Thorny Taylor garland packing is a packing that is widely used in gas and liquid exchange processes, mainly used in various industrial reactors and separation units. Its structural features include: The basic shape of the barbed Taylor wreath is a ring, usually in the shape of a ring. Its inner and outer diameters are designed to be moderate for use in packed columns or reactors. The surface of the ring is covered with evenly distributed small spines, which can be sharp or blunt, and are designed to increase the contact area with gases or liquids. Spikes are usually designed in the shape of cones, columns, or other geometries. They can be available in different lengths and diameters, depending on the application needs. The way the spines are distributed on the surface of the garland has a great influence on the properties of the filler. Common arrangements include evenly distributed or spaced arrangements to optimize the flow and exchange of gases and liquids.

Spiked Taylor Ring
The design of the barbed Taylor rosette allows it to have a large specific surface area, which is conducive to enhancing the contact area between gas and liquid and improving the efficiency of mass transfer. The presence of spines promotes the perturbation of gas and liquid flows, which improves the mixing of two-phase fluids and increases the efficiency of the reactor or column. Due to its structural properties, the barbed Taylor rosette is able to form a uniform packing layer in the packed column, ensuring an even distribution of fluid in the packed bed.

Spiked Taylor Ring
Common materials include plastics (e.g., polypropylene, polyvinyl chloride), metals (e.g., stainless steel, aluminum), ceramics, etc. The choice of material depends on the requirements of the application environment, such as corrosion resistance, high temperature resistance, etc. The manufacturing process of the barbed Taylor wreath includes mold molding, extrusion, injection molding, etc., to ensure that the distribution and shape of the spines of each wreath meet the design standards. It is used in gas absorption towers and desulfurization towers to improve the contact efficiency of gases and liquids. In liquid separation equipment, the barbed Taylor wreath helps to improve the separation efficiency of liquids. It is used in chemical reactors to promote the mixing of reactants and increase the reaction rate. In some heat exchange equipment, barbed Taylor garlands are used to optimize the heat exchange process.
Technical Parameter
Model | Size(mm) | Number of theoretical plates(n/m3) | Surface area(m2/m3) | Free volume(%) | Packing factor(m-1) |
2-K | 78 | 6700 | 28 | 95 | 11 |
3K | 105 | 1910 | 31 | 96 | 9 |
Packaging & Shipping
Package : | Carton box、 Jumbo bag、wooden case | |||||
Container | 20GP | 40GP | 40HQ | Normal Order | Minimum Order | Sample Order |
Quantity | 25CBM | 54CBM | 68CBM | <25 CBM | 1 CBM | < 5 pcs |
Delivery Time | 7 days | 14 days | 20 days | 7 Days | 3 days | Stock |
Comments: | Customized making is allowed. | |||||