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H-Flow-S05 Hydrogenation Reactor

H-Flow is a fully automatic hydrogenation reactor based on the continuous flow technology. The instrument is derived from the microreactor technology from Tsinghua University, which realizes the rapid mixing of high-purity hydrogen and reactants to realize a continuous hydrogenation in a micro-packed bed filled with the catalyst. Integrated with the fully automatic control strategy, in-line analysis module, and automatic sample collection function, H-flow can realize a safer, greener and more efficient process for the hydrogenation reaction.

H-flow is suitable for the rapid process optimization and catalyst screening. For some kilogram-scale production requirements, a high-throughput model can also be provided for the continuous hydrogenation in fume hoods.


  • 性能特点
  • 技术指标
  • 产品备注

    ·    Directly connected to high-pressure hydrogen cylinders, or optional high-pressure high-purity hydrogen generator

    ·    Fully automatic control of hydrogenation process to avoid batch-to-batch variation

    ·    Process intensification of hydrogenation and greatly decreased reaction time to several minutes

    ·    Small  reactor and intrinsic safety characteristics

    ·    Fast sampling with sample collection port

    ·    Active and passive safety protection solutions to make the process more reliable and safer

    ·    Highest reaction temperature up to 200℃ and highest working pressure up to 10 MPa, suitable for most hydrogenation applications

    ·    Improve the efficiency of process optimization and catalyst screening

    ·    High-throughput equipment model to realize the  kilogram-scale production

    ·    Small size which can be placed in a fume hood

    ·    Can be integrated with online UV-visible and near-infrared spectrometer for online monitoring and analysis


    Model

    H-Flow-S05

    H-Flow-S30

    Reactor catalyst loading

    Catalyst particle size

    3~7ml

    150ml

    0.2~2mm

    Pressure

    <10MPa

    Temperature

    Preheater   temperature

    RT ~200℃

    RT ~200℃

    Liquid feed flow

    0.1~5 ml/min

    5~30 ml/min

    Flow accuracy

    ±1%FS

              Liquid heat tracing temperature

                        Hydrogen flow

    RT ~200℃

    5~100sccm

    100~1000sccm

    Nitrogen flow

    5~100sccm

    100~1000sccm


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