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References in periodicals archive ?
NI Mhaolduin et al., "Modeling and experimental investigation of methylcyclohexane ignition in a rapid compression machine," Proceedings of the Combustion Institute, vol.
temp., reservoir temperature; Mch, methylcyclohexane; Tol, toluene; Ch, cyclohexane; B, benzene.
Toxicity of Methylcyclohexane and Its Effect on the Reproductive System in SD rats.
Moghaddasi, "Speeds of sound, isentropic compressibilities, viscosities and excess molar volumes of binary mixtures of methylcyclohexane + 2-alkanols or ethanol at T = 298.15 K," Journal of Chemical Thermodynamics, vol.
Cyclic saturated hydrocarbons such as decalin, bicyclohexane, methylcyclohexane, and are proposed as new mobile hydrogen storage media for proton exchang membrane fuel cells.
The commonly used hydrogen donors in heavy oil upgrading are hydrogen gas, methane, tetralin (or tetrahydronaphthalene, [C.sub.10][H.sub.12]), methylcyclohexane, etc.
These contaminants include: acetone, carbon disulfide, ethylbenzene, toluene, total xylenes, methylcyclohexane, and 2-butanone (MEK).
Pollutant category Pollutants Inert (nonaromatic, Cyclopentane, methylcyclopentane, nonalkane) methylcyclohexane, sulfur, EC, CO, N[O.sub.2] Polar (nonaldehyde) Acetic acid, 2-butanone, organic carbon Aromatic Benzene, toluene, ethylbenzene, m-xylene and p-xylene, o-xylene, n-propylbenzene, p-ethyltoluene, m-ethyltoluene, 1,3,5-trimethylbenzene, 1,2,4-trimethylbenzene and sec-butylbenzene Aldehyde Benzaldehyde, heptanal, hexanal, octanal Alkane 2,2,4-Trimethylpentane, 2,2-dimethylbutane, 2,3,4-trimethylpentane, 2,3-dimethylbutane.
Relative Deposit Ignition Tendency of Various Fuels [24] RELATIVE DEPOSIT IGNITION TENDENCY OF VARIOUS FUELS Abnormal Ignition Rate, % Relative to that with Isooctane (1) Aspirated Wild Ping Particle Aspirated Teat Results Results by Particle Fuel by Mikita Sabina and Results by Hydrocarbon and Sturgis (2) Mikita (3) Authors (4) Methylcyclohexane 94 (--) Isooctane 100 (75) 100 100 (90) Cyclopentane 119 (--) Xylene 162 (131) 131 Toluene 182 (156) 150 161 (--) Cyclohexane 212 (119) -- (166) Diisobutylene 225 (14) 161 155 (--) Methylcyclopentane 325 (81) Benzene 450 (443) 300 263 (255) Ethylbenzene 500 (411) Cumene 555 (394) 345 Avg of Commercial Gasolines (170) (120) (2) Values shown in brackets arc for 3 ml TEL/gal added to blend.
It is evident from the data that negative [DELTA]H values increase in the sequence methylcyclohexane < n-heptane < toluene on all studied stationary phases; the more negative the [DELTA]H, the greater the interaction between the adsorbate and adsorbent.