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Determination of Cu, Ni and Pb in aqueous medium by FAAS after pre-concentration on 2-aminothiazole modified silica gel

机译:2-氨基噻唑改性硅胶预富集-火焰原子吸收光谱法测定水介质中的铜,镍和铅

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This work describes the synthesis and characterization of 2-aminothiazole modified silica gel (SiAT), and the results of a study of the adsorption and pre-concentration (in batch and using a flow-injection system coupled to an absorption atomic spectrometer) of Cu(II), Ni(II) and Pb(II) in aqueous medium. The adsorption capacities for each metal ions in mmol g-1 were: Cu(II)= 1.18, Ni(II)= 1.15 and Pb(II)= 1.10. The results obtained in the flow experiments showed a recovery of practically 100% of the metal ions adsorbed in a mini-column packed with 100 mg of SiAT, using 100 μL of 2.0 mol L-1 HCl solution as eluent. The sorption-desorption of the metal ions made possible the application of a flow-injection system for the pre-concentration and quantification by FAAS of metal ions at trace level in natural water samples digested and not digest by an oxidizing UV photolysis.
机译:这项工作描述了2-氨基噻唑改性硅胶(SiAT)的合成和表征,以及对Cu的吸附和预浓缩(分批并使用流动注射系统与吸收原子光谱仪耦合)的研究结果。 (II),Ni(II)和Pb(II)在水性介质中。每种金属离子在mmol g-1中的吸附容量为:Cu(II)= 1.18,Ni(II)= 1.15和Pb(II)= 1.10。流动实验中获得的结果表明,使用100μL的2.0 mol L-1 HCl溶液作为洗脱液,回收了装满100 mg SiAT的微型柱中吸附的几乎100%的金属离子。金属离子的吸附-解吸使得有可能应用流动注射系统通过FAAS对已消化的天然水样品中的痕量水平的金属离子进行预浓缩和定量,而不是通过氧化UV光解来消化。

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