首页> 外文期刊>Fresenius' Journal of Analytical Chemistry >Determination of trace elements in marine plankton by inductively coupled plasma mass spectrometry (ICP-MS)
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Determination of trace elements in marine plankton by inductively coupled plasma mass spectrometry (ICP-MS)

机译:电感耦合等离子体质谱法(ICP-MS)测定海洋浮游生物中的痕量元素

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摘要

A method has been developed for the determination of 23 elements in marine plankton in which inductively coupled plasma (ICP) source mass spectrometry (MS) was used to quantify the elements in the solution after digestion in a mixture of hydrofluoric and nitric acids in sealed PTFE vessels in a microwave field. The procedure was validated by the analysis of a standard reference soil (SRM 2709 San Joaquin Soil) and a standard reference fresh water plankton (CRM 414). The method was applied to the analysis of several marine plankton samples grown under controlled conditions including several whose growth media had been enriched with selenium. Matrix induced signal suppressions and instrumental drift were corrected by internal standardization. The suitabilities of germanium, indium, rhodium, scandium and yttrium as internal standard elements were evaluated. Neither scandium nor yttrium could be used due to the presence of these elements in the samples, germanium was used for the determination of As, Co, Cu, Fe, Ni, Se, Si and Zn, indium was used for Al, Ba, Ca, Eu, Sr, and Tl, and rhodium was used for Cd, Cr, Hg, Mg, Pb, Sb, Sn, and V. For Al, Ca, Cr, Cu, Fe, Mg, Mn, Ni, Si, Sr, V and Zn internal standardization did not completely compensate for the suppressive effect of the heavier elements and the solutions were diluted. However, for As, Ba, Cd, Co, Eu, Hg, Pb, Sb, Se, Sn and Tl, it was was possible to obtain accurate results despite the 35-40% suppression in the signals. Isobaric overlap was only a problem in the cases of ~(42)Ca and ~(78)Se; ~(44)Ca and ~(77)Se, respectively, were used. Memory effects were only observed with Hg for which a nitric acid-sodium chloride solution was the most effective wash-out solution. The marine plankton samples were able to tolerate a higher concentration of Hg as the selenium concentration increased.
机译:已开发出一种测定海洋浮游生物中23种元素的方法,其中在密封的PTFE中的氢氟酸和硝酸混合物中消解后,使用电感耦合等离子体(ICP)源质谱(MS)定量分析溶液中的元素微波场中的容器。通过分析标准参考土壤(SRM 2709 San Joaquin土壤)和标准参考淡水浮游生物(CRM 414)来验证该程序。该方法用于分析在受控条件下生长的几种海洋浮游生物样品,包括一些生长培养基中富含硒的海洋浮游生物样品。内标校正了基质诱导的信号抑制和仪器漂移。评估了锗,铟,铑,scan和钇作为内标元素的适用性。由于样品中存在这些元素,因此不能使用scan或钇。锗用于测定As,Co,Cu,Fe,Ni,Se,Si和Zn,铟则用于Al,Ba,Ca。 ,Eu,Sr和Tl以及铑用于Cd,Cr,Hg,Mg,Pb,Sb,Sn和V.对于Al,Ca,Cr,Cu,Fe,Mg,Mn,Ni,Si,Sr ,V和Zn的内部标准化不能完全补偿较重元素的抑制作用,因此将溶液稀释。但是,对于As,Ba,Cd,Co,Eu,Hg,Pb,Sb,Se,Sn和Tl,尽管信号受到35-40%的抑制,仍可能获得准确的结果。等压重叠只是〜(42)Ca和〜(78)Se的问题。分别使用〜(44)Ca和〜(77)Se。仅在硝酸-氯化钠溶液是最有效的冲洗溶液的汞中观察到记忆效应。随着硒浓度的增加,海洋浮游生物样品能够耐受更高的汞浓度。

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