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Short Range Molecular Distillation Distillation Column
Brand | LianZhong |
Capacity | 50-5000L(Customizable) |
Components | Still pot, column, dephlegmator, condenser, parrot |
Material | SUS304 / TP2 copper |
Heating method | Electric heating/ Steam heating |
Voltage | 220V/240V/380V/405V |
Usage | Alcohol making |
Guarantee | 12 months after delivery |
Certificate | CE ISO |
Advantages
The advantages of a short-range molecular distillation tower compared to traditional distillation equipment are significant, especially when dealing with sensitive compounds and aiming for high-purity products:
Low-Temperature Operation: Short-range molecular distillation typically operates at relatively low temperatures, which helps reduce the decomposition and degradation of heat-sensitive substances. This is crucial for applications that require maintaining product quality and activity.
High Vacuum Conditions: This technology requires operation under high vacuum, which lowers the evaporation temperature, reduces thermal stress on the product, and minimizes the risk of oxidation. It also contributes to improved distillation selectivity.
Short-Path Separation: Short-range molecular distillation towers are designed with a short separation path, allowing evaporated molecules to reach the condenser after traveling a very short distance. This reduces molecular collisions and heat conduction, helping to maintain molecular integrity and activity.
High-Purity Products: Due to the advantages of low temperature, high vacuum, and short-path separation, short-range molecular distillation typically produces high-purity products. This is crucial for industries such as pharmaceuticals, essential oils, and high-end alcohol production.
Reduced Residues: Thanks to the highly precise separation process, short-range molecular distillation can effectively reduce the presence of residues and impurities, providing cleaner and purer products.
In summary, short-range molecular distillation towers offer significant advantages when dealing with sensitive compounds and striving for high-purity products, resulting in higher-quality end products.