HYDROGENATION APR, E.P. MOTOR, 230V_1361772
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Parr Hydrogenation APR, E.P. Motor, 230V

The Parr Hydrogenation APR with Explosion Proof Motor provides a compact and reliable system for treating chemicals with hydrogen in the presence of a catalyst at pressures up to 5 atmospheres (60 psig) and temperatures to 80°C. This apparatus is designed for catalytic hydrogenation, reduction, condensation, and other laboratory procedures involving vigorous mixing of liquid and gas in a glass reactor at low pressure.

Product Features

  • The 3910 Series Apparatus is available as either the basic apparatus without heating mantle or temperature controller, or with a heating mantle and temperature controller included.
  • Includes two extra 500 mL reaction bottles, twelve spare bottle stoppers, and a six-foot pressure hose for filling the hydrogen tank.
  • Seals materials in a reaction bottle connected to a hydrogen reservoir, with air removal by evacuation or hydrogen flushing.
  • Bottle shaking mechanism initiates reactions, with the option to heat or cool the bottle during the process.
  • Monitors reaction progress by observing pressure drops, with calibration possible using known compounds.
  • Equipped with convenient valves and fittings for hydrogen admission, bottle evacuation, and tank filling without disturbing the bottle connection.
  • Features separate gauges for bottle and tank pressures.
  • Compact assembly on a steel base for easy bench or hood operation.

Benefits

  • Safe and efficient hydrogenation system with explosion proof motor for hazardous environments.
  • Complete with essential accessories for immediate use and reliable operation.
  • Easy monitoring of reaction progress and convenient valve system.
  • Compact design fits comfortably on laboratory benches or inside fume hoods.

Why Choose Parr Hydrogenation APR?

Parr Hydrogenation APR systems are renowned for their trusted performance, safety, and operational ease. With robust construction and thoughtful design, these apparatuses deliver consistent, high-quality results while minimizing risks during catalytic hydrogenation procedures, making them ideal for research, teaching, and industrial applications.

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