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Multivariate Optimization of Tenax TA-Thermal Extraction for Determining Gaseous Phase Organophosphate Esters in Air Samples

机译:Tenax TA热提取法测定空气样品中气相有机磷酸酯的多元优化

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摘要

Suitable conditions for thermal extraction of semi-volatile organic compounds have largely been arrived at by univariate optimization or based on the recommendations provided by the manufacturers of the extraction equipment. Herein, we demonstrated the multivariate optimization of Tenax TA–thermal extraction for determining organophosphate esters in the gas phase fraction of air samples. Screening and refining experiments were performed using the eighth fraction factorial and Box-Behnken designs, respectively, and satisfactory models were obtained. Subsequently, the process was optimized by Derringer’s desirability function and the global desirability was 0.7299. Following optimization, the analytes were desorbed at 290 °C for 10 minutes at a helium flow of 95 mL min−1, with the transfer line set at 290 °C. The analytes were then cryofocused at 20 °C and then cryodesorbed into the chromatographic column at 295 °C for 6 minutes. Method validation exhibited high linearity coefficients (>0.99), good precision (CV < 14%) and low detection limits (0.1–0.5 ng m−3). The method was tested by pumping 0.024 m3 of real indoor environment air through Tenax TA sorbent tubes. Furthermore, with multivariate optimization, analysis time and other resources were significantly reduced, and information about experimental factor interaction effects was investigated, as compared to the univariate optimization and other traditional methods.
机译:通过单变量优化或根据萃取设备制造商提供的建议,已经达到了热萃取半挥发性有机化合物的合适条件。在这里,我们展示了Tenax TA热提取的多变量优化,用于确定空气样品气相中的有机磷酸酯。分别使用第八部分因子设计和Box-Behnken设计进行了筛选和精炼实验,并获得了令人满意的模型。随后,通过Derringer的合意性函数对该过程进行了优化,总体合意性为0.7299。经过优化后,将分析物在290 C的氦气流速为95 mL min -1 的条件下解吸10分钟,传输线设置为290C。然后将分析物在20°C下冷冻聚焦,然后在295°C下冷冻脱附到色谱柱中6分钟。方法验证具有较高的线性系数(> 0.99),良好的精密度(CV <14%)和较低的检出限(0.1–0.5ngng m -3 )。该方法通过在Tenax TA吸附剂管中抽吸0.024μm 3 真实的室内环境空气进行测试。此外,与单变量优化和其他传统方法相比,通过多变量优化,分析时间和其他资源显着减少,并且研究了有关实验因素相互作用效应的信息。

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