drug to obtain the washed lithium slag.
2. The efficient washing method based on roasted lithium slag according to claim 1, characterized in that: The material analyzer for creating the roasted lithium slag comprises: Obtaining source data of the roasted lithium slag, and identifying a data category of each data in the source data; According to the data category, construct an analysis project of the roasted lithium slag and obtain historical data of the roasted lithium slag; Based on the analysis items and the historical data, a material analyzer for the roasted lithium slag is created.
3. The efficient washing method based on roasted lithium slag according to claim 2, characterized in that: The material analyzer is used to perform material analysis on the calcined lithium slag to obtain material data, including: Sampling the calcined lithium slag to obtain a sampled material; Performing material analysis on the sampled material using the material analyzer to obtain constituent elements of the sampled material; According to the preset element-name relationship table, query the material name corresponding to the constituent element; The material data is obtained by combining the material name and the constituent elements.
4. The efficient washing method based on roasted lithium slag according to claim 1, characterized in that: The step of configuring the cleaning agent for the material to be cleaned based on the material category and the quantity value includes: Based on the material category, querying the detergent category corresponding to the material to be washed, and obtaining a reaction formula between the material to be washed and the detergent category; According to the reaction formula, the loss ratio of the material to be washed and the detergent is calculated, and according to the loss ratio and the quantity value, the detergent for the material to be washed is configured.
5. The efficient washing method based on roasted lithium slag according to claim 4, characterized in that: The step of sorting the drugs in the washing drugs according to the quantity values to obtain a first sequence includes: Sort the quantity values from largest to smallest to obtain a quantity sequence; Obtaining the reaction environment of each drug in the washing drug, and calculating the complexity of each environment in the reaction environment; The drugs in the washing drugs are sorted according to the complexity and the quantity sequence to obtain a first sequence.
6. The efficient washing method based on roasted lithium slag according to claim 5, characterized in that: The calculating the complexity of each environment in the reaction environment includes: Performing attribute analysis on each drug in the washing drugs to obtain drug attributes; Extracting characteristic attributes from the drug attributes and constructing an attribute graph corresponding to the characteristic attributes; Calculating the complexity of the attribute graph using a preset complexity algorithm to obtain the graph complexity; The complexity of the reaction environment corresponding to the drug is obtained according to the complexity of the graph.
7. The efficient washing method based on roasted lithium slag according to claim 1, characterized in that: The step of calculating the reaction cycle of each drug in the washing drug comprises: Obtaining a value of the cleaning material corresponding to each of the cleaning drugs; The drug and the corresponding washing material react according to a preset ratio, and the reaction time is recorded; Acquiring the current environment of the washing material and querying the interference coefficient of the current environment on the drug reaction; The reaction period of each drug is calculated by combining the interference coefficient, the value and the reaction time.
8. An efficient washing device based on roasted lithium slag, characterized in that: The device comprises: A material analysis module is used to obtain the calcined lithium slag to be washed, create a material analyzer for the calcined lithium slag, and perform material analysis on the calcined lithium slag using the material analyzer to obtain material data; a drug configuration module, configured to query the material to be washed in the material data, obtain the material category corresponding to the material to be washed, count the quantity of the material to be washed, and configure the washing drug for the material to be washed based on the material category and the quantity; a material sorting module, configured to sort the drugs in the detergent according to the quantity values to obtain a first sequence, perform elemental analysis on the detergent to obtain drug elements, mark the reactive elements in the drug elements according to a preset element reaction table to obtain a second sequence, and update the first sequence using the second sequence to obtain a target sequence; The lithium slag washing module is used to calculate the reaction cycle of each drug in the washing drug, and based on the reaction cycle and the target sequence, wash the roasted lithium slag with the washing drug to obtain washed lithium slag.
9. An electronic device, characterized in that: The electronic device comprises: at least one processor; and, a memory communicatively connected to the at least one processor; wherein, The memory stores a computer program that can be executed by the at least one processor, and the computer program is executed by the at least one processor so that the at least one processor can execute the efficient washing method based on roasted lithium slag according to any one of claims 1 to 7.
10. A storage medium storing a computer program, characterized in that: When the computer program is executed by a processor, the efficient washing method based on roasted lithium slag according to any one of claims 1 to 7 is implemented.
Citation Information
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