首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Diurnal variations of organic molecular tracers and stable carbon isotopic composition in atmospheric aerosols over Mt. Tai in the North China Plain: an influence of biomass burning
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Diurnal variations of organic molecular tracers and stable carbon isotopic composition in atmospheric aerosols over Mt. Tai in the North China Plain: an influence of biomass burning

机译:山顶大气气溶胶中有机分子示踪剂的日变化和稳定的碳同位素组成。华北平原的泰:生物量燃烧的影响

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pstrongAbstract./strong Organic tracer compounds, as well as organic carbon (OC), elemental carbon (EC), water-soluble organic carbon (WSOC), and stable carbon isotope ratios (δsup13/supC) of total carbon (TC) have been investigated in aerosol samples collected during early and late periods of the Mount Tai eXperiment 2006 (MTX2006) field campaign in the North China Plain. Total solvent-extractable fractions were investigated by gas chromatography/mass spectrometry. More than 130 organic compounds were detected in the aerosol samples. They were grouped into twelve organic compound classes, including biomass burning tracers, biogenic primary sugars, biogenic secondary organic aerosol (SOA) tracers, and anthropogenic tracers such as phthalates, hopanes and polycyclic aromatic hydrocarbons (PAHs). In early June when the field burning activities of wheat straws in the North China Plain were very active, the total identified organics (2090 ?± 1170 ng msupa??3/sup) were double those in late June (926 ?± 574 ng msupa??3/sup). All the compound classes were more abundant in early June than in late June, except phthalate esters, which were higher in late June. Levoglucosan (88a??1210 ng msupa??3/sup, mean 403 ng msupa??3/sup) was found as the most abundant single compound in early June, while diisobutyl phthalate was the predominant species in late June. During the biomass-burning period in early June, the diurnal trends of most of the primary and secondary organic aerosol tracers were characterized by the concentration peaks observed at mid-night or in early morning, while in late June most of the organic species peaked in late afternoon. This suggests that smoke plumes from biomass burning can uplift the aerosol particulate matter to a certain altitude, which could be further transported to and encountered the summit of Mt. Tai during nighttime. On the basis of the tracer-based method for the estimation of biomass-burning OC, fungal-spore OC and biogenic secondary organic carbon (SOC), we estimate that an average of 24% (up to 64%) of the OC in the Mt. Tai aerosols was due to biomass burning in early June, followed by the contribution of isoprene SOC (mean 4.3%). In contrast, isoprene SOC was the main contributor (6.6%) to OC, and only 3.0% of the OC was due to biomass burning in late June. In early June, δsup13/supC of TC (a??26.6 to a??23.2‰, mean a??25.0‰) were lower than those (a??23.9 to a??21.9‰, mean a??22.9‰) in late June. In addition, a strong anti-correlation was found between levoglucosan and δsup13/supC values. This study demonstrates that crop-residue burning activities can significantly enhance the organic aerosol loading and alter the organic composition and stable carbon isotopic composition of aerosol particles in the troposphere over the North China Plain./p.
机译:> >摘要。有机示踪化合物,以及有机碳(OC),元素碳(EC),水溶性有机碳(WSOC)和稳定的碳同位素比(δ 13 C)。通过气相色谱/质谱法研究了总的可提取溶剂的馏分。在气溶胶样品中检测到130多种有机化合物。它们被分为十二种有机化合物类别,包括生物质燃烧示踪剂,生物基初级糖,生物次级有机气溶胶(SOA)示踪剂和人为示踪剂,例如邻苯二甲酸酯,ates烷和多环芳烃(PAHs)。在6月初华北平原小麦秸秆田间焚烧活动非常活跃时,鉴定出的有机物总量(2090?±1170 ng m a ?? 3 )是6月下旬的两倍( 926?±574 ng m a ?? 3 )。除了邻苯二甲酸酯在6月下旬更高之外,6月初的所有化合物类别均比6月下旬更为丰富。在6月初发现左旋葡聚糖(88a ?? 1210 ng m a ?? 3 ,平均403 ng m a ?? 3 )是最丰富的单一化合物,而二异丁基邻苯二甲酸盐是6月下旬的主要物种。在6月初的生物质燃烧期间,大多数一次和二次有机气溶胶示踪剂的日变化趋势以午夜或清晨观察到的浓度峰值为特征,而6月下旬,大多数有机物物种在12月达到峰值。下午晚些时候。这表明来自生物质燃烧的烟羽可以将气溶胶颗粒物质提升到一定高度,然后可以进一步运输到山顶。晚上有泰。在基于示踪剂的生物量燃烧OC,真菌孢子OC和生物成因有机碳(SOC)估算方法的基础上,我们估算出平均OC中有24%(最高64%)的OC。公吨。大雾是由于6月初燃烧了生物质,其次是异戊二烯SOC(平均4.3%)。相比之下,异戊二烯SOC是OC的主要贡献者(6.6%),只有OC的3.0%是由于6月下旬的生物质燃烧。在6月初,TC的δ 13 (a ?? 26.6至a ?? 23.2&permil ;,平均a ?? 25.0 permil;)低于那些(a ?? 23.9至a?2)。 6月下旬为21.9英镑)。另外,在左旋葡聚糖和δ 13 C值之间发现强烈的抗相关性。这项研究表明,作物残渣燃烧活动可以显着提高华北平原对流层中有机气溶胶的装载量,并改变其气溶胶颗粒的有机组成和稳定的碳同位素组成。

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