2,2,4-Trimethylpentane

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2,2,4-Trimethylpentane
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Template:Longitem 1696876
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MeSH 2,2,4-trimethylpentane
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UN number 1262
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Template:Longitem Template:Chembox Elements/molecular formula
Molar mass Template:Chem molar mass
Appearance Colorless liquid
Odor petroleum-like
Density 0.692 g cm−3
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log P 4.373
Vapor pressure 5.5 kPa (at 21 °C)
Template:Longitem 3.0 nmol Pa−1 kg−1
UV-vismax) 210 nm
Template:Longitem −98.34·10−6 cm3/mol
Template:Longitem 1.391
Template:Longitem 242.49 J K−1 mol−1
Template:Longitem 328.03 J K−1 mol−1
Template:Longitem −260.6 to −258.0 kJ mol−1
Template:Longitem −5462.6 to −5460.0 kJ mol−1
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Explosive limits 1.1–6.0%
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2,2,4-Trimethylpentane, also known as isooctane or iso-octane, is an organic compound with the formula (CH3)3CCH2CH(CH3)2. It is one of several isomers of octane (C8H18). This particular isomer is the standard 100 point on the octane rating scale (the zero point is n-heptane). It is an important component of gasoline, frequently used in relatively large proportions (around 10%) to increase the knock resistance of fuel.[2][3]

Strictly speaking, if the standard meaning of ‘iso’ is followed, the name isooctane should be reserved for the isomer 2-methylheptane. However, 2,2,4-trimethylpentane is by far the most important isomer of octane and historically it has been assigned this name.[4]

Production

Isooctane is produced on a massive scale in the petroleum industry by alkylation of isobutene with isobutane. This process is conducted in alkylation units in the presence of acid catalysts.[5]

File:Route2,2,4-Me3pentane.png
Route to 2,2,4-trimethylpentane from isobutene and isobutane

It can also be produced from isobutylene by dimerization using an Amberlyst catalyst to produce a mixture of iso-octenes. Hydrogenation of this mixture produces 2,2,4-trimethylpentane.[6]

History

Engine knocking is an unwanted process that can occur during high compression ratios in internal combustion engines. In 1926 Graham Edgar added different amounts of n-heptane and 2,2,4-trimethylpentane to gasoline, and discovered that the knocking stopped when 2,2,4-trimethylpentane was added. This work was the origin of the octane rating scale.[7] Test motors using 2,2,4-trimethylpentane gave a certain performance that was standardized as 100 octane. The same test motors, run in the same fashion, using heptane, gave a performance which was standardized as 0 octane. All other compounds and blends of compounds then were graded against these two standards and assigned octane numbers.

Safety

In common with all hydrocarbons, 2,2,4-trimethylpentane is flammable.[8]

See also

References

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  6. Dimerization of isobutylene, Amberlyst.com
  7. Fuels and lubricants handbook, Volume 1, George E. Totten, Steven R. Westbrook, Rajesh J. Shah, page 62
  8. 2,2,4-Trimethylpentane, Integrated Risk Information System, United States Environmental Protection Agency

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External links

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