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An automated preloaded pipet tip SPE method for the accurate quantification of carcinogenic polycyclic aromatic hydrocarbons from tea

机译:一种自动预加载的移液尖端SPE方法,用于精确定量茶叶致癌多环芳烃烃

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摘要

An automated polystyrene-divinyl benzene (PS-DVB) based standard preloaded-pipet tip-SPE method was developed for the prompt and precise quantification of contaminants in plant extracts using the example of polycyclic aromatic hydrocarbons (PAHs). The objective of the technique was to establish a high-throughput SPE-automated workflow with minimized personal exposure to tremendously carcinogenic PAHs during standard and sample preparation. HPLC-FLD was used for the analysis of PAHs. LOD and LOQ for the investigated PAHs were found to be 16 ppb and 59 ppb, respectively. The recoveries were between 90-102% (RSD < 8%) for the standard compounds in the pure solvent, and between 90-95% (RSD < 10%) for spiked black tea extracts. A contaminated Primulae flos extract was also subjected to the preloaded PhyTip (R)-SPE scheme and revealed 70.8 mg kg(-1) chrysene and 60.9 mg kg(-1) benzo(a) anthracene. In order to enhance method reproducibility and to increase the sample throughput, a PhyNexus (R) (San Jose, CA), MEA T Robotic Purification System was used for the automation of the SPE method. The automated method with a duration of 17 minutes for 12 samples revealed high recoveries and reproducibility for the PAH standards (90-103% with RSD < 8%) and between 90-95% (RSD < 10%) for spiked black tea extracts. The presented analytical scheme provides an excellent tool for rapid and precise determination of PAHs from complex mixtures.
机译:基于自动聚苯乙烯 - 二乙烯基苯(PS-DVB)的标准预载 - 移液管尖端-PE方法,用于使用多环芳烃(PAH)的实施例的植物提取物中污染物的提示和精确定量。该技术的目的是建立高通量的SPE自动化工作流程,在标准和样品制备期间最小化对大量致癌PAHs的个人暴露。 HPLC-FLD用于分析PAHS。对调查的PAHs的LOD和LOQ分别为16 ppb和59 ppb。该回收率为纯溶剂中标准化合物的90-102%(RSD <8%),掺入黑茶提取物的90-95%(RSD <10%)之间。还对预加载的Phytip(R)-Spe方案进行污染的硫酮萃取液,并显示出70.8mg kg(-1)氯苯和60.9mg kg(-1)苯并(a)蒽。为了提高方法可重复性和增加样品吞吐量,使用Phynexus(R)(SAN JOSE,CA),MEA T机器人净化系统用于SPE方法的自动化。对于12个样品的持续17分钟的自动化方法显示了PAH标准的高回收率和再现性(90-103%,RSD <8%)和90-95%(RSD <10%)用于尖刺的红茶提取物。所提出的分析方案提供了一种优异的工具,可以快速,精确地测定复杂混合物的PAHS。

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