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Characteristics of Water-Soluble Inorganic Components and Acidity of PM2.5 in a Coastal City of China

机译:中国沿海城市水溶性无机成分的特征及PM2.5的酸度

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To investigate the characteristics of water-soluble inorganic ions (WSIIs) of PM2.5 and aerosol acidity in a coastal city, 352 samples were collected at four sites representing four functional zones (FJ: living town; XY: industrial area; TZ: scenery areas; HR: harbor) in Xiamen, China in 2015–2016. Mass concentrations of PM2.5, nine WSIIs, total acidity and in-situ acidity of aerosolon-sea-salt aerosol were measured. Overall, the mean mass concentrations of PM2.5 in the study area in spring, summer, autumn and winter were 57.5 ± 22.3, 28.1 ± 12.6, 46.8 ± 18.3 and 62.4 ± 22.1 µg m–3, respectively. WSIIs accounted for 36%–56% of PM2.5 at four sites. Secondary ions (non-sea-salt SO42–, NO3– and NH4+) contributed more than 74% to total WSIIs. Neutralization degree distributions indicated that 79.5% of PM2.5 was acidic. Total acidity and in-situ acidity both showed obvious seasonal variations, exhibited the peak values of 193.20 and 130.17 nmol m–3 at HR site in summer. Sea-salt contributed 2.58%–17.74% to acidity in four seasons. The normalized ammonium concentration ([NH4+]/[SO42–]) and normalized nitrate concentration ([NO3–]/[SO42–]) showed greater correlation coefficients after eliminating the ammonium-poor data points (greater than 0.66), especially at HR site. NH4HSO4 was the major form of WSIIs in PM2.5 and the formation of aqueous HNO3 could enhance aerosol acidity.
机译:为了研究沿海城市PM2.5的水溶性无机离子(WSII)和气溶胶酸度的特征,在代表四个功能区(FJ:居住城镇; XY:工业区; TZ:风光)的四个地点采集了352个样本地区;人力资源:港口),2015-2016年在中国厦门。测量了PM2.5的质量浓度,九种WSII,气溶胶/非海盐气溶胶的总酸度和原位酸度。总体而言,研究区春季,夏季,秋季和冬季的PM2.5平均质量浓度分别为57.5±22.3、28.1±12.6、46.8±18.3和62.4±22.1 µg m-3。 WSII在四个站点中占PM2.5的36%–56%。次级离子(非海盐SO42–,NO3–和NH4 +)占总WSII的74%以上。中和度分布表明79.5%的PM2.5呈酸性。总酸度和原地酸度均表现出明显的季节变化,夏季在HR处呈现193.20和130.17 nmol m-3的峰值。在四个季节中,海盐对酸度的贡献为2.58%–17.74%。在消除铵缺乏数据点(大于0.66)之后,尤其是在HR处,归一化铵浓度([NH4 +] / [SO42–])和归一化硝酸盐浓度([NO3 –] / [SO42–])显示出更大的相关系数。现场。 NH4HSO4是PM2.5中WSII的主要形式,含水HNO3的形成可以提高气溶胶的酸度。

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