Used CANON / ANELVA EVP-52305 #293608891 for sale

Manufacturer
CANON / ANELVA
Model
EVP-52305
ID: 293608891
Vintage: 2007
Vapor deposition system Power supply: 208 V, 50/60 Hz, 17 A, Single phase 2007 vintage.
CANON / ANELVA EVP-52305 is a high-pressure, high-temperature and high-flow reactor developed by CANON Corporation. This reactor is designed to perform a range of chemical processing operations to produce wide variety of materials. It is widely used in industrial applications, such as the production of plastics, advanced semiconductor materials, and other specialty materials. The reactor generally consists of an enclosed reaction vessel with a fixed volume. It features an inlet for a reactant, or feedstock, and an outlet for the resulting products. A positive-displacement metering pump with a flow rate range of 0.1 to 20 liters per minute is connected to the feedstock inlet, allowing for precise control over the injection of the material. Temperature within the reaction vessel is adjustable from -20 to +250 Celsius. The pressure within the reactor is adjustable up to 20,000kPa. The reaction vessel is fabricated from a high-alloy steel material, providing excellent corrosion resistance and a longer service life. It also features a larger surface area, ensuring higher heat transfer efficiency. Internal components include baffles, which help to maintain good mixing inside the vessel by eliminating dead spots. There is also an outlet port for controlled release of products. CANON EVP-52305 features a powerful heating/cooling system with a wide temperature range, allowing for both exothermic and endothermic reactions to be carried out under precise and reproducible conditions. To ensure continuous process control, the reactor has an automatic safety system, which can detect possible critical events and shut down the system if necessary. ANELVA EVP-52305 is capable of producing materials with highly controlled properties. It can begin with reactive precursors and end with high-purity end-products. Furthermore, the reactor's high-pressure and high-temperature operating conditions allow it to efficiently produce products with higher molecular weights, thus increasing the molecular complexity of the material and resulting in better structural and functional properties.
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