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Analytical Determination Of The Aerosol Organic Mass-to-organic Carbon Ratio

机译:气溶胶有机质碳比的分析测定

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Particulate matter (PM) with an aerodynamic diameter ≤2.5 μm (PM_(2.5)) was collected daily (mid-July 1998 to the end of December 1999) over a 24-hr sampling period in a mixed light industrial-residential area in Atlanta, GA, to provide a subset of data for the Aerosol Research and Inhalation Epidemiology Study (ARIES). This study included the measurement of organic carbon (OC), elemental carbon (EC), and individual organic compounds. OC and EC average mean concentrations were 4.50±0.33 and 2.08±0.19 μg/m~3, respectively. The ratio of organic matter mass (OM) to OC in PM_(2.5) aerosols in Atlanta was measured using three different approaches: (1) solvent extract residue gravimetric masses to individual OC concentrations of sequential apolar to polar solvent extracts (dichloromethane, acetone, and water); (2) mass balance of the PM_(2.5) measured gravimetric mass minus the mass concentrations of the inorganic/elemental constituents to the total OC concentration; and (3) polar organic compound speciation with the concentration weighted ratio to the total OC concentration. We found very good agreement between approach 1 and 2. The average OM/OC ratio calculated from the extract residue mass was 2.14±0.17. The average OM/OC ratio determined by mass balance was 2.16±0.43 for the whole period. The concentration weighted ratio calculated from the concentrations of polar organic compounds ranged between 1.55 and 1.72, which was likely a lower limit for the ratio because of the limited number of the polar organic compounds that can be quantified using gas chromatographic methods. We found seasonal differences with an OM/OC range of 1.77 in December 1999 to 2.39 in July 1999. These results suggest that the previously accepted value of 1.4 for the OM/OC ratio was too low even for urban locationsrnduring the winter months. Molecular-level speciation of the PM_(2.5)-associated organic compounds showed that the concentrations of the molecular markers for wood smoke represented approximately 12-15% of the total polar organic compound concentrations during the winter months.
机译:在亚特兰大的一个混合轻工业住宅区中,每天(从1998年7月中旬到1999年12月底)在24小时的采样期内,收集空气动力学直径≤2.5μm的颗粒物(PM_(2.5))。 (GA),以提供用于气溶胶研究和吸入流行病学研究(ARIES)的数据子集。这项研究包括对有机碳(OC),元素碳(EC)和单个有机化合物的测量。 OC和EC的平均浓度分别为4.50±0.33和2.08±0.19μg/ m〜3。亚特兰大PM_(2.5)气溶胶中有机物质量(OM)与OC的比率采用三种不同的方法进行了测量:(1)溶剂萃取物残留量与连续非极性至极性溶剂萃取物(二氯甲烷,丙酮,和水); (2)测得的重量质量PM_(2.5)减去无机/元素成分的质量浓度与总OC浓度的质量平衡; (3)极性有机化合物的形态,其浓度与总OC浓度的权重比为。我们发现方法1和方法2之间有很好的一致性。根据提取物残留物质量计算出的平均OM / OC比为2.14±0.17。在整个期间,通过质量平衡确定的平均OM / OC比为2.16±0.43。由极性有机化合物的浓度计算出的浓度加权比在1.55至1.72之间,这可能是该比率的下限,因为可以使用气相色谱法定量的极性有机化合物的数量有限。我们发现季节差异在OM / OC范围从1999年12月的1.77到1999年7月的2.39。这些结果表明,即使对于冬季在城市地区,OM / OC比率以前接受的1.4值也太低了。与PM_(2.5)相关的有机化合物的分子水平形态分析表明,在冬季,木材烟雾的分子标记物浓度约占总极性有机化合物浓度的12-15%。

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