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Electrically heated reaction kettle

Electrically heated reaction kettle is a kind of reaction vessel heated by electric heating element, which is mainly used for all kinds of chemical reactions, synthesis, mixing, dissolving and other processes. It usually consists of kettle body, lid, stirrer, jacket, support and transmission device, shaft sealing device and other parts, with rapid heating, high temperature, corrosion resistance, hygiene and environmental protection, easy to use and so on. Electrically heated reaction kettle is widely used in pharmaceutical, chemical, food and other industries, is an important equipment to achieve chemical reaction and material mixing.

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Characteristics of Electrically Heated Reaction Kettle

1.Rapid heating: the electrically heated kettle heats the heat-conducting oil inside the jacket through the electric heating rod, so that the temperature of the heat-conducting oil rises rapidly to the required temperature.
2.High temperature resistance: the kettle body is generally made of stainless steel, which can withstand higher working pressure and material impact, and at the same time, it has better heat resistance and wider working temperature range.
3.Corrosion resistance: Stainless steel material will not undergo oxidation and other chemical reactions at higher temperatures, and has better corrosion resistance.
4.Hygiene and environmental protection: electrically heated reactor does not need boiler automatic heating, no environmental pollution, and easy to clean, in line with health standards.
5.Easy to use: the electric heating reactor is easy to operate, and the electric heating rod can be controlled by the temperature measuring and controlling instrument to make it power-off and constant temperature, so as to realise the precise control of temperature.

Working Principle of Electrically Heated Reaction Kettle

The working principle of electrically heated reaction kettle is to inject constant temperature hot solvent or cooling media through the sandwich of the reaction kettle to carry out constant temperature heating or cooling for the materials in the reaction kettle. At the same time, the reaction can be stirred under atmospheric pressure or negative pressure according to the requirements. The materials are reacted in the reaction kettle and the evaporation and reflux of the reaction solution are controlled. After the reaction is finished, the materials are released from the discharge port at the bottom of the kettle.

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