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Associations of polycyclic aromatic hydrocarbons (PAHs) with urban stream sediments.

机译:多环芳烃与城市河流沉积物的联系。

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摘要

Polycyclic aromatic hydrocarbons (PAHs) in urban runoff can occur both in soluble and particulate-associated forms. Because of their low volatility (low Henry's Law constant), high octonal-water partition coefficients (K OW), and high soil organic coefficients (KOC), many of the PAHs are preferentially adsorbed to particulate matter. As part of this research, fugacity based partition calculations were performed to identify the percentage of associations of selected PAHs with different phases in the aquatic environment under equilibrium conditions. The partition prediction calculations showed higher associations of PAHs with sediments than in the liquid portion or in the air, especially for high molecular weight PAHs.;PAH analyses in environmental samples are challenging because of the relatively low concentrations and the complexity of the mixtures in the samples. Most of the available standard procedures are time-consuming, manual-work-oriented, and require large amounts of organic solvents. As one of the objectives of this research, the researcher developed a faster and less labor-intensive analysis procedure by using a thermal desorption techniques for analyses of selected PAHs in environmental sediment samples.;Understanding the association of contaminants with different particle sizes is important for determining the most effective treatment of runoff. The composition of the sediment (organic matter and other litter vs. inert soil) may effect the association of PAHs with the sediment. The sediment material composition is likely affected by contributing source areas. One of the goals of this research work was to quantify the material compositions, associated chemical oxygen demand, and associated PAH concentrations in size-fractionated sediment samples collected from three different creeks. The sediments at these creeks were affected by runoff from different major land use source areas. Overall, the PAH concentrations were found to be affected by sediment particle sizes and sampling location. The large organic material component of the sediments was found to have higher concentrations of PAHs when compared to other sediment sizes. Contamination by hydrocarbons at one of the sampling sites also affected the observed PAH concentrations, especially for small particles.
机译:城市径流中的多环芳烃(PAHs)可以以可溶性形式存在,也可以以颗粒形式存在。由于它们的低挥发性(低亨利定律常数),高辛酸-水分配系数(KOW)和高土壤有机系数(KOC),许多PAHs优先吸附在颗粒物上。作为这项研究的一部分,进行了基于逸度的分区计算,以识别平衡条件下水生环境中所选PAH与不同相的缔合百分比。分区预测计算表明,PAHs与沉积物的关联性高于液体部分或空气中的关联性,尤其是对于高分子量PAHs 。;由于样品中PAHs的浓度相对较低且混合物的复杂性,因此其分析具有挑战性样品。大多数可用的标准程序都是耗时的,面向手工的,并且需要大量的有机溶剂。作为这项研究的目标之一,研究人员通过使用热脱附技术对环境沉积物样品中的某些PAH进行分析,从而开发出了一种更快,更省力的分析程序。;了解不同粒径的污染物之间的关系对于确定径流最有效的处理方法。沉积物的成分(有机物和其他垃圾与惰性土壤)可能会影响PAHs与沉积物的结合。沉积物成分可能会受到源区的影响。这项研究工作的目标之一是量化从三个不同小溪收集的大小分级沉积物样品中的物质成分,相关的化学需氧量和相关的PAH浓度。这些小河的沉积物受到不同主要土地利用来源地区径流的影响。总的来说,发现PAH浓度受沉积物粒径和采样位置的影响。与其他尺寸的沉积物相比,沉积物中较大的有机物质成分具有较高的PAHs浓度。采样点之一处的碳氢化合物污染也影响到观察到的PAH浓度,尤其是对于小颗粒。

著录项

  • 作者

    Bathi, Jejal Reddy.;

  • 作者单位

    The University of Alabama.;

  • 授予单位 The University of Alabama.;
  • 学科 Engineering Civil.;Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 264 p.
  • 总页数 264
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:35

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