Products Description
A Lab Distillation Apparatus is a setup used in chemistry laboratories to separate components of a mixture based on differences in their boiling points.
Products Parameters
Model | GK-100 | GK-200 | GK-500 | GK-1000 | GK-2000 |
Evaporation rate (l/h) | 100 | 200 | 500 | 1000 | 2000 |
Heating area (m2) | 4 | 8 | 20 | 40 | 80 |
Condensation area (m2)/plate | 4 | 8 | 20 | 40 | 80 |
Steam pressure (mpa) | <0.2 | ||||
Vacuum (mpa) | 0.6~0.8 | ||||
Power supply | 220V/60Hz three-phase, other can be customized |
Products structure

Boiling Flask: This is where the mixture to be separated is initially placed. It is heated to vaporize the components.
Distillation Column or Vigreux Column: This column provides surface area for condensation and allows for repeated vaporization and condensation, enhancing the separation process.
Condenser: Connected to the top of the distillation column, the condenser cools the vapor back into liquid form using either air or cold water. This causes the vapor to condense and collect in another container, known as the receiving flask.

Receiving Flask: This is where the condensed liquid (distillate) collects after passing through the condenser. It holds the separated components of the mixture.
Heat Source: Typically a heating mantle or a Bunsen burner, used to heat the boiling flask and initiate vaporization.
Clamps and Stands: These hold the apparatus in place securely during operation.
Advantages

The process of distillation works on the principle that different substances have different boiling points. By heating the mixture in the boiling flask, the component with the lowest boiling point vaporizes first. This vapor is then cooled and condensed back into liquid form in the condenser, where it collects as a purified distillate.
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