Page 33 - PIGNAT catalogue 2020 GB_092020
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REACTION - SYNTHESIS
EMA/2000 STIRRED VESSEL
➢ Study the influence of stirring blades
Study of the influence of the stirring speed
Observe flow in two media with different viscosity
Study the vortex as a function of stirring speed
Study the effect of counter-blades
Study and compare stirring blades
Distinguish between axial and radial flow blades
Determine the mixing duration
General specifications Instrumentation
• Digital display of speed and torque.
• Stirred tank: glass reactor • Conductimeter: electronic display, mixed
conductivity and temperature probe.
• Stirring motor.
• 316L SS Stirring shaft.
• SS removable counter blades.
Options
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- Adding an electrical box with a switch and a • SS set of 4 removable stirring blades:
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Impeller.
transmitter allowing the copying of the Bladed propeller.
measurements of conductivity. 100 - 240 V Demineralized
Anchor. 1ϕ - 50/60Hz water
Rushton.
Dim: 110 x 90 x 150 cm - 80 kg
CALORIMETRIC REACTOR RCM/1000
➢ Reactional calorimetry study
Determination of massic heats and reaction enthalpy
Calculation from calorimetry software results
Calibration
Experiments with acetic anhydride
Influence of reaction parameters
General specifications Instrumentation
• Pressure transmitter.
• Double jacketed glass reactor, double • Flow rate transmitter.
jacketed lid. • Temperature probes Pt100Ω.
• Variable rate stirrer.
• Feeding funnel in glass.
• High flow rate cooling group.
100 - 240 V Water
• Calorimetric data calculation software. 1ϕ - 50/60 Hz 400 L/h
Dim: 130 x 75 x 200 cm - 100 kg
Chemical engineering & unit operations
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