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Multi-residual GC-MS determination of personal care products in waters using solid-phase microextraction

机译:固相微萃取多残留GC-MS测定水中的个人护理产品

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摘要

A multi-residual method is described for the simultaneous determination of 23 personal care products (PCPs), which display a wide range of physicochemical properties, present at trace levels in water samples. A one-step procedure was developed based on solid-phase microextraction (SPME) coupled with GC-MS analysis. A chemometric approach consisting of an experimental design (design of experiments) was applied to systematically investigate how four operating parameters—extraction temperature and time and desorption temperature and time—affect extraction recovery of PCPs in water. The optimum SPME procedure operating conditions, those yielding the highest extraction recovery for all the compounds, were determined; they correspond to an extraction time of 90 min and temperature of 80 °C and a desorption time of 11 min and temperature of 260 °C. Under these optimized conditions, the SPME procedure shows good analytical performance characterized by high reproducibility (RSD% intra-day accuracy varying in the 0.01–1.3% range) as well as good linearity and low detection limits (LODs lower than 2 ppb for most of the investigated PCPs).
机译:描述了一种同时测定23种个人护理产品(PCP)的多残留方法,这些产品具有广泛的理化特性,并以痕量水平存在于水样中。基于固相微萃取(SPME)结合GC-MS分析开发了一步法程序。采用由实验设计(实验设计)组成的化学计量方法,系统地研究了四个操作参数(萃取温度和时间以及解吸温度和时间)如何影响水中五氯苯酚的提取回收率。确定了最佳的SPME程序操作条件,即所有化合物的提取回收率最高的条件。它们对应的萃取时间为90分钟,温度为80°C,解吸时间为11 min,温度为260°C。在这些优化的条件下,SPME程序显示出良好的分析性能,其特点是重现性高(RSD%日内准确度在0.01–1.3%范围内变化)以及良好的线性度和低检测限(大多数情况下LOD低于2 ppb)调查的PCP)。

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