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采用基于碳纳米管增强的溶胶-凝胶的中空纤维固相微萃取和因子实验设计的气相色谱法,优化头发和废水中苯、甲苯、乙苯和二甲苯的新型测定方法。

Optimization of a novel method for determination of benzene, toluene, ethylbenzene, and xylenes in hair and waste water samples by carbon nanotubes reinforced sol-gel based hollow fiber solid phase microextraction and gas chromatography using factorial experimental design.

机构信息

Department of Chemistry, Payame Noor University, Tehran, Iran. zarrin

出版信息

J Chromatogr A. 2011 May 27;1218(21):3400-6. doi: 10.1016/j.chroma.2011.03.043. Epub 2011 Apr 12.

Abstract

A novel design of solid phase microextraction fiber containing carbon nanotube reinforced sol-gel which was protected by polypropylene hollow fiber (HF-SPME) was developed for pre-concentration and determination of BTEX in environmental waste water and human hair samples. The method validation was included and satisfying results with high pre-concentration factors were obtained. In the present study orthogonal array experimental design (OAD) procedure with OA(16) (4(4)) matrix was applied to study the effect of four factors influencing the HF-SPME method efficiency: stirring speed, volume of adsorption organic solvent, extraction and desorption time of the sample solution, by which the effect of each factor was estimated using individual contributions as response functions in the screening process. Analysis of variance (ANOVA) was employed for estimating the main significant factors and their percentage contributions in extraction. Calibration curves were plotted using ten spiking levels of BTEX in the concentration ranges of 0.02-30,000ng/mL with correlation coefficients (r) 0.989-0.9991 for analytes. Under the optimized extraction conditions, the method showed good linearity (0.3-20,000ng/L), repeatability, low limits of detections (0.49-0.7ng/L) and excellent pre-concentration factors (185-1872). The best conditions which were estimated then applied for the analysis of BTEX compounds in the real samples.

摘要

一种新型的固相微萃取纤维,包含碳纳米管增强溶胶-凝胶,并用聚丙烯中空纤维(HF-SPME)保护,被开发用于环境废水中和人发样品中 BTEX 的预浓缩和测定。该方法进行了验证,得到了令人满意的结果,具有较高的预浓缩因子。在本研究中,采用正交数组实验设计(OAD)程序和 OA(16)(4(4))矩阵,研究了影响 HF-SPME 方法效率的四个因素的影响:搅拌速度、吸附有机溶剂的体积、样品溶液的萃取和解析时间,通过个体贡献作为响应函数在筛选过程中估计每个因素的影响。方差分析(ANOVA)用于估计萃取过程中的主要显著因素及其百分比贡献。采用十个 BTEX 加标水平,在 0.02-30000ng/mL 的浓度范围内绘制校准曲线,分析物的相关系数(r)为 0.989-0.9991。在优化的萃取条件下,该方法表现出良好的线性(0.3-20000ng/L)、重复性、低检测限(0.49-0.7ng/L)和优异的预浓缩因子(185-1872)。然后,根据估计的最佳条件,将其应用于实际样品中 BTEX 化合物的分析。

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