* In the process of vacuum drying, the pressure in the cylinder is always lower than the atmospheric pressure, the number of gas molecules is small, the density is low, and the oxygen content is low, so that the drugs that are easy to oxidize can be dried and the chances of bacteria contamination of the materials can be reduced.
* Since the temperature of the wet component in the vaporization process is proportional to the steam pressure, when vacuum drying, the wet component of the material can be vaporized at low temperature to achieve low temperature drying, especially suitable for the production of drugs with heat-sensitive materials.
* Vacuum drying can eliminate the surface hardening phenomenon easily produced by atmospheric hot air drying, this is because the pressure difference between the vacuum drying material and the surface is large, under the pressure gradient, the water quickly moves to the surface, there will be no surface hardening.
* Due to the small temperature gradient between the inside and outside of the material during vacuum drying, the wet component can move and collect independently due to reverse osmosis, effectively overcoming the separation phenomenon caused by hot air drying.
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