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首页> 外文期刊>Journal of Environmental Science and Health >Sorption of nonpolar neutral organic compounds to model aquifer sands: Implications on blocking effect
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Sorption of nonpolar neutral organic compounds to model aquifer sands: Implications on blocking effect

机译:吸附非极性中性有机化合物以模拟含水层砂:对阻塞效应的影响

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The use of a calibrated two-component model with a single blocking parameter for both adsorption onto mineral surfaces and partitioning into soil organic matter of two nonpolar sorbates (i.e., 1,2,4-trichlorobenzene and benzene) was evaluated by using several humic acid (HA)-coated sands with different fractions of organic carbon (f_(oc)) ranging from 0.006 to 0.154%. Sorption of nonpolar sorbates to both untreated and heated sands was nearly linear due to the reduction of heterogeneous adsorption potential by strongly adsorbed vicinal water molecules over hydrophilic mineral surfaces. Sorption of nonpolar sorbates to the HA-coated sands was also essentially linear, and resulted from a combination of adsorption onto mineral surfaces and partitioning into soil organic matter, with the dominance of either contribution depending on the properties of the sorbents (e.g.,f_(oc)) and the sorbates (e.g., K_(ow)). Contrary to the previous studies suggesting that surface area is the only variable affecting the magnitude of the adsorption coefficient onto modified high-surface-area clay minerals, the difference in adsorptive affinity of nonpolar sorbates onto modified mineral surfaces (i.e., K_(S,c)) relative to that for pure mineral surfaces (i.e., K_S) also may be important for low-surface-area, coarse-grained model aquifer sands. However, the improvement in predicted sorption behavior by incorporating the blocking effect is insignificant for low-surface-area, coarse-grained model aquifer sands.
机译:通过使用几种腐殖酸评估了使用具有单一阻滞参数的校准双组分模型吸附到矿物表面和将两种非极性山梨酸酯(即1,2,4-三氯苯和苯)分配到土壤有机物中的用途(HA)涂层的砂中有机碳含量不同(f_(oc))的范围为0.006%至0.154%。由于在亲水性矿物表面上强烈吸附的邻近水分子降低了非均质吸附电位,因此非极性吸附质对未处理砂和加热砂的吸附几乎呈线性。非极性吸附剂对HA涂层砂的吸附也基本上是线性的,这是由于吸附到矿物表面并分配到土壤有机质中的一种结合,这两种作用的优势取决于吸附剂的性质(例如,f_( oc))和被吸附物(例如K_(ow))。与先前的研究相反,表面积是影响改性高表面积粘土矿物上吸附系数大小的唯一变量,即非极性山梨酸酯对改性矿物表面的吸附亲和力差异(即K_(S,c ))相对于纯矿物表面(即K_S),对于低表面积,粗颗粒模型含水层砂也可能很重要。但是,对于低表面积的粗粒模型含水层砂来说,通过结合阻挡作用而改善的预计吸附行为是微不足道的。

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