Advanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor Industry

Customization: Available
After-sales Service: 3year
Warranty: 18months

Products Details

Basic Info.

Model NO.
vnor service
Multi-Effect Evaporator
3+1
Principle
Regenerative Heat Exchanger
Structure Material
Metal Material
Application
Vaporizer, Heater, Condenser
Recuperative Heat Exchanger Type
Shell and Tube Heat Exchanger
Heat Transfer Surface
Tubular Heat Exchanger
Transport Package
Naked
Trademark
vnor
Origin
Wenzhou
HS Code
8419899090
Production Capacity
80set

Product Description

Forced Circulation evaporator
These systems can be either single or multiple effects and the vapor re-compression concept (either thermal or mechanical) is often applied. Usually, they operate from low vacuum to atmosphere pressure.
As a rule, these units are used for high evaporation rates and when crystal size is not of the utmost importance or if crystal grows at a fair rate.
Almost any material of construction can be considered for the fabrication of these evaporator

Typical products are:
- NaCL - KCL- NH4CL- BaCL2-CaCL2-MgCL2 etc
- Na2SO4-K2 SO4-(NH4)2SO4- ZnSO4-MnSO4-MgSO4-NiSO4 etc
-Na2SO3-Na2S -Na2CO3-K2SO3-NaAC-etc

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Advanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor IndustryAdvanced Control System for Optimum Performance of Multiple-Effect Evaporator in Semiconductor Industry

Model
Single-effects
Double-effects
Triple-effects
Four-effect
Water evaporated Kg/h
1000
1000
1000
1000
Steam Pressure Mpa
≥0.4
≥0.4
≥0.4
≥0.4
Steam cost Kg/h
800
500
330
290
Cooling water cost(32 inlet 40 outlet) T/h
90
40
27
18

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