Bryukov Mikhail G, Dellinger Barry, Knyazev Vadim D
Department of Chemistry, Louisiana State University, Baton Rouge, Louisiana 70803, USA.
J Phys Chem A. 2006 Jan 26;110(3):936-43. doi: 10.1021/jp053615x.
The reaction of hydroxyl radicals with hydrogen chloride (reaction 1) has been studied experimentally using a pulsed-laser photolysis/pulsed-laser-induced fluorescence technique over a wide range of temperatures, 298-1015 K, and at pressures between 5.33 and 26.48 kPa. The bimolecular rate coefficient data set obtained for reaction 1 demonstrates no dependence on pressure and exhibits positive temperature dependence that can be represented with modified three-parameter Arrhenius expression within the experimental temperature range: k1 = 3.20 x 10(-15)T0.99 exp(-62 K/T) cm3 molecule(-1) s(-1). The potential-energy surface has been studied using quantum chemical methods, and a transition-state theory model has been developed for the reaction 1 on the basis of calculations and experimental data. The model results in modified three-parameter Arrhenius expressions: k1 = 8.81 x 10(-16)T1.16 exp(58 K/T) cm3 molecule(-1) s(-1) for the temperature range 200-1015 K and k1 = 6.84 x 10(-19)T2.12 exp(646 K/T) cm3 molecule(-1) s(-1) for the temperature dependence of the reaction 1 rate coefficient extrapolation to high temperatures (500-3000 K). A temperature dependence of the rate coefficient of the Cl + H2O --> HCl + OH reaction has been derived on the basis of the experimental data, modeling, and thermochemical information.
采用脉冲激光光解/脉冲激光诱导荧光技术,在298 - 1015 K的宽温度范围以及5.33至26.48 kPa的压力下,对羟基自由基与氯化氢的反应(反应1)进行了实验研究。反应1获得的双分子速率系数数据集表明其与压力无关,且呈现正温度依赖性,在实验温度范围内可用修正的三参数阿伦尼乌斯表达式表示:k1 = 3.20×10(-15)T0.99 exp(-62 K/T) cm3 molecule(-1) s(-1)。利用量子化学方法研究了势能面,并基于计算和实验数据为反应1开发了过渡态理论模型。该模型得出了修正的三参数阿伦尼乌斯表达式:在200 - 1015 K温度范围内,k1 = 8.81×10(-16)T1.16 exp(58 K/T) cm3 molecule(-1) s(-1);对于反应1速率系数外推至高温(500 - 3000 K)时的温度依赖性,k1 = 6.84×10(-19)T2.12 exp(646 K/T) cm3 molecule(-1) s(-1)。基于实验数据、建模和热化学信息,得出了Cl + H2O --> HCl + OH反应速率系数的温度依赖性。