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Size dependent elemental composition of road-associated particles

机译:道路相关颗粒的尺寸依赖性元素组成

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Stormwater particles often provide transport for metals and other contaminants, however only larger particles are effectively removed by typical best management practices. Fine particles and their associated constituents are more likely to reach receiving waters; this merits further investigation regarding the metal contribution of fine (d_p < 10 μm) and very fine (d_p<1.5 μm) particles. Road associated particles were collected by vacuuming a road surface and by collecting highway stormwater runoff. A cell sorter was employed to sort road associated particles into four size ranges: 0.1-0.3,0.3-0.5,0.5-1.0, and 1.0-1.5 urn. These very fine particles, along with six particle size ranges (total range <2-63 μm) separated using a settling column, were analyzed for Al, Mn, Fe, Cr, Ni, Cu, Zn, and Pb using Inductively Coupled Plasma Mass Spectrometry (ICP-MS). Enrichment factors (EFs), calculated using Al as a basis to represent crustal contributions, were similar for the vacuumed road dust and the stormwater runoff. Fe and Mn were minimally depleted (0.1×) or near unity for all size ranges (Fe EF range 0.01-3.7; Mn EF range 0.02-10.6). Cr, Ni, Cu, Zn, and Pb were moderately (10×) to considerably (>100×) enriched for most size ranges; these metals were most enriched in the very fine fractions (max EF ~4900 in Zn, 0.1-0.3 μm). Based on this preliminary study, a cell sorter is an acceptable means of fractionating aqueous particles of diameter 0.1-1.5 μm. In spite of their minimal relative mass contribution, the very fine particles are environmentally relevant due to their mobility and enrichment in potentially toxic metals.
机译:雨水颗粒经常为金属和其他污染物提供运输,但是典型的最佳管理方法只能有效地去除较大的颗粒。细颗粒及其相关成分更容易到达接收水;对于细颗粒(d_p <10μm)和极细颗粒(d_p <1.5μm)的金属贡献值得进一步研究。通过吸尘路面和收集高速公路雨水径流来收集与道路相关的颗粒。使用细胞分选仪将道路相关颗粒分选为四个尺寸范围:0.1-0.3、0.3-0.5、0.5-1.0和1.0-1.5 ur。使用沉降耦合柱对这些非常细的颗粒以及六个粒径范围(总范围<2-63μm)进行分离,使用电感耦合等离子体质谱仪分析了Al,Mn,Fe,Cr,Ni,Cu,Zn和Pb光谱分析(ICP-MS)。以Al为基础来表示地壳贡献的富集因子(EFs)与真空吸尘和雨水径流相似。在所有尺寸范围内(Fe EF范围为0.01-3.7; Mn EF范围为0.02-10.6),Fe和Mn的耗竭最少(0.1x)或接近统一。在大多数尺寸范围内,Cr,Ni,Cu,Zn和Pb均适度(10x)到相当多(> 100x)富集。这些金属中的极细部分含量最高(锌中最大EF〜4900,0.1-0.3μm)。基于此初步研究,细胞分选仪是分离直径为0.1-1.5μm的水性颗粒的可接受方法。尽管它们的相对质量贡献很小,但由于它们的移动性和对潜在有毒金属的富集,这些极细的颗粒与环境相关。

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