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Sorption and leaching of short-term-aged PAHs in eight European soils: Link to physicochemical properties and leaching of dissolved organic carbon

机译:在八种欧洲土壤中对短期老化的PAH的吸附和浸出:与理化特性和溶解有机碳的浸出有关

摘要

Polycyclic aromatic hydrocarbons (PAH) are among the major contaminants in the terrestrial environment. In tools for ranking contaminated soils according to risks and cleanup measures, simple predictions of contaminant leaching rates and actual leaching concentrations need to be established preferably using simple sorption and leaching estimates based on easily measured soil characteristics. In this study, 24 hrs PAH sorption experiments were performed with the PAH pyrene and phenanthrene onto eight European soils, and sorption characteristics were compared with and related to soil characteristics. Also, the leaching of pyrene and dissolved organic carbon from the soils was investigated using a short multicolumn setup and a 30 mm h of water application rate. The soils were spiked with pyrene and aged between 7 and 180 days before leaching. Freundlich sorption coefficients, Kf, correlated well with the soil organic carbon contents, but the variability of Koc values among soils indicated that sorption could not be predicted from soil organic carbon contents alone. However, sorption predictions based on organic matter content and one additional simple soil parameter (e.g., clay content, cation exchange capacity, or pH) would yield accurate predictions of Kf. The leaching of both pyrene and dissolved organic carbon (DOC) was characterized by a two-stage release behavior with high concentrations in the initial samples followed by sharp decrease to lower baseline concentrations. In all experiments, only 1.2% of the spiked pyrene mass had been leached after 200 mm of water had leached, pointing to a low release of PAHs with water. The similar release behavior of pyrene and DOC along with pyrene concentrations in the leachate above the maximum solubility suggests that pyrene was mobilized along with DOC. Relating the leached amounts of pyrene to the amounts of leached DOC and subtracting the initial flush of pyrene and DOC yields fairly identical curves for accumulated pyrene leaching as a function of accumulated DOC leaching. These findings seem useful for estimating DOC-facilitated PAH leaching at contaminated sites.
机译:多环芳烃(PAH)是地球环境中的主要污染物之一。在根据风险和清除措施对污染土壤进行分级的工具中,需要建立污染物浸出率和实际浸出浓度的简单预测,最好是根据容易测量的土壤特征,使用简单的吸附和浸出估算。在这项研究中,使用PAH pyr和菲在8种欧洲土壤上进行了24小时的PAH吸附实验,并将吸附特性与土壤特性进行了比较并与之相关。同样,使用短的多柱装置和30 mm h的水施用速率,研究了pyr和溶解有机碳从土壤中的浸出。向土壤中掺入pyr,并在浸出前老化7至180天。 Freundlich吸附系数Kf与土壤有机碳含量相关性很好,但是土壤间Koc值的变异性表明仅靠土壤有机碳含量无法预测吸附。但是,基于有机物含量和一个附加的简单土壤参数(例如,粘土含量,阳离子交换容量或pH)的吸附预测将得出Kf的准确预测。 pyr和溶解有机碳(DOC)的浸出均以两阶段释放行为为特征,初始样品中浓度较高,然后急剧降低至较低的基线浓度。在所有实验中,浸出200毫米水后仅浸出了加标the质量的1.2%,这表明PAHs的水释放量低。 above和DOC的类似释放行为以及沥滤液中高于最大溶解度的pyr浓度表明suggests与DOC一起被动员。将the的浸出量与DOC的浸出量相减,并减去and和DOC的初始冲洗量,就可以得出累积identical的浸出量与DOC浸出量的函数相当相同的曲线。这些发现似乎对于估算受污染地点DOC促进的PAH浸出有用。

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