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Development and evaluation of a dispersive liquid-liquid microextraction based test method for quantitation of total anionic surfactants: advantages against reference methods

机译:基于分散液-液微萃取的总阴离子表面活性剂定量测试方法的开发和评估:相对于参考方法的优势

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A small-scale, simple, and rapid dispersive liquid-liquid microextraction (DLLME) procedure in combination with fiber optic-linear array detection spectrophotometry (FO-LADS) with charge-coupled device (CCD) detector has been developed, with benefits from the use of a micro-cell. The official reference methods (ASTM D2330 - 02, ISO 7875-1), which require tedious procedures, were replaced with a modified method. The new method provides a major reduction in sample size, elimination of the use of expensive glassware, and a decrease in the quantity of chloroform used, as well as increased sensitivity. Our method requires only one twentieth of the sample (5.0 mL), and less than one three-hundredth of microextraction solvent (chloroform = 138 μL). It provides a faster analysis time than official analytical methods (less than one minute). The calibration curve was linear in the range of 6–80 μg g L?1 of sodium dodecyl sulfate (SDS) with a correlation coefficient (r) of better than 0.99 and the LOD was 2 μg L?1. The repeatability of the proposed method (n=7) was found to be 4.5% and 3.6% for the concentrations of 0.03 and 0.07 mg L?1, respectively. The enrichment factor was found to be 75 for SDS.
机译:已经开发了一种小规模,简单,快速的分散液-液微萃取(DLLME)程序,并结合了带有电荷耦合器件(CCD)检测器的光纤线性阵列检测分光光度法(FO-LADS)。使用微电池。需要繁琐程序的官方参考方法(ASTM D2330-02,ISO 7875-1)已被修改后的方法代替。新方法大大减少了样品量,消除了使用昂贵玻璃器皿的使用,并减少了氯仿的使用量,并提高了灵敏度。我们的方法只需要样品的二十分之一(5.0毫升),而微量萃取溶剂(氯仿= 138μL)不到三分之一。它提供了比官方分析方法更快的分析时间(不到一分钟)。校正曲线在6-80μgL?1的十二烷基硫酸钠(SDS)范围内是线性的,相关系数(r)优于0.99,LOD为2μgL?1。对于0.03和0.07 mg L?1的浓度,建议的方法(n = 7)的重复性分别为4.5%和3.6%。发现SDS的富集因子为75。

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