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Rapid Determination of Anthracene and Benzo(a) pyrene by High-Performance Liquid Chromatography with Fluorescence Detection

机译:用荧光检测快速测定高效液相色谱法测定蒽和苯并(A)芘

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摘要

A rapid and simple method was optimized and validated for the separation and quantification of anthracene and benzo(a) pyrene, two of the most toxic polycyclic aromatic hydrocarbons, at ultratrace levels in aqueous samples by direct injection. The determination of anthracene and benzo(a) pyrene was performed by reverse-phase high-performance liquid chromatography (HPLC) with fluorescence detection. A fractional factorial matrix and a Box-Behnken design were chosen for screening and optimization purposes, respectively. The optimized parameters that significantly influenced the system were the flow rate (1 mL min(-1)), mobile-phase strength (90% acetonitrile:10% deionized water), column temperature (35 degrees C), and excitation wavelength (254 and 267 nm for anthracene and benzo(a) pyrene, respectively). The injection volume and emission wavelength were fixed at 100 mu L and 416 nm, respectively. The quantification limits were 75 ng L-1 for anthracene and 30 ng L-1 for benzo(a) pyrene. The relative standard deviations for the recovery and intra and interday precision values were lower than 20%. The method allows the analysis of aqueous samples with a good resolution for anthracene and benzo(a) pyrene below values permitted by the recently developed European Directive 2013/39/EU for inland surface waters. In addition, this work provides guidelines for the simultaneous optimization of several parameters by experimental design.
机译:通过直接注射通过直接注射通过直接注射优化并验证了蒽和苯并(A)芘,两种最有毒多环芳烃的分离和定量的蒽和苯并(A)芘的分离和定量。通过反相高效液相色谱(HPLC)对荧光检测进行蒽和苯并(A)芘的测定。选择分数阶段矩阵和盒子Behnken设计分别用于筛选和优化目的。显着影响系统的优化参数是流速(1mL min(-1)),移动相强度(90%乙腈:10%去离子水),柱温(35℃)和激发波长(254对于蒽和苯并(A)芘分别为267nm)。注射体积和发射波长分别以100μL和416nm固定。定量限制为蒽(A)芘的蒽和30ng L-1的75ng L-1。回收和内部和白天精度值的相对标准偏差低于20%。该方法允许在最近开发的欧洲指令2013/39 /欧盟对于内陆地表水域允许的蒽和苯并(a)芘分辨出具有良好分辨率的蒽和苯佐苯(a)芘。此外,这项工作还提供了通过实验设计同时优化几个参数的指导。

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