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The model predicts a strong oxidizer effect on alumina residue size.
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For small particles (40 110 µm), the environmental effective oxidizer mole fraction exerts a limited effect on the sum of ignition delay time and combustion time, which indicates total time.
By considering the effects of particle sizes and effective oxidizer mole fractions of environments, the percentages of ignition delay time in the total time are analyzed.
The model has been used to investigate the effect of oxidizer concentration, pressure, and particle diameter on the combustion of CO2/Ar and O2/Ar with micrometer-sized aluminum particles.
The effects of oxidizer oxygen concentration and fuel hydrogen content are studied on methane oxidation pathways.
Lastly, the effect of the oxidizer on the detonation sensitivity is studied by comparing the critical energy between C2H2/N2O/Ar and C2H2/O2/Ar mixture.
In addition, the effect of the oxidizer composition was examined for a stoichiometric flame at 358 K by varying oxygen fraction from 30%to40%0%.
However, while hydralazine, H2O2, and ONOO− increased CD70 expression on the CD4+CD28+ subset, the effect of this oxidizer on CD70 expression by the CD4+CD28− subset was much smaller, and was of borderline significance only for H2O2 (P = 0.048).
Results show that similar local flame dynamic effects of strain and curvature are important, but that enhanced turbulent mixing of fuel and oxidizer streams has a first-order effect on transport of soot toward flame zones.
The simulations study the effect of fuel/air ratios, oxidizer temperature, Lewis number and stroke ratio (ratio of piston stroke length to diameter).
Platinum hexafluoride is a strong oxidizer capable of oxidizing oxygen.
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