Altieri Katye E, Carlton Annmarie G, Lim Ho-Jin, Turpin Barbara J, Seitzinger Sybil P
Institute of Marine and Coastal Sciences, Department of Environmental Sciences, Rutgers NOAA CMER Program, Rutgers, The State University of New Jersey, New Brunswick 08901-8521, USA.
Environ Sci Technol. 2006 Aug 15;40(16):4956-60. doi: 10.1021/es052170n.
Electrospray ionization mass spectrometry (ESI-MS) was used to investigate product formation in laboratory experiments designed to study secondary organic aerosol (SOA) formation in clouds. It has been proposed that water soluble aldehydes derived from aromatics and alkenes, including isoprene, oxidize further in cloud droplets forming organic acids and, upon droplet evaporation, SOA. Pyruvic acid is an important aqueous-phase intermediate. Time series samples from photochemical batch aqueous phase reactions of pyruvic acid and hydrogen peroxide were analyzed for product formation. In addition to the monomers predicted by the reaction scheme, products consistent with an oligomer system were found when pyruvic acid and OH radical were both present. No evidence of oligomer formation was found in a standard mix composed of pyruvic, glyoxylic, and oxalic acids prepared in the same matrix as the samples analyzed using the same instrument conditions. The distribution of high molecular weight products is consistent with oligomers composed of the mono-, oxo-, and di-carboxylic acids expected from the proposed reaction scheme.
电喷雾电离质谱法(ESI-MS)被用于在旨在研究云中二次有机气溶胶(SOA)形成的实验室实验中研究产物形成。有人提出,源自芳烃和烯烃(包括异戊二烯)的水溶性醛在云滴中进一步氧化形成有机酸,并且在液滴蒸发时形成SOA。丙酮酸是一种重要的水相中间体。对丙酮酸和过氧化氢的光化学间歇水相反应的时间序列样品进行产物形成分析。除了反应方案预测的单体之外,当丙酮酸和OH自由基都存在时,发现了与低聚物体系一致的产物。在由丙酮酸、乙醛酸和草酸组成的标准混合物中,在与使用相同仪器条件分析的样品相同的基质中制备,未发现低聚物形成的证据。高分子量产物的分布与由所提出的反应方案预期的单羧酸、氧代羧酸和二羧酸组成的低聚物一致。