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Concentration, distribution and variation of polar organic aerosol tracers in Ya'an, a middle-sized city in western China

机译:西部中型城市雅安市极性有机气溶胶示踪剂的浓度,分布和变化

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摘要

PM_(2.5) (particulate matter with an aerodynamic diameter <2.5μm) and TSP (total suspended particulates) aerosol samples were collected in Ya'an, a middle-sized city with extensive wood resources in Southwestern China, to characterize the contribution of secondary organic aerosols (SOA) to the regional troposphere, the composition of the organic tracers as well as factors affecting their concentrations. A total of 34 samples were gathered on the Campus of Sichuan Agricultural University (SAU, urban site, in the city zone of Ya'an), while 49 samples were collected at Baima Spring Scenic Area (BSSA, forest site, situated about 30 km to the northeast of SAU) during June to July, 2010. Using GC/MS analysis with prior trimethylsilylation, organic tracers including isoprene oxidation products (2-methyltetrols, C_5-alkene triols and 2-methylglyceric acid), α-β-pinene oxidation products (norpinic acid, 3-hydroxyglutaric acid, 3-hydroxy-4,4-dimethylglutaric acid, and 3-methyl-l,2,3- butanetricarboxylic acid), a sesquiterpene oxidation product (β-caryophyllinic acid), sugars (glucose and fructose), sugar alcohols (arabitol, mannitol, erythritol, sorbitol and xylitol), anhydrosugars (levoglucosan, mannosan and galactosan) and malic acid were determined. The factors that could potentially affect the SOA tracer concentrations, i.e. trace gases (SO_2, NO_x, O_3, NH_3), aerosol acidity and meteorological parameters, were monitored. The results showed that the concentrations of total isoprene oxidation products were 72 and 82 ng/m3 at the two sampling locations, with 29 ± 18, 37 ± 9,6 ± 2 ng/m~3 at SAU and 57 ± 34,33 ± 33,4 ± 2 ng/m3 at BSSA for 2-methyltetrols, C_5-alkene triols and 2-methylglyceric acid respectively. Compared with the concentrations of isoprene oxidation products, those of α-/β-pinene oxidation products and p-caryophyllinic acid were much lower, being 6±33 and 0.5±1.9ng/m~3 at SAU, and 9±14 and 1.0±1.2ng/m~3 at BSSA, respectively. The unique composition of isoprene oxidation products, particularly, the high concentrations of the C_5-alkene triols and their relative abundances comparable to those of the 2-methyltetrols, are possibly due to the fact that they are formed through acid-catalyzed reactions of C_5-epoxydiols on weak acidic aerosols. Moreover, sugars and sugar alcohols were measured in important fractions at the two study areas, with the median concentrations of 309.7 and 465.7 ng/m~3 at SAU and BSSA, respectively. The high abundances of sugar and sugar alcohols in the study area are explained by the robust metabolism of microorganism in the fertile soil under the warm and moist climate as well as vigorous physiological activities of vegetations in the exuberant subtropical areas. The detected organic tracers accounted in total for 1.5-1.8% of organic carbon (OC) in the study atmosphere, and about 15-21% of the OC could in total be apportioned to biogenic aerosol sources and source processes.
机译:在中国西南部木材资源丰富的中型城市雅安,采集了PM_(2.5)(空气动力学直径<2.5μm的颗粒物)和TSP(总悬浮颗粒物)气溶胶样品。区域对流层中的有机气溶胶(SOA),有机示踪剂的组成以及影响其浓度的因素。四川农业大学校园(雅安市区市区,SAU)共收集了34个样本,而距离约30公里的白马泉风景区(BSSA)森林中收集了49个样本。于2010年6月至7月之间。使用GC / MS分析和事先的三甲基甲硅烷基化作用,有机示踪剂包括异戊二烯氧化产物(2-甲基四醇,C_5-烯烃三醇和2-甲基甘油酸),α-β-pine烯氧化产物(去甲产酸,3-羟基戊二酸,3-羟基-4,4-二甲基戊二酸和3-甲基-1,2,3-丁三羧酸),倍半萜烯氧化产物(β-叶绿素酸),糖(葡萄糖测定果糖醇(阿拉伯糖醇,甘露醇,赤藓糖醇,山梨糖醇和木糖醇),脱水糖(左葡糖聚糖,甘露聚糖和半乳糖聚糖)和苹果酸。监测了可能影响SOA示踪剂浓度的因素,即痕量气体(SO_2,NO_x,O_3,NH_3),气溶胶酸度和气象参数。结果表明,两个采样点的异戊二烯氧化产物总浓度分别为72和82 ng / m3,SAU为29±18、37±9.6±2 ng / m〜3和57±34,33±在BSSA中,对于2-甲基四醇,C_5-烯烃三醇和2-甲基甘油酸分别为33.4±2 ng / m3。与异戊二烯氧化产物的浓度相比,α-/β-pine烯氧化产物和对-叶肉豆蔻酸的浓度要低得多,在SAU时分别为6±33和0.5±1.9ng / m〜3,在9±14和1.0时BSSA分别为±1.2ng / m〜3。异戊二烯氧化产物的独特组成,特别是高浓度的C-5烯烃三醇及其相对丰度可与2-甲基四醇相比,可能是由于它们是通过C-5的酸催化反应形成的事实弱酸性气溶胶上的环氧二醇。此外,在两个研究区域的重要部分中,糖和糖醇的含量均进行了测量,SAU和BSSA的中值浓度分别为309.7和465.7 ng / m〜3。在温暖湿润的气候下,肥沃的土壤中微生物的强健代谢以及旺盛的亚热带地区植被的剧烈生理活动,可以解释研究区糖和糖醇含量高的原因。在研究大气中,检测到的有机示踪剂总计占有机碳(OC)的1.5-1.8%,约有15-21%的OC可分配给生物气溶胶源和源过程。

著录项

  • 来源
    《Atmospheric research》 |2013年第2期|29-42|共14页
  • 作者单位

    Provincial Key Laboratory of Agricultural Environmental Engineering, College of Resources and Environment, Sichuan Agricultural University, Chengdu, 611130,Sichuan Province, China;

    Provincial Key Laboratory of Agricultural Environmental Engineering, College of Resources and Environment, Sichuan Agricultural University, Chengdu, 611130,Sichuan Province, China;

    Provincial Key Laboratory of Agricultural Environmental Engineering, College of Resources and Environment, Sichuan Agricultural University, Chengdu, 611130,Sichuan Province, China;

    Institute of Environmental Pollution and Health, Shanghai University, Shanghai 200444, China;

    Provincial Key Laboratory of Agricultural Environmental Engineering, College of Resources and Environment, Sichuan Agricultural University, Chengdu, 611130,Sichuan Province, China;

    Provincial Key Laboratory of Agricultural Environmental Engineering, College of Resources and Environment, Sichuan Agricultural University, Chengdu, 611130,Sichuan Province, China;

    Provincial Key Laboratory of Agricultural Environmental Engineering, College of Resources and Environment, Sichuan Agricultural University, Chengdu, 611130,Sichuan Province, China;

    Provincial Key Laboratory of Agricultural Environmental Engineering, College of Resources and Environment, Sichuan Agricultural University, Chengdu, 611130,Sichuan Province, China;

    Provincial Key Laboratory of Agricultural Environmental Engineering, College of Resources and Environment, Sichuan Agricultural University, Chengdu, 611130,Sichuan Province, China;

    Provincial Key Laboratory of Agricultural Environmental Engineering, College of Resources and Environment, Sichuan Agricultural University, Chengdu, 611130,Sichuan Province, China;

    Provincial Key Laboratory of Agricultural Environmental Engineering, College of Resources and Environment, Sichuan Agricultural University, Chengdu, 611130,Sichuan Province, China;

    Provincial Key Laboratory of Agricultural Environmental Engineering, College of Resources and Environment, Sichuan Agricultural University, Chengdu, 611130,Sichuan Province, China;

    Provincial Key Laboratory of Agricultural Environmental Engineering, College of Resources and Environment, Sichuan Agricultural University, Chengdu, 611130,Sichuan Province, China;

    Provincial Key Laboratory of Agricultural Environmental Engineering, College of Resources and Environment, Sichuan Agricultural University, Chengdu, 611130,Sichuan Province, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biogenic secondary organic cerosols (BSOA); trace gases; aerosol acidity; sugars; carbon contribution; ya'an;

    机译:生物成因的有机有机溶胶(BSOA);微量气体;气溶胶酸度糖;碳贡献;雅安;

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