首页> 美国卫生研究院文献>Molecules >A Novel Glass Fiber Coated with Sol–Gel Poly-Diphenylsiloxane Sorbent for the On-Line Determination of Toxic Metals Using Flow Injection Column Preconcentration Platform Coupled with Flame Atomic Absorption Spectrometry
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A Novel Glass Fiber Coated with Sol–Gel Poly-Diphenylsiloxane Sorbent for the On-Line Determination of Toxic Metals Using Flow Injection Column Preconcentration Platform Coupled with Flame Atomic Absorption Spectrometry

机译:一种新型玻璃纤维涂有溶胶 - 凝胶聚二苯基硅氧烷吸附剂用于使用流喷液柱预浓度平台与火焰原子吸收光谱法相结合的有毒金属的在线测定

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摘要

A novel simple and sensitive, time-based flow injection solid phase extraction system was developed for the automated determination of metals at low concentration. The potential of the proposed scheme, coupled with flame atomic absorption spectrometry (FAAS), was demonstrated for trace lead and chromium(VI) determination in environmental water samples. The method, which was based on a new sorptive extraction system, consisted of a microcolumn packed with glass fiber coated with sol–gel poly (diphenylsiloxane) (sol–gel PDPS), which is presented here for the first time. The analytical procedure involves the on-line chelate complex formation of target species with ammonium pyrrolidine dithiocarbamate (APDC), retention onto the hydrophobic sol–gel sorbent coated surface of glass fibers, and finally elution with methyl isobutyl ketone prior to atomization. All main chemical and hydrodynamic factors, which affect the complex formation, retention, and elution of the metal, were optimized thoroughly. Furthermore, the tolerance to potential interfering ions appearing in environmental samples was also explored. Enhancement factors of 215 and 70, detection limits (3 s) of 1.1 μg·L−1 and 1.2 μg·L−1, and relative standard deviations (RSD) of 3.0% (at 20.0 μg·L−1) and 3.2% (at 20.0 μg·L−1) were obtained for lead and chromium(VI), respec tively, for 120 s preconcentration time. The trueness of the developed method was estimated by analyzing certified reference materials and spiked environmental water samples.
机译:开发了一种简单敏感的基于时间的流喷液固相提取系统,用于在低浓度下自动测定金属。所提出的方案的电位与火焰原子吸收光谱(FAAS)相结合,用于痕量铅和铬(VI)测定环境水样中。基于新的吸附萃取系统的方法由涂有涂有溶胶 - 凝胶聚(二苯基硅氧烷)(溶胶 - 凝胶PDP)的玻璃纤维的微柱组成,其首次在此呈现。分析程序涉及用吡咯烷二硫代氨基甲酸铵(APDC)的靶物种的在线螯合物复合物形成,保持在玻璃纤维的疏水溶胶 - 凝胶吸附剂涂覆表面上,并在雾化之前用甲基异丁基酮洗脱。影响金属复杂形成,保留和洗脱的所有主要化学和流体动力因子进行彻底优化。此外,还探讨了出现在环境样品中出现的潜在干扰离子的耐受性。增强因子为215和70,检测限值(3 s)为1.1μg·l-1和1.2μg·l-1,相对标准偏差(RSD)为3.0%(20.0μg·l-1)和3.2% (在20.0μg·1-1)中获得铅和铬(VI),RESPEC THERCIVE,速度为120秒的预浓度。通过分析认证的参考资料和尖刺的环境水样,估计了开发方法的特殊性。

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