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SAM Introduces Stainless Steel Pall Rings for Pharmaceutical Separation Processes to Improve Mass Transfer Efficiency
The stainless steel packing is designed to boost mass transfer by 30% to 50% and cut energy use in mid-sized API facilities.
Stanford Advanced Materials has introduced stainless steel Pall rings designed for pharmaceutical distillation and separation processes to improve mass transfer efficiency in API manufacturing.
Traditional Raschig rings often feature closed structures, which cause uneven gas-liquid flow and high pressure drop during API manufacturing, limiting purity without raising temperatures or extending cycle times.
SAM's Metal Pall Rings feature a multi-window design with inwardly bent tabs that facilitate direct gas and liquid flow through the packed bed, ensuring constant dispersion and maximum contact between phases.
These Pall rings offer about 30% to 50% greater mass transfer efficiency than conventional packings, significantly reducing annual energy consumption and maintenance costs for mid-sized pharmaceutical facilities.
Interested parties can contact Maria Higgins at the SAM office in Santa Ana, United States, for detailed specifications and information about special coatings for demanding applications.