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首页> 外文期刊>Atmospheric chemistry and physics >High-molecular-weight esters in alpha-pinene ozonolysis secondary organic aerosol: structural characterization and mechanistic proposal for their formation from highly oxygenated molecules
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High-molecular-weight esters in alpha-pinene ozonolysis secondary organic aerosol: structural characterization and mechanistic proposal for their formation from highly oxygenated molecules

机译:α-叉烯臭氧臭氧溶解二次有机气溶胶中的高分子量酯:从高氧化分子形成的结构表征和机械建议

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摘要

Stable high-molecular-weight esters are present in alpha-pinene ozonolysis secondary organic aerosol (SOA) with the two most abundant ones corresponding to a hydroxypinonyl ester of cis-pinic acid with a molecular weight (MW) of 368 (C19H28O7) and a diaterpenylic ester of cis-pinic acid with a MW of 358 (C17H26O8). However, their molecular structures are not completely elucidated and their relationship with highly oxygenated molecules (HOMs) in the gas phase is still unclear. In this study, liquid chromatography in combination with positive ion electrospray ionization mass spectrometry has been performed on highmolecular- weight esters present in alpha-pinene ozonolysis SOA with and without derivatization into methyl esters. Unambiguous evidence could be obtained for the molecular structure of the MW368 ester in that it corresponds to an ester of cis-pinic acid where the carboxyl substituent of the dimethylcyclobutane ring and not the methylcarboxyl substituent is esterified with 7-hydroxypinonic acid. The same linkage was already proposed in previous work for the MW358 ester (Yasmeen et al., 2010), but could be supported in the present study. Guided by the molecular structures of these stable esters, we propose a formation mechanism from gas-phase HOMs that takes into account the formation of an unstable C19H28O11 product, which is detected as a major species in alpha-pinene ozonolysis experiments as well as in the pristine forest atmosphere by chemical ionization-atmospheric pressure ionization-time-of-flight mass spectrometry with nitrate clustering (Ehn et al., 2012, 2014). It is suggested that an acyl peroxy radical related to cis-pinic acid (RO2 center dot) and an alkoxy radical related to 7-or 5-hydroxypinonic acid (R'O center dot) serve as key gas-phase radicals and combine according to a RO2 + R'O center dot - RO3R' radical termination reaction. Subsequently, the unstable C19H28O11 HOM species decompose through the loss of oxygen or ketene from the inne
机译:稳定的高分子量酯以α-甲烯臭氧分解二次有机气溶胶(SOA)存在于与CIS-丝酸的羟基壬基酯相对应的两种最丰富的酯,其分子量(MW)为368(C19H28O7)和a用358(C17H26O8)的CIS-丝酸的尿嘧啶酯。然而,它们的分子结构未完全阐明,并且它们与气相中的高含氧分子(HOMS)的关系仍然不清楚。在该研究中,已经对α-甲烯臭氧分解SOA中存在的高分子重量酯进行了液相色谱,其与α-叉烯臭氧分解SOA中存在,而不衍生成甲酯。可以获得明确的证据,用于MW368酯的分子结构,因为它对应于CIS-丝酸的酯,其中二甲基环丁烷环的羧基取代基而不是甲基羧基取代基酯化,用7-羟基脲酸酯化。在以前的工作中已经提出了相同的联系(Yasmeen等,2010),但可以在本研究中得到支持。由这些稳定酯的分子结构引导,我们提出了一种来自气相淘点的形成机制,该方法考虑了不稳定的C19H28O11产品的形成,该产品被检测为α-突烯臭氧溶解实验中的主要物种以及原始森林大气通过化学电离 - 大气压电离 - 飞行时间的硝酸盐聚类 - EHN等,2012,2014)。建议,与顺式葡萄酸(RO2中心点)和烷氧基与7-或5-羟基膦酸(R'o中心点)相关的酰基过氧基团用作关键气相自由基,并根据RO2 + R'o中心点 - & RO3R'自由基终止反应。随后,不稳定的C19H28O11 HOM物种通过粉碎氧气或酮的损失分解

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