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7 cubic meters Wire Mesh Structured Packing - PINGXIANG XINQUAN CHEMICAL PACKING CO., LTD.

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7 cubic meters Wire Mesh Structured Packing

Shipment : 7m³ Wire Mesh Structured Packing to India

We are proud to announce the successful dispatch of 25 cubic meters of high-precision Wire Mesh Structured Packing to our esteemed client in India on January 25, 2026.

This significant shipment underscores Pingxiang Xinquan’s growing footprint in the South Asian market. Known for its exceptional separation efficiency and low pressure drop, our stainless steel wire mesh packing is the preferred choice for industries requiring the highest levels of purity and performance.

  • Product: Wire Mesh Structured Packing  BX 500X

  • Quantity: 7m³

  • Destination: India

  • Shipment Date: January 25, 2026

  • Material: High-grade Stainless Steel (316L)


Product Application & Service Environment

Where Precision Meets Performance

Wire mesh structured packing is a high-efficiency media made from woven wire gauze. It is designed for processes where vacuum conditions and high theoretical plate counts are required.

1. Vacuum Distillation & Fine Chemicals

Because wire mesh has an extremely high surface area and excellent “wicking” properties (capillary action), it is ideal for:

  • Vacuum Towers: Operating at very low pressure drops to prevent product degradation from heat.

  • Isomer Separation: Separating chemicals with very close boiling points (e.g., Ethylbenzene/Styrene).

  • Flavor & Fragrance: Processing heat-sensitive essential oils and aromatic compounds.

2. Pharmaceutical & Laboratory Grade Purity

The structured nature ensures no “dead zones” in the column, making it critical for:

  • High-Purity Solvents: Refining medical-grade solvents.

  • Specialty Chemicals: Achieving 99.9% or higher purity levels in complex chemical reactions.

3. Gas Processing & Absorption

  • De-ethanizers and De-methanizers: Used in gas processing plants to separate light hydrocarbons.

  • Air Separation Units (ASU): Used in the cryogenic separation of oxygen, nitrogen, and argon.

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