首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Carbon nanotube-based benzyl polymethacrylate composite monolith as a solid phase extraction adsorbent and a stationary phase material for simultaneous extraction and analysis of polycyclic aromatic hydrocarbon in water
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Carbon nanotube-based benzyl polymethacrylate composite monolith as a solid phase extraction adsorbent and a stationary phase material for simultaneous extraction and analysis of polycyclic aromatic hydrocarbon in water

机译:基于碳纳米管基聚甲基丙烯酸酯复合型号作为固相萃取吸附剂和用于同时提取和分析水中多环芳烃的固定相材料

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A composite of multi-walled carbon nanotubes incorporated into a benzyl methacrylate-co-ethylene dimethacrylate porous monolith was prepared, characterized and used as solid phase adsorbent and as stationary phase for simultaneous extraction and separation of ten polycyclic aromatic hydrocarbons, followed by nano-liquid chromatography analysis. The extraction and chromatographic parameters were optimized with regard to the extraction efficiency and the quality of chromatographic analytes separation. Under the optimized conditions, all PAHs were separated in 13 min with suitable resolution values (Rs = 1.74-3.98). Addition of a small amount of carbon nanotubes (0.1% with respect to monomers) to the polymerization mixture increased the efficiency for the separation column to over 41,700 plates m(-1) for chrysene at flow rate of 0.5 mu L min(-1). The method showed a wide linear range (1-500 mu g L-1 with R-2 more than 0.9938), acceptable extraction repeatability (RSDs 6.4%, n=3) and reproducibility (RSDs 12.6%, five parallel-made solid phase extraction cartridges) and satisfactory detection limits (0.02-0.22 mu g L-1). Finally, the proposed method was successfully applied to the detection of polycyclic aromatic hydrocarbons in environmental water samples. After a simple extraction procedure with preconcentration factor equal to 100, the average recovery values in ultra-pure, tap and sea water samples were found to be in the range 81.3-95.4% with %RSD less than 6.4. Again, the presence of carbon nanotubes (0.3% relatively to monomers) in native polymer enhanced the extraction performance for the solid phase adsorbent up to 78.4%. The application of the monoliths modified with CNTs in extraction and nano-scale liquid chromatography for analysis of environmental samples offered several advantages; it demonstrated an acceptable precision, low detection limits, good reproducibility, satisfying recoveries and wide dynamic linear ranges. (C) 2018 Published by Elsevi
机译:并入甲基丙烯酸苄酯 - 共 - 乙二醇二甲基丙烯酸多孔整料多壁碳纳米管的复合材料制备,其特征在于,用作固相吸附剂和作为同时提取和10的多环芳香族烃的分离固定相,随后通过纳米液体色谱分析。提取和色谱参数相对于提取效率和色谱分析物分离的质量最优化。在优化条件下,所有的多环芳烃与合适的分辨率值(Rs = 1.74-3.98)13分钟进行分离。碳纳米管的少量(0.1%相对于单体)向聚合混合物中加入以0.5亩大号min流速增加了分离塔的效率到超过41700板M(-1),屈(chrysene)(-1) 。该方法表现出宽的线性范围(1-500亩克L-1与R-2超过0.9938),可接受的萃取重复性(相对标准偏差< 6.4%,N = 3)和再现性(相对标准偏差< 12.6%,五个平行订做固相萃取柱)和满意的检出限(0.02-0.22亩克L-1)。最后,所提出的方法被成功地应用于检测环境水样中的多环芳香烃。后用富集因子的简单提取过程等于100,在超纯,抽头和海水样品的平均回收率值被认为是在范围81.3-95.4%与%RSD小于6.4。同样,碳纳米管在天然聚合物的存在下(0.3%相对于单体)的增强的固相吸附剂提取性能高达78.4%。在对环境样品的分析提取和纳米级液相色谱法的CNT改性的单块中的应用提供了几个优点;无余可接受的高精度,低检测限,良好的再现性,令人满意的回收率和宽动态线性范围。 (C)2018出版Elsevi

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