Catalytic reactor Introduction Popular reactor design circulates liquid reactants past a stationary catalyst bed. Impellers (1,000 rpm) draw fluid into the center of an annular catalyst basket. The multiphase reactor design is used for time based, laboratory, high temperature & high pressure...
Catalytic reactor Introduction
Popular reactor design circulates liquid reactants past a stationary catalyst bed. Impellers (1,000 rpm) draw fluid into the center of an annular catalyst basket. The multiphase reactor design is used for time based, laboratory, high temperature & high pressure heterogeneous catalysis experiments with gas /liquid / solid phase reactants Use internal recycle reactors & vary reaction time for catalyst activation, catalyst regeneration, & catalyst durability(catalyst life).
316SS is standard; other chemical / petrochemical resistant alloys are offered.
The design conforms to the ASME Boiler & Pressure Vessel Code Section VIII Division 1: An ASME code stamp is optional
Circulating the reactants past the catalyst's active surface avoids wearing & breakage (attrition) for accurate scale-up
The reactor can be used for continuous flow catalytic reactions (using internal overflow tube as the outlet) for fluids
Optional process control instrumentation measures & controls temperature, impeller speed & pressure
BENEFITS of Catalytic reactor
The reactor is a gradientless reactor design that is basic equipment for advancing the science of combined gas/ liquid / solid phase(supported) heterogeneous catalyst technology. This high pressure laboratory apparatus can be used for diverse catalyst research including catalyst screening, catalyst characterization, & surface chemistry studies. The leak-free metal gasket design provides bench-scale catalytic synthesis capability for scientific experimentation.
Through the electric heating pipes to heat conducting oil to the required temperature, and then the oil will transfer the heat to the materials in the reactor to start the reaction.
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