DURACLAVEMini Metal / Glass Pressure Reactor

This system is designed to allow the use of interchangeable pressure vessels made from glass, steel, Hastelloy, Teflon or any other material. Safety features are designed to ensure that reactions are performed safely under pressure.

In addition to ensuring high resistance to acids, the glass pressure reactors also allow visual control and monitoring of the process to ensure maximum efficiency.

 DURACLAVE – Mini Steel Pressure Reactor

  • Nominal Reactor volume: 100 – 300 ml
  • Temperature range: – 20°C… + 200°C
  • Pressure:  -1… + 100 bar (Stainless steel vessel)
  • Steel cover plate with 4 openings: 1/4” NPT for Swagelok / fitok fittings, rupture disk with holder, pressure gauge, needle valves, temperature sensor
  • MOC: Stainless steel, hastealloy, etc. (other MOC availabe on request)
  • Interchangeable reaction vessel: For defined volumes (with optional PTFE insert)
  • Coupling nut
DURACLAVE – Mini Glass Pressure Reactor
  • Nominal Reactor volume: 100 – 300 ml
  • Temperature range: – 20°C… + 200°C
  • Pressure: -1… + 10 bar (Glass vessel) 
  • Steel cover plate with 4 openings: 1/4” NPT for Swagelok / fitok fittings, rupture disk with holder, pressure gauge, needle valves, temperature sensor
  • MOC: Borosilicate 3.3, Stainless steel, Hastelloy, etc. (other MOC available on request)
  • Interchangeable reaction vessel: for defined volumes of glass vessel (with optional PTFE insert)
  • Vessel holder with protective mesh for glass reactor 
  • Coupling nut
DURACLAVE – Mini Inert Reactor
  • Nominal Reactor volume: 100 – 300 ml
  • Temperature range:– 20°C… + 150°C
  • Pressure: -1… + 6 bar
  • PTFE cover plate with 4 openings: 1/4” NPT for Swagelok / fitok fittings, rupture disk with holder, pressure gauge, needle valves, temperature sensor
  • Interchangeable reaction vessel: for defined glass vessels
  • MOC: Borosilicate glass 3.3, PTFE, PFA
  • Vessel holder with protective mesh for glass vessel
  • Coupling nut

Applications

  • Catalytic Hydrogenation Reaction
  • Pressure Reactions
  • Corrosion study
  • Plastics Solvent fastness study
  • Polymerisation Reaction
  • Solvent Screening
  • Hydrolysis / Ammonolysis /Halogenations Reactions
  • Biopolymer synthesis
  • Catalyst Screening
  • Nanoparticle synthesis

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