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What is the principle of a single-layer glass reactor and a double-layer glass reactor different from steel-lined PTFE reactors?
Editor: Wuxi Panbo Anticorrosive Technology Co., Ltd. Time: 2017-10-26

What is the principle of a single-layer glass reactor and a double-layer glass reactor different from steel-lined PTFE reactors?

As a good chemical equipment, glass reactors are often used in inspection, biopharmaceuticals, and material synthesis. If they are distinguished according to their structures, there are different types of single-layer glass reactors and double-layer glass reactors. Products to choose from.

If you want to correct these two types of glass reactors, you can start to understand the working principle. For a single-layer glass reactor, it uses a silver film heating sheet to directly heat the reactor body to make the materials in the reactor Constant temperature heating and can be stirred.

In this way, the materials are reacted in the single-layer glass reactor, and the evaporation and reflux of the reaction solution can be controlled. After completion, the cover and motor part of the single-layer glass reactor are lifted mechanically, and the kettle body can be transformed 360 degrees. To facilitate material dumping and discharge, improve its convenience.

The structure is different with the addition of one layer. The double-layer glass reactor can not only carry out the stirring reaction at normal temperature, but also can realize the low-temperature reaction, negative pressure vacuum distillation reaction, concentration reaction, etc., and its application has been significantly expanded. It only needs to put the reaction solvent in the inner layer of the double-layer glass reaction kettle, and the stirring reaction can be performed; its interlayer can be heated or cooled by circulating cold or heat source, so that the materials in the reaction kettle can be heated or cooled at a constant temperature. .

At the same time, the double-layer glass reactor can complete the reaction under normal or negative pressure on the premise of strictly operating requirements. Due to its special structure, the evaporation and reflux of the solution in the reaction kettle are avoided. After the reaction is completed, the materials can be discharged from the outlet of the bottom of the kettle.

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