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Structure-dependent degradation of polar compounds in weathered oils observed by atmospheric pressure photo-ionization hydrogen/deuterium exchange ultrahigh resolution mass spectrometry

机译:大气压光电离氢/氘交换超高分辨率质谱法观察风化油中极性化合物的结构依赖性降解

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摘要

The resin fractions of fresh mixtures of three oils spilled during the M/V Hebei Spirit oil spill, as well as weathered oils collected at weathering stages II and IV from the oil spill site were analyzed and compared by atmospheric pressure photo-ionization hydrogen/deuterium exchange mass spectrometry (HDX MS). The significantly decreased abundance of N+center dot and [N - H + D](+) ions suggested that secondary and tertiary amine-containing compounds were preferentially degraded during the early stage of weathering. [N + H](+) and [N + D](+) ions previously attributed to pyridine-type compounds degraded more slowly than secondary and tertiary amine-containing compounds. The preferential degradation of nitrogen-containing compounds was confirmed by photo-degradation experiments using 15 standard compounds. In addition, significant increases of [S1O1 + H](+) and [S1O1 + D](+) ions with higher DBE values were observed from fresh oil mixtures as compared to stages II and IV samples, and that could be linked with the decrease of higher DBE compounds of the Si class. This study presented convincing arguments and evidence demonstrating that secondary and tertiary amines were more vulnerable to photo-degradation than compounds containing pyridine, and hence, preferential degradation depending on chemical structures must be considered in the production of hazardous or toxic components. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过大气压光电离氢/氘气分析并比较了河北精神号油轮溢油过程中溢油的三种新鲜混合物的树脂馏分,以及在风化阶段II和IV从溢油现场收集的风化油。交换质谱(HDX MS)。 N +中心点和[N-H + D](+)离子的丰度显着降低,这表明在风化的早期,含仲和叔胺的化合物优先降解。先前归因于吡啶类化合物的[N + H](+)和[N + D](+)离子的降解速度比含仲胺和叔胺的化合物要慢。含氮化合物的优先降解是通过使用15种标准化合物的光降解实验确定的。此外,与第二阶段和第四阶段样品相比,从新鲜油混合物中观察到具有较高DBE值的[S1O1 + H](+)和[S1O1 + D](+)离子显着增加,并且可能与降低了Si类的高级DBE化合物。这项研究提出了令人信服的论据和证据,表明仲胺和叔胺比含吡啶的化合物更易发生光降解,因此在生产危险或有毒组分时必须考虑根据化学结构的优先降解。 (C)2015 Elsevier B.V.保留所有权利。

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