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基于亲水相互作用色谱的腐殖质疏水性指数预测腐殖质的极性依赖性环境行为。

Prediction of polarity-dependent environmental behaviors of humic substances (HS) using a HS hydrophobicity index based on hydrophilic interaction chromatography.

机构信息

Department of Environment and Energy, Sejong University, 209 Neungdong-ro, Gwangjin-gu, Seoul 05006, South Korea.

Department of Environmental Energy Engineering, Seoul National University of Science & Technology, Seoul 01811, South Korea.

出版信息

Sci Total Environ. 2022 Oct 15;843:156993. doi: 10.1016/j.scitotenv.2022.156993. Epub 2022 Jun 27.

Abstract

A variety of analytical methods have been applied to describe the properties of aquatic humic substances (HS). However, there are only a few methods available to probe HS hydrophobicity because of the heterogeneous character of HS. In this study, hydrophilic interaction chromatography (HILIC) equipped with a UV detector was employed to describe the heterogeneous distribution of HS with respect to its hydrophobicity and to suggest a representative HS hydrophobicity index. To this end, various mobile phases were explored to achieve the optimal separation capability of HILIC. The highest resolution was obtained with a mobile phase comprising acetonitrile and water at a ratio of 70:30 (v:v). A calibration curve was successfully constructed using eight different HS precursor compounds, which allowed for the successful conversion of the retention time (RT) into the octanol-water partition coefficient (K) (log K = -2.83 × (RT) + 17.44, R = 0.950). Several possible HS hydrophobicity indices were derived from the HILIC chromatogram. Among those, the weight-average log K value exhibited the strongest negative correlation with the well-known polarity index, (O + N)/C ratios, of seven reference HS samples. This new HILIC-based index (i.e., average log K) also presented a good relationship with the HS binding coefficients with pyrene as well as the extent of HS adsorption onto kaolinite at a given solution chemistry (i.e., at a high ionic strength and a neutral pH), both of which are known to be largely governed by the hydrophobic nature of HS. This study demonstrated that the average K value based on HILIC is an intuitive and robust HS hydrophobicity index to fully represent the heterogeneous distribution of hydrophobicity within a bulk HS and could be applied to predict many environmental behaviors related to HS hydrophobicity or HS polarity.

摘要

已经应用了多种分析方法来描述水生腐殖物质(HS)的特性。然而,由于 HS 的异质性,只有少数方法可用于探测 HS 的疏水性。在这项研究中,采用配备紫外检测器的亲水相互作用色谱(HILIC)来描述 HS 疏水性的异质分布,并提出了一个有代表性的 HS 疏水性指数。为此,探索了各种流动相以实现 HILIC 的最佳分离能力。使用包含乙腈和水的比例为 70:30(v:v)的流动相获得了最高的分辨率。成功地构建了使用八种不同 HS 前体化合物的校准曲线,这使得能够将保留时间(RT)成功转换为辛醇-水分配系数(K)(log K = -2.83 ×(RT)+ 17.44,R = 0.950)。从 HILIC 色谱图中得出了几个可能的 HS 疏水性指数。其中,加权平均 log K 值与七个参考 HS 样品的已知极性指数(O + N)/C 比值呈最强的负相关。这种新的基于 HILIC 的指数(即平均 log K)与芘与高岭土的 HS 结合系数以及在给定溶液化学条件下(即高离子强度和中性 pH)的 HS 吸附程度也呈现出良好的关系,这两者都主要受 HS 的疏水性控制。本研究表明,基于 HILIC 的平均 K 值是一个直观且稳健的 HS 疏水性指数,可以充分代表大块 HS 内疏水性的异质分布,并且可用于预测与 HS 疏水性或 HS 极性相关的许多环境行为。

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