首页> 外文期刊>Journal of separation science. >Low-density extraction solvent based solvent-terminated dispersive liquid-liquid microextraction for quantitative determination of ionizable pesticides in environmental waters
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Low-density extraction solvent based solvent-terminated dispersive liquid-liquid microextraction for quantitative determination of ionizable pesticides in environmental waters

机译:低密度萃取基于溶剂的溶剂终止的分散液-液微萃取用于定量测定环境水中的可电离农药

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摘要

A rapid, efficient, and new solvent terminated dispersive liquid-liquid microextraction technique coupled with HPLC was developed for selective extraction and analysis of s-triazine herbicides from environmental water samples. Important parameters influencing the extraction process including type and volume of extraction and disperser solvent, extraction time, sample pH, ionic strength, and extraction temperature were successfully optimized. Under the optimal conditions, there are excellent linear relationships between the analytical results and concentration in the range of 10-400 mg/L for atrazine, propazine, prometryn, and terbutryn. LOD and LOQ ranged from 0.60 to 2.33 μg/L and 2.0 to 7.7 μg/L, respectively. Performance of the analytical technique was evaluated by carrying out the repeatability and reproducibility analyses that were ranged from 2.86 to 5.66% and 4.64 to 5.89% for 100 μg/L of each target analyte, respectively. The proposed method has been successfully applied to the analysis of real water samples and acceptable relative recoveries over the range of 65.93-101.46%, with RSDs ≤ 8.80%, were obtained. The overall results have been compared with the literature values. Thus, the method developed could efficiently be used for selective extraction of the target analytes from complex matrices, particularly environmental waters.
机译:开发了一种快速,高效且新型的溶剂终止的分散液-液微萃取技术,并结合了HPLC,用于从环境水样品中选择性提取和分析s-三嗪除草剂。成功地优化了影响萃取过程的重要参数,包括萃取和分散剂溶剂的类型和体积,萃取时间,样品pH,离子强度和萃取温度。在最佳条件下,对于阿特拉津,丙嗪,脯氨酰胺和特布特林,分析结果与浓度在10-400 mg / L范围内具有极好的线性关系。 LOD和LOQ分别为0.60至2.33μg/ L和2.0至7.7μg/ L。通过对100μg/ L的每种目标分析物分别进行2.86至5.66%和4.64至5.89%的重复性和重现性分析来评估分析技术的性能。所提出的方法已成功地应用于实际水样的分析,并且相对回收率在65.93-101.46%范围内,RSD≤8.80%。总体结果已与文献值进行了比较。因此,开发的方法可以有效地用于从复杂基质(尤其是环境水)中选择性提取目标分析物。

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