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Ideal chemical reactor temperature control system
May 22, 2019

Temperature control in drug development and chemical experiments, as well as temperature control in small-scale experimental production and industrial production processes, require highly dynamic temperature control systems. When the chemical reactor is temperature-controlled, the heat of absorption and release in the chemical reaction must be compensated quickly and efficiently. When selecting the most suitable temperature control system, it is necessary to consider various conditions and influencing factors.

 

Most of the temperature control applications of chemical reactors involve stainless steel and glass reactors. The stainless steel reactor is more rugged and durable, while the glass reactor allows the user to observe the reaction process in the kettle. For glass reactors, there are a number of considerations that need to be considered for the safety of the application.

 

Chemical reactors typically have an internal chamber in which materials that require temperature control are placed. The internal cavity is surrounded by a jacket that can be passed through the heat transfer oil. The temperature control system is connected to the jacket of the reaction kettle. In order to control the temperature of the chemical reactor, the temperature control system continuously pumps the heat transfer oil into the jacket of the reactor through a circulation pump. The sudden change in temperature inside the reactor will be compensated by rapid heating and cooling of the temperature control device to achieve dynamic balance, and the heat transfer oil is heated and cooled in the temperature control device.

 

Choose a highly dynamic temperature control system for the chemical reactor, and many conditions and influencing factors need to be considered. Our goal is to find the most efficient and efficient temperature control method for the intended application while ensuring optimal functionality.

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