H-FLOW-10 SE Series
H-Flow-10 SE series is built on the patented microreaction hydrogenation technology of Tsinghua University, which mixes highly pure hydrogen with continuously flowing reactants in a micropacked column loaded with catalysts and reactants.
Micropacked bed technology greatly improves the gas-liquid mass transfer coefficient, making the equipment more compact, achieving hydrogenation process intensification, reatly shortening the reaction time.
The reactor is small in size and the device has intrinsic safety properties.
For small amount of samples, rapid sampling can be achieved without passing through the gas-liquid separator.
The gas-liquid separator can be selected according to application requirements to accumulate raw data for process amplification.
Two column tube specifications of 6 mL and 20 mL are available, suitable for heterogeneous hydrogenation and homogeneous hydrogenation; active safety protection schemes and passive protection measures are combined to make the instrument safer and more reliable.
The maximum reaction temperature of 200℃ and the maximum system working pressure of 10 MPa are suitable for a wide range of hydrogenation applications.
Rapid development of hydrogenation process and rapid screening of catalysts to improve process research and development efficiency.
The high-throughput version can allow kilogram-level product customization.
The equipment is small in size and can be placed in a fume hood.
Equipped with online UV-visible and near-infrared detectors, it can achieve real-time inline monitoring and analysis.
Model | H-FLOW-S10 SE | H-FLOW-H10 SE |
Material | 316L | C276 |
Reactor Loading Volume | 5.6 mL | |
Working Pressure |
< 8 MPa |
|
Working Temperature | Rt-200 ℃ | |
Liquid Feeding Flow Rate | 0.0001-9.999 mL/min | |
Hydrogen Feeding Flow Rate |
2-100 sccm 4-200 sccm 10-500 sccm 0.02-1 slm |
|
Reaction Column Dimension |
Volume: 6 mL ID: 6 mm OD: 14 MM Length: 212.5 mm |
|
Gas-Liquid Separator Volume | 6 mL | |
Dimension (DxWxH, mm) | 500x410x560 |
Note: Manual operation of the back pressure valve.
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