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Carbonization of materials caused by heat in a stainless steel reactor

Carbonization of materials caused by heat in a stainless steel reactor

[Abstract]:
  The carbonization of the material caused by the heat of the stainless steel reaction kettle is said by the manufacturer of the heat exchanger.   In recent years, stainless steel reactor used more a

  The carbonization of the material caused by the heat of the stainless steel reaction kettle is said by the manufacturer of the heat exchanger.

  In recent years, stainless steel reactor used more and more widely, in order to avoid solid reactant precipitation to the stainless steel reactor bottom case, a new stainless steel reactor came into being. The product in the original stainless steel reactor design and basic heating mode, stainless steel on the bottom of the reaction vessel made some adjustments.

  Because all of the problems are due to solid reaction material to the stainless steel reaction kettle bottom caused by precipitation. The main solution is to avoid precipitation even if it is not mixed or stirred. This can be through the addition of an auxiliary stainless steel and stainless steel reaction kettle, the reaction kettle auxiliary than they would be a little higher, leaving a gap of 3 to 10 cm. This solid reactant will precipitate in the auxiliary stainless steel reaction kettle, and not on the stainless steel reaction kettle bottom is formed on the insulating layer of the actual.

  Through the convection heat transfer between the stainless steel reactor bottom gap will be continuous and uniform. High strength stainless steel with stainless steel reaction kettle auxiliary (SS314) made with many holes above the aperture ratio of reactants particle size is smaller, the screen will be cut into round. The edge is bent down as a support. When the load of the solid reaction is very heavy, a metal ring can be added as support under the auxiliary bottom. This is to avoid the solid material in stainless steel reaction kettle.