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首页> 外文期刊>Analytical Sciences >Determination of Heavy Metals and Rare Earth Elements in Environmental Samples by ICP-MS after Solid Phase Preconcentration with Chelating Resin Fibers and Anion Exchanger Filters
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Determination of Heavy Metals and Rare Earth Elements in Environmental Samples by ICP-MS after Solid Phase Preconcentration with Chelating Resin Fibers and Anion Exchanger Filters

机译:螯合树脂纤维和阴离子交换过滤器固相富集后,通过ICP-MS测定环境样品中的重金属和稀土元素

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摘要

A solid phase collection/concentration method using anion exchanger filters and a small syringe packed with chelating resin fibers is adopted as a preconcentration tool for trace elements and a separation tool for matrices in aqueous samples prior to the measurement by inductively coupled plasma-mass spectrometry (ICP-MS). The effects of fiber volume, sample volume, eluent volume, and sample flow rate on metal recoveries were investigated in detail to obtain optimum pretreatment conditions. Several heavy metals (HMs) such as, V, Mn, Co, Ni, Cu, Zn, Ga, Cd, Pb, Th and U, as well as 14 rare earth elements (REEs) in sample solutions at pH 6 were quantitatively collected on the solid phase. These adsorbed elements were completely recovered by eluting with 2 ml of 1.0 M nitric acid. At pH 6, more than 99% of alkali and alkaline earth metals in sample solutions were eliminated. The proposed method was evaluated by analyzing two standard reference materials (SRM): peach leaves (NIST 1547) and pond sediment (NIES No. 2). The solid samples were decomposed by microwave-heating and pressurizing acid digestion technique, and then treated by the proposed syringe-type pretreatment method, followed by the ICP-MS measurement. The analytical results for HMs in the SRMs obtained by the present method agreed well with the certified values.
机译:在通过电感耦合等离子体质谱法测量之前,采用阴离子交换过滤器和装有螯合树脂纤维的小注射器进行固相收集/浓缩的方法作为痕量元素的预浓缩工具和水溶液样品中基质的分离工具( ICP-MS)。详细研究了纤维体积,样品体积,洗脱液体积和样品流速对金属回收率的影响,以获得最佳的预处理条件。在pH值为6的样品溶液中定量收集了几种重金属(HMs),例如V,Mn,Co,Ni,Cu,Zn,Ga,Cd,Pb,Th和U,以及14种稀土元素(REE)在固相上通过用2 ml的1.0 M硝酸洗脱,可以完全回收这些吸附的元素。在pH值为6时,样品溶液中的碱金属和碱土金属超过99%被消除。通过分析两种标准参考物质(SRM)对所提出的方法进行了评估:桃叶(NIST 1547)和池塘沉积物(NIES No. 2)。固体样品通过微波加热和加压酸消化技术分解,然后通过建议的注射器式预处理方法进行处理,然后进行ICP-MS测量。通过本方法获得的SRM中HM的分析结果与认证值非常吻合。

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