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Compound-Specific Factors Influencing Sorption Nonlinearity in Natural Organic Matter

机译:影响天然有机物吸附非线性的特定化合物因素

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Nonlinear sorption by natural organic matter may have a significant impact on the behavior of organic contaminants in soils and sediments. This study presents a molecular probe approach based on linear solvation energy relationships (LSERs) to identify and quantify the molecular interactions causing concentration-dependent sorption and proposes estimation methods for sorption nonlinearities. Sorption isotherms ranging over concentrations of more than 4 orders of magnitude were determined in batch systems for 23 and 16 chemically diverse probe compounds in a lignite sample and a peat soil, respectively. Each sorbent showed characteristic nonlinear sorption with Freundlich exponents (1) being 0.7-1. The LSER-based analysis revealed that the strength of nonspecific interactions did not vary with concentration for both sorbents. In lignite, specific interactions did not affect sorption nonlinearity either, suggesting that compound-independent factors of lignite were responsible for the nonlinear sorption. In the peat soil, by contrast, the specific interactions related to the solute polarizability/dipolarity parameter (S) decreased with increasing concentration. Consequently, compounds of higher 5 values were more susceptible to nonlinear sorption in the peat soil. Phenol probes have shown that hydrogen bond donating properties of sorbate compounds have a substantial impact on the overall strength of sorption with organic matter, but no significant influence on sorption nonlinearity. Heterocyclic aromatic compounds appear to undergo additional interactions that are not accounted for by the LSER. These additional interactions considerably enhance both sorption capacity and nonlinearity.
机译:天然有机物的非线性吸附可能会对土壤和沉积物中有机污染物的行为产生重大影响。这项研究提出了一种基于线性溶剂化能量关系(LSERs)的分子探针方法,以识别和量化引起浓度依赖性吸附的分子相互作用,并提出了吸附非线性的估算方法。在分批系统中,分别针对褐煤样品和泥炭土壤中的23种和16种化学上不同的探针化合物,确定了浓度大于4个数量级的吸附等温线。每种吸附剂均表现出特征性的非线性吸附,其中Freundlich指数(1 / n)为0.7-1。基于LSER的分析表明,两种吸附剂的非特异性相互作用强度均不会随浓度而变化。在褐煤中,特定的相互作用也不会影响吸附非线性,这表明褐煤的化合物无关因素是非线性吸附的原因。相比之下,在泥炭土中,与溶质极化率/偶极参数(S)相关的特定相互作用随浓度的增加而降低。因此,较高5值的化合物更容易在泥炭土壤中发生非线性吸附。苯酚探针显示,山梨酸酯化合物的氢键给体性质对有机物吸附的整体强度有实质性影响,但对吸附非线性影响不大。杂环芳族化合物似乎经历了LSER无法解释的其他相互作用。这些额外的相互作用大大增强了吸附能力和非线性。

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