Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China.
J Hazard Mater. 2010 Nov 15;183(1-3):881-7. doi: 10.1016/j.jhazmat.2010.07.111. Epub 2010 Aug 6.
The surfactant SDBS has potential to be used as an extractant in advanced extraction methods. It was investigated if SDBS in concentrations of 10,000 mg L(-1) can be used to study the ageing behaviors of phenanthrene and pyrene in two soils. Compared to dichloromethane extraction, extraction with 10,000 mg L(-1) SDBS can improve the precision of the determination due to the low volatility of surfactant solution. In all cases tested, the amount of sorbed phenanthrene and pyrene in soils increased with contact time from 1 to 120 days, and can be applied well to both the three-domain model and the dual mode model. Redundancy analysis showed that time, organic carbon content and logK(ow) are major factors affecting the fitted Freundlich parameters and the sorption kinetics of phenanthrene and pyrene. The amount of sorbed phenanthrene and pyrene in low-concentrations samples varied more with time than the one in high concentrations, indicating that the sorption on soils is concentration-dependent. Also, the isotherms were operationally separated into a "fast" fraction and a "slow" fraction. The results imply that the adsorption sites are internal to the SOM matrix and unevenly distributed.
表面活性剂 SDBS 有可能被用作高级萃取方法中的萃取剂。本研究考察了 10000mg/L 的 SDBS 是否可用于研究两种土壤中菲和芘的老化行为。与二氯甲烷萃取相比,由于表面活性剂溶液的挥发性低,用 10000mg/L 的 SDBS 萃取可以提高测定的精密度。在所测试的所有情况下,土壤中吸附的菲和芘的量随接触时间从 1 天增加到 120 天而增加,并且可以很好地应用于三域模型和双模式模型。冗余分析表明,时间、有机碳含量和 logK(ow)是影响菲和芘拟合 Freundlich 参数和吸附动力学的主要因素。低浓度样品中吸附的菲和芘的量比高浓度样品随时间变化更大,表明土壤中的吸附与浓度有关。此外,平衡曲线被操作地分离为“快速”部分和“慢速”部分。结果表明,吸附位点位于 SOM 基质的内部且分布不均匀。