Spindle Apparatus Glass Microchannel Reactors

The spindle-shaped glass flow reactor is primarily designed for handling viscous liquids and solids prone to agglomeration. This configuration minimizes boundary layers and shortens the distances required for fluid mass transfer and dispersion, making it suitable for reactions involving or generating solids.

  • Temperature range: -25-195℃
  • Pressure tolerance: 18bar
  • Flow rate: 100ml/min
  • Flexible volume: 5.3mL
  • Summary: Spindle-shaped glass microchannel reactors are primarily used for viscous liquids and solids prone to agglomeration; this configuration minimizes boundary layers and shortens mass transfer and dispersion distances, making it suitable for reactions involving or generating solids.
Product Overview
This product is a high-performance Microchannel Reactor (Glass Microreactor Chip) designed for precise flow chemistry and demanding chemical synthesis.
Technical Specifications
  • Material: High borosilicate float glass((Customizable metal material))

  • Internal Volume: 5.3 mL (Customization services available)

  • Structure Type: SAT / Spindle Apparatus Type

    • Fluid Dynamics Principles: In fluid mechanics, the spindle shape is widely recognized as an ideal geometry for minimizing motion resistance. It effectively reduces turbulence and eddy currents generated when fluid flows over the object's surface.

  • Operating Temperature: -25°C to 195°C (Compatible down to -50°C with additional thermal insulation)

  • Operating Pressure: 0 to 18 bar

  • Maximum Flow Rate: 100 mL/min (6 kg/h)

  • Heat Exchange Type: Integrated heat exchange structure, dual-sided heat transfer

  • Key Features: Multi-layer etching, multi-layer bonding, visual monitoring capability, photocatalytic reaction compatibility, resistance to conventional acid corrosion.

Primary Applications
  • Target Processes: The spindle structure is specifically engineered for viscous liquids and easily agglomerated solids. This design minimizes boundary layers and provides the shortest fluid mass transfer and dispersion distance, making it ideal for reactions involving or generating solids.

  • Common Reaction Types: Liquid-Solid, Liquid-Liquid, Gas-Liquid.