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FAQ

  • Q How to deal with the large amount of dust generated in the glove box during the experiment?

    A When dust is generated in the glove box during the experiment, it can be treated by using internal vacuum equipment or regularly replacing and cleaning the dust removal filter. In addition, for experiments that generate a lot of dust during the process, an efficient dust removal system can be integrated into the glove box to prevent dust from accumulating inside the glove box, effectively and timely removing the dust generated during the experiment and maintaining the ambient temperature inside the glove box.
  • Q What are the differences in design between different types of glove boxes?

    A There may be various obvious differences in the design of different types of glove boxes. For example, glove boxes may be classified into experimental, production, and other types based on their different uses, and they may have significant differences in size, structure, function, and other aspects. Experimental glove boxes are usually small and flexible, making it easy to perform various fine operations in the laboratory; Production glove boxes may be larger and more sturdy to meet the large-scale and high-efficiency demands in industrial production. In addition, different types of glove boxes may have different material selection, sealing methods, and operating interfaces to adapt to different application scenarios and operational needs. By finding suppliers with their own glove box production factories, they can customize glove boxes that are more suitable for their own needs.
  • Q How to effectively prevent the generation of pollutants in glove boxes?

    A
    To effectively prevent the generation of pollutants inside the glove box, the following measures can be taken:
    1.Firstly, ensure that the glove box has good sealing performance to prevent external pollutants from entering;
    2.Secondly, regularly clean and disinfect the glove box to remove any potential microorganisms and chemical residues;
    3. In addition, when using a glove box, avoid operations that may generate pollutants, such as vigorous stirring, grinding, etc;
    4. For samples or reagents that require long-term storage, ensure that their packaging is intact and avoid cross contamination with other items inside the glove box.
  • Q How long can the glove box last?

    A The service life of glove boxes mainly depends on their manufacturing quality, frequency of use, maintenance and upkeep, as well as the working environment they are in. Generally speaking, if the glove box is made of high-quality materials and is properly maintained and serviced during use, its service life can reach over ten years or even longer. However, if the glove box is frequently subjected to physical damage, chemical corrosion, or improper handling, its service life may be shortened.
  • Q How is the inert gas circulation in the glove box specifically achieved?

    A The circulation of inert gas in the glove box is achieved through a circulating fan and purification column. Purification columns generally contain two types of adsorbent materials: molecular sieves and copper catalysts. Molecular sieves are responsible for absorbing water, while copper catalysts react with oxygen to remove it from inert gases. The circulating fan continuously circulates the working gas between the glove box body and the purification column, thereby cleaning up oxygen and moisture and maintaining a stable atmosphere inside the glove box.
  • Q What areas of the glove box require maintenance and upkeep?

    A The maintenance of the glove box includes regular checks on the sealing of the glove box to ensure that there are no leakage points; Regularly check whether the detection data of the water oxygen analyzer is correct, and ensure that the atmosphere and environment inside the glove box meet the experimental requirements; Check and replace purification materials such as molecular sieves and activated carbon to maintain purification effectiveness; Check the wear and tear of gloves and replace them in a timely manner; And regularly inspect and maintain the circulating fan and other electrical components.
  • Q What are the design standards and material selection requirements for the transition compartment of glove boxes?

    A
    As an important component connecting the internal and external environment of the glove box, the design standards and material selection of the glove box transition compartment are crucial. Usually, the design of transition warehouses needs to meet the following requirements
    1: Sealing performance: The transition chamber should have good sealing performance to prevent cross contamination between the internal and external environments.
    2: Material selection: The material for the transition chamber should be corrosion-resistant, easy to clean, and pollution-free, such as stainless steel, aluminum alloy, etc. At the same time, the material should have a certain strength and stiffness to ensure the structural stability of the transition chamber.
    3: Design standards: The design of the transition chamber should comply with relevant standards and specifications, including size, shape, interface method, etc.
    In addition, the overall layout and usage requirements of the system should also be considered to ensure the practicality and convenience of the transition warehouse.
  • Q How to choose a glove box?

    A When choosing a glove box, key parameters to consider include size specifications, material selection, purification capacity, control system, safety performance, and special requirements. Specifically, it is necessary to clarify the length, width, and height dimensions of the glove box, select appropriate box materials, glove materials, and sealing materials, determine the water and oxygen content requirements and filtration accuracy, consider the needs of temperature control, humidity control, and pressure control, ensure safety features such as explosion prevention and fire prevention, and whether special equipment or remote monitoring functions need to be integrated.
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