Department of Analytical Environmental Chemistry, Helmholtz Centre for Environmental Research-UFZ , Permoserstrasse 15, 04318 Leipzig, Germany.
Environ Sci Technol. 2013 Dec 17;47(24):14224-32. doi: 10.1021/es403187w. Epub 2013 Dec 4.
Sorption to the phyllosilicate clay minerals Illite, kaolinite, and bentonite has been studied for a wide variety of organic cations using a flow-through method with fully aqueous medium as the eluent. Linear isotherms were observed at concentrations below 10% of the cation-exchange capacity (CEC) for Illite and kaolinite and below 1 mmol/kg (<1% CEC) for bentonite. Sorption to clays was strongly influenced by the electrolyte composition of the eluent but with a consistent trend for a diverse set of compounds on all clays, thus allowing for empirical correction factors. When sorption affinities for a given compound to a given clay are normalized to the CEC of the clay, the differences in sorption affinities between clays are reduced to less than 0.5 log units for most compounds. Although CEC-normalized sorption of quaternary ammonium compounds to clay was up to 10-fold higher than CEC-normalized sorption to soil organic matter, CEC-normalized sorption for most compounds was comparable between clays and soil organic matter. The clay fraction is thus a potentially relevant sorption phase for organic cations in many soils. The sorption data for organic cations to clay showed several regular trends with molecular structure but also showed quite a few systematic effects that we cannot explain. A model on the basis of the molecular size and charge density at the ionized nitrogen is used here as a tool to obtain benchmark values that elucidate the effect of specific polar moieties on the sorption affinity.
采用全水相作为洗脱剂的流动法研究了多种有机阳离子在伊利石、高岭石和膨润土等层状硅酸盐粘土矿物上的吸附。在伊利石和高岭石上,当浓度低于阳离子交换容量(CEC)的 10%,在膨润土上,当浓度低于 1 mmol/kg(<1%CEC)时,观察到线性等温线。粘土矿物的吸附强烈受洗脱剂电解质组成的影响,但对于所有粘土上的各种化合物都呈现出一致的趋势,因此可以采用经验校正因子。当给定化合物对给定粘土的吸附亲和力归一化为粘土的 CEC 时,粘土之间的吸附亲和力差异减小到大多数化合物的 0.5 个对数单位以下。尽管季铵化合物与粘土的 CEC 归一化吸附比与土壤有机质的 CEC 归一化吸附高 10 倍,但大多数化合物在粘土和土壤有机质之间的 CEC 归一化吸附相当。因此,粘土相是许多土壤中有机阳离子的潜在相关吸附相。有机阳离子在粘土上的吸附数据显示出与分子结构相关的几个规则趋势,但也显示出一些我们无法解释的系统效应。在此,基于带电荷氮原子的分子大小和电荷密度的模型被用作工具,以获得阐明特定极性基团对吸附亲和力影响的基准值。