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首页> 外文期刊>Analytical Sciences >Distributions of Major-to-Ultratrace Elements among the Particulate and Dissolved Fractions in Natural Water as Studied by ICP-AES and ICP-MS after Sequential Fractionation
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Distributions of Major-to-Ultratrace Elements among the Particulate and Dissolved Fractions in Natural Water as Studied by ICP-AES and ICP-MS after Sequential Fractionation

机译:ICP-AES和ICP-MS分级分离后天然水中微粒和溶解级分中主要微量元素的分布

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摘要

In order to elucidate the distributions of the elements among the particulate and dissolved fractions in pond water, major-to-ultratrace elements in different sizes of particles as well as in the filtrate passed through the 0.05 μm filter were determined by inductively coupled plasma atomic emission spectrometry (ICP-AES) and inductively coupled plasma mass spectrometry (ICP-MS). The different sizes of particle samples (ca. 100 - 300 μg each) were collected on the membrane filters with pore sizes of 10, 3.0, 1.2, 0.4, 0.2 and 0.05 μm, respectively, by sequential fractionation. As a result, about 40 elements in different sizes of particles could be determined by ICP-AES and ICP-MS, after acid digestion using HNO3/HF/HClO4. Then, the fractional distribution factors of major-to-ultratrace elements among the particulate and dissolved fractions were estimated from the analytical results. The total contents of Al, Fe, Ti, REEs (rare earth elements), Bi, Pb and Ag in the particulate fractions (larger than 0.05 μm) were more than 80 - 90%, while those of Ca, Sr, Cs, W, Ba, Mn and Co in the dissolved fraction, which corresponded to the filtrate passed through the 0.05 μm membrane filter, were more than 80%. It was further found that the fractional distributions of Cu and Zn in the dissolved fraction were ca. 50%. In addition, the enrichment factors (EFs) of the elements in the particulate fractions with particle sizes of 3.0 - 10 μm and 0.05 - 0.2 μm were estimated to elucidate their geochemical characteristics in natural water.
机译:为了阐明元素在池塘水中的颗粒物和溶解级分之间的分布,通过电感耦合等离子体原子发射法测定了不同粒径的颗粒中的主要至超痕量元素以及通过0.05μm过滤器的滤液中的元素质谱(ICP-AES)和电感耦合等离子体质谱(ICP-MS)。通过顺序分馏,在孔径分别为10、3.0、1.2、0.4、0.2和0.05μm的膜滤膜上收集不同大小的颗粒样品(每个约100-300μg)。结果,在使用HNO3 / HF / HClO4进行酸消解后,可以通过ICP-AES和ICP-MS测定大约40种不同粒径的元素。然后,从分析结果中估算出主要和超微量元素在颗粒和溶解组分中的组分分布因子。大于0.05μm的颗粒部分中Al,Fe,Ti,REEs(稀土元素),Bi,Pb和Ag的总含量超过80-90%,而Ca,Sr,Cs,W的总含量对应于通过0.05μm膜过滤器的滤液的溶解级分中的Ba,Mn,Co超过80%。进一步发现,在溶解的级分中Cu和Zn的级分分布为约。 50%。此外,估计了粒径为3.0-10μm和0.05-0.2μm的颗粒级分中元素的富集因子(EFs),以阐明其在天然水中的地球化学特征。

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