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复杂非水相液体混合物向水相的动态平衡溶解

Dynamic equilibrium dissolution of complex nonaqueous phase liquid mixtures into the aqueous phase.

作者信息

Schluep Mathias, Gälli René, Imboden Dieter M, Zeyer Josef

机构信息

BMG Engineering AG, Schlieren, Switzerland.

出版信息

Environ Toxicol Chem. 2002 Jul;21(7):1350-8.

Abstract

Human health risks posed by hazardous substances seeping from a pool of nonaqueous phase liquids (NAPLs) into groundwater change over time because the more soluble compounds such as benzene, toluene, ethylbenzene, and xylene (BTEX) dissolve faster into the aqueous phase than less soluble compounds such as polycyclic aromatic hydrocarbons (PAH). Long-term dissolution from diesel fuel into the aqueous phase was determined experimentally in a continuous flow-through system using the slow-stirring method. The data obtained are interpreted using a dynamic equilibrium dissolution model based on Raoult's law. The predicted temporal development of aqueous concentrations are in good agreement with the experimental results. When a compound in the NAPL approaches complete depletion, a tailing behavior is observed, which is assigned to nonequilibrium effects, such as mass transfer limitations in the NAPL phase. The model predicted an increase of the mean molar mass of the diesel fuel of 1.5% over the entire experimental period. It should be noted that, if the dissolution process were to proceed further, the change in the mean molar mass could become significant and render the simple model inaccurate. Yet the simple model supports the assessment of initial action after a contamination event as well as the planning of long-term remedial strategies.

摘要

从非水相液体(NAPL)池中渗出的有害物质对人类健康造成的风险会随时间变化,因为苯、甲苯、乙苯和二甲苯(BTEX)等溶解度较高的化合物比多环芳烃(PAH)等溶解度较低的化合物更快地溶解到水相中。使用慢搅拌法在连续流通系统中通过实验确定了柴油长期溶解到水相中的情况。利用基于拉乌尔定律的动态平衡溶解模型对获得的数据进行了解释。预测的水相浓度随时间的变化与实验结果吻合良好。当NAPL中的一种化合物接近完全耗尽时,会观察到拖尾行为,这归因于非平衡效应,如NAPL相中的传质限制。该模型预测在整个实验期间柴油燃料的平均摩尔质量增加了1.5%。需要注意的是,如果溶解过程进一步进行,平均摩尔质量的变化可能会变得显著,从而使这个简单模型不准确。然而,这个简单模型有助于评估污染事件后的初步行动以及长期补救策略的规划。

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