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Low Temperature Heat Pump Evaporator

Crystallizer

Low Temperature Heat Pump Evaporator

Model Nr.: V-CT-SF-10000

Evaporative Power: 440 L/h

Installed Power: 110 kW

Consumption:190-210 w/l

Dimension:10.0 x 4.4 x 3.8 m

    1, low temperature heat pump evaporator under the vacuum negative pressure to reduce the boiling point to a certain extent, so that the original liquid after heating in more than 30 degrees and then boiling evaporation, evaporation of steam through the condensation system condensed into liquid water through the drainage tank discharge, and then according to the specific gravity of the water concentration reduction water rate can reach 95%. 
    2, the heat pump evaporator uses steam recompression or refrigeration heat pump technology to achieve thermal cycle and balance, this energy-saving technology compared with electric heating, can introduce 80% of the electrical energy, which is based on the principles of physics, the same amount of material from the liquid into the gas process, the need for quantitative absorption of heat energy.
     3, the material can be changed from gaseous to liquid, and can release the same amount of heat energy. Using this principle, when the device is used to treat waste water, the heat energy required for evaporating waste water is released after steam condensation and condensate cooling.
    Lower temperature, lower energy consumption and waste. Lower scalling, easier cleaning and maintenance. Integrated design, lower occupation, Plug&Play. Easier installation and less time.

    Forced circulation evaporation crystallizer adopts forced circulation process for evaporating crystallization of materials. When evaporating crystallization, the forced circulation pump is used for evaporating crystallization, and the heated or cooled materials re-enter the crystallization chamber, so the cycle is continuous, which belongs to the slurry circulation type. It can be operated continuously or intermittently.

    The forced circulation of the evaporative crystallizer, whose internal structure enables the effective and rapid separation of the crystal and the clear liquid. The whole process is evaporation under vacuum conditions, the temperature is relatively low, the evaporation speed is fast, the evaporation energy consumption is low, and the evaporation concentration is high.
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