- 1-Hexene
Chembox new
Name = 1-Hexene
ImageFile = 1-Hexene.png
ImageName = 1-Hexene
IUPACName = Hex-1-ene
OtherNames = Hexene, Hexylene, butyl ethylene
Section1 = Chembox Identifiers
SMILES = C=CCCCC
CASNo = 592-41-6
Section2 = Chembox Properties
Formula = C6H12
MolarMass = 84.1608 g/mol
Appearance = Colorless liquid
Density = .673 g/cm³, liquid
Solubility = insoluble
MeltingPt = -139.8°C (133.35 K)
BoilingPt = 63°C (336 K)
Viscosity = .51 cP at 28°C
Section3 = Chembox Structure
Dipole =
Section7 = Chembox Hazards
ExternalMSDS = [http://ptcl.chem.ox.ac.uk/MSDS/HE/1-hexene.html External MSDS]
EUClass = Highly flammable (F+); Harmful (XN)1-hexene is a higher
olefin , oralkene , with a formula C6H12. 1-hexene is analpha-olefin , meaning that the double bond is located at the alpha (primary) position, endowing the compound with higher reactivity and thus useful chemical properties. 1-hexene is an industrially significantlinear alpha olefin .ynthesis
Industrially, 1-hexene is commonly manufactured by two main routes: via full range processes using the
oligomerization ofethene and by on-purpose technology. Another route to 1-hexene, used commercially on smaller scales, is the dehydration of alcohols. Prior to the 1970's 1-hexene was also manufactured by the thermal cracking of waxes. Linear internal hexenes were manufactured bychlorination /dehydrochlorination of linear paraffins.Ethene molecules that are combined together to produce linear alpha olefins of various chain lengths with an even number of carbon atoms useethene oligomerization and result in a distribution or “full range” of alpha olefins. Shell uses the Shell Higher Olefins Process (SHOP-process ) to produce a broad range of linear alpha olefins using olefin metathesis andethene oligomerization . Linde and SABIC (Saudi Arabian Basic Industries) have developed the α-SABLIN technology using theoligomerization ofethene to produce 21 percent 1-hexene. CP Chemicals and Innovene also have full range processes. Typically, 1-hexene content ranges from about twenty percent distribution in the Ethyl (Innovene) process, whereas only twelve percent of distribution in the CP Chemicals andIdemitsu processes.The on-purpose route to 1-hexene using
ethene trimerization was first brought on stream in Qatar in 2003 by Chevron Phillips. TheSasol process is also considered an on-purpose route to 1-hexene. Sasol commercially employs Fischer-Tropsch synthesis to make fuels from synthesis gas derived from coal. The synthesis recovers 1-hexene from the afformentioned fuel streams, where the initial 1-hexene concentration cut may be 60% in a narrow distillation, with the remainder being vinylidenes, linear and branched internal olefins, linear and branched paraffins,alcohols ,aldehydes ,carboxylic acids andaromatic compounds .Lummus Technology has recently developed a new on purpose route where 1-butene reacts with itself (“autometathesis” or “self-disproportionation”) to produce 1-hexene. A semi commercial unit has been in operation in Tianjin, China to demonstrate the Lummus technology.Applications
The primary use of 1-hexene is as a
comonomer in production ofpolyethene .High density polyethene (HDPE) andlinear low density polyethene (LLDPE) use approximately 2-4% and 8-10% of comonomers.Another significant use of 1-hexene is the production of linear
aldehyde viahydroformylation (oxo synthesis ) for later production of the short-chainfatty acid heptanoic acid .References
External links
* [http://ull.chemistry.uakron.edu/erd/chemicals/1000/71.html Chemical Database, 1-Hexene]
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