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高精度测量 OH 反应速率常数和红外吸收光谱:取代的 2-丙醇。

High accuracy measurements of OH reaction rate constants and IR absorption spectra: substituted 2-propanols.

机构信息

National Institute of Standards and Technology, Gaithersburg, Maryland 20899, United States.

出版信息

J Phys Chem A. 2012 Jun 21;116(24):6188-98. doi: 10.1021/jp211534n. Epub 2012 Apr 2.

Abstract

Rate constants for the gas phase reactions of OH radicals with 2-propanol and three fluorine substituted 2-propanols, (CH(3))(2)CHOH (k(0)), (CF(3))(2)CHOH (k(1)), (CF(3))(2)C(OH)CH(3) (k(2)), and (CF(3))(3)COH (k(3)), were measured using a flash photolysis resonance-fluorescence technique over the temperature range 220-370 K. The Arrhenius plots were found to exhibit noticeable curvature for all four reactions. The temperature dependences of the rate constants can be represented by the following expressions: k(0)(T) = 1.46 × 10(-11) exp{-883/T} + 1.30 × 10(-12) exp{+371/T} cm(3) molecule(-1) s(-1); k(1)(T) = 1.19 × 10(-12) exp{-1207/T} + 7.85 × 10(-16) exp{+502/T } cm(3) molecule(-1) s(-1); k(2)(T) = 1.68 × 10(-12) exp{-1718/T} + 7.32 × 10(-16) exp{+371/T} cm(3) molecule(-1) s(-1); k(3)(T) = 3.0 × 10(-20) × (T/298)(11.3) exp{+3060/T} cm(3) molecule(-1) s(-1). The atmospheric lifetimes due to reactions with tropospheric OH were estimated to be 2.4 days and 1.9, 6.3, and 46 years, respectively. UV absorption cross sections were measured between 160 and 200 nm. The IR absorption cross sections of the three fluorinated compounds were measured between 450 and 1900 cm(-1), and their global warming potentials were estimated.

摘要

用闪光光解共振荧光技术在 220-370 K 的温度范围内测量了 OH 自由基与 2-丙醇和三种氟代 2-丙醇((CH(3))(2)CHOH(k(0))、(CF(3))(2)CHOH(k(1))、(CF(3))(2)C(OH)CH(3)(k(2))和(CF(3))(3)COH(k(3)))的气相反应的速率常数。发现所有四个反应的阿仑尼乌斯图都表现出明显的曲率。速率常数的温度依赖性可以用以下表达式表示:k(0)(T)=1.46×10(-11)exp{-883/T}+1.30×10(-12)exp{+371/T}cm(3)molecule(-1)s(-1);k(1)(T)=1.19×10(-12)exp{-1207/T}+7.85×10(-16)exp{+502/T}cm(3)molecule(-1)s(-1);k(2)(T)=1.68×10(-12)exp{-1718/T}+7.32×10(-16)exp{+371/T}cm(3)molecule(-1)s(-1);k(3)(T)=3.0×10(-20)×(T/298)(11.3)exp{+3060/T}cm(3)molecule(-1)s(-1)。由于与对流层 OH 的反应,它们在大气中的寿命估计分别为 2.4 天、1.9、6.3 和 46 年。在 160-200nm 之间测量了紫外吸收截面。在 450-1900cm(-1)之间测量了这三种氟化化合物的红外吸收截面,并估算了它们的全球变暖潜能。

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