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Composite materials based on hybrid mesoporous solids for flow-through determination of ultratrace levels of Cd(II)

机译:基于杂化介孔固体的复合材料,用于流通测定超痕量的Cd(II)

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In this work we present a solid phase extraction (SPE) flow-through system coupled to graphite furnace atomic absorption spectrometry (GFAAS) for the determination of Cd(II) at ultratrace levels. The flow system holds a minicolumn which was filled, one at a time, with three different lab-made materials: (a) mesoporous silica functionalized with 3-aminopropyl groups from 3-aminopropyl triethoxysilane (HMS); (b) HMS with a resin, Amberlite IR120; and (c) HMS-Amberlite IR120 and polyvinyl alcohol (PVA). All the solids were characterized by FTIR and SEM. Batch experiments were performed in order to study the optimum adsorption pH, the adsorption kinetics and the maximum adsorption capacity. The materials were compared in terms of their aptitude for the pre-concentration of the analyte under dynamic conditions. Microvolumes of HCl were employed for the release of cadmium and its introduction into the electrothermal atomizer. The operational variables of the flow system were also tested and optimized. A comparison of the figures of merit revealed that HMS-A-PVA was the best option from an analytical point of view: limit of detection = 4.7 ng L?1, limit of quantification = 16 ng L?1, RSD% = 4 (n = 6, 100 ng L?1), linear range: from LOQ up to 200 ng L?1 and a lifetime of over 600 cycles with no obstructions to the free movement of fluids, material bleeding or changes in the analytical sensitivity. The proposed method was shown to be tolerant to several ions typically present in natural waters and was successfully applied to the determination of traces of Cd(II) in real samples. A full discussion of the main findings with emphasis on the metal ion/filling interaction is provided.
机译:在这项工作中,我们提出了固相萃取(SPE)流通系统与石墨炉原子吸收光谱法(GFAAS)耦合,用于测定超痕量水平的Cd(II)。流动系统装有一个微型柱,每次用一种不同的实验室制造的材料填充一次:(a)用3-氨基丙基三乙氧基硅烷(HMS)的3-氨基丙基官能化的中孔二氧化硅。 (b)使用树脂的HMS,Amberlite IR120; (c)HMS-Amberlite IR120和聚乙烯醇(PVA)。通过FTIR和SEM对所有固体进行表征。为了研究最佳的吸附pH,吸附动力学和最大吸附容量,进行了分批实验。根据材料在动态条件下预浓缩分析物的能力对它们进行了比较。使用微量的HCl释放镉,并将其引入电热雾化器中。还对流量系统的操作变量进行了测试和优化。品质因数的比较显示,从分析的角度来看,HMS-A-PVA是最佳选择:检测限= 4.7 ng L?1,定量限= 16 ng L?1,RSD%= 4( n = 6,100 ng L?1),线性范围:从LOQ到200 ng L?1,寿命超过600个循环,没有阻碍流体自由流动,材料渗出或分析灵敏度的变化。所提出的方法显示出对天然水中通常存在的几种离子的耐受性,并已成功应用于实际样品中痕量Cd(II)的测定。提供了主要发现的完整讨论,重点是金属离子/填充相互作用。

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