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Application characteristics of stainless steel high pressure reactor

Clicks622Time:2020-07-28
Application characteristics of stainless steel high pressure reactor
Stainless steel high pressure reactor is a pressure vessel that is widely used in petroleum, chemical, rubber, pesticide, dye, medicine, food and other industries to carry out vulcanization, nitrification, hydrogenation, alkylation, polymerization, condensation and other processes.
Common reactors include stainless steel reactors, glass-lined reactors, hydrothermal reactors, double-sided glass reactors, magnetic stirring reactors, steam reactors, electric heating reactors, etc. Of course, stainless steel reactors are the most used and practical ones. The stainless steel reactor is composed of a kettle body, a kettle cover, a jacket, a stirrer, a transmission device, a shaft sealing device, and a support. The materials generally include carbon-manganese steel, stainless steel, zirconium, nickel-based (Hastelloy, Monel) alloy and other composite materials; according to the manufacturing structure of the reactor, it can be divided into open-type flat-lid reactor and open-type butt-welded flange type Three types of reactor and closed reactor
The stainless steel high-pressure reactor has the advantages of rapid heating, high temperature resistance, corrosion resistance, sanitation, no environmental pollution, no need for automatic boiler heating, and convenient use. And it is widely used in the research of production users and various scientific research experimental projects such as petroleum, chemical, rubber, pesticide, dye, medicine, food, etc., to complete hydrolysis, neutralization, crystallization, distillation, evaporation, storage, hydrogenation, and hydrocarbon Containers for chemical, polymerization, condensation, heating mixing, constant temperature reaction and other technological processes.
Features of the stainless steel high-pressure reactor: the inner surface is mirror-polished to ensure that there are no sanitary dead corners. The fully enclosed design ensures that the material is always in a sterile state. The outer surface can be 

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