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Carbonization of materials in stainless steel reactor due to heat

Stainless steel reactor is more and more widely used. In order to prevent solid reaction materials from precipitating to the bottom of stainless steel reactor, a new stainless steel reactor came into being. Based on the basic design and heating mode of the original stainless steel reactor, some adjustments have been made to the bottom of the stainless steel reactor.
It is caused by the precipitation of solid reaction materials to the bottom of stainless steel reaction vessel. The main solution is to avoid precipitation even without mixing or stirring. This can be achieved by adding a stainless steel reactor bottom, which is slightly higher than the actual bottom, leaving a gap of 3-10 cm. In this way, the solid reactants will precipitate on the bottom of the stainless steel reaction vessel, instead of forming an insulation layer on the actual stainless steel reactor bottom.
Through the convection between the bottom gaps of stainless steel reaction vessels, the heat transfer will be continuous and uniform. The bottom of stainless steel reaction vessel is made of stainless steel (ss314). There are many small holes on the bottom of the stainless steel reactor, and the pore diameter is slightly smaller than the particle size of the reaction material. When the solid reaction material load is very heavy, a metal ring can be added under the bottom as a support. In this way, the solid materials should not be concentrated at the bottom of stainless steel reaction vessel.
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