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    No. 4 Zhonglian Road, Yancheng City, Jiangsu Province

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stainless steel reactor

NegotiableUpdate on 05/06
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Overview

A stainless steel reaction kettle is used to mix reaction solvents, and the inner layer can be heated or cooled at a constant temperature through the circulation of cold and heat sources (freezing liquid, water, thermal oil). Distillation reflux can control the reaction solvent. The stainless steel reaction kettle is an ideal experimental equipment for modern synthetic chemistry, biomedicine, and new material preparation.

Product Details

stainless steel reactorIt is a commonly used industrial equipment, mainly used as a pressure vessel for mixing, blending, and reaction in production processes. It is suitable for fields such as chemical engineering, food, medicine, resin synthesis, coatings, inks, and plant protection agents.

stainless steel reactorComposed of pot body, pot cover, mixer, jacket, support and transmission device, shaft seal device, etc., the material and opening can be customized according to the user's process requirements

The working principle of a reaction kettle is mainly to use a stirring device to mix the reactants evenly and heat or cool them to control the reaction rate and temperature

In terms of application, reaction vessels are widely used as pressure vessels for processes such as reactions, evaporation, synthesis, polymerization, saponification, sulfonation, chlorination, nitration, etc. in chemical, food, coating, hot melt adhesive, silicone gel, paint, pharmaceutical, and petrochemical production, such as reactors, reaction vessels, decomposition vessels, polymerization vessels, etc

During use, reaction enzymes are usually placed in the inner layer of the reaction vessel to complete the subsequent stirring reaction, which requires the use of a reaction vessel and stirrer. The interlayer utilizes different cold and heat sources for heating and cooling reactions. By introducing temperature controlled enzymes or refrigeration media through the reactor compartment, the raw materials inside the reactor are heated or cooled at a controlled temperature. At the same time, mixing reactions can be carried out under normal or negative pressure conditions according to application requirements. The raw materials undergo reaction in the reactor, and the evaporation and reflux of the reaction solvent are adjusted. After the reaction is complete, the raw materials are released from the discharge port at the bottom of the reactor, making it easy and convenient to use.

During use, reaction enzymes are usually placed in the inner layer of the reaction vessel to complete the subsequent stirring reaction, which requires the use of a reaction vessel and stirrer. The interlayer utilizes different cold and heat sources for heating and cooling reactions. By introducing temperature controlled enzymes or refrigeration media through the reactor compartment, the raw materials inside the reactor are heated or cooled at a controlled temperature. At the same time, mixing reactions can be carried out under normal or negative pressure conditions according to application requirements. The raw materials undergo reaction in the reactor, and the evaporation and reflux of the reaction solvent are adjusted. After the reaction is complete, the raw materials are released from the discharge port at the bottom of the reactor, making it easy and convenient to use.