Internals for Radial Flow Reactors
A radial reactor is a type of reactor where the gas flow direction is perpendicular to the axial direction of the equipment. It is commonly used for gas-solid catalytic reactions, as well as for non-catalytic reactions. As the reaction gas flows through the particle bed in a radial reactor, the large cross-sectional flow area, low flow velocity, and short flow path contribute to its key characteristic: a minimal pressure drop.
We manufacture critical components such as center pipes, scallops, and outer baskets for radial flow reactor vessels. We strictly adhere to ASME code requirements for carbon content in materials designed for high-temperature operation, ensuring the reliable and efficient performance of radial flow reactors.
Random Packing
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Random Packing

We provide high-performance replacement of random packing such as Pall Rings (Thermoplastics, Metals), Raschig Rings (Ceramics, Metals) and Saddles (Ceramics, Thermoplastics).

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Description

We provide high-performance replacement of random packing such as Pall Rings (Thermoplastics, Metals), Raschig Rings (Ceramics, Metals) and Saddles (Ceramics, Thermoplastics).




Advantages  :

  • When pressure drop and residence time is insignificant to column operation, random packing can be applied to increase capacity and efficiency.

  • Plastic rings will reduce drag and maximize mass transfer

  • Metal rings with particular enhancements will improve randomness, liquid spreading and mechanical strength





Distillation column

The column internals provide a contact place for mass transfer and heat transfer for the gas-liquid phase and liquid-liquid phase; There are two main types of column internals: packed column and trayed column. The packing column internals mainly include packing, liquid distributor, liquid collector, redistributor, gas distributor, packing fastening device, packing support device; trayed column internals mainly include: tray, liquid collection tank (trayed column), tray support device (trayed column), feed distributor, gas feed and distribution device and mist eliminator.

Packed column

Working principle: The liquid is sprayed onto the packing from the top of the tower through the liquid distributor and flows down the surface of the packing. The gas is fed from the bottom of the tower, and after being distributed by the gas distribution device, it continuously passes through the gap of the packing layer with the liquid in a countercurrent manner, and on the surface of the packing, the gas-liquid two phases are in close contact for mass transfer.


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