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单萜衍生的α-羟基烷基过氢氧化物在水-有机介质中的稳定性:与气溶胶颗粒相中过氢氧化物命运的相关性。

Stability of Monoterpene-Derived α-Hydroxyalkyl-Hydroperoxides in Aqueous Organic Media: Relevance to the Fate of Hydroperoxides in Aerosol Particle Phases.

机构信息

Graduate School of Frontier Sciences, The University of Tokyo, 5-1-5 Kashiwanoha, Kashiwa 277-8563, Japan.

School of Atmospheric Sciences, Sun Yat-sen University, Guangzhou, 510275, China.

出版信息

Environ Sci Technol. 2020 Apr 7;54(7):3890-3899. doi: 10.1021/acs.est.9b07497. Epub 2020 Mar 11.

Abstract

The α-hydroxyalkyl-hydroperoxides [R-(H)C(-OH)(-OOH), α-HH] produced in the ozonolysis of unsaturated organic compounds may contribute to secondary organic aerosol (SOA) aging. α-HHs' inherent instability, however, hampers their detection and a positive assessment of their actual role. Here we report, for the first time, the rates and products of the decomposition of the α-HHs generated in the ozonolysis of atmospherically important monoterpenes α-pinene (α-P), -limonene (-L), γ-terpinene (γ-Tn), and α-terpineol (α-Tp) in water/acetonitrile (W/AN) mixtures. We detect α-HHs and multifunctional decomposition products as chloride adducts by online electrospray ionization mass spectrometry. Experiments involving DO and HO, instead of HO, and an OH-radical scavenger show that α-HHs decompose into -diols + HO rather than free radicals. α-HHs decay mono- or biexponentially depending on molecular structure and solvent composition. e-Fold times, τ, in water-rich solvent mixtures range from τ = 15-45 min for monoterpene-derived α-HHs to τ > 10 min for the α-Tp-derived α-HH. All τ's dramatically increase in <20% (v/v) water. Decay rates of the α-Tp-derived α-HH in pure water increase at lower pH (2.3 ≤ pH ≤ 3.3). The hydroperoxides detected in day-old SOA samples may reflect their increased stability in water-poor media and/or the slow decomposition of α-HHs from functionalized terpenes.

摘要

臭氧氧化不饱和有机化合物产生的α-羟烷基过氧化物[R-(H)C(-OH)(-OOH),α-HH]可能导致二次有机气溶胶(SOA)老化。然而,α-HHs 固有的不稳定性阻碍了它们的检测,也对它们实际作用的评估造成了阻碍。在此,我们首次报道了在大气中重要的单萜烯α-蒎烯(α-P)、-柠檬烯(-L)、γ-萜品烯(γ-Tn)和α-萜品醇(α-Tp)臭氧氧化过程中在水/乙腈(W/AN)混合物中生成的α-HHs 的分解速率和产物。我们通过在线电喷雾电离质谱检测到α-HHs 和多功能分解产物作为氯化物加合物。涉及 DO 和 HO,而不是 HO 和 OH-自由基清除剂的实验表明,α-HHs 分解为 -二醇+HO 而不是自由基。α-HHs 的分解取决于分子结构和溶剂组成,可以单指数或双指数衰减。在富含水的溶剂混合物中,τ 值(半衰期)范围从单萜烯衍生的α-HHs 的 τ = 15-45 min 到 α-Tp 衍生的α-HH 的 τ>10 min。所有 τ 值在 <20%(v/v)水时都会显著增加。在纯水中,α-Tp 衍生的α-HH 的分解速率在较低 pH(2.3≤pH≤3.3)时增加。在陈化一天的 SOA 样品中检测到的过氧化物可能反映了它们在贫水介质中的稳定性增加,或者是来自官能化萜烯的α-HHs 分解缓慢。

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