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Benzene
In 18, Mr. Michael Faraday, an English scientist, was the first to discover benzene through his investigation of heating and illuminating oils from it. In 1865, a German chemist named Friedrich August Kekule found benzene in the coal and came up with "the hexagonal structure" for benzene shown to the right. The story behind this structure is that Kekule one day took a nap and dreamed of the chemical structure of benzene. He mentioned there were long rows, sometimes more closely fitted together, all twining and twisting in snake-like motion. But look! What was that? One of the snakes had seized hold of its own tail, and the form whirled mockingly before my eyes.
Scientists spent a lot of work to know more about benzene. Benzene is an aromatic molecule that is similar to the hydrocarbons like alkanes. Most aromatic hydrocarbons are based on benzene.
Custom Essays on Benzene
Characteristics of Benzene
Benzene is a member of one type of hydrocarbons called aromatics. It is a colorless toxic liquid with a sweet odor. It is very volatile and flammable. Its content is the most effective factor in controlling total toxic air pollutants.
Intensive Properties
C6H6
78.114 g/mol
5.5 °C
80.1 °C
0.8786 mg/cm
.77 g/L
1770 mg/L
Natural Recourses for Benzene
Benzene can be found different environments like
Crude oil underground
Cigarette smoke
Gasoline
Forest fires
Volcanoes
Benzene Bonding
It is unsaturated for having three pi bonds. However, it is somehow stable due to the pi electrons delocalization that makes the molecule bonds hard to break. Benzene has two structures that relate to the electron delocalization which accounts for the resonance phenomenon as follows
Benzene Reactions
Benzene does not undergo addition reactions. However, it can undergo substation reactions in four major reactions as follows
Producing Benzene
In industry, benzene can be produced in several methods. There are two common processes to produce it
Hydrodealkylation of toluene (HDA)
Toluene + Hydrogen ® Benzene + Methane
C6H5CH + H ® C6H6 + CH4
But there is a side reaction that produces diphenyl
Benzene Diphenyl + Hydrogen
C6H6 C6H5) + H
The Main HDA Process
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