We can separate a mix. 
We can sort a mix of liquids. 
Some parts of the mix turn to gas easily. Other parts do not. The gas rises up a tall tube. 
The tube is hot at the bottom. It is cool at the top. This helps the gas turn back into liquid.
This process helps us clean crude oil. We use it to make fuel.
We can sort a mix of liquids into parts. This way is called fractional distillation.
It works by using heat. We heat a liquid mix in a flask. This makes the liquid turn into a gas. 
The gas rises up a tall tube. This tube is a fractionating column. The bottom of the tube is very hot. The top of the tube is much cooler. This change in heat is called a temperature gradient.
As the gas rises, it hits the cool parts. Some gas turns back into liquid. This liquid drips down onto small shelves called trays.
Each part of the mix has a boiling point. This is the heat needed to make it a gas. Parts that boil easily rise to the very top. Parts that need more heat stay near the bottom.
Factories use giant towers for this work. These towers help sort crude oil. They make useful things like fuel.
Fractional distillation is a way to separate a mixture into its different parts, which are called fractions.
To see how it works, imagine a tall tube called a fractionating column.
People have used this way of separating things for a very long time. In the 9th century, an alchemist named Jabir ibn Hayyan used it with plants and animals.
In a laboratory, scientists use specific tools to do this work safely. They use a round-bottomed flask and a condenser to turn the gas back into liquid.
We can see this science in action at oil refineries. 
Fractional distillation is a chemical process used to separate a mixture into its individual components, which are known as fractions.
The mechanism of fractional distillation relies on a temperature gradient within a specialized piece of equipment called a fractionating column.
Inside the column, the physical structure plays a key role in the separation efficiency. Many columns contain internal platforms called trays where the vapor can condense into liquid. This liquid then flows back down the column, a process known as reflux.
The history of this science stretches back many centuries to the work of early alchemists. In the 9th century, the Islamic alchemist Jabir ibn Hayyan performed experiments using fractional distillation on animal, vegetable, and mineral substances.
In industrial settings, fractional distillation is scaled up into massive structures called distillation or fractionation towers. 
One of the most notable applications of this technology is in petroleum refineries. 
While highly effective, fractional distillation has certain physical limitations. Some mixtures cannot be completely purified using this method alone. A classic example is a mixture of ethanol and water. Ethanol boils at 78.37 °C, while water boils at 100 °C. However, these two substances can form an azeotrope, which is a specific mixture that boils at a constant temperature of 78.15 °C. When this azeotrope forms, the mixture behaves like a single substance, making it nearly impossible to separate them further through standard fractional distillation. In such cases, scientists must use specialized methods like azeotropic distillation to achieve higher purity.
🖼️ Images & Media (5)
More to explore
✨ What else?
Related topics you might enjoy
🔬 Go deeper
More advanced topics to explore
🪜 Step back
Simpler topics to build understanding
What is Nepedia?
A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.