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  • R&D Analysis Fume Hood

    Whether countertop fume hood or full-size fume hood, it can be used for many years thanks to both the central ventilation system and the acid-resistant polypropylene fans on it.

    You can work comfortably in the fume hood thanks to the laboratory type water fitting, laboratory type gas fitting and other nitrogen, nitrogen and air taps and their external controls. DIN-EN 12920

    The fume hood body is installed on legs mounted on galvanized steel box profiles with precise ground settings. The body structure is formed by first cleaning 1.2 mm thick galvanized steel, then painting it with 60-75 micron thick epoxy paint and baking it at 200 degrees.

    It is preferred that the countertop materials used in fume hoods have a pediment structure against situations such as spillage and overflow. Anti-acid compact laminate (anti acid hpl) such as Glab TRESPA® TOPLAB®PLUS brand can be preferred as countertop. Additionally, industrial ceramic (stoneware) against intense acids. Monolite Italy, Keraplan Italy, Systemceram Germany) or stainless steel can also be preferred for liquid use only.

    In laboratories where paint solvents will be used, the interior walls of fume hoods can be covered with anti-acid compact laminate or polypropylene sheets of different thicknesses. Polypropylene coatings of 3 mm, 5 mm, 10 mm, 15 mm thickness are recommended to prevent the internal coatings of the fume hood from sagging and deforming even after many years.

    Fume cupboards can be produced according to EN 14175 standards. Thanks to the warning system on the device, as required by EN 14175 standards, it gives an audible and visual alarm when the air flow rate is low.

    Fume cupboard safety glass is 3+3 tempered glass with a total thickness of 6 mm (what is tempered glass? Tempering is the name given to the glass being brought to temperatures between 600°C - 650°C with special heating systems and cooled suddenly with air. As the temperature decreases, the surface hardens. As first the outer parts and then the inner parts cool down, pressure occurs on the surfaces of the glass and tensile stresses occur on the inner part of the glass. After this application, the glass can withstand 300°C thermal shock.)

    R&D Analysis Fume Hood models can be produced in different sizes according to needs, although the common models are 120 cm wide, 150 cm wide and 180 cm wide. Fume hoods of these sizes, called standard fume hoods, are generally 1050 m³/hour, 1350 m³/hour and 2300 m³/hour. In addition, external fans, called snail type, can be fired at different capacities such as 2500 m³/hour, 3000 m³/hour, 3600 m³/hour, 4500 m³/hour, 6000 m³/hour.

    External carbon filters can be placed at the chimney discharge points, or internal chimney filters can be used by leaving an outlet of suitable diameter for your company's filtering systems.

    You can use the products without any problems with the Arge Analysis Fume Hood, which is compatible with chemical gas washing systems and Scrubber systems.

    What is a fume hood?

    Its main purpose is to protect the user by evacuating acid vapor, toxic smoke, moisture and bad odor resulting from mixtures, experiments, heating or tests carried out in the laboratory. It is the main product of every laboratory and may have different features and sizes depending on the place where it will be used.

    Why is R&D Analysis Fume Hood important?

    Laboratory fume hoods are important for performing chemical and biological processes safely and effectively in laboratories. Here are some reasons why laboratory fume hoods are important:

    1. Security: Laboratory fume hoods ensure that hazardous gases or vapors are removed from the work area when working with chemical or biological substances. This prevents laboratory workers from inhaling harmful gases and reduces the risk of explosion or fire.

    2. Environmental Protection: Laboratory fume hoods prevent harmful chemicals or biological materials from spreading to the outside. This prevents laboratory work from harming the environment and ensures the safety of the working environment.

    3. Cleaning and Hygiene: Laboratory fume hoods keep the work area clean and reduce the risk of contamination. Especially when working with biological materials, it is important to ensure hygienic conditions and fume hoods help in this regard.

    4. Controllable Working Environment: Laboratory fume hoods are designed to control air flow. This allows lab workers to organize their experiments the way they want. For example, fume hoods can be used to control the accumulation or dissipation of gases during an experiment.

    5. Productivity: Laboratory fume hoods are designed to clean and regulate the air of the work area. This allows laboratory workers to work more efficiently because less time is spent cleaning or dispersing harmful substances.

    As a result, laboratory fume hoods are vital to providing a safe, efficient and controlled working environment in laboratories. Therefore, it is an important tool in carrying out laboratory operations.

    Please contact us for detailed information, technical specifications and offers.

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