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Chemometric Analytical Approach for the Cloud Point Extraction and Inductively Coupled Plasma Mass Spectrometric Determination of Zinc Oxide Nanoparticles in Water Samples

机译:浊点萃取和电感耦合等离子体质谱法测定水样中氧化锌纳米粒子的化学计量学分析方法

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Cloud point extraction (CPE) with inductively coupled plasma mass spectrometry (ICPMS) was applied to the analysis of zinc oxide nanoparticles (ZnO NPs, mean diameter approx40 nm) in water and wastewater samples. Five CPE factors, surfactant (Triton X-114 (TX-114)) concentration, pH, ionic strength, incubation temperature, and incubation time, were investigated and optimized by orthogonal array design (OAD). A three-level OAD, OA_(27) (3~(13)) matrix was employed in which the effects of the factors and their contributions to the extraction efficiency were quantitatively assessed by the analysis of variance (ANOVA). Based on the analysis, the best extraction efficiency (87.3percent) was obtained at 0.25percent (w/v) of TX-114, pH velence 10, salt content of 15 mM NaCl, incubation temperature of 45 deg C, and incubation time of 30 min. The results showed that surfactant concentration, pH, incubation time, and ionic strength exert significant effects on the extraction efficiency. Preconcentration factors of 62 and 220 were obtained with 0.25 and 0.05percent (w/v) TX-114, respectively. The relative recoveries of ZnO NPs from different environmental waters were in the range 64-123percent at 0.5-100 (mu)g/L spiked levels. The ZnO NPs extracted into the TX-114-rich phase were characterized by transmission electron microscopy (TEM) combined with energy-dispersive X-ray spectroscopy (EDS) and UV-visible spectrometry. Based on the results, no significant changes in size and shape of NPs were observed compared to those in the water before extraction. The extracted ZnO NPs were determined after microwave digestion by ICPMS. A detection limit of 0.05 (mu)g/L was achieved for ZnO NPs. The optimized conditions were successfully applied to the analysis of ZnO NPs in water samples.
机译:浊点萃取(CPE)和电感耦合等离子体质谱(ICPMS)被用于分析水和废水样品中的氧化锌纳米颗粒(ZnO NPs,平均直径约40 nm)。通过正交阵列设计(OAD)研究和优化了五个CPE因子,即表面活性剂(Triton X-114(TX-114))浓度,pH,离子强度,孵育温度和孵育时间。采用三级OAD,OA_(27)(3〜(13))矩阵,通过方差分析(ANOVA)定量评估因子的影响及其对提取效率的贡献。根据分析,在TX-114的0.25%(w / v),pH velence 10,盐含量为15 mM NaCl,孵育温度为45℃,孵育时间为5%的条件下,可获得最佳的提取效率(87.3%)。 30分钟。结果表明,表面活性剂的浓度,pH值,温育时间和离子强度对提取效率有重要影响。分别用0.25和0.05%(w / v)的TX-114获得62和220的预浓缩系数。在0.5-100μg/ L加标水平下,从不同环境水中得到的ZnO NP的相对回收率在64-123%范围内。通过透射电子显微镜(TEM)结合能量色散X射线光谱(EDS)和紫外可见光谱对萃取到富TX-114相中的ZnO NP进行表征。根据结果​​,与提取前的水中的NP相比,没有观察到NP大小和形状的显着变化。 ICPMS微波消解后,测定提取的ZnO NPs。 ZnO NPs的检出限为0.05μg/ L。优化的条件已成功应用于水样中ZnO NPs的分析。

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