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EN Element 13300 Element 12300 DE

Turbulent Thin Film Evaporator mod. VAPOUR-JET VJ, for very high viscosity and concentration products, premium quality puree.

Turbulent Thin Film Evaporator mod. VAPOUR-JET VJ, for very high viscosity and concentration products, premium quality puree.

Turbulent Thin Film Evaporator mod. VAPOUR-JET VJ, for very high viscosity and concentration products, premium quality puree. Characteristics:

a – VJ Turbulent Thin Film Evaporators are the best choice when the final requested viscosity is higher than limits reachable with any other type of evaporators and also not limited to the presence of suspended solids.

The VAPOUR-JET evaporator can be also assembled as finisher in a multi-effect or multi-stage evaporators, carrying out the more important phase of concentration process, where viscosity reaches the highest levels.

b – when evaporation should be performed in very short time to save organoleptic properties of products or in order to respect fixed time of technological process.
Capacity of the plant is variable from 30 % to 100 % depending on processed products.
The possibility to function under vacuum with temperatures of 38-40 °C, even lower in case of special applications,
Product Residence time is normally maintained between 20 e 70 seconds.

ADVANTAGES

  • Capacity of the plant is variable from 30 % to 100 % depending on processed products.
    The possibility to function under vacuum with temperatures of 38-40 °C, even lower in case of special applications,
    Product Residence time is normally maintained between 20 e 70 seconds
  • functioning conditions strictly controlled by automatic equipment that guarantees regularity of all parameters featuring the process
  • Very high concentration limits due to peculiar characteristics of turbulent thin film system, that permits to reach the highest possible values of viscosity and consistency.
  • Long run autonomy without necessity of washing operations thanks to the self-cleaning effect of product high velocity on the heat exchanging surface.

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