Data management system for plant-microorganism combined remediation

By designing a data management system for plant-microbe co-remediation, the problem of the difficulty in systematically processing data for plant-microbe co-remediation was solved, and the systematic organization and management of data was realized, thus filling management gaps.

CN121764902APending Publication Date: 2026-03-31SICHUAN NUCLEAR IND RADIATION TESTING & PROTECTION INST
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-11-28
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Data generated from the combined remediation of plants and microorganisms in existing technologies is difficult to process systematically, leading to loopholes in management methods.

Method used

A data management system for phyto-microbe co-remediation was designed, including a data management system, a database, a data co-management module, a phytoremediation data management module, and a microbe remediation data management module. These modules enable the systematic organization, storage, and co-organization of data generated during the phyto-microbe remediation process.

Benefits of technology

It enables systematic processing of data generated from the combined remediation of plants and microorganisms, fills management gaps, and improves the efficiency and completeness of data management.

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Abstract

The invention discloses a data management system for plant-microorganism combined remediation, which comprises a data management system, a database, a data combination module, a plant remediation data management module and a microorganism remediation data management module, and is characterized in that the output end of the data management system is bidirectionally connected with the input end of the database; the output end of the data management system is in two-way connection with the input end of the data joint module, the output end of the data management system is in two-way connection with the input end of the phytoremediation data management module, and the output end of the data management system is in two-way connection with the input end of the microbial remediation data management module; the database, the data combination module, the phytoremediation data management module and the microbial remediation data management module are in bidirectional connection with one another. Systematic arrangement and carding of data generated in the plant and microorganism combined remediation process are achieved.
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Description

Technical Field

[0001] This invention relates to the field of plant and microbial technology, specifically to a data management system for plant-microbe co-remediation. Background Technology

[0002] Plants are one of the main forms of life, encompassing familiar organisms such as trees, shrubs, vines, grasses, ferns, and green algae and lichens. Plants can be divided into seed plants, bryophytes, ferns, etc., and it is estimated that there are approximately 450,000 extant species. Most of the energy for green plants comes from sunlight through photosynthesis. Temperature, humidity, light, and freshwater are the basic requirements for plant survival. Angiosperms have six major organs: roots, stems, leaves, flowers, fruits, and seeds. Green plants possess the ability to photosynthesize—using light energy and chlorophyll, under the catalysis of enzymes, they utilize water, inorganic salts, and carbon dioxide to perform photosynthesis, releasing oxygen and producing organic matter such as glucose for the plant's use. Microorganisms include bacteria, viruses, fungi, as well as some small protozoa and microalgae, forming a large group of organisms. They are tiny in size and closely related to humans. They encompass a wide range of species, both beneficial and harmful, and are widely involved in many fields such as food, medicine, industry, agriculture, environmental protection, and sports. In Chinese textbooks, microorganisms are classified into eight major categories: bacteria, viruses, fungi, actinomycetes, rickettsiae, mycoplasma, chlamydia, and spirochetes. Some microorganisms are visible to the naked eye, such as mushrooms, Ganoderma lucidum, and shiitake mushrooms, which belong to the fungi family. Other microorganisms are non-cellular organisms composed of only a few components, such as nucleic acids and proteins. Currently, data generated through co-remediation of plants and microorganisms is used to establish relationships for processing, but the data between plants and microorganisms is difficult to process systematically, resulting in certain loopholes in the management of remediation data. Summary of the Invention

[0003] The purpose of this invention is to provide a data management system for plant-microbe co-remediation, in order to solve the problem mentioned in the background art that the current data generated by plant-microbe co-remediation is difficult to process by establishing relationships, and the data between plants and microorganisms is difficult to process systematically, resulting in certain loopholes in the management of remediation data.

[0004] To achieve the above objectives, the present invention provides the following technical solution: a data management system for phytoremediation, comprising a data management system, a database, a data integration module, a phytoremediation data management module, and a microbial remediation data management module. The output end of the data management system is bidirectionally connected to the input end of the database, the output end of the data management system is bidirectionally connected to the input end of the data integration module, the output end of the data management system is bidirectionally connected to the input end of the phytoremediation data management module, and the output end of the data management system is bidirectionally connected to the input end of the microbial remediation data management module. The database, the data integration module, the phytoremediation data management module, and the microbial remediation data management module are bidirectionally connected to each other.

[0005] The phytoremediation data management module is used to systematically organize the data generated by plants during the remediation process.

[0006] The microbial remediation data management module is used to systematically organize the data generated by microorganisms during the remediation process.

[0007] The database is used to receive and store the data generated in the phytoremediation data management module and the microbial remediation data management module;

[0008] The data integration module is used to establish a connection and jointly organize the phytoremediation data management module and the microbial remediation data management module.

[0009] As a preferred embodiment of the present invention: the phytoremediation data management module includes a plant data acquisition module, a phytoremediation detection module, and a plant data analysis module. The output end of the phytoremediation data management module is unidirectionally connected to the input end of the plant data acquisition module, the output end of the phytoremediation data management module is unidirectionally connected to the input end of the phytoremediation detection module, and the output end of the phytoremediation data management module is unidirectionally connected to the input end of the plant data analysis module.

[0010] The plant data acquisition module is used to collect data from plants;

[0011] The phytoremediation detection module is used to conduct detection experiments on plants during the remediation process;

[0012] The plant data analysis module is used to perform specific analysis on the data generated by plants;

[0013] The plant data acquisition module includes a plant data acquisition unit, a plant data preprocessing unit, and a plant data storage unit. The output end of the plant data acquisition module is unidirectionally connected to the input end of the plant data acquisition unit, the output end of the plant data acquisition module is unidirectionally connected to the input end of the plant data preprocessing unit, and the output end of the plant data acquisition module is unidirectionally connected to the input end of the plant data storage unit.

[0014] The plant data acquisition unit is used to collect data generated by the plants during the restoration process;

[0015] The plant data preprocessing unit is used to preprocess the data generated from the collected plant restoration data;

[0016] The plant data storage unit is used to store the preprocessed data;

[0017] The phytoremediation detection module includes a phytoremediation detection unit, a phytoremediation observation unit, and a phytoremediation recording unit. The output terminal of the phytoremediation detection module is unidirectionally connected to the input terminal of the phytoremediation detection unit, the output terminal of the phytoremediation detection module is unidirectionally connected to the input terminal of the phytoremediation observation unit, and the output terminal of the phytoremediation detection module is unidirectionally connected to the input terminal of the phytoremediation recording unit.

[0018] The phytoremediation detection unit is used to perform detection work during the phytoremediation process;

[0019] The phytoremediation observation unit is used to observe the phytoremediation process;

[0020] The phytoremediation recording unit is used to record the observed events in detail;

[0021] The plant data analysis module includes a plant data receiving unit, a plant data comparison unit, and a plant data analysis unit. The output end of the plant data analysis module is unidirectionally connected to the plant data comparison unit, the output end of the plant data analysis module is unidirectionally connected to the plant data receiving unit, and the output end of the plant data analysis module is unidirectionally connected to the plant data analysis unit.

[0022] The plant data receiving unit is used to receive and process the generated data;

[0023] The plant data comparison unit is used to compare and process the received data;

[0024] The plant data analysis unit is used to analyze and process the data.

[0025] As a preferred embodiment of the present invention: the microbial remediation data management module includes a microbial data acquisition module, a microbial remediation detection module, and a microbial data analysis module. The output end of the microbial remediation data management module is unidirectionally connected to the input end of the microbial data acquisition module, the output end of the microbial remediation data management module is unidirectionally connected to the input end of the microbial remediation detection module, and the output end of the microbial remediation data management module is unidirectionally connected to the input end of the microbial data analysis module.

[0026] The microbial data acquisition module is used to collect data generated during the microbial remediation process;

[0027] The microbial remediation detection module is used to detect microorganisms during the remediation process;

[0028] The microbial data analysis module is used to systematically analyze the data generated by microorganisms;

[0029] The microbial data acquisition module includes a microbial data acquisition unit, a microbial data preprocessing unit, and a microbial data storage unit. The output end of the microbial data acquisition module is unidirectionally connected to the output end of the microbial data acquisition unit, the output end of the microbial data acquisition module is unidirectionally connected to the output end of the microbial data preprocessing unit, and the output end of the microbial data acquisition module is unidirectionally connected to the output end of the microbial data storage unit.

[0030] The microbial data acquisition unit is used to collect data generated by microorganisms during the repair process;

[0031] The microbial data preprocessing is used to preprocess the data generated by the collected microbial remediation.

[0032] The microbial data storage unit is used to store the preprocessed data;

[0033] The microbial remediation detection module includes a microbial remediation detection unit, a microbial remediation observation unit, and a microbial remediation recording unit. The output end of the microbial remediation detection module is unidirectionally connected to the input end of the microbial remediation detection unit, the output end of the microbial remediation detection module is unidirectionally connected to the input end of the microbial remediation observation unit, and the output end of the microbial remediation detection module is unidirectionally connected to the input end of the bioremediation recording unit.

[0034] The microbial remediation detection unit is used to detect microorganisms during the microbial remediation process.

[0035] The microbial remediation observation unit is used to observe the microbial remediation process;

[0036] The microbial remediation recording unit is used to record the observed events in detail;

[0037] The microbial data analysis module includes a microbial data receiving unit, a microbial data comparison unit, and a microbial data analysis unit. The output end of the microbial data analysis module is unidirectionally connected to the input end of the microbial data receiving unit, the output end of the microbial data analysis module is unidirectionally connected to the input end of the microbial data comparison unit, and the output end of the microbial data analysis module is unidirectionally connected to the input end of the microbial data analysis unit.

[0038] The microbial data receiving unit is used to receive and process the generated data;

[0039] The microbial data comparison unit is used to compare and process the received data;

[0040] The microbial data analysis unit is used to analyze and process the data.

[0041] As a preferred embodiment of the present invention: the database data sending and receiving module, the data search module, and the data processing module are configured such that the output end of the database is unidirectionally connected to the data sending and receiving module, the output end of the database is unidirectionally connected to the data search module, and the output end of the database is unidirectionally connected to the data processing module.

[0042] The data transceiver module is used to receive and send data;

[0043] The data processing module is used to process the received data;

[0044] The data search module is used to retrieve the required data.

[0045] As a preferred embodiment of the present invention: the data integration module includes a platform establishment module, a central connection module and a data receiving module, wherein the output end of the data integration module is unidirectionally connected to the input end of the platform establishment module, the output end of the data integration module is unidirectionally connected to the input end of the central connection module, and the output end of the data integration module is unidirectionally connected to the input end of the data receiving module.

[0046] The platform establishment module is used to establish the platform;

[0047] The central connection module is used to establish a central connection;

[0048] The data receiving module is used to receive and process data;

[0049] The platform establishment module includes a platform establishment unit and a data accumulation unit. The output end of the platform establishment module is unidirectionally connected to the platform establishment unit, and the output end of the platform establishment module is unidirectionally connected to the data accumulation unit.

[0050] The data stacking unit is used to stack data to establish a foundation;

[0051] The platform establishment unit is used to establish a platform based on the accumulated data;

[0052] The central connection module includes a bidirectional connection unit and a data flow unit. The output end of the central connection module is unidirectionally connected to the input end of the bidirectional connection unit, and the output end of the central connection module is unidirectionally connected to the input end of the data flow unit.

[0053] The bidirectional connection unit is used to connect data bidirectionally;

[0054] The data circulation unit is used to rapidly circulate and transport data;

[0055] The data receiving module includes a data receiving unit, a preprocessing unit, and a data temporary storage unit. The output terminal of the data receiving module is unidirectionally connected to the input terminal of the data receiving unit, the output terminal of the data receiving module is unidirectionally connected to the input terminal of the preprocessing unit, and the output terminal of the data receiving module is unidirectionally connected to the input terminal of the data temporary storage unit.

[0056] The data receiving unit is used to receive data;

[0057] The preprocessing unit is used to preprocess the received data;

[0058] The data temporary storage unit is used to temporarily store the preprocessed data.

[0059] Compared with existing technologies, the beneficial effects of this invention are as follows: By incorporating a phytoremediation data management module, this invention achieves systematic organization and processing of data generated during the combined phytoremediation process using plants and microorganisms; by incorporating a microbial remediation data management module, it enables systematic organization and processing of data generated during microbial remediation; by incorporating a database, it allows for the combined processing of all data generated during the phytoremediation process by the data integration module before receiving and storing it; by incorporating a data integration module, it establishes a connection and joint processing between the phytoremediation data management module and the microbial remediation data management module; thereby, it enables the establishment of relationships between the data generated by the combined phytoremediation of plants and microorganisms, facilitating systematic processing and filling gaps in the management of remediation data. Attached Figure Description

[0060] Figure 1 This is a system block diagram of the present invention. Detailed Implementation

[0061] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0062] Please see Figure 1 This invention provides a technical solution: a data management system for phytoremediation, comprising a data management system, a database, a data integration module, a phytoremediation data management module, and a microbial remediation data management module. The output of the data management system is bidirectionally connected to the input of the database, the output of the data management system is bidirectionally connected to the input of the data integration module, the output of the data management system is bidirectionally connected to the input of the phytoremediation data management module, and the output of the data management system is bidirectionally connected to the input of the microbial remediation data management module. The database, the data integration module, the phytoremediation data management module, and the microbial remediation data management module are bidirectionally connected to each other.

[0063] The phytoremediation data management module is used to systematically organize the data generated by plants during the remediation process.

[0064] The microbial remediation data management module is used to systematically organize the data generated by microorganisms during the remediation process.

[0065] The database is used to receive and store the data generated in the phytoremediation data management module and the microbial remediation data management module;

[0066] The data integration module is used to establish a connection and jointly organize the phytoremediation data management module and the microbial remediation data management module.

[0067] The phytoremediation data management module includes a plant data acquisition module, a phytoremediation detection module, and a plant data analysis module. The output of the phytoremediation data management module is unidirectionally connected to the input of the plant data acquisition module, the output of the phytoremediation data management module is unidirectionally connected to the input of the phytoremediation detection module, and the output of the phytoremediation data management module is unidirectionally connected to the input of the plant data analysis module.

[0068] The plant data acquisition module is used to collect data from plants;

[0069] The phytoremediation detection module is used to conduct detection experiments on plants during the remediation process;

[0070] The plant data analysis module is used to perform specific analysis on the data generated by plants;

[0071] The plant data acquisition module includes a plant data acquisition unit, a plant data preprocessing unit, and a plant data storage unit. The output end of the plant data acquisition module is unidirectionally connected to the input end of the plant data acquisition unit, the output end of the plant data acquisition module is unidirectionally connected to the input end of the plant data preprocessing unit, and the output end of the plant data acquisition module is unidirectionally connected to the input end of the plant data storage unit.

[0072] The plant data acquisition unit is used to collect data generated by the plants during the restoration process;

[0073] The plant data preprocessing unit is used to preprocess the data generated from the collected plant restoration data;

[0074] The plant data storage unit is used to store the preprocessed data;

[0075] The phytoremediation detection module includes a phytoremediation detection unit, a phytoremediation observation unit, and a phytoremediation recording unit. The output terminal of the phytoremediation detection module is unidirectionally connected to the input terminal of the phytoremediation detection unit, the output terminal of the phytoremediation detection module is unidirectionally connected to the input terminal of the phytoremediation observation unit, and the output terminal of the phytoremediation detection module is unidirectionally connected to the input terminal of the phytoremediation recording unit.

[0076] The phytoremediation detection unit is used to perform detection work during the phytoremediation process;

[0077] The phytoremediation observation unit is used to observe the phytoremediation process;

[0078] The phytoremediation recording unit is used to record the observed events in detail;

[0079] The plant data analysis module includes a plant data receiving unit, a plant data comparison unit, and a plant data analysis unit. The output end of the plant data analysis module is unidirectionally connected to the plant data comparison unit, the output end of the plant data analysis module is unidirectionally connected to the plant data receiving unit, and the output end of the plant data analysis module is unidirectionally connected to the plant data analysis unit.

[0080] The plant data receiving unit is used to receive and process the generated data;

[0081] The plant data comparison unit is used to compare and process the received data;

[0082] The plant data analysis unit is used to analyze and process the data.

[0083] The microbial remediation data management module includes a microbial data acquisition module, a microbial remediation detection module, and a microbial data analysis module. The output end of the microbial remediation data management module is unidirectionally connected to the input end of the microbial data acquisition module, the output end of the microbial remediation data management module is unidirectionally connected to the input end of the microbial remediation detection module, and the output end of the microbial remediation data management module is unidirectionally connected to the input end of the microbial data analysis module.

[0084] The microbial data acquisition module is used to collect data generated during the microbial remediation process;

[0085] The microbial remediation detection module is used to detect microorganisms during the remediation process;

[0086] The microbial data analysis module is used to systematically analyze the data generated by microorganisms;

[0087] The microbial data acquisition module includes a microbial data acquisition unit, a microbial data preprocessing unit, and a microbial data storage unit. The output end of the microbial data acquisition module is unidirectionally connected to the output end of the microbial data acquisition unit, the output end of the microbial data acquisition module is unidirectionally connected to the output end of the microbial data preprocessing unit, and the output end of the microbial data acquisition module is unidirectionally connected to the output end of the microbial data storage unit.

[0088] The microbial data acquisition unit is used to collect data generated by microorganisms during the repair process;

[0089] The microbial data preprocessing is used to preprocess the data generated by the collected microbial remediation.

[0090] The microbial data storage unit is used to store the preprocessed data;

[0091] The microbial remediation detection module includes a microbial remediation detection unit, a microbial remediation observation unit, and a microbial remediation recording unit. The output end of the microbial remediation detection module is unidirectionally connected to the input end of the microbial remediation detection unit, the output end of the microbial remediation detection module is unidirectionally connected to the input end of the microbial remediation observation unit, and the output end of the microbial remediation detection module is unidirectionally connected to the input end of the bioremediation recording unit.

[0092] The microbial remediation detection unit is used to detect microorganisms during the microbial remediation process.

[0093] The microbial remediation observation unit is used to observe the microbial remediation process;

[0094] The microbial remediation recording unit is used to record the observed events in detail;

[0095] The microbial data analysis module includes a microbial data receiving unit, a microbial data comparison unit, and a microbial data analysis unit. The output end of the microbial data analysis module is unidirectionally connected to the input end of the microbial data receiving unit, the output end of the microbial data analysis module is unidirectionally connected to the input end of the microbial data comparison unit, and the output end of the microbial data analysis module is unidirectionally connected to the input end of the microbial data analysis unit.

[0096] The microbial data receiving unit is used to receive and process the generated data;

[0097] The microbial data comparison unit is used to compare and process the received data;

[0098] The microbial data analysis unit is used to analyze and process the data.

[0099] The database data sending and receiving module, data search module, and data processing module are configured such that the output end of the database is unidirectionally connected to the data sending and receiving module, the output end of the database is unidirectionally connected to the data search module, and the output end of the database is unidirectionally connected to the data processing module.

[0100] The data transceiver module is used to receive and send data;

[0101] The data processing module is used to process the received data;

[0102] The data search module is used to retrieve the required data.

[0103] The data integration module includes a platform establishment module, a central connection module, and a data receiving module. The output end of the data integration module is unidirectionally connected to the input end of the platform establishment module, the output end of the data integration module is unidirectionally connected to the input end of the central connection module, and the output end of the data integration module is unidirectionally connected to the input end of the data receiving module.

[0104] The platform establishment module is used to establish the platform;

[0105] The central connection module is used to establish a central connection;

[0106] The data receiving module is used to receive and process data;

[0107] The platform establishment module includes a platform establishment unit and a data accumulation unit. The output end of the platform establishment module is unidirectionally connected to the platform establishment unit, and the output end of the platform establishment module is unidirectionally connected to the data accumulation unit.

[0108] The data stacking unit is used to stack data to establish a foundation;

[0109] The platform establishment unit is used to establish a platform based on the accumulated data;

[0110] The central connection module includes a bidirectional connection unit and a data flow unit. The output end of the central connection module is unidirectionally connected to the input end of the bidirectional connection unit, and the output end of the central connection module is unidirectionally connected to the input end of the data flow unit.

[0111] The bidirectional connection unit is used to connect data bidirectionally;

[0112] The data circulation unit is used to rapidly circulate and transport data;

[0113] The data receiving module includes a data receiving unit, a preprocessing unit, and a data temporary storage unit. The output terminal of the data receiving module is unidirectionally connected to the input terminal of the data receiving unit, the output terminal of the data receiving module is unidirectionally connected to the input terminal of the preprocessing unit, and the output terminal of the data receiving module is unidirectionally connected to the input terminal of the data temporary storage unit.

[0114] The data receiving unit is used to receive data;

[0115] The preprocessing unit is used to preprocess the received data;

[0116] The data temporary storage unit is used to temporarily store the preprocessed data.

[0117] Specifically, in use, the system operates through its database, data integration module, phytoremediation data management module, and microbial remediation data management module. The phytoremediation data management module systematically organizes data generated during plant remediation, while the microbial remediation data management module systematically organizes data generated during microbial remediation. The database receives and stores data generated by these two modules. The data integration module establishes connections and integrates the data from the phytoremediation and microbial remediation data management modules. Finally, the plant data acquisition module within the phytoremediation data management module is used to collect plant data. Data is collected, and then the phytoremediation detection module is used to conduct detection experiments on the plants during the remediation process. The plant data analysis module is used to perform detailed analysis of the data generated by the plants. The plant data acquisition unit within the plant data acquisition module collects data generated during the remediation process. The plant data preprocessing unit preprocesses the collected phytoremediation data, and the plant data storage unit stores the preprocessed data. The phytoremediation detection unit within the phytoremediation detection module is used for monitoring the phytoremediation process. The phytoremediation observation unit is used for observing the phytoremediation process, and the phytoremediation recording unit is used to record the observed data. The plant growth process is meticulously recorded. When analysis is required, the plant data receiving unit within the plant data analysis module receives and processes the generated data, the plant data comparison unit compares the received data, and the plant data analysis unit analyzes the data. When microbial remediation is needed, the microbial data acquisition module within the microbial remediation data management module collects the data generated during the microbial remediation process, the microbial remediation detection module detects microorganisms during the remediation process, and the microbial data analysis module performs systematic analysis of the data generated by microorganisms. Specifically, the microbial data acquisition unit is used for microbial... Data generated during the remediation process is collected. Microbial data preprocessing is used to preprocess the collected microbial remediation data. A microbial data storage unit stores the preprocessed data. A microbial remediation detection module uses a microbial remediation detection unit to monitor the remediation process. A microbial remediation observation unit observes the remediation process. A microbial remediation recording unit records the observed events in detail. A microbial data receiving unit receives and processes the generated data. A microbial data comparison unit compares the received data. Finally, a microbial data analysis unit analyzes and processes the data.When data processing is required, the platform establishment module is used to build the platform, the central connection module is used to establish central connections, and the data receiving module is used to receive and process the data. Specifically, the data accumulation unit is used to accumulate data to establish the foundation, the platform establishment unit is used to build the platform based on the accumulated data, the bidirectional connection unit within the central connection module is used for bidirectional data connections, the data circulation unit is used for rapid data circulation and transmission, the data receiving module's data receiving unit is used to receive data, the preprocessing unit is used to preprocess the received data, and the data temporary storage unit is used to temporarily store the preprocessed data. When all data needs to be stored, the database's data transceiver module is used to receive and send data, the data processing module is used to process the received data, and the data search module is used to retrieve the required data.

[0118] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A data management system for phytomicrobiological remediation, characterized by, The plant repair data management module is used for systematizing the data generated by the plants during the repair; The microbial repair data management module is used for systematizing the data generated by the microorganisms during the repair; The database is used for receiving and storing the data generated in the plant repair data management module and the microbial repair data management module; The data joint module is used for establishing contact and jointly arranging the plant repair data management module and the microbial repair data management module. The plant data collection module is used for collecting the data of the plants; 2. The data management system for phytomicrobiological remediation according to claim 1, characterized in that: The plant repair detection module is used for detecting the plants during the repair process; The plant data analysis module is used for specifically analyzing the data generated by the plants; The plant data collection module includes a plant data collection unit, a plant data preprocessing unit and a plant data storage unit, the output end of the plant data collection module is unidirectionally connected with the input end of the plant data collection unit, the output end of the plant data collection module is unidirectionally connected with the input end of the plant data preprocessing unit, and the output end of the plant data collection module is unidirectionally connected with the input end of the plant data storage unit; The plant data collection unit is used for collecting the data generated by the plants during the repair process; The plant data preprocessing unit is used for preprocessing the collected data generated by the plants during the repair; The plant data storage unit is used for storing the preprocessed data; The plant repair detection module includes a plant repair detection unit, a plant repair observation unit and a plant repair recording unit, the output end of the plant repair detection module is unidirectionally connected with the input end of the plant repair detection unit, the output end of the plant repair detection module is unidirectionally connected with the input end of the plant repair observation unit, and the output end of the plant repair detection module is unidirectionally connected with the input end of the plant repair recording unit; The plant repair detection unit is used for detecting the plants during the repair process; The plant repair observation unit is used for observing the plants during the repair process; ​ ​ The plant data analysis module includes a plant data receiving unit, a plant data comparison unit and a plant data analysis unit, the output end of the plant data analysis module is unidirectionally connected with the plant data comparison unit, the output end of the plant data analysis module is unidirectionally connected with the plant data receiving unit, and the output end of the plant data analysis module is unidirectionally connected with the plant data analysis unit. The plant data receiving unit is used for receiving and processing the generated data. The plant data comparison unit is used for comparing and processing the received data. The plant data analysis unit is used for analyzing and processing the data. The microbial repair data management module includes a microbial data acquisition module, a microbial repair detection module and a microbial data analysis module, the output end of the microbial repair data management module is unidirectionally connected with the input end of the microbial data acquisition module, the output end of the microbial repair data management module is unidirectionally connected with the input end of the microbial repair detection module, and the output end of the microbial repair data management module is unidirectionally connected with the input end of the microbial data analysis module.

3. The data management system for phytomicrobiological remediation according to claim 2, characterized in that: The microbial data acquisition module is used for collecting the data generated in the microbial repair process. The microbial repair detection module is used for detecting the microorganisms in the repair process. The microbial data analysis module is used for systematically analyzing the data generated by the microorganisms. The microbial data acquisition module includes a microbial data acquisition unit, a microbial data preprocessing unit and a microbial data storage unit, the output end of the microbial data acquisition module is unidirectionally connected with the output end of the microbial data acquisition unit, the output end of the microbial data acquisition module is unidirectionally connected with the output end of the microbial data preprocessing unit, and the output end of the microbial data acquisition module is unidirectionally connected with the output end of the microbial data storage unit. The microbial data acquisition unit is used for collecting the data generated in the microbial repair process. The microbial data preprocessing unit is used for preprocessing the data generated in the microbial repair process. The microbial data storage unit is used for storing the preprocessed data. The microbial repair detection module includes a microbial repair detection unit, a microbial repair observation unit and a microbial repair recording unit, the output end of the microbial repair detection module is unidirectionally connected with the input end of the microbial repair detection unit, the output end of the microbial repair detection module is unidirectionally connected with the input end of the microbial repair observation unit, and the output end of the microbial repair detection module is unidirectionally connected with the input end of the microbial repair recording unit. The microbial repair detection unit is used for detecting the microorganisms in the repair process. The microbial repair observation unit is used for observing the microbial repair process. The microbial repair recording unit is used for recording the details of the observation. ​ The microbial data analysis module comprises a microbial data receiving unit, a microbial data comparison unit and a microbial data analysis unit, the output end of the microbial data analysis module is unidirectionally connected with the input end of the microbial data receiving unit, the output end of the microbial data analysis module is unidirectionally connected with the input end of the microbial data comparison unit, and the output end of the microbial data analysis module is unidirectionally connected with the input end of the microbial data analysis unit; The microbial data receiving unit is used for receiving the generated data; The microbial data comparison unit is used for comparing the received data; The microbial data analysis unit is used for analyzing the data.

4. The data management system for phytomicrobiological remediation according to claim 3, characterized in that: The database data receiving module, the data searching module and the data arrangement module, the output end of the database is unidirectionally connected with the data receiving module, the output end of the database is unidirectionally connected with the data searching module, and the output end of the database is unidirectionally connected with the data arrangement module; The data receiving module is used for receiving and sending data; The data arrangement module is used for arranging the received data; The data searching module is used for searching the required data.

5. The data management system for phytomicrobiological remediation according to claim 4, characterized in that: The data joint module comprises a platform establishing module, a central connection module and a data receiving module, the output end of the data joint module is unidirectionally connected with the input end of the platform establishing module, the output end of the data joint module is unidirectionally connected with the input end of the central connection module, and the output end of the data joint module is unidirectionally connected with the input end of the data receiving module; The platform establishing module is used for establishing a platform; The central connection module is used for establishing a central connection; The data receiving module is used for receiving data; The platform establishing module comprises a platform establishing unit and a data stacking unit, the output end of the platform establishing module is unidirectionally connected with the platform establishing unit, and the output end of the platform establishing module is unidirectionally connected with the data stacking unit; The data stacking unit is used for stacking data to establish a basis; The platform establishing unit is used for establishing a platform based on the stacked data; The central connection module comprises a bidirectional connection unit and a data flow unit, the output end of the central connection module is unidirectionally connected with the input end of the bidirectional connection unit, and the output end of the central connection module is unidirectionally connected with the input end of the data flow unit; The bidirectional connection unit is used for bidirectional connection of data; The data flow unit is used for rapid flow delivery of data; The data receiving module comprises a data receiving unit, a preprocessing unit and a data temporary storage unit, the output end of the data receiving module is unidirectionally connected with the input end of the data receiving unit, the output end of the data receiving module is unidirectionally connected with the input end of the preprocessing unit, and the output end of the data receiving module is unidirectionally connected with the input end of the data temporary storage unit; The data receiving unit is used for receiving data; The preprocessing unit is used for preprocessing the received data; The data temporary storage unit is used for temporarily storing the preprocessed data.