Physical Chemistry Chemical Physics · 2014 · 75 citations · 43 references
EngineeringGreen ChemistryFuel ScienceOrganic ChemistryHigh Density FuelsChemistryChemical EngineeringPetrochemicalSynthetic FuelMetabolic EngineeringPlatform ChemicalAlternative FuelHigh-density Biosynthetic FuelsCatalysisReaction EngineeringCombustion ScienceHeterogeneous CatalysisHigh Performance FuelsFuel ProductionIsomer Distribution
Biosynthetic valencene, premnaspirodiene, and natural caryophyllene were hydrogenated and evaluated as high performance fuels. The parent sesquiterpenes were then isomerized to complex mixtures of hydrocarbons with the heterogeneous acid catalyst Nafion SAC-13. High density fuels with net heats of combustion ranging from 133-141 000 Btu gal(-1), or up to 13% higher than commercial jet fuel could be generated by this approach. The products of caryophyllene isomerization were primarily tricyclic hydrocarbons which after hydrogenation increased the fuel density by 6%. The isomerization of valencene and premnaspirodiene also generated a variety of sesquiterpenes, but in both cases the dominant product was δ-selinene. Ab initio calculations were conducted to determine the total electronic energies for the reactants and products. In all cases the results were in excellent agreement with the experimental distribution of isomers. The cetane numbers for the sesquiterpane fuels ranged from 20-32 and were highly dependent on the isomer distribution. Specific distillation cuts may have the potential to act as high density diesel fuels, while use of these hydrocarbons as additives to jet fuel will increase the range and/or time of flight of aircraft. In addition to the ability to generate high performance renewable fuels, the powerful combination of metabolic engineering and heterogeneous catalysis will allow for the preparation of a variety of sesquiterpenes with potential for pharmaceutical, flavor, and fragrance applications.
43
Ab initio molecular orbital theory
Wong Ot · Journal of Molecular Structure THEOCHEM · 1987 · 4.5K citations
Microbial engineering for the production of advanced biofuels
Pamela Peralta‐Yahya, Fuzhong Zhang, Stephen B. del Cardayré et al. · Nature · 2012 · 1.1K citations
Microbial Biosynthesis of Alkanes
Andreas Schirmer, Mathew A. Rude, Xuezhi Li et al. · Science · 2010 · 1K citations