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LNEYA TCU temperature control system can achieve dynamic temperature control of -120 ℃ to 300 ℃. This system uses the existing thermal energy (such as steam, cooling water and ultra-low temperature liquids-the "primary system") to integrate the infrastructure to control the process Equipment temperature in a single fluid system or secondary circuit. This completes that only one heat-conducting liquid flows into the jacket of the reaction vessel (rather than direct steam, cooling water or ultra-low temperature liquid).
 
The temperature of the whole reaction process is controlled by calculation. Through three-point sampling (material temperature point, temperature of the temperature control system outlet, temperature of the temperature control system inlet), and our own model-free self-built tree algorithm and general anti-lag cascade algorithm, we solve the problem of large temperature lag in pharmaceutical and chemical control.


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