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Kinetic Studies of Heterogeneous Reactions of Polycyclic Aromatic Hydrocarbon Aerosols with NO3 Radicals

机译:多环芳烃气溶胶与NO3自由基非均相反应的动力学研究

摘要

Polycyclic aromatic hydrocarbons (PAHs) and their derivates are mutagenic and carcinogenic substances widely distributed in the atmospheric environment In this study, effective rate constants for heterogeneous reactions of NO3 radicals with five 4-ring PAHs [benzo[a]anthracene (BaA), chrysene (Ch), pyrene (Py), 1-nitropyrene (1-NP), and 1-hydroxypyrene (1-OHP)] adsorbed on suspended azelaic acid particles are investigated by a mixed-phase relative rate method with gas-phase isoprene as the reference substance. The concentrations of suspended PAH particles and gas-phase isoprene are monitored concurrently by a real-time vacuum ultraviolet photoionization aerosol time-of-flight mass spectrometer (VUV-ATOFMS) and an online atmospheric gas analysis mass spectrometer, respectively. The obtained effective rate constants for the reactions of BaA, Ch, Py, 1-NP, and 1-OHP 1 1 particles with NO3 radicals are 4.3 x 10(-12), 4.0 x 10(-12), 6.4 x 10(-12), 1.3 x 10(-12), and 1.0 x 10(-11) cm(3).molecule(-1).s(-1), respectively, and their corresponding atmospheric lifetimes range from several minutes to half an hour at the NO3 radical concentration of 5 x 10(8) molecules.cm(-3). In addition, the NO3 uptake coefficients on particulate PAHs are estimated according to the consumption of PAHs under the exposure of NO3 radicals. The experimental results of these heterogeneous reactions in the aerosol state provide supplementary knowledge for kinetic behaviors of airborne PAHs particles.
机译:多环芳烃(PAHs)及其衍生物是在大气环境中广泛分布的致突变和致癌物质。在这项研究中,NO3自由基与5个4环PAHs [苯并[a]蒽(BaA),蒽)的异质反应的有效速率常数通过混合相相对速率法,以气相异戊二烯为溶剂,研究了吸附在悬浮的壬二酸颗粒上的(Ch),pyr(Py),1-硝基py(1-NP)和1-羟基py(1-OHP)]。参考物质。分别通过实时真空紫外光电离气溶胶飞行时间质谱仪(VUV-ATOFMS)和在线大气气体分析质谱仪同时监测悬浮的PAH颗粒和气相异戊二烯的浓度。获得的BaA,Ch,Py,1-NP和1-OHP 1 1粒子与NO3自由基反应的有效速率常数为4.3 x 10(-12),4.0 x 10(-12),6.4 x 10( -12),1.3 x 10(-12)和1.0 x 10(-11)cm(3).molecule(-1).s(-1),它们相应的大气寿命范围从几分钟到一半在5 x 10(8)分子.cm(-3)的NO3自由基浓度下反应一个小时。此外,根据暴露在NO3自由基下的PAHs的消耗量,估算了颗粒PAHs的NO3吸收系数。这些异质反应在气溶胶状态下的实验结果为机载PAHs颗粒的动力学行为提供了补充知识。

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