首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >An etched stainless steel wire/ionic liquid-solid phase microextraction technique for the determination of alkylphenols in river water
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An etched stainless steel wire/ionic liquid-solid phase microextraction technique for the determination of alkylphenols in river water

机译:蚀刻不锈钢丝/离子液固相微萃取技术测定河水中的烷基酚

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摘要

In this study, a stainless steel wire/ionic liquid-solid phase microextraction technique was developed for the direct extraction of APs from water samples. Some parameters were optimised, such as selection of the substrate and Its, extraction time, extraction temperature, stirring rate and sample pH, etc. The experimental data demonstrated that the etched stainless steel wire was a suitable substrate for IL-coated SPME. The coating was prepared by directly depositing the ILs onto the surface of the etched stainless steel wire, which exhibited a porous structure and a high surface area. The [C8MIM][PF6] IL exhibited maximum efficiency with an extraction time of 30 min, and the aqueous sample was maintained at 40 degrees C and adjusted to pH 2 under stirring conditions. The enrichment factor of the IL coating for the four APs ranged from 1382 to 4779, the detection limits (LOD, S/N=3) of the four APs ranged from 0.01 to 0.04 ng mL(-1) and the RSD values for purified water spiked with APs ranged from 4.0 to 11.8% (n=3). The calibration graphs were linear in the concentration range from 0.5 to 200 ng mL(-1) (R-2 >0.9569). The optimised method was successfully applied for the analysis of real water samples, and the method was suitable for the extraction of APs from water samples. (C) 2014 Elsevier B.V. All rights reserved.
机译:在这项研究中,开发了一种不锈钢丝/离子液体固相微萃取技术,用于直接从水样品中提取AP。优化了一些参数,例如衬底的选择及其提取时间,提取温度,搅拌速度和样品pH值等。实验数据表明,经蚀刻的不锈钢丝是IL涂层SPME的合适衬底。通过将IL直接沉积到具有多孔结构和高表面积的腐蚀不锈钢丝表面上来制备涂层。 [C8MIM] [PF6] IL在提取时间为30分钟时表现出最大的效率,将水性样品保持在40摄氏度,并在搅拌条件下将其pH值调节至2。四个AP的IL涂层富集系数范围为1382至4779,四个AP的检测限(LOD,S / N = 3)范围为0.01至0.04 ng mL(-1),纯化后的RSD值AP的加水量为4.0至11.8%(n = 3)。校准曲线在0.5至200 ng mL(-1)的浓度范围内呈线性关系(R-2> 0.9569)。该优化方法已成功应用于实际水样的分析,适用于从水样中提取AP。 (C)2014 Elsevier B.V.保留所有权利。

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