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蒽和苯并(a)蒽在实验室柱中通过铁石英和三种含水层材料的传输。

Transport of anthracene and benz(a)anthracene through iron-quartz and three aquifer materials in laboratory columns.

作者信息

Chi Fung-Hwa, Amy Gary L

机构信息

Department of Environmental Engineering, Kun-Shan University of Technology, Tainan 710, Taiwan, ROC.

出版信息

Chemosphere. 2004 Apr;55(4):515-24. doi: 10.1016/j.chemosphere.2003.11.055.

Abstract

In groundwater systems, dissolved natural organic matter (NOM) can influence the mobility of organic contaminants by altering the contaminant behavior in water and solid phases. The transport of anthracene and benz(a)anthracene (B(a)A) was studied in the presence and absence of NOM and/or soil organic matter (SOM) in column experiments. The results show that sorption are related to the properties of polycyclic aromatic hydrocarbons (PAHs), NOM and SOM. In the Fe-quartz media, the amount of NOM (20 mg/l) in solution had a little effect on increasing the apparent solubility of anthracene and countering increased anthracene sorption. In the natural (Bemidji) soil, Suwannee river fulvic acid (SRFA, 20 mg/l) and Suwannee river humic acid (SRHA) in water did not compete with SOM for anthracene, indicating that SOM has higher partition efficiency for anthracene. It was also observed that slow diffusion through an organic phase apparently caused most of the observed tailing in column breakthrough curves (BTCs). Even though the fOC of washed Bemidji sediment was very low, the transport of B(a)A was retarded significantly, however, and the transport of B(a)A was shown to be facilitated by dissolved NOM.

摘要

在地下水系统中,溶解态的天然有机物(NOM)可通过改变有机污染物在水相和固相中的行为来影响其迁移性。通过柱实验研究了在有和没有NOM和/或土壤有机质(SOM)存在的情况下蒽和苯并(a)蒽(B(a)A)的迁移情况。结果表明,吸附作用与多环芳烃(PAHs)、NOM和SOM的性质有关。在铁-石英介质中,溶液中20 mg/L的NOM对增加蒽的表观溶解度及对抗蒽吸附增加的影响较小。在天然(贝米吉)土壤中,水中的苏万尼河富里酸(SRFA,20 mg/L)和苏万尼河腐殖酸(SRHA)不会与SOM竞争蒽,这表明SOM对蒽具有更高的分配效率。还观察到,通过有机相的缓慢扩散显然导致了柱突破曲线(BTCs)中大部分观察到的拖尾现象。尽管冲洗后的贝米吉沉积物的有机碳含量(fOC)非常低,但B(a)A的迁移仍显著受阻,不过,溶解态NOM显示出促进B(a)A迁移的作用。

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