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Quantitative chemical composition and characteristics of aerosols over western India: One-year record of temporal variability

机译:印度西部地区气溶胶的定量化学组成和特征:一年时间变化的记录

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One-year quantitative chemical data set consisting of water-soluble constituents (NH_4~+, Na~+, K~+, Mg~(2+), Ca~(2+), Cl~-, NO_3~-, SO_4~(2-) and HCO_3~-), crustal and trace elements (A1, Fe, Ca, Mg, K, Mn, Zn, Pb) and carbonaceous species (OC, EC) in ambient aerosols, collected over an urban site located in a high-dust semi-arid region of western India, reveals excellent linear relationship (r~2 = 0.92; slope = 0.96 ± 0.05) between gravimetri-cally assessed TSP (total suspended particulates) and chemically analyzed aerosol mass. The TSP abundance ranging from 60 to 250 μg m~(-3), over a period of 12 months (January-December), is dominated by mineral dust (~70%); whereas contribution from sea-salts, anthropogenic and carbonaceous species exhibits significant temporal variability depending upon the wind regimes. The mineral dust is enriched in Ca, Mg and Fe with respect to upper continental crust (UCC); whereas Zn and Pb exhibit a characteristic anthropogenic source and high enrichment factors. The carbonaceous species show significant season-ality; with dominance of OC (range: 4.6-28 μg m~(-3); average: 12.8 μg m~(-3); SD: 6.8) and minor contribution from EC (range: 0.3-4.4 μg m~(-3); average: 2.4 μg m~(-3); SD: 1.4). The observed concentrations are significantly lower than those reported for the metro cities in South Asia but the OC/EC ratios (range: 4.3-35; average: 8.3; SD: 5.7) are significantly higher than the characteristic ratio (~ 2-4) reported for the urban atmosphere. Such quantitative chemical characterization of aerosols is essential in assessing their role in atmospheric chemistry and climate change. This study could also be useful in understanding the physical and optical aerosol properties documented from the same site and thus, in validating regional climate models.
机译:由水溶性成分(NH_4〜+,Na〜+,K〜+,Mg〜(2 +),Ca〜(2 +),Cl〜-,NO_3〜-,SO_4〜组成的一年定量化学数据集(2-)和HCO_3〜-),周围气溶胶中的地壳和痕量元素(A1,Fe,Ca,Mg,K,Mn,Zn,Pb)和碳质物种(OC,EC),收集于位于印度西部一个高尘埃半干旱地区,通过重量法评估的TSP(总悬浮颗粒)与化学分析的气溶胶质量之间显示出极好的线性关系(r〜2 = 0.92;斜率= 0.96±0.05)。在12个月(1月至12月)内,TSP的丰度范围为60至250μgm〜(-3),主要是矿物粉尘(〜70%);而来自海盐,人为和碳质物种的贡献则表现出明显的时间变化,具体取决于风况。相对于上地壳(UCC)而言,矿物粉尘中的钙,镁和铁含量较高。而Zn和Pb则具有人为特征和丰富的富集因子。碳质物种表现出明显的季节性。 OC占主导地位(范围:4.6-28μgm〜(-3);平均:12.8μgm〜(-3); SD:6.8),EC贡献较小(范围:0.3-4.4μgm〜(-3) );平均值:2.4μgm〜(-3); SD:1.4)。观测到的浓度显着低于南亚大都市的报告浓度,但OC / EC比率(范围:4.3-35;平均值:8.3; SD:5.7)显着高于特征比率(〜2-4)报告为城市大气。气雾剂的这种定量化学特征对于评估其在大气化学和气候变化中的作用至关重要。这项研究也可能有助于理解同一站点记录的物理和光学气溶胶特性,从而验证区域气候模型。

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