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VISION
ACHIEVE BUSINESS EXCELLENCE THROUGH CONSISTENT RESEARCH & DEVELOPMENT IN PROCESS & PRODUCTS, ADDING VALUE TO INDUSTRY & ENVIRONMENT
 
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TO BE A LEAD PLAYER ON A GLOBAL PLATFORM IN THE AREA OF NUTRACEUTICALS BASED ON LIPIDS, BY ENSURING BEST IN CLASS, IN RELIABILITY, FLEXIBILITY & COST.
 
 
 
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1. Molecular Distillation:
Distillation is a purification and separation process that utilizes heat energy, which separates compounds according to a boiling point. Distilled vapors are then cooled and condensed in separate containers. There are a variety of distillation types named for specific features, such as steam distillation, fractional distillation and vacuum distillation
 
Applications
Molecular distillation, also called short-path distillation, is particularly useful in isolating components of heat-sensitive liquids or in separating substances with very high boiling points.
 
Features
Three special features characterize molecular distillation. The mixture is distilled under reduced pressure, as that lowers boiling temperatures. The time is minimized that substances are exposed to heat. The cooling process is sped up.
 
Mechanics
The following features are found on a sophisticated molecular distillation apparatus: a high-vacuum pump improves vaporization; the distance between its heat source and condenser is kept small; and it employs a motorized wiper to apply a thin film of substance to the heating wall. This means only a small number of molecules are undergoing distillation at any time.
 
Users with Stability Issues
Short-path distillation is used by research institutions such as universities and pharmaceutical houses when compound heat-sensitivity is an issue.
 
Users with High-Boiling Applications
The petroleum industry utilizes molecular distillation to isolate high-boiling petroleum fractions such as motor oils
 
2. Reaction :
Namely estherification, Nitration, Reduction
 
3. Solvent Extraction :
Solvent Extraction is an important tool in the analytical laboratory. It can be used in sample preparation for subsequent analysis and can also show us some of the underlying theory behind chromatographic methods. In addition, the determination of Log P (partitioning) is no more than a solvent extraction experiment. This is an important parameter in drug discovery and development. Partitioning in a fundamental process in biological systems. It is crucial concept in understanding how cells are able to pass some molecules through their membranes yet reject others. Cell membranes can be viewed as an organic solvent into which compounds can partition and a compounds lipophillicity can be a crucial factor in the compounds ability to pass into the cell.
 
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