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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)组成的化学计量学方法,系统地研究了四个操作参数-萃取温度和时间,解吸温度和时间对水中五氯苯酚的回收率的影响。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%的日内精度在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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