P
Pingxiang Daier Separation TechSep 10, 202611 min read

Structured Packing for Vinyl Acetate Monomer Purification: Polymerization and Fouling Control

Structured packing for vinyl acetate monomer purification must balance separation efficiency with polymerization and fouling control. Low pressure drop and low liquid holdup can reduce operating temperature, monomer residence time and reactive inventory, but dense packing channels and small distributor holes may block quickly when polymer forms. Packing geometry, inhibitor distribution, feed filtration, surface condition, drainage, temperature monitoring and cleaning access must be designed as one operating system.
P
Pingxiang Daier Separation TechSep 10, 202611 min read

Structured Packing for Electronic-Grade Isopropyl Alcohol Purification: Azeotrope Management and Contamination Control

Structured packing improves electronic-grade isopropyl alcohol purification through high mass-transfer efficiency, low pressure drop and low liquid holdup, but it cannot overcome the IPA–water azeotrope by itself. The distillation column must be combined with a suitable dehydration process. Packing material, liquid distribution, surface cleanliness, trace-metal control, electrostatic safety and downstream product handling must all be engineered according to the final water, particle and nonvolatile-residue limits.
P
Pingxiang Daier Separation TechSep 10, 202611 min read

Structured Packing for Trichlorosilane Purification: Moisture Control and High-Purity Distillation

Structured packing for trichlorosilane purification must combine high separation efficiency, low pressure drop and low liquid holdup with strict moisture and contamination control. Packing material, surface treatment, cleaning, drying, liquid distribution, support design and installation conditions must be evaluated together. In polysilicon production, high theoretical-stage efficiency is valuable only when the complete column prevents water ingress, particle formation and trace-metal contamination.
P
Pingxiang Daier Separation TechSep 10, 202611 min read

Structured Packing for Electronic-Grade Nitric Acid Purification: Managing Corrosion and Trace-Metal Contamination

Structured packing for electronic-grade nitric acid purification must provide efficient vapor–liquid contact without becoming a source of trace metals, particles or nonvolatile residues. Material selection depends on nitric acid concentration, temperature, pressure and impurity limits. Stainless steel, high-alloy metals, fluoropolymers and ceramics each require separate corrosion and contamination evaluation. Packing geometry, pressure drop, liquid distribution, support internals, surface treatment, fabrication cleanliness and exposure testing must be considered as one complete high-purity system.
P
Pingxiang Daier Separation TechSep 10, 202611 min read

Structured Packing for Electronic-Grade Hydrofluoric Acid Purification: Preventing Ionic and Particle Contamination

Electronic-grade hydrofluoric acid purification requires structured packing that combines efficient mass transfer with extremely low contamination risk. Conventional ceramic packing may be attacked by HF, while ordinary metal packing can release unacceptable metallic ions. High-purity fluoropolymer structured packing may be suitable, but resin purity, packing geometry, liquid distribution, support design, fabrication cleanliness and qualification testing must all be reviewed as one system.