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FAQ

  • Q What are the applications of glove boxes in the field of new energy?

    A The application of glove boxes in the field of new energy technology lies in the research and development stage of battery materials. Glove boxes can provide harsh experimental environments such as oxygen free and water free, ensuring the purity and stability of materials. During the research phase, glove boxes can be used for the development and experimentation of new energy batteries. In the production process, glove boxes can be used for battery assembly and packaging, effectively preventing impurity contamination. During the testing phase, the glove box also plays a crucial role in simulating different usage environments and conducting a comprehensive evaluation of battery performance.
  • Q Does the glove box support customization of gloves?

    A Yes, glove boxes usually support customization of gloves according to the specific needs of customers. Different industries, experiments, or production processes have varying requirements for the material, size, thickness, and other properties of gloves. To meet these diverse needs, glove box manufacturers offer customized services that can tailor suitable gloves to customers based on their provided parameters or requirements. For example, in the nuclear field, glove boxes need to be equipped with lead or tungsten gloves to avoid hand radiation; In the field of lithium metal batteries, glove boxes need to be paired with butyl rubber gloves because butyl rubber gloves have good sealing lines. Through customized services, customers can obtain gloves that better meet their actual usage needs, thereby improving the efficiency and safety of experiments or production.
  • Q How is the oxygen concentration in the glove box effectively controlled?

    A The oxygen concentration inside the glove box is precisely controlled through a series of technical means. Firstly, the oxygen concentration can be diluted to the required level for experimentation or production by injecting nitrogen or other inert working gases. Secondly, the glove box is also equipped with a gas circulation system inside, which can continuously circulate the gas inside the glove box and adsorb oxygen in the gas through a purification column to reduce the oxygen content inside the box. Real time monitoring through an oxygen analyzer can promptly determine the oxygen concentration inside the box and make automatic or manual adjustments. Through these measures, the oxygen concentration inside the glove box can be stably and reliably controlled to meet various experimental and production needs.
  • Q How to maintain the cleanliness inside the glove box?

    A The key to maintaining high cleanliness inside the glove box lies in its built-in high-efficiency filtration system. The system uses precision filtering materials to effectively remove impurities such as dust particles and microorganisms from the gas, ensuring the cleanliness of the internal environment of the glove box. In addition, in order to maintain this clean state, the operator needs to strictly follow the operating procedures when using the glove box, such as wearing clean gloves and performing fine operations. Through these measures, the interior of the glove box can be kept clean for a long time, providing a stable and reliable environmental guarantee for scientific research experiments or industrial production.
  • Q What are the applications of glove boxes in the field of biomedicine?

    A Glove boxes can be used in the field of biomedicine for the production of sterile drugs, such as sterile filling of vaccines or biologics, as well as research in cell culture, genetic engineering, molecular biology, and other fields. The sterile environment created effectively prevents the entry of microorganisms and contamination by impurities, ensuring the accuracy and reliability of experiments. In addition, the glove box is also suitable for specific scenarios such as anaerobic bacterial culture and low oxygen cell culture, providing the required anaerobic or low oxygen environment. These applications ensure the safety and effectiveness of biomedical research and production processes.
  • Q Does the glove box support remote monitoring?

    A The IoT glove box supports remote monitoring function. Users can view the working status of the glove box in real-time through the network, enabling remote operation and monitoring. For example, the Mikrouna glove box remote control software allows users to input their account and password through the APP to monitor the glove box equipment in real-time online, achieving synchronization between the remote control interface and the on-site control interface, and updating interface data in real-time.
  • Q Does the glove box support automated operation?

    A The glove box can support automated operations. The automation operation of the glove box includes automatic gas filling and discharging, temperature control, etc., achieved through the integration of advanced control systems. For example, by using PLC automatic control technology, it is possible to accurately regulate parameters such as pressure, temperature, and gas flow inside the glove box, and achieve automation and intelligence in the vapor deposition process. In addition, some glove boxes also have the ability to integrate with automated equipment such as robotic arms and conveyor belts, reducing manual intervention, lowering operational errors and labor intensity, and improving production efficiency.
  • Q What are the size specifications for glove boxes?

    A The size specifications of glove boxes are diverse, with internal dimensions ranging from 50 centimeters to 120 centimeters or more in length, and corresponding changes in width and height to meet different application needs. For example, the size of a single station glove box is 1220 × 750 × 900 millimeters, while the size of an eight station glove box can reach 4880 × 1000 × 900 millimeters. This diversity allows glove boxes to be customized according to the specific needs of users, whether it is precision research in the laboratory or large-scale applications in industrial production, and suitable sizes can be selected to improve work efficiency and experimental success rate.
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