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REACTORS COOLING HEATING

Temperature Control Range

-120℃~250℃

Material Temp Control Accuracy

±0.1℃

  • Users can obtain a closed and repeatable temperature control within a wide temperature range, which can achieve temperature control from -120 ° C to 300 ° C;
  • Avoiding the need for replacement and jacket maintenance of traditional equipment and facilities; The smaller fluid volume also ensures fast response of the control circuit and minimal thermal reaction delay;
  • Built in electric heating and thermal oil auxiliary system, which can automatically turn on the auxiliary heating system according to needs, reducing steam usage pressure;
  • Energy savings can be achieved by accurately matching the heat requirements through rapid operation;
  • By accurately and quickly calculating and controlling the temperature of the entire reaction process, rapid response control can be achieved for exothermic and endothermic reactions that occur throughout the entire reaction process;
  • Reserved with standardized interfaces, cold and heat source heat exchange modules can be added according to actual needs;
  • The temperature of the reaction process and the temperature of the single fluid can be selectively controlled, and the temperature difference between the reaction process temperature and the temperature of the heat conducting single fluid can be set and controlled;

ZLF series-Direct flow control flow parameters

SR series – Using secondary heat exchange

  • The method of changing the control setting value can quickly respond to system lag during the process and achieve smaller system overshoot. The control consists of two sets of PID (each set of PID is variable) control loops, which are called the main loop and the slave loop. The control output of the main loop serves as the set value of the slave loop. By controlling the temperature gradient in this way, the temperature control accuracy of the system is ensured. (General anti lag cascade control)
  • A specially designed lag estimator (model free self built algorithm) generates a dynamic signal yc (t) as a feedback signal, replacing the process variable y (t). Generate an e (t) signal to the controller to predict that there is no significant lag in the control effect.
  • Through three-point sampling (material temperature point, temperature control system outlet temperature, temperature control system inlet temperature), combined with self created model free self building algorithm and general anti lag cascade algorithm, there is no built-in expansion tank.

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ModelTemperature RangeHeating Power HMaterial Temp AccuracyPower Supply H
ZLF Series-45℃~250℃25kW~80kW±1℃27.3kW~90.5kW
SR Series-120℃~250℃25kW~80kW±1℃27.3kW~90.5kW

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Temperature Control :-120℃~350℃

Temperature Control: -40℃~100℃

Temperature Control: -85℃~250℃

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