Analysis of the TSP, PM10 concentrations and water-soluble ionic species in airborne samples over Sistan, Iran during the summer dusty period

Analysis of the TSP, PM10 concentrations and water-soluble ionic species in airborne samples over Sistan, Iran during the summer dusty period
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DOI:
10.1016/j.apr.2016.11.001
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发表时间:
2017-05
影响因子:
4.5
通讯作者:
R. D. Behrooz;A. Esmaili-Sari;N. Bahramifar;D. Kaskaoutis
R. D. Behrooz;A. Esmaili-Sari;N. Bahramifar;D. Kaskaoutis
中科院分区:
环境科学与生态学3区
文献类型:
--
作者:
R. D. Behrooz;A. Esmaili-Sari;N. Bahramifar;D. Kaskaoutis

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本研究分析了总悬浮颗粒物(TSP)和颗粒物小于10 μm(PM10)的浓度沿着与水溶性离子物种(WSIS)在空气中收集的灰尘样品中,扎布尔,位于伊朗东南部的Sirtal盆地。TSP和PM10的平均浓度分别为1867.0 μg m− 3和433.4 μg m− 3,而WSIS对TSP和PM10质量的贡献分别仅为8.9%和19.3%,这表明大部分水不溶性地壳元素,碳质气溶胶和重金属仍然未被探索。Ca 2+是最丰富的离子种类,占WSIS总质量的25-26%,其次是NH 4+,K+和SO 42 −。Cl−和Na+的重要部分(占WSIS总质量的7-9%)表明,由于Hamoun湖的干燥和强烈的Levar(120天)风抬升蒸发的矿物,在Soho上空存在盐沙尘暴。WSIS之间的高度相关性表明,NaCl,(NH 4)2SO 4,MgSO 4,K2 SO 4,CaSO 4和NH 4 NO3的形成的可能性很大。沙尘日(能见度< 2 km)与强风(平均11.7 ms− 1)和地壳元素浓度的大幅增加(1080 -100%)有关(例如,Ca 2+、Mg 2+和Cl−),而TSP和PM10浓度分别达到4496 μgm− 3和1010.6 μgm−3。
The present study analyzes the total suspended particulates (TSP) and particulate matter less than 10 μm (PM10) concentrations along with the water-soluble ionic species (WSIS) in airborne dust samples collected in Zabol, located in the Sistan basin of southeast Iran. Rather extreme TSP and PM10mean concentrations of 1867.0 μg m−3and 433.4 μg m−3are found, while the WSIS contribute only 8.9% and 19.3% to the TSP and PM10mass, respectively indicating large fraction of water-insoluble crustal elements, carbonaceous aerosols and heavy metals that remained unexplored. Ca2+is the most abundant ionic species contributing ∼25–26% to the total WSIS mass, followed by NH4+, K+, and SO42−. Important fractions of Cl−and Na+(7–9% of the total WSIS mass) indicate the presence of saline dust storms over Sistan due to desiccation of the Hamoun lakes and uplift of evaporated minerals by the strong Levar (120-days) wind. High correlations between the WSIS suggest large possibility for formation of NaCl, (NH4)2SO4, MgSO4, K2SO4, CaSO4and NH4NO3. The dusty days (visibility < 2 km) are associated with intense winds (11.7 ms−1on average) and large increase (∼80–100%) in the concentrations of the crustal elements (e.g., Ca2+, Mg2+and Cl−) compared to the normal days, while the TSP and PM10concentrations reach to 4496 μgm−3and 1010.6 μgm−3, respectively.