Collaborative Temperature and Pressure Control Technology for Reaction Equipment in the Pharmaceutical Industry
In pharmaceutical production, many chemical reactions have strict requirements on the collaborative control of temperature and pressure, and the precise control technology of reaction equipment is the core of ensuring drug quality. The latest industry technical achievements show that the adoption of a temperature-pressure collaborative control algorithm can achieve ideal reaction condition control. This technology collects temperature and pressure data in real time through platinum resistance temperature sensors and pressure transmitters installed in the reaction kettle. After analysis by the control system, it automatically adjusts the flow rate of jacket heating/cooling medium and the stirring speed. For example, in the antibiotic synthesis reaction, when the reaction temperature rises by 0.5℃, the system can simultaneously reduce the flow rate of the heating medium and increase the stirring speed to ensure that the pressure is stable within the set range of ±0.02MPa. In addition, the equipment is equipped with a double safety protection system. When the temperature or pressure exceeds the safety threshold, it can immediately start the emergency cooling and pressure relief devices to ensure the safety and reliability of the reaction process.
Oct 30,2025
In pharmaceutical production, many chemical reactions have strict requirements on the collaborative control of temperature and pressure, and the precise control technology of reaction equipment is the core of ensuring drug quality. The latest industry technical achievements show that the adoption of a temperature-pressure collaborative control algorithm can achieve ideal reaction condition control. This technology collects temperature and pressure data in real time through platinum resistance temperature sensors and pressure transmitters installed in the reaction kettle. After analysis by the control system, it automatically adjusts the flow rate of jacket heating/cooling medium and the stirring speed. For example, in the antibiotic synthesis reaction, when the reaction temperature rises by 0.5℃, the system can simultaneously reduce the flow rate of the heating medium and increase the stirring speed to ensure that the pressure is stable within the set range of ±0.02MPa. In addition, the equipment is equipped with a double safety protection system. When the temperature or pressure exceeds the safety threshold, it can immediately start the emergency cooling and pressure relief devices to ensure the safety and reliability of the reaction process.
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