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Methyl nitrate CH3ONO

Typical reaction products of NO removal in non-thermal plasma in the presence of propylene, predicted by the model in Martin et al. and Dorai and Kushner [86,88], include formaldehyde (HCHO), acetaldehyde (CH3CHO) methyl oxirane (C3H60), gly-coxal (CHO-CHO), methyl nitrite (CH3ONO), methyl nitrate (CH30N02), and 2-nitroso ethanal (ONCH2CHO). [Pg.381]

Figure I-B-11 shows plots of the vapor pressures of methyl nitrite, nitromethane, and methyl nitrate as a function of reciprocal temperature. It is seen that at a given temperature the vapor pressures decrease in the order CH3ONO > CH3ONO2 > CH3NO2. This is the order of decreasing polarity of the molecules as measured by the calculated dipole moments (/r) /U.CH3NO2 (3.4 D) /U.CH3ONO2 (2.9 D) > /tchsONO (2.2 D), and it seems likely that dipole-dipole interactions are important in determining the volatility of these compounds. Figure I-B-11 shows plots of the vapor pressures of methyl nitrite, nitromethane, and methyl nitrate as a function of reciprocal temperature. It is seen that at a given temperature the vapor pressures decrease in the order CH3ONO > CH3ONO2 > CH3NO2. This is the order of decreasing polarity of the molecules as measured by the calculated dipole moments (/r) /U.CH3NO2 (3.4 D) /U.CH3ONO2 (2.9 D) > /tchsONO (2.2 D), and it seems likely that dipole-dipole interactions are important in determining the volatility of these compounds.

See other pages where Methyl nitrate CH3ONO is mentioned: [Pg.306]    [Pg.234]    [Pg.306]    [Pg.234]    [Pg.113]    [Pg.938]    [Pg.1251]    [Pg.14]    [Pg.216]    [Pg.975]   
See also in sourсe #XX -- [ Pg.2 ]




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