自制硅基混合模式离子交换吸附剂在环境水样中药物测定中的应用

IF 5.2 Q1 CHEMISTRY, ANALYTICAL
Alberto Moral , Pol Clivillé-Cabré , Francesc Borrull , Kenneth G. Furton , Abuzar Kabir , Rosa Maria Marcé , Núria Fontanals
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引用次数: 2

摘要

比较了两种自制的具有强部分的二氧化硅基混合模式离子交换吸附剂对一组药物、滥用药物和代谢产物的固相萃取(SPE)。吸附剂之间的区别在于嵌入网络中的石墨烯微粒的存在,并且使用不含石墨烯的吸附剂获得了最佳结果。非石墨烯吸附剂的最佳SPE方案是:加载pH为3,不同的加载体积取决于样品的类型,2mL MeOH作为洗涤溶剂。将优化的方法用于分析具有环境意义的水样(河水、出水和进水)。表观回收率为22-68%,大多数化合物的基质效应值低于±20,方法检测限为1-28纳克/升,方法定量限为2-56纳克/升。精密度为相对标准偏差百分比(RSD%,n=4),天之间的重复性和再现性始终低于18%。吸附剂用于测定环境水样中的分析物,其中大多数化合物在河流样品中的含量在2至180纳克/升之间,在流出的废水样品中为3至2547ng/L,在流入的污水样品中为24至8086ng/L。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of a homemade silica-based mixed-mode ion-exchange sorbent for the determination of drugs in environmental water samples

Two homemade silica-based mixed-mode ion-exchange sorbents with strong moieties were compared for the solid-phase extraction (SPE) of a group of pharmaceuticals, drugs of abuse and metabolites. The difference between sorbents was the presence of graphene microparticles embedded in the network and the best results were obtained with the sorbent that did not contain graphene.

The optimum SPE protocol of the non-graphene sorbent was: loading pH at 3, different loading volumes depending on the type of sample, 2 mL of MeOH as washing solvent.

The optimized method was validated for the analysis of water samples of environmental interest (river water, effluent wastewater and influent wastewater). Apparent recoveries ranged from 22 to 68%, matrix effect values were lower than ±20 for most compounds, and method detection limits ranged from 1 to 28 ng/L and method quantification limits from 2 to 56 ng/L. Precision was obtained as percentual relative standard deviation (RSD%, n=4) and the repeatability and reproducibility between days were always lower than 18%.

The sorbent was used to determine the analytes in environmental water samples, where most compounds were found in the range from 2 to 180 ng/L in river samples, from 3 to 2547 ng/L in effluent wastewater samples and from 24 to 8086 ng/L in influent wastewater samples.

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