Departamento de Química Analítica, Escuela Politécnica Superior, Universidad de Sevilla. C/ Virgen de África, 7, E-41011 Seville, Spain.
Molecules. 2020 Nov 13;25(22):5306. doi: 10.3390/molecules25225306.
The release of pharmaceutically active compounds to the soils through the application of sewage sludge and the irrigation with wastewater, or even with surface water, is constant. The adsorption of these compounds onto the soil is one of the key factors affecting their fate in the environment and their potential environmental risks. In this work, the adsorption of carbamazepine (CBZ) and its metabolites, 3-hydroxy-carbamazepine (3OH-CBZ), carbamazepine-10,11-dihydro-10,11-epoxide (EP-CBZ), and 10,11-dihydro-10-hydroxycarbamazepine (10OH-CBZ), in three Mediterranean soils was evaluated using single-solute and four-solute experiments. The highest adsorptions were measured for 3OH-CBZ, followed by CBZ, EP-CBZ, and 10OH-CBZ, in that order. A high influence of the physicochemical characteristics of the compounds, pH, and soil characteristics in the adsorption of the studied compounds was observed and corroborated by the statistical analysis of the results. Moreover, a good fit was observed in the three isotherm models evaluated (linear, Freundlich, and Langmuir) in single-solute experiments (R > 0.90). However, a decrease of the measured adsorptions and a worse fit to the isotherm models were observed in the case of multiple-solute experiments. This could be mainly due to the competition established between the studied compounds for the active sites of the soils.
通过施用污水污泥和废水(甚至地表水)向土壤中释放具有药用活性的化合物是持续存在的。这些化合物在土壤中的吸附是影响其在环境中归宿及其潜在环境风险的关键因素之一。在这项工作中,使用单溶质和四溶质实验评估了卡马西平(CBZ)及其代谢物 3-羟基卡马西平(3OH-CBZ)、卡马西平-10,11-二氢-10,11-环氧化物(EP-CBZ)和 10,11-二氢-10-羟基卡马西平(10OH-CBZ)在三种地中海土壤中的吸附。3OH-CBZ 的吸附最高,其次是 CBZ、EP-CBZ 和 10OH-CBZ。结果的统计分析证实了化合物的物理化学特性、pH 值和土壤特性对吸附的高度影响。此外,在单溶质实验中,评估的三种等温线模型(线性、弗伦德利希和朗缪尔)拟合度较好(R > 0.90)。然而,在多溶质实验中,观察到测量的吸附量减少和对等温线模型的拟合变差。这主要可能是由于研究化合物之间为土壤的活性位点而建立的竞争。