Low-temperature combustion chemistry of biofuels: pathways in the initial low-temperature (550 K-750 K) oxidation chemistry of isopentanol.
about
Combustion Chemistry Diagnostics for Cleaner Processes.Low temperature (550-700 K) oxidation pathways of cyclic ketones: dominance of HO2-elimination channels yielding conjugated cyclic coproducts.Absolute photoionization cross sections of two cyclic ketones: cyclopentanone and cyclohexanone.Slow photoelectron velocity-map imaging of cold tert-butyl peroxide.Low-temperature combustion chemistry of novel biofuels: resonance-stabilized QOOH in the oxidation of diethyl ketone.Directly measuring reaction kinetics of ˙QOOH--a crucial but elusive intermediate in hydrocarbon autoignition.
P2860
Low-temperature combustion chemistry of biofuels: pathways in the initial low-temperature (550 K-750 K) oxidation chemistry of isopentanol.
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2012 nî lūn-bûn
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name
Low-temperature combustion che ...... tion chemistry of isopentanol.
@en
Low-temperature combustion chemistry of biofuels: pathways in the initial low-temperature
@nl
type
label
Low-temperature combustion che ...... tion chemistry of isopentanol.
@en
Low-temperature combustion chemistry of biofuels: pathways in the initial low-temperature
@nl
prefLabel
Low-temperature combustion che ...... tion chemistry of isopentanol.
@en
Low-temperature combustion chemistry of biofuels: pathways in the initial low-temperature
@nl
P2093
P2860
P50
P356
P1476
Low-temperature combustion che ...... tion chemistry of isopentanol.
@en
P2093
Craig A Taatjes
David L Osborn
John D Savee
Leonid Sheps
Ravi X Fernandes
Taek Soon Lee
P2860
P304
P356
10.1039/C2CP23248K
P407
P577
2012-01-30T00:00:00Z