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柱层析法获取有机阳离子吸附等温线。

Column Chromatography To Obtain Organic Cation Sorption Isotherms.

机构信息

Department of Civil and Environmental Engineering, University of Connecticut , Storrs, Connecticut 06269, United States.

Department of Chemistry, Bowdoin College , Brunswick, Maine 04011, United States.

出版信息

Environ Sci Technol. 2016 Aug 2;50(15):8196-204. doi: 10.1021/acs.est.6b01733. Epub 2016 Jul 19.

Abstract

Column chromatography was evaluated as a method to obtain organic cation sorption isotherms for environmental solids while using the peak skewness to identify the linear range of the sorption isotherm. Custom packed HPLC columns and standard batch sorption techniques were used to intercompare sorption isotherms and solid-water sorption coefficients (Kd) for four organic cations (benzylamine, 2,4-dichlorobenzylamine, phenyltrimethylammonium, oxytetracycline) with two aluminosilicate clay minerals and one soil. A comparison of Freundlich isotherm parameters revealed isotherm linearity or nonlinearity was not significantly different between column chromatography and traditional batch experiments. Importantly, skewness (a metric of eluting peak symmetry) analysis of eluting peaks can establish isotherm linearity, thereby enabling a less labor intensive means to generate the extensive data sets of linear Kd values required for the development of predictive sorption models. Our findings clearly show that column chromatography can reproduce sorption measures from conventional batch experiments with the benefit of lower labor-intensity, faster analysis times, and allow for consistent sorption measures across laboratories with distinct chromatography instrumentation.

摘要

柱层析法被评估为一种获取环境固体有机阳离子吸附等温线的方法,同时使用峰偏度来识别吸附等温线的线性范围。使用定制填充的 HPLC 柱和标准批量吸附技术,对四种有机阳离子(苄胺、2,4-二氯苄胺、苯甲基三甲基铵、土霉素)与两种铝硅酸盐粘土矿物和一种土壤的吸附等温线和固-水分配系数(Kd)进行了比较。Freundlich 等温线参数的比较表明,柱层析法和传统批量实验之间的等温线线性或非线性没有显著差异。重要的是,洗脱峰的偏度(表示洗脱峰对称性的度量)分析可以确定等温线的线性,从而可以采用劳动强度较低的方法来生成用于开发预测性吸附模型所需的大量线性 Kd 值数据集。我们的研究结果清楚地表明,柱层析法可以重现传统批量实验中的吸附测量结果,其优点是劳动强度更低、分析时间更快,并且允许具有不同色谱仪器的实验室之间进行一致的吸附测量。

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