Method of preparing control of environmentally friendly materials and computer readable storage medium
By automatically determining the characteristics and process data of environmentally friendly materials based on their application scenarios, the low efficiency problem caused by manually determining process data in existing technologies has been solved, thus achieving efficient preparation of environmentally friendly materials.
Patent Information
- Application Number
- CN202411863976.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2044-12-18
AI Technical Summary
In the preparation of environmentally friendly materials, existing technologies require manual determination of process data, resulting in low preparation efficiency.
By acquiring the application scenario of the target environmentally friendly material input by the user, the system automatically determines the required characteristics and process data of the environmentally friendly material, including raw materials, formula and pyrolysis temperature, using pre-stored mapping relationships.
It improves the efficiency of preparing environmentally friendly materials, allowing users to quickly determine the raw materials and process parameters required for preparation simply by inputting the application scenario.
Smart Images

Figure CN119361045B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of data processing, in particular to a preparation control method of an environmental protection material and a computer readable storage medium. BACKGROUND
[0002] In the preparation of an environmental protection material, the process data selected for the preparation of the environmental protection material is different according to different application scenarios of the environmental protection material. However, the process data required for the preparation of each kind of environmental protection material needs to be determined manually at present, resulting in low preparation efficiency. SUMMARY
[0003] Therefore, it is necessary to provide a preparation control method of an environmental protection material and a computer readable storage medium in view of the above problems.
[0004] According to a first aspect of an embodiment of the present application, a preparation control method of an environmental protection material is provided, comprising:
[0005] obtaining an application scenario of a target environmental protection material input by a user;
[0006] obtaining a required characteristic of the target environmental protection material according to the application scenario input by the user;
[0007] obtaining process data required for the preparation of the target environmental protection material according to the required characteristic of the target environmental protection material, the process data comprising a required raw material, a formula of the raw material and a pyrolysis temperature.
[0008] In one of the embodiments, the step of obtaining the required characteristic of the target environmental protection material according to the application scenario input by the user comprises:
[0009] calling a first mapping relationship between an application scenario of an environmental protection material and a required characteristic of the environmental protection material;
[0010] determining the required characteristic of the target environmental protection material matched with the application scenario input by the user according to the first mapping relationship and the application scenario input by the user.
[0011] In one of the embodiments, the application scenario comprises at least one of ecological slope protection, river regulation, city renewal, road traffic, fertilizer and soil conditioning, cat litter and fish tank filter material.
[0012] In one of the embodiments, the required characteristic of the target environmental protection material comprises at least one of compressive strength, organic matter content, porosity, specific surface area and particle size.
[0013] In one of the embodiments, the step of determining the required characteristics of the target environmental protection material according to the first mapping relationship and the application scenario input by the user comprises:
[0014] When the application scenario input by the user is ecological slope protection, the required characteristics of the target environmental protection material are determined as the compressive strength greater than or equal to 2 Mpa and the organic matter content greater than or equal to 5 g / kg; and / or,
[0015] When the application scenario input by the user is river management, the required characteristics of the target environmental protection material are determined as the porosity greater than or equal to 60%; and / or,
[0016] When the application scenario input by the user is city renewal, the required characteristics of the target environmental protection material are determined as the porosity greater than or equal to 70%, the specific surface area greater than or equal to 15 m 3 / g, and the compressive strength greater than or equal to 3 Mpa; and / or,
[0017] When the application scenario input by the user is road traffic, the required characteristics of the target environmental protection material are determined as the particle size of 5 mm to 10 mm, the porosity of 40% to 60%, the specific surface area greater than or equal to 20 m 3 / g, and the compressive strength greater than or equal to 4 Mpa; and / or,
[0018] When the application scenario input by the user is fertilizer and soil conditioning, the required characteristics of the target environmental protection material are determined as the particle size of 1 mm to 3 mm and the organic matter content greater than or equal to 10 g / kg; and / or,
[0019] When the application scenario input by the user is cat litter, the required characteristics of the target environmental protection material are determined as the porosity greater than or equal to 60%, the water content of 30% to 40%, and the particle size less than or equal to 2 mm; and / or,
[0020] When the application scenario input by the user is fish tank filter material, the required characteristics of the target environmental protection material are determined as the porosity greater than or equal to 50% and the specific surface area greater than or equal to 20 m 3 / g.
[0021] In one of the embodiments, the step of obtaining the process data required for preparing the target environmental protection material according to the required characteristics of the target environmental protection material comprises:
[0022] calling a second mapping relationship between the required characteristics of the environmental protection material and the preliminary process data required for preparing the environmental protection material;
[0023] determining the process data required for preparing the target environmental protection material according to the second mapping relationship and the currently determined required characteristics of the target environmental protection material.
[0024] In one of the embodiments, the step of determining the process data required for preparing the target environmentally-friendly material according to the second mapping relationship and the characteristics required for the target environmentally-friendly material comprises:
[0025] According to the characteristics required for the target environmentally-friendly material, the matching preliminary process data is retrieved from the second mapping relationship;
[0026] When receiving the modification instruction of the user on the retrieved preliminary process data, the retrieved preliminary process data is modified according to the modification instruction, and the modified process data is determined as the process data required for preparing the target environmentally-friendly material.
[0027] In one of the embodiments, the types of the raw materials include agricultural waste types and forestry waste types, wherein the agricultural waste types include at least two of straw types, fiber crop types, fruit shell types, tea dregs types and food processing waste types, and the forestry waste types include at least two of wood waste types, tree types, tree stump types, bamboo waste types and forestry by-products types.
[0028] In one of the embodiments, the step of retrieving the matching preliminary process data from the second mapping relationship according to the characteristics required for the target environmentally-friendly material comprises:
[0029] When the characteristics required for the target environmentally-friendly material are that the compressive strength is greater than or equal to 2Mpa and the organic matter content is greater than or equal to 5g / kg, it is determined that in the preliminary process data, the required raw materials include 50% of the agricultural waste and 50% of the forestry waste, and the pyrolysis temperature is between 600°C and 700°C; and / or,
[0030] When the characteristics required for the target environmentally-friendly material are that the porosity is greater than or equal to 60%, it is determined that in the preliminary process data, the required raw materials include more than 60% of the straw, and the pyrolysis temperature is between 800°C and 1000°C; and / or,
[0031] When the characteristics required for the target environmentally-friendly material are that the porosity is greater than or equal to 70%, the specific surface area is greater than or equal to 15m 3 / g, and the compressive strength is greater than or equal to 3Mpa, it is determined that in the preliminary process data, the required raw materials include 60% of the forestry waste, 20% of the agricultural waste, and 20% of the mixture of the forestry waste and the agricultural waste, and the pyrolysis temperature is between 800°C and 1000°C; and / or,
[0032] When the characteristics required for the target environmentally-friendly material are that the particle size is between 5mm and 10mm, the porosity is between 40% and 60%, and the specific surface area is greater than or equal to 20 m3 / g, the anti-compressive strength is greater than or equal to 4Mpa, it is determined that in the preliminary process data, the required raw materials include 60% forestry waste and 40% agricultural waste, and the pyrolysis temperature is between 600-800℃; and / or,
[0033] When the required characteristics of the target environmental protection material are that the particle size is 1-3mm and the organic matter content is greater than or equal to 10g / kg, it is determined that in the preliminary process data, the required raw materials include 100% agricultural waste, and the pyrolysis temperature is between 300-400℃; and / or,
[0034] When the required characteristics of the target environmental protection material are that the porosity is greater than or equal to 60%, the water content is 30-40%, and the particle size is less than or equal to 2mm, it is determined that in the preliminary process data, the required raw materials include 90% fiber crops and 10% straw, and the pyrolysis temperature is between 900-1000℃; and / or,
[0035] When the required characteristics of the target environmental protection material are that the porosity is greater than or equal to 50%, the specific surface area is greater than or equal to 20m 3 / g, it is determined that in the preliminary process data, the required raw materials include 60% forestry waste and 40% agricultural waste, and the pyrolysis temperature is between 500-700℃.
[0036] According to a second aspect of the embodiments of the present application, a computer readable storage medium is provided, and the computer readable storage medium stores a computer program. The computer program is executed by a processor to implement the above-mentioned environmental protection material preparation control method.
[0037] The environmental protection material preparation control method provided by the embodiments of the present application can first acquire the application scenario of the target environmental protection material input by the user, then acquire the required characteristics of the target environmental protection material according to the application scenario input by the user, and then acquire the process data required for preparing the target environmental protection material according to the required characteristics of the target environmental protection material, wherein the process data includes the raw materials required for preparing the target environmental protection material, the formula of the raw materials, and the pyrolysis temperature. Through the above method, the user only needs to input the application scenario of the target environmental protection material, and the required raw materials, the formula of the raw materials, and the pyrolysis temperature for preparing the target environmental protection material can be quickly determined, and the preparation efficiency of the environmental protection material is effectively improved. BRIEF DESCRIPTION OF DRAWINGS
[0038] Figure 1 The flowchart of the environmental protection material preparation control method provided by an embodiment of the present application is shown in the figure;
[0039] Figure 2A flow chart of step S400 in the preparation control method of the environmental protection material according to an embodiment of the present application is shown in the figure;
[0040] Figure 3 A flow chart of step S600 in the preparation control method of the environmental protection material according to an embodiment of the present application is shown in the figure;
[0041] Figure 4 A flow chart of step S630 in the preparation control method of the environmental protection material according to an embodiment of the present application is shown in the figure. DETAILED DESCRIPTION
[0042] In order to facilitate the understanding of the present application, the present application will be described in more detail below with reference to the relevant drawings. The preferred embodiments of the present application are shown in the drawings. However, the present application can be implemented in many different forms, and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present application more thorough and comprehensive.
[0043] In the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting", "fixing" and the like should be understood in a broad sense, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal communication of two elements or the interaction relationship between two elements, unless otherwise explicitly limited. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0044] The terms "first", "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of "multiple" is at least two, such as two, three, etc., unless otherwise explicitly specified.
[0045] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as understood by those skilled in the art to which the present application belongs. The terms used in the specification of the present application are only for the purpose of describing the specific embodiments, and are not intended to limit the present application. The term "and / or" used herein includes any and all combinations of one or more related listed items.
[0046] In one embodiment, a preparation control method of an environmental protection material is provided, which can effectively improve the preparation efficiency of various environmental protection materials.
[0047] Reference Figure 1The preparation control method of the environment-friendly material provided in this embodiment comprises the following steps.
[0048] In step S200, the application scenario of the target environment-friendly material input by the user is acquired.
[0049] The environment-friendly material can be applied to different scenarios. For example, some environment-friendly materials can be applied to river regulation scenarios, and some environment-friendly materials can be applied to ecological slope protection scenarios. Here, they are not listed one by one. When the environment-friendly material is applied to different application scenarios, the process data required for preparing the environment-friendly material will also be different. Therefore, the user can first input the application scenario of the environment-friendly material currently required for preparation in the human-computer interaction interface, so as to subsequently determine the process data required for preparing the environment-friendly material. In this embodiment, the environment-friendly material currently required for preparation is defined as the target environment-friendly material.
[0050] In step S400, the characteristics required for the target environment-friendly material are acquired according to the application scenario input by the user.
[0051] When the application scenario of the target environment-friendly material input by the user is received, the characteristics required for the target environment-friendly material can be determined according to the input application scenario. The characteristics of the target environment-friendly material can include physical characteristics and chemical characteristics.
[0052] It can be understood that when the environment-friendly material is applied to different scenarios, the physical characteristics and / or chemical characteristics required to be possessed are different, and the process data required for preparing the environment-friendly material is also set according to the characteristics required to be possessed by the environment-friendly material when it is applied to the scenario. In this embodiment, the correspondence between the application scenario and the characteristics required for the environment-friendly material can be formed in advance, and the characteristics of the environment-friendly material matched with the application scenario can be directly called according to the application scenario input by the user.
[0053] In step S600, the process data required for preparing the target environment-friendly material is acquired according to the characteristics required for the target environment-friendly material. The process data comprises raw materials required for preparation, a formula of the raw materials, and pyrolysis temperature.
[0054] When the characteristics required for the target environment-friendly material are determined, the process data required for preparing the target environment-friendly material can be acquired. In this embodiment, the correspondence between the characteristics required for the environment-friendly material and the process data can be formed in advance. When the characteristics required for the target environment-friendly material are determined, the process data matched with the characteristics, i.e., the raw materials required for preparing the target environment-friendly material, the formula of the raw materials, and the pyrolysis temperature, can be directly called.
[0055] The preparation control method of the environment-friendly material provided in the embodiments of the present application can first acquire the application scenario of the target environment-friendly material input by a user, then acquire the characteristics required by the target environment-friendly material according to the application scenario input by the user, and further acquire the process data required for preparing the target environment-friendly material according to the characteristics required by the target environment-friendly material, wherein the process data includes raw materials required for preparing the target environment-friendly material, a formula of the raw materials, and pyrolysis temperature. Through the above method, the user only needs to input the application scenario of the target environment-friendly material, and the raw materials required for preparing the target environment-friendly material, the formula of the raw materials, and the pyrolysis temperature can be quickly determined, thereby effectively improving the preparation efficiency of the environment-friendly material.
[0056] With reference to Figure 2 In one of the embodiments, the step S400, i.e., the step of acquiring the characteristics required by the target environment-friendly material according to the application scenario input by the user, includes the following steps:
[0057] The step S410 retrieves a first mapping relationship between the application scenarios of the environment-friendly materials and the characteristics required by the environment-friendly materials.
[0058] That is, a corresponding relationship between the application scenarios of the environment-friendly materials and the characteristics required by the environment-friendly materials can be formed in advance and stored in a database, and in the present embodiment, the corresponding relationship is defined as the first mapping relationship.
[0059] In the present embodiment, the application scenario can include at least one of ecological slope protection, river regulation, urban renewal, road traffic, fertilizer and soil conditioning, cat litter, and fish tank filter material.
[0060] In the present embodiment, the characteristics required by the target environment-friendly material can include at least one of compressive strength, organic matter content, porosity, specific surface area, and particle size.
[0061] In different application scenarios, the characteristics required by the environment-friendly material often differ.
[0062] In the present embodiment, the first mapping relationship can include any one or more of the following corresponding relationships:
[0063] When the application scenario is ecological slope protection, the characteristics required by the environment-friendly material are that the compressive strength is greater than or equal to 2 Mpa and the organic matter content is greater than or equal to 5 g / kg;
[0064] When the application scenario is river regulation, the characteristics required by the environment-friendly material are that the porosity is greater than or equal to 60%;
[0065] When the application scenario is urban renewal, the characteristics required by the environment-friendly material are that the porosity is greater than or equal to 70%, the specific surface area is greater than or equal to 15 m 3 / g, and the compressive strength is greater than or equal to 3 Mpa.
[0066] When the application scenario is road traffic, the required characteristics of the environmental protection material are that the particle size is 5mm-10mm, the porosity is 40%-60%, the specific surface area is greater than or equal to 20 m 3 / g, and the compressive strength is greater than or equal to 4Mpa.
[0067] When the application scenario is fertilizer and soil regulation, the required characteristics of the environmental protection material are that the particle size is 1mm-3mm, and the organic matter content is greater than or equal to 10g / kg.
[0068] When the application scenario is cat litter, the required characteristics of the environmental protection material are that the porosity is greater than or equal to 60%, the water content is 30%-40%, and the particle size is less than or equal to 2mm.
[0069] When the application scenario is fish tank filter material, the required characteristics of the environmental protection material are that the porosity is greater than or equal to 50%, and the specific surface area is greater than or equal to 20 m 3 / g.
[0070] Step S430, according to the first mapping relationship and the application scenario input by the user, determine the characteristics required by the target environmental protection material matched with the application scenario input by the user.
[0071] When the first mapping relationship is retrieved, the characteristics required by the environmental protection material matched with the application scenario input by the user at present, i.e. the characteristics required by the target environmental protection material, can be retrieved from the first mapping relationship according to the application scenario input by the user at present.
[0072] For example, when the application scenario input by the user is river regulation, the retrieved characteristics required by the environmental protection material are that the porosity is greater than or equal to 60%. For another example, when the application scenario input by the user is road traffic, the retrieved characteristics required by the environmental protection material are that the particle size is 5mm-10mm, the porosity is 40%-60%, the specific surface area is greater than or equal to 20 m 3 / g, and the compressive strength is greater than or equal to 4Mpa. For specific reference, please refer to the corresponding relationship in the first mapping relationship in the foregoing example, which will not be listed one by one here.
[0073] In addition, after retrieving the related characteristics from the first mapping relationship, the user can also modify them through the man-machine interaction interface to customize the characteristics, i.e. determine the customized characteristics as the characteristics required by the target environmental protection material.
[0074] Referring to Figure 3 In one embodiment, step S600, i.e. the step of obtaining process data required for preparing the target environmental protection material according to the characteristics required by the target environmental protection material, includes the following steps:
[0075] Step S610, call the second mapping relationship between the pre-stored required characteristics of the environmental protection material and the preliminary process data required for preparing the environmental protection material.
[0076] That is, the corresponding relationship between the required characteristics of the environmental protection material and the preliminary process data required for preparing the environmental protection material can be formed in advance and stored in the database, and in the embodiment, the corresponding relationship is defined as the second mapping relationship. When it is necessary to determine the process data required for preparing the target environmental protection material, the second mapping relationship can be directly called.
[0077] In the embodiment, the types of the raw materials can include agricultural waste and forestry waste.
[0078] The agricultural waste can include at least two of straw, fiber crops, fruit shells, tea residues, and food processing waste. The straw mainly includes wheat straw, bean straw, cotton straw, hemp straw, and corn stalks (stems, leaves, and ears left after harvesting); the fiber crops mainly include stems, leaves, flowers, and fruits of fiber crops such as flax, hemp, and cotton after harvesting; the fruit shells mainly include the outer layer of the flesh of fruits, nuts, and coconuts; the tea residues mainly include waste generated during tea processing; and the food processing waste mainly includes fruit peels, vegetable slices, animal offal, and kitchen garbage.
[0079] The forestry waste can include at least two of wood waste, trees, tree stumps, bamboo waste, and forestry by-products. The wood waste mainly includes wood chips, sawdust, and offcuts of wood particle boards generated during wood processing; the trees mainly include branches and leaves, bark, stumps, and trunks left after pruning and felling; the tree stumps mainly include tree stumps after felling; the bamboo waste mainly includes waste generated during bamboo processing, such as bamboo chips and bamboo shavings; and the forestry by-products mainly include residues on grasslands in deep forests and by-products during wood processing, such as fiber boards and charcoal.
[0080] In the embodiment, the second mapping relationship can include any one or more of the following corresponding relationships:
[0081] When the required characteristics of the environmental protection material are that the compressive strength is greater than or equal to 2 MPa and the organic matter content is greater than or equal to 5 g / kg, then in the preliminary process data, the required raw materials include 50% of agricultural waste and 50% of forestry waste, and the pyrolysis temperature is between 600°C and 700°C;
[0082] When the required characteristics of the environmental protection material are that the porosity is greater than or equal to 60%, then in the preliminary process data, the required raw materials include more than 60% of straw, and the pyrolysis temperature is between 800°C and 1000°C;
[0083] When the required characteristics of the environmental protection material are porosity greater than or equal to 70%, specific surface area greater than or equal to 15 m 3 / g, and compressive strength greater than or equal to 3 Mpa, then in the preliminary process data, the required raw materials include 60% forestry waste, 20% agricultural waste, and 20% mixture of forestry waste and agricultural waste, and the pyrolysis temperature is between 800℃ and 1000℃.
[0084] When the required characteristics of the environmental protection material are particle size of 5mm to 10mm, porosity of 40% to 60%, specific surface area greater than or equal to 20 m 3 / g, and compressive strength greater than or equal to 4 Mpa, then in the preliminary process data, the required raw materials include 60% forestry waste and 40% agricultural waste, and the pyrolysis temperature is between 600℃ and 800℃.
[0085] When the required characteristics of the environmental protection material are particle size of 1mm to 3mm and organic matter content greater than or equal to 10g / kg, then it is determined that in the preliminary process data, the required raw materials include 100% agricultural waste, and the pyrolysis temperature is between 300℃ and 400℃.
[0086] When the required characteristics of the environmental protection material are porosity greater than or equal to 60%, moisture content of 30% to 40%, and particle size less than or equal to 2mm, then in the preliminary process data, the required raw materials include 90% fiber crops and 10% straw, and the pyrolysis temperature is between 900℃ and 1000℃.
[0087] When the required characteristics of the environmental protection material are porosity greater than or equal to 50% and specific surface area greater than or equal to 20 m 3 / g, then it is determined that in the preliminary process data, the required raw materials include 60% forestry waste and 40% agricultural waste, and the pyrolysis temperature is between 500℃ and 700℃.
[0088] Step S630, according to the second mapping relationship and the currently determined characteristics required by the target environmental protection material, determine the process data required for preparing the target environmental protection material.
[0089] When the second mapping relationship is retrieved, the preliminary process data required for preparing the target environmental protection material that matches the currently determined characteristics required by the target environmental protection material can be retrieved from the second mapping relationship according to the currently determined characteristics required by the target environmental protection material, thereby determining the process data required for preparing the target environmental protection material.
[0090] Specifically, referring to Figure 4 , step S630 can further include the following steps:
[0091] Step S631, according to the characteristics required by the target environmental protection material, the matching preliminary process data is retrieved from the second mapping relationship;
[0092] Step S633, when receiving the user's modification instruction on the retrieved preliminary process data, the retrieved preliminary process data is modified according to the modification instruction, and the modified process data is determined as the process data required for preparing the target environmental protection material.
[0093] That is, after retrieving the matching preliminary process data from the second mapping relationship, the user can make corresponding modifications to the preliminary process data through the man-machine interaction interface, and determine the modified process data as the process data required for preparing the target environmental protection material.
[0094] For example, when the preliminary process data retrieved from the second mapping relationship is that the required raw materials include 50% of agricultural waste and 50% of forestry waste, and the pyrolysis temperature is between 600°C and 700°C, the user can set the specific composition of 50% of agricultural waste and the specific composition of 50% of forestry waste according to his own needs, as well as the specific value of the pyrolysis temperature. For example, set the specific composition of 50% of agricultural waste to include 30% of tea dregs and 20% of food processing waste, set the specific composition of 50% of forestry waste to include 20% of trees and 30% of tree stumps, and set the specific value of the pyrolysis temperature to 650°C.
[0095] For another example, when the preliminary process data retrieved from the second mapping relationship is that the required raw materials include 60% of forestry waste, 20% of agricultural waste, and 20% of a mixture of forestry waste and agricultural waste, and the pyrolysis temperature is between 800°C and 1000°C, the user can set the specific composition of 20% of agricultural waste, the specific composition of 60% of forestry waste, and the specific mixing method of 20% of the mixture of forestry waste and agricultural waste according to his own needs, as well as the specific value of the pyrolysis temperature. For example, set the specific composition of 20% of agricultural waste to include straw, set the specific composition of 60% of forestry waste to include trees and tree stumps, set the specific mixing composition of 20% of the mixture of forestry waste and agricultural waste to include food processing waste and forestry by-products, and set the specific value of the pyrolysis temperature to 900°C.
[0096] The preliminary process data retrieved in step S631 can refer to the corresponding relationship in the second mapping relationship in the foregoing examples, which will not be listed one by one here.
[0097] Through the above manner, the process data of the environment-friendly material currently required to be prepared can be quickly determined, and the preparation efficiency of the environment-friendly material is effectively improved.
[0098] In an embodiment, a computer readable storage medium is provided, and the computer readable storage medium stores a computer program. The computer program is executed by a processor to implement the steps in the above method embodiments.
[0099] In an embodiment, a computer program product is provided, and the computer program product includes a computer program. The computer program is executed by a processor to implement the steps in the above method embodiments.
[0100] A person of ordinary skill in the art can understand that all or part of the processes in the above method embodiments can be completed by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer readable storage medium. When the computer program is executed, the computer program can include the processes of the above method embodiments. Any reference to a memory, storage, database or other medium in each embodiment provided in the present application can include at least one of a non-volatile and volatile memory. The non-volatile memory can include a read-only memory (ROM), a magnetic tape, a floppy disk, a flash memory or an optical memory. The volatile memory can include a random access memory (RAM) or an external cache memory. As an illustration but not limitation, the RAM can be in various forms, such as a static random access memory (SRAM) or a dynamic random access memory (DRAM).
[0101] Each technical feature of the above-described embodiments can be combined arbitrarily. To make the description concise, all possible combinations of the technical features in the above-described embodiments are not described, however, as long as the combinations of the technical features do not exist in contradiction, it should be considered that the combinations are within the scope of the present application.
[0102] The above-described embodiments only express several implementation manners of the present application, and the description is relatively specific and detailed, but it should not be understood as a limitation on the patent scope. It should be noted that, for a person of ordinary skill in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, and these are within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the appended claims.
Claims
1. A method for preparing and controlling an environmentally friendly material, characterized by, The application comprises: acquiring the application scene of the target environmental protection material input by the user; according to the application scene input by the user, calling the first mapping relationship between the pre-stored application scene of the environmental protection material and the required characteristics of the environmental protection material, and determining the required characteristics of the target environmental protection material matched with the application scene input by the user according to the first mapping relationship and the application scene input by the user; according to the required characteristics of the target environmental protection material, calling the second mapping relationship between the required characteristics of the environmental protection material and the preliminary process data required for preparing the environmental protection material, and determining the process data required for preparing the target environmental protection material according to the second mapping relationship and the currently determined required characteristics of the target environmental protection material, wherein the process data comprises the mass ratio of agricultural waste and forestry waste and the pyrolysis temperature range; in the second mapping relationship: when the required characteristics of the target environmental protection material are that the compressive strength is greater than or equal to 2Mpa and the organic matter content is greater than or equal to 5g / kg, the required raw materials in the process data comprise 50% of agricultural waste and 50% of forestry waste, and the pyrolysis temperature is between 600℃ and 700℃; when the required characteristics of the target environmental protection material are that the porosity is greater than or equal to 70%, the specific surface area is greater than or equal to 15m / 8, and the compressive strength is greater than or equal to 3Mpa, the required raw materials in the process data comprise 60% of forestry waste, 20% of agricultural waste, and 20% of the mixture of forestry waste and agricultural waste, and the pyrolysis temperature is between 800℃ and 1000℃; the application scene comprises at least one of ecological slope protection, river regulation, urban renewal, road traffic, fertilizer and soil conditioning, cat litter, and fish tank filter material; the required characteristics of the target environmental protection material comprise at least one of compressive strength, organic matter content, porosity, specific surface area, and particle size.
2. The method according to claim 1, wherein the step of determining the required characteristics of the target environmental protection material corresponding to the application scene input by the user according to the first mapping relationship and the application scene input by the user comprises: when the application scene input by the user is ecological slope protection, it is determined that the required characteristics of the target environmental protection material are that the compressive strength is greater than or equal to 2Mpa and the organic matter content is greater than or equal to 5g / kg; when the application scene input by the user is river regulation, it is determined that the required characteristics of the target environmental protection material are that the porosity is greater than or equal to 60%; When the application scenario input by the user is city updating, it is determined that the required characteristics of the target environmental protection material are that the porosity is greater than or equal to 70%, the specific surface area is greater than or equal to 15 m 3 / g, and the compressive strength is greater than or equal to 3 MPa. When the application scenario input by the user is road traffic, the required properties of the target environmental protection material are determined as: particle size of 5mm-10mm, porosity of 40%-60%, specific surface area greater than or equal to 20m 3 / g, and compressive strength greater than or equal to 4Mpa. when the application scene input by the user is fertilizer and soil conditioning, it is determined that the required characteristics of the target environmental protection material are that the particle size is 1mm to 3mm and the organic matter content is greater than or equal to 10g / kg; when the application scene input by the user is cat litter, it is determined that the required characteristics of the target environmental protection material are that the porosity is greater than or equal to 60%, the water content is 30% to 40%, and the particle size is less than or equal to 2mm; When the application scenario input by the user is fish tank filter material, it is determined that the required characteristics of the target environmental protection material are porosity greater than or equal to 50%, specific surface area greater than or equal to 20 m 3 / g.
3. The method of claim 2, wherein the method is performed in a batch process. the step of determining the process data required for preparing the target environmental protection material according to the second mapping relationship and the currently determined required characteristics of the target environmental protection material comprises: according to the required characteristics of the target environmental protection material, calling the matched preliminary process data from the second mapping relationship; When receiving the modification instruction of the user to the retrieved preliminary process data, the retrieved preliminary process data is modified according to the modification instruction, and the modified process data is determined as the process data required for preparing the target environmental protection material.
4. The method of claim 3, wherein the environmental material is a biodegradable material. The agricultural waste includes at least two of straw, fiber crop, fruit shell, tea dregs and food processing waste, and the forestry waste includes at least two of wood waste, tree, tree stump, bamboo waste and forestry by-product.
5. The method of claim 4, wherein the method is performed in a batch process. The second mapping relationship further includes: When the required characteristic of the target environmental protection material is that the porosity is greater than or equal to 60%, it is determined that in the preliminary process data, the required raw material includes straw with a proportion of 60% or above, and the pyrolysis temperature is between 800-1000℃; When the required characteristics of the target environmental protection material are particle size of 5mm-10mm, porosity of 40%-60%, specific surface area greater than or equal to 20m 3 / g, and compressive strength greater than or equal to 4Mpa, it is determined that in the preliminary process data, the required raw materials include 60% forestry waste and 40% agricultural waste, and the pyrolysis temperature is between 600℃ and 800℃. When the required characteristic of the target environmental protection material is that the particle size is 1-3mm and the organic matter content is greater than or equal to 10g / kg, it is determined that in the preliminary process data, the required raw material includes 100% of agricultural waste, and the pyrolysis temperature is between 300-400℃; When the required characteristic of the target environmental protection material is that the porosity is greater than or equal to 60%, the water content is 30-40%, and the particle size is less than or equal to 2mm, it is determined that in the preliminary process data, the required raw material includes 90% of fiber crops and 10% of straw, and the pyrolysis temperature is between 900-1000℃; When the required properties of the target environmental protection material are porosity greater than or equal to 50% and specific surface area greater than or equal to 20 m 3 / g, it is determined that in the preliminary process data, the required raw materials include 60% of forestry waste and 40% of agricultural waste, and the pyrolysis temperature is between 500℃ and 700℃.
6. A computer-readable storage medium having stored thereon a computer program, characterized in that, The computer program is executed by the processor to realize the preparation control method of the environmental protection material according to any one of claims 1-5.
Citation Information
Patent Citations
Method and system for adjusting production parameters of polyurethane material based on quality monitoring
CN115113596A