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An independent prediction of the effect of dissolved organic matter on the transport of polycyclic aromatic hydrocarbons

机译:溶解有机物对多环芳烃迁移的影响的独立预测

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The transport of polycyclic aromatic hydrocarbons (PAH) in porous media in the presence of dissolved organic matter (DOM) was predicted with a transport bicontinuum model using independently obtained relationships to derive transport parameters for describing the effect of PAH binding to the DOM. The sorption constants of PAHs to soil and their binding constants to DOM were derived from basic correlations with K_(ow) (indicator of hydrophobicity). The kinetic (rate) constants were derived from previously published correlations with K_p (sorption constant). The independently obtained sorption and rate constants were corrected for binding to DOM and were used to predict the breakthrough curves (BTC) of contaminants in the presence and the absence of DOM. Column results confirmed the independently predicted BTC of PAHs in the presence of DOM that did not sorb to the solid phase, as well as the effect of DOM on the rate of the sorption and desorption processes. These findings confirm the ability to quantitatively describe how DOM facilitates transport of contaminants in the subsurface using independently derived parameters.
机译:使用传输双连续谱模型,使用独立获得的关系来导出多环芳烃(PAH)在多孔介质中在溶解有机物(DOM)的情况下的传输,以推导描述PAH与DOM结合的影响的传输参数。 PAHs在土壤中的吸附常数及其与DOM的结合常数来自与K_(ow)(疏水性指标)的基本相关性。动力学(速率)常数是从先前发表的与K_p(吸附常数)的相关性中得出的。校正了独立获得的吸附常数和速率常数以结合DOM,并用于预测存在和不存在DOM时污染物的穿透曲线(BTC)。色谱柱结果证实了在不吸附到固相的DOM存在下,PAHs的独立预测BTC以及DOM对吸附和解吸速率的影响。这些发现证实了使用独立推导的参数定量描述DOM如何促进污染物在地下运输的能力。

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