首页> 外文期刊>International Journal of Bio-Inorganic Hybrid Nanomaterials >Solid phase extraction of trace cobalt (II) in industrial wastewaters by modified nanotube carbon carboxyl and its determination with flame atomic spectroscopy
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Solid phase extraction of trace cobalt (II) in industrial wastewaters by modified nanotube carbon carboxyl and its determination with flame atomic spectroscopy

机译:改性纳米管碳羧基固相萃取工业废水中的痕量钴(II)及其火焰原子光谱法测定

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Applying a simple and selective sample preparation procedure prior to instrumental analysis is the most important and crucial step in an analytical process. Up to now, various sample preparation techniques based on solid phase extraction (SPE) systems have been developed to isolate various types of analytes from different matrices. In the method presented for preconcentration and measurement of trace amounts of cobalt (II) ions in aqueous samples, carbon nanotubes functionalized with carboxyl were used for improving the extraction and preconcentration action. Measurement of Co2+ ion concentration in aqueous solutions was performed by flame atomic absorption spectroscopy. The parameters including the extraction including pH, amount and type of desorption solvent, extraction time, the effect of other ions, etc. were optimized. The concentration factor, level of detection (LOD) of the method, and relative standard deviation (RSD %) were obtained as 20.83, 6 μg.L-1, and 1.16%, respectively.
机译:在仪器分析之前应用简单且选择性的样品制备程序是分析过程中最重要,最关键的步骤。迄今为止,已经开发了各种基于固相萃取(SPE)系统的样品制备技术,以从不同的基质中分离出各种类型的分析物。在提出的用于富集和测量水性样品中痕量钴(II)离子的方法中,使用了羧基官能化的碳纳米管来改善提取和富集作用。通过火焰原子吸收光谱法测量水溶液中的Co 2+离子浓度。优化了包括萃取在内的参数,包括pH,解吸溶剂的量和类型,萃取时间,其他离子的影响等。该方法的浓度系数,检测水平(LOD)和相对标准偏差(RSD%)分别为20.83、6μg.L-1和1.16%。

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