Laboratory hazardous chemical substance inspection information management system based on digitization

Through the digital laboratory hazardous chemical inspection information management system, real-time monitoring and automatic analysis of experimental data and environment are realized, and reports are generated, which improves the safety and efficiency of experimental inspections and solves the problem of low laboratory intelligence.

CN120494737APending Publication Date: 2025-08-15SHANGHAI HENGCHUANG HUABIAO TESTING TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510579812.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-07
Publication Date
2025-08-15

AI Technical Summary

Technical Problem

The hazardous chemical inspection laboratory lacks an information management system, which leads to low intelligence, inconvenience of users to obtain experimental data, and the inability to supervise the experimental process in real time, making it less safe.

Method used

The digital-based laboratory hazardous chemical inspection information management system is adopted, including a clean workbench, radio frequency label system, hazardous chemical information collection module, experimental personnel information collection module, data analysis and sorting module, data storage module, experimental report generation module, environmental data collection module and video monitoring module to realize automatic data collection, analysis and report generation, and upload it to the cloud server in real time.

Benefits of technology

It improves the intelligence of experimental inspections, improves data accuracy and reliability, ensures the safety of the experimental process, promptly detects abnormal situations, and reduces the risk of accidents.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a laboratory hazardous chemical substance inspection information management system based on digitization, and the system comprises a clean workbench which is mainly used for carrying out the real-time placement of instruments and equipment needed by an experiment and inspection for later use, and is also used for the operation of the whole process of the experiment and inspection, and the instruments and equipment needed by the experiment and inspection. The system is mainly used for storing hazardous chemical substances in the experiment process and detecting, collecting, recording and uploading component information in the experiment inspection process, and the radio frequency tag system is used for data interaction of experiment inspection radio frequency tags and real-time uploading of data. Meanwhile, experimental data are automatically analyzed and processed, an experimental inspection report can be automatically generated and can be automatically uploaded to a cloud server for storage, so that the overall intelligent degree of experimental inspection is higher, the data accuracy and reliability of experimental inspection are greatly improved, and the experimental inspection efficiency is improved. And meanwhile, the overall efficiency of experimental inspection is also effectively improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of hazardous chemicals information management, and in particular to a laboratory hazardous chemicals inspection information management system based on digitization. Background Art

[0002] Hazardous chemicals are dangerous chemicals that are flammable, explosive, toxic, harmful and radioactive, and are prone to cause casualties and property damage during transportation, loading and unloading, and storage and custody, and therefore require special protection. Hazardous chemicals can be divided into eight categories: Explosives: Explosives refer to items that can undergo violent chemical reactions under external influences (such as heat, friction, impact, etc.), instantly generating large amounts of gas and heat, causing the surrounding pressure to rise sharply, exploding, and causing damage and harm to the surrounding environment, equipment, and personnel. Compressed gases and liquefied gases: refer to compressed, liquefied, or pressurized dissolved gases. When these items are subjected to heat, impact or strong vibration, the pressure inside the container increases sharply, causing the container to rupture, the substance to leak, or explode. Flammable liquids: These substances are volatile at room temperature, and their vapors can form explosive mixtures when mixed with air. Flammable solids: Self-igniting items and items that are flammable when wet. These items are prone to cause fires. Oxidizers and organic peroxides: These items have strong oxidizing properties and are prone to cause combustion and explosion. Toxic substances: These substances, after entering the human (animal) body, accumulate to a certain amount and can react biochemically or biophysically with body fluids and tissues, disrupting or destroying the body's normal physiological functions, causing temporary or persistent pathological changes, and even endangering life, such as various cyanides, arsenides, chemical pesticides, etc. Radioactive substances: They are hazardous chemicals. Corrosive substances: Solids or liquids that can burn human tissue and cause damage to metals and other objects.

[0003] At present, through the vigorous construction and development of informatization, hazardous chemical testing laboratories have begun to establish their own local area network systems, and various testing equipment and computer configurations have gradually been informatized. However, due to the lack of necessary information management systems, most hazardous chemical testing laboratories are still at the level of data storage and work task arrangement, and the intelligence level of hazardous chemical experimental testing information management is low. It is inconvenient for users and managers to obtain experimental data. At the same time, it is impossible to monitor the laboratory environment and the experimental process in real time, resulting in low overall safety of the experiment. Summary of the Invention

[0004] The purpose of the present invention is to provide a laboratory hazardous chemical inspection information management system based on digitization to solve the problem raised in the above background technology that, through the vigorous construction and development of informatization, hazardous chemical inspection laboratories have begun to establish their own local area network systems, and various inspection equipment and computer configurations have gradually been informatized. However, due to the lack of necessary information management systems, most hazardous chemical inspection laboratories are still at the level of data storage and work task arrangement, and the intelligence level of hazardous chemical experimental inspection information management is low, it is inconvenient for users and managers to obtain experimental data, and it is impossible to monitor the laboratory environment and experimental process in real time, resulting in low overall safety of the experiment.

[0005] To achieve the above objectives, the present invention provides the following technical solutions: a digital laboratory hazardous chemicals inspection information management system, comprising:

[0006] The clean workbench is mainly used to place and keep ready the instruments and equipment required for experiments and inspections, and is also used for the operation of the overall experimental inspection process.

[0007] The instruments and equipment required for experiments and inspections are mainly used for the storage of hazardous chemicals during the experimental process and the detection, collection, and record uploading of component information during experimental inspections.

[0008] RFID tag system, used for experimental verification of RFID tag data interaction and real-time data upload;

[0009] The hazardous chemicals information collection module is used to collect hazardous chemicals information, including hazardous chemicals name information, hazardous chemicals composition information and experimental test results information.

[0010] The experimental inspection operator information collection module is used to collect experimental inspection operator information, and the experimental inspection operator information includes the experimental inspection operator identity information and the experimental inspection operator qualification information.

[0011] The data analysis and collation module is mainly used to process experimental test specimens to generate test results and associate the test results with the identity information of the experimental test personnel and the identity information of the experimental test personnel who operate the test equipment.

[0012] The data information storage module is connected to the hazardous chemicals information collection module, the laboratory inspection operator information collection module, the data analysis and collation module and the inspection equipment, and is used to store feature codes, hazardous chemicals laboratory inspection information, laboratory inspection personnel information and inspection result information.

[0013] The experimental inspection report generation module stores an inspection report form module, which is used to retrieve the inspection results from the data information storage module, and fill the experimental inspection personnel identity information and hazardous chemicals information associated with the inspection results into the inspection report form module to generate an inspection report.

[0014] Preferably, the cloud server and the local server, the local server, can respectively interact with the hazardous chemicals information collection module, the laboratory inspection operator information collection module, the data analysis and collation module and the inspection equipment and process the data uploaded by them; the cloud server and the local server form a communication connection; the mobile terminal and the cloud server form a wireless communication connection.

[0015] Preferably, the environmental data acquisition module is used to collect environmental data information in the laboratory, and the environmental data information includes temperature information, light intensity, humidity information, air quality and air component concentration information. The environmental data acquisition module is communicatively connected to the storage server.

[0016] Preferably, the video monitoring module of the experimental inspection equipment is used to collect video image information of personnel operating the inspection equipment, and at the same time, to shoot the overall experimental inspection process inside the laboratory in real time and upload video data. The inspection equipment video acquisition module is connected to the supervision server.

[0017] Preferably, the environmental data acquisition module includes a sensor, and the sensor includes one or more of a temperature sensor, a humidity sensor, an optical sensor, and an air composition detection sensor.

[0018] Compared with the prior art, the present invention has the following beneficial effects:

[0019] The present invention automatically collects and matches experimental data and experimenters, automatically analyzes and processes the experimental data, and can automatically generate experimental inspection reports, which can be automatically uploaded to the cloud server for storage, making the overall intelligence level of experimental inspection higher, greatly improving the data accuracy and reliability of experimental inspection, and effectively improving the overall efficiency of experimental inspection.

[0020] The present invention can monitor the entire experimental process of the experimenter and the overall environmental data of the laboratory. By performing real-time monitoring of the internal ambient temperature and air component concentration of the laboratory, it can effectively ensure that abnormal situations in the experimental process can be discovered in time, so that the experimenter can be quickly reminded to take corresponding measures, which can effectively reduce the hidden dangers of dangerous accidents and further improve the overall safety and reliability of experimental inspections. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1This is a flowchart of the hazardous chemicals experimental inspection system of the present invention.

[0022] Figure 2 This is a schematic block diagram of the experimental system structure of the present invention. DETAILED DESCRIPTION

[0023] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0024] See also Figure 1 , a digital laboratory hazardous chemicals inspection information management system, including:

[0025] The clean workbench is mainly used to place and keep ready the instruments and equipment required for experiments and inspections. It is also used for the operation of the overall process of experimental inspections. It can maintain the experimental environment on the table through clean and disinfection treatment to avoid the presence of impurities, bacteria and other factors that interfere with the experimental inspection operations, resulting in large errors in the experimental inspection data and affecting the overall accuracy and reliability of the experimental inspection.

[0026] The instruments and equipment required for experiments and inspections are mainly used for the storage of hazardous chemicals during the experiment and the detection, collection and record uploading of component information during experimental inspections. They mainly include atomizing spray placement equipment and experimental inspection data detection instruments, as well as corresponding inspection software systems.

[0027] The radio frequency tag system is used for data interaction and real-time data upload of experimental inspection radio frequency tags. It can match labels with hazardous chemical experimental information to avoid confusion or information missing, and upload and store the label corresponding information data.

[0028] The hazardous chemicals information collection module is used to collect hazardous chemicals information, including hazardous chemicals name information, hazardous chemicals composition information and experimental test results information.

[0029] The experimental inspection operator information collection module is used to collect experimental inspection operator information, and the experimental inspection operator information includes the experimental inspection operator identity information and the experimental inspection operator qualification information.

[0030] The data analysis and collation module is mainly used to process experimental test specimens to generate test results and associate the test results with the identity information of the experimental test personnel and the identity information of the experimental test personnel who operate the test equipment. It can automatically analyze and process the experimental test results, and at the same time associate and match the personnel information and experimental information so that the experimental data can be accurately matched one by one, thereby ensuring the division of responsibilities and standardized operations of the experiment, and avoiding the inability to query and match in the later stage.

[0031] The data information storage module is connected to the hazardous chemicals information collection module, the laboratory inspection operator information collection module, the data analysis and collation module and the inspection equipment. It is used to store characteristic codes, hazardous chemicals laboratory inspection information, laboratory inspection personnel information and inspection result information. It can store data information in real time, which is convenient for real-time retrieval and viewing at a later time to avoid data loss.

[0032] The experimental inspection report generation module stores an inspection report form module, which is used to retrieve the inspection results from the data information storage module, and fill the experimental inspection personnel identity information and hazardous chemicals information associated with the inspection results into the inspection report form module to generate an inspection report, replacing manual data recording and organization, improving the accuracy of data reports, and greatly improving the overall efficiency of experimental inspections.

[0033] In this embodiment: the cloud server and the local server, the local server can respectively interact with the hazardous chemicals information collection module, the laboratory inspection operator information collection module, the data analysis and collation module and the inspection equipment and process the data uploaded by them; the cloud server and the local server form a communication connection; the mobile terminal and the cloud server form a wireless communication connection, which can upload and receive laboratory inspection data in real time, realize multi-party storage and real-time sharing, and improve the overall immediacy and sharing of the laboratory inspection.

[0034] In this embodiment: the environmental data acquisition module is used to collect environmental data information in the laboratory. The environmental data information includes temperature information, light intensity, humidity information, air quality and air component concentration information. The environmental data acquisition module is connected to the storage server for communication, and can upload and store environmental monitoring data in real time to avoid the loss of data in the later stage and difficulty in query, thereby further improving the overall intelligence level of experimental inspection.

[0035] In this embodiment: the video monitoring module of the experimental inspection equipment is used to collect video image information of the personnel operating the inspection equipment, and at the same time, the overall experimental inspection process inside the laboratory is recorded in real time and the video data is uploaded. The inspection equipment video acquisition module is connected to the supervision server and can perform overall shooting and tracking of the experimental links, so as to perform real-time monitoring specifications to ensure compliance with the experimental operation. At the same time, when an accident occurs, the video can be retrieved and viewed in real time to trace the source, so as to quickly determine the cause of the accident, and then learn from it to avoid the recurrence of dangerous accidents.

[0036] In this embodiment: the environmental data acquisition module includes sensors, and the sensors include one or more of temperature sensors, humidity sensors, optical sensors, and air composition detection sensors. The temperature, humidity, luminosity, air composition, and concentration of the internal environment of the laboratory can be monitored in real time. When the internal temperature, humidity, and air quality are evaluated, when the temperature, humidity, and air quality exceed the warning value, the supervisory personnel and laboratory test personnel can be reminded in time, so that corresponding measures can be taken in time or personnel can be evacuated as soon as possible, avoiding dangerous accidents in the laboratory due to untimely discovery, which endangers the safety of laboratory test personnel and causes serious economic losses.

[0037] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A digital laboratory hazardous chemicals inspection information management system, characterized by: include: The clean workbench is mainly used to place and reserve the instruments and equipment required for experiments and inspections, and is also used for the operation of the overall process of experiments and inspections; The instruments and equipment required for experiments and inspections are mainly used for the storage of hazardous chemicals during the experiment and the detection, collection, and recording of component information during the experiment; RFID tag system, used for experimental verification of RFID tag data interaction and real-time data upload; Hazardous chemicals information collection module, used to collect hazardous chemicals information, including hazardous chemicals name information, hazardous chemicals composition information and laboratory test results information; The experimental test operator information collection module is used to collect the experimental test operator information, which includes the experimental test operator identity information and experimental test operator qualification information; The data analysis and collation module is mainly used to process the experimental test specimens to generate test results and associate the test results with the identity information of the experimental test personnel and the identity information of the experimental test personnel who operate the test equipment; The data information storage module is connected to the hazardous chemicals information collection module, the laboratory inspection operator information collection module, the data analysis and collation module, and the inspection equipment, and is used to store feature codes, hazardous chemicals laboratory inspection information, laboratory inspection operator information, and inspection result information; The experimental inspection report generation module stores an inspection report form module, which is used to retrieve the inspection results from the data information storage module, and fill the experimental inspection personnel identity information and hazardous chemicals information associated with the inspection results into the inspection report form module to generate an inspection report.

2. The digital laboratory hazardous chemicals inspection information management system according to claim 1 is characterized by: Also includes: The cloud server and the local server, the local server, can respectively interact with the hazardous chemicals information collection module, the laboratory inspection operator information collection module, the data analysis and collation module and the inspection equipment and process the data uploaded by them; the cloud server and the local server form a communication connection; the mobile terminal and the cloud server form a wireless communication connection.

3. The digital laboratory hazardous chemicals inspection information management system according to claim 1 is characterized by: Also includes: The environmental data acquisition module is used to collect environmental data information in the laboratory. The environmental data information includes temperature information, light intensity, humidity information, air quality and air component concentration information. The environmental data acquisition module is communicated with the storage server.

4. The digital laboratory hazardous chemicals inspection information management system according to claim 1 is characterized by: Also includes: The video monitoring module of the experimental inspection equipment is used to collect video image information of personnel operating the inspection equipment, and at the same time, to shoot the overall experimental inspection process inside the laboratory in real time and upload video data to record it. The inspection equipment video acquisition module is connected to the supervision server.

5. The digital laboratory hazardous chemicals inspection information management system according to claim 1 is characterized by: The environmental data acquisition module includes a sensor, which includes one or more of a temperature sensor, a humidity sensor, an optical sensor, and an air component detection sensor.