蒙自Silicon carbide micro-reaction components

Category:

蒙自Application

蒙自Products

蒙自Components for Microchannel Reactors

蒙自Continuous Flow Chemistry & Microchannel Reactors

Product Description

Silicon carbide micro-reaction components

The CORESIC® SP silicon carbide micro-reaction module is a multi-layer board structure (generally 2 to 5 layers), which is composed of a reaction plate, a heat exchange plate or a flat plate, and each layer is bonded by hot press.

 

Typical application

  • Silicon carbide micro-reaction modules are widely used in silicon carbide plate-type micro-reactors.

  • SiC plate microreactor, widely used in petrochemical, pharmaceutical, pesticide, dyes, explosives and other fields, mainly including sulfonation, nitrification, fluorination, oxidation, amidation, diazotization, catalytic hydrogenation and other types of strong exothermic and flammable and explosive gas-liquid and liquid-liquid reaction process; And in the chemical process of the preparation of materials and catalysts for the synthesis of nanomaterials, special reagents such as Grignard reagents and peroxide reagents.

Features and advantages

  • The silicon carbide micro-reaction module are formed by hot press to reduce the risk of leakage and greatly improve the pressure resistance of the reactor.

  • Each silicon carbide module are tested by water pressure or air pressure before leaving the factory to ensure reliability and safety.

  • Silicon carbide micro-reaction modules are widely used in continuous flow silicon carbide micro-reactors. Compared with traditional intermittent and non-intermittent reaction equipment made of metal, glass and graphite, it has high specific surface area, excellent mass and heat transfer performance, and can realize the the rapid mixing of reaction materials.

  • Silicon carbide micro-reaction plates and modules can be flexibly customized according to customer design.

  • CORESIC® SP silicon carbide micro-reaction components have high thermal conductivity, high temperature resistance, corrosion resistance, acid and alkali resistance. During the reaction process, the temperature of the reaction medium can be quickly increased or decreased, and the heat and mass transfer efficiency is high, thereby shortening the reaction time and improving the reaction effectiveness.

 

Specification

Length mm L ± Xmm Width mm W ± Xmm Thickness mm H ± Xmm Parallelism mm Flatness mm Surface roughness
 μm
200 ±0.7 150 ±0.5 20-30 ±1 0.02 0.02 0.8
300 ±1.2 200 ±0.7 20-30 ±1 0.02 0.02 0.8
400 ±1.5 200 ±0.7 30-40 ±1.5 0.03 0.03 0.8
500 ±2.0 250 ±0.8 30-40 ±1.5 0.03 0.03 0.8