首页> 外文期刊>The Science of the Total Environment >High time-resolved measurements of water-soluble sulfate, nitrate and ammonium in PM_(2.5) and their precursor gases over the Eastern Mediterranean
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High time-resolved measurements of water-soluble sulfate, nitrate and ammonium in PM_(2.5) and their precursor gases over the Eastern Mediterranean

机译:PM_(2.5)中水溶性硫酸盐,硝酸盐和铵的高时间分辨测量及其前体气体在东部地中海

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High time-resolved measurements of aerosol SO42-, NO3-, NH4+ and their precursor gases HNO3, SO2, NH3 between 27 and 02 January/February and 19-01 August/September 2015 were carried out by applying AIM-IC at a rural site located on the coast of the Eastern Mediterranean, Erdemli, Turkey. The comparison between online and offline techniques revealed better correlation coefficients for SO42- and NH4+ (r 0.90) than that of NO3- (0.63). Mean concentrations of water-soluble species were found in decreasing order SO42- (2814 ng m(-3)) NH4+ (1371 ng m(-3 )) NO3- (495 ng m(-3)). NH3 (3390 ng m(-3)) concentration was more than enough to neutralize SO2 (879 ng m(-3)) and HNO3 (346 ng m(-3)). The gas-to-particle conversion ratios (0.3) implied that SO42-, NO3- and NH4+ were mainly influenced by non-local sources. SO42-, NO3-, NH4+, HNO3, SO2 exhibited remarkable decrease (leastways 40%) in the atmosphere over the Eastern Mediterranean throughout fifteen years. In winter, day time NH(3 )concentrations illustrated significant relationship with temperature (positive) and humidity (negative), implying evaporation of dew or emission from plant stoma. Whereas, diurnal cycle of SO42- and SO2 was considerably influenced by populated City of Mersin in winter. During summer, HNO3 and SO2 (r = 0.74) demonstrated similar diurnal cycle, suggesting a common source for these precursor gases whilst NH3 was considerably affected by biomass burning emissions. Variability of all species was governed by local or nearly mesoscale transport in winter possibly due to frequent rain events. In summer, air flow from Eastern Mediterranean denoted aged air masses (GPC 0.65) containing rather uniform concentrations of SO42- (similar to 65 nmol m(-3)) and NH4+ (similar to 140 nmol m(-3)). The highest NH3 along with the greatest % K-BB contribution to PM2.5 mass was observed under the influence of Northerly airflow, exhibiting significance of biomass burning emissions as a source of NH3 in summer. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过在农村遗址应用AIM-IC,在2015年8月27日至2015年至2015年至2015年至2015年至2015年至2015年至2015年至2015年至2015年至2015年至2015年1月至2015年1月至19日至19日至19日至19日至19日至19日至19日至19日至19日至19日至19日至19日至19日至19日至19日至19日至19日至19日至19日至0日期位于土耳其Erdemli东部地中海的海岸。在线和离线技术之间的比较显示SO42-和NH4 +(R> 0.90)的相关系数比NO3-(0.63)的相关系数。在减少顺序SO42-(2814 ng m(-3))> NH 4 +(1371ng m(-3))> NO 3-(495ng m(-3))中,发现了平均水溶性物质的浓度。 NH 3(3390ng m(-3))浓度大于足以中和SO 2(879ng m(-3))和HNO 3(346ng m(-3))。气于颗粒转化比(> 0.3)暗示SO42-,NO 3和NH4 +主要受非局部来源的影响。 SO42-,NO3-,NH4 +,HNO3,SO2在十五年内,在东部地中海的大气中表现出显着的减少(最低40%)。在冬季,日时间NH(3)浓度与温度(阳性)和湿度(阴性)的显着关系显示,暗示露水或植物造口的排放蒸发。然而,SO42-and SO2的昼夜周期受到冬季人口的群体群体的影响。在夏季,HNO3和SO2(R = 0.74)展示了类似的昼夜循环,表明这些前体气体的常见来源,而NH3受生物质燃烧排放的影响。所有物种的可变性受到当地或近米尺度的冬季可能因频繁的雨季事件而受到的限制。在夏季,来自东部地中海的空气流量表示老化的空气质量(GPC> 0.65),其含有相当均匀的SO 4 2-(类似于65nmol M(-3))和NH 4 +(类似于140 Nmol M(-3))。在北方气流的影响下,观察到最高NH3以及最大的k-BB对PM2.5质量的贡献,在夏季将生物量燃烧排放的意义表现出生物量燃烧排放的重要性。 (c)2019 Elsevier B.v.保留所有权利。

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