Short Path Distillation
We believe in providing top quality workmanship and are so confident in our level of service that we back.
We believe in providing top quality workmanship and are so confident in our level of service that we back.
Muez-Hest offers Short Path Distillation technology, which facilitates thermal separation by operating at very low pressures, ranging from 1 to 0.001 mbar. This method effectively lowers boiling temperatures, making it ideal for the gentle thermal treatment of heat-sensitive, high-boiling substances. In this process, vapor generated on the heated surface travels a minimal distance to the condenser, thereby minimizing pressure drop. The condensed distillate and concentrate are then separately collected in the bottom section before being extracted.
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Discover some of the most asked questions regarding Short Path Distillation.
Short Path Distillation is a type of fractional distillation where the distance between the evaporating surface and the condensing surface is minimized. This technique is used to separate compounds with very close boiling points or to process heat-sensitive materials by reducing thermal degradation.
Gentle Processing: Ideal for heat-sensitive materials as it operates at low pressures and temperatures.
High Purity: Effective in separating compounds with very similar boiling points.
Reduced Degradation: Minimizes the risk of thermal decomposition of sensitive products.
Efficient Operation: Short path minimizes energy consumption and improves efficiency.
Short Path Distillation differs from traditional distillation in that it operates under much lower pressures and with a very short vapor path. This method is especially suited for heat-sensitive and high-boiling substances, whereas traditional distillation is more commonly used for less sensitive or more robust mixtures.nges from several months to a year, depending on customization and regulatory approvals.
Yes, Short Path Distillation systems can be customized to meet specific needs, including variations in equipment size, materials of construction, and process conditions to optimize performance for particular substances.