High Pressure Glass Reactor

High Pressure Glass Reactor

High Pressure Glass Reactor

High Pressure Glass Reactor

Our High Pressure Glass Reactor is designed for demanding chemical processes that require precise control under elevated pressure conditions. Built with premium borosilicate glass 3.3 construction, this reactor offers exceptional chemical resistance and thermal stability. The reactor features a robust design capable of handling pressures up to 10 bar, making it ideal for high-pressure synthesis, hydrogenation, and other pressure-dependent reactions. The transparent glass construction allows for complete visual monitoring of the reaction process, ensuring optimal control and safety. Key applications include pharmaceutical synthesis, fine chemical production, catalyst testing, and research applications where high pressure and temperature control are critical. The reactor is equipped with multiple ports for instrumentation, sampling, and process control, providing maximum flexibility for various experimental setups.

Key Features

  • Borosilicate glass 3.3 construction
  • High-pressure capability
  • Temperature control
  • Safety features

Specifications

**Construction Materials:** –

Main Body: Borosilicate Glass 3.3 – Seals: PTFE and Viton – Connections: Ground glass joints – Pressure Rating: Up to 10 bar

**Operating Parameters:** – Temperature Range: -20°C to 200°C – Volume Capacity: 5L to 100L – Pressure Range: Vacuum to 10 bar – Stirring Speed: Variable (0-1500 RPM)

**Safety Features:** – Pressure relief valves – Temperature monitoring – Overpressure protection – Emergency shutdown capability

**Optional Accessories:** – Jacketed heating/cooling – Multiple port configurations – Sampling systems – Pressure monitoring equipment

Applications

The High Pressure Glass Reactor finds extensive use across multiple industries:

Pharmaceutical Industry: API synthesis and intermediate production – High-pressure hydrogenation reactions – Catalyst screening and optimization – Process development and scale-up studies 

Chemical Industry: Fine chemical synthesis – Specialty chemical production – Polymerization reactions – High-pressure organic synthesis 

Research & Development: Process optimization studies – Reaction kinetics analysis – Catalyst evaluation – Method development and validation 

Petrochemical Industry: Hydroprocessing applications – High-pressure catalytic reactions – Process development – Pilot plant operations

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