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首页> 外文期刊>Geostandards and geoanalytical research >Determination of Abundances of Fifty-Two Elements in Natural Waters by ICP-MS with Freeze-Drying Pre-concentration
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Determination of Abundances of Fifty-Two Elements in Natural Waters by ICP-MS with Freeze-Drying Pre-concentration

机译:用冻干预浓度的ICP-MS测定天然水中的五十二元素的丰度

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To precisely determine the abundances of fifty-two elements found within natural water samples, with mass fractions down to fg g(-1) level, we have developed a method which combines freeze-drying pre-concentration (FDC) and isotope dilution internal standardisation (ID-IS). By sublimation of H2O, the sample solution was reduced to 1/50 of the original volume. To determine element abundance with accuracy better than 10%, we found that for solutions being analysed by mass spectrometry the HNO3 concentration should be 0.3 mol l(-1) to avoid hydrolysis. Matrix-affected signal suppression was not significant for the solutions with NaCl concentrations lower than 0.2 and 0.1 cg g(-1) for quadrupole ICP-MS and sector field ICP-MS, respectively. The recovery yields of elements after FDC were 97-105%. The detection limits for the sample solutions prepared by FDC were = 10 pg g(-1), except for Na, K and Ca. Blanks prepared using FDC were at pg-levels, except for eleven elements (Na, Mg, Al, P, Ca, Mn, Fe, Co, Ni, Cu and Zn). The abundances of fifty-two elements in bottled drinking water were determined from five different geological sources with mass fractions ranging from the fg g(-1) to mu g g(-1) level with high accuracy.
机译:为了精确地确定天然水样中发现的五十二个元素的丰度,用肿块分数降至FG G(-1)水平,我们开发了一种将冷冻干燥预浓度(FDC)和同位素稀释内部标准化结合的方法(ID-IS)。通过升华H 2 O,将样品溶液还原为&原始卷的1/50。为了精确地比10%更好地确定元素丰富,我们发现通过质谱分析的解决方案应该是HNO3浓度应该是& 0.3 mol L(-1)以避免水解。对于高于0.2和0.1cg-ms和扇区场ICP-MS,基质影响的信号抑制对于具有低于0.2和0.1cg(-1)的NaCl浓度的溶液不显着。 FDC后元素的回收率为97-105%。除Na,K和Ca之外,FDC制备的样品溶液的检测限是除Na,K和Ca之外。除了十一元素(Na,Mg,Al,P,Ca,Mn,Fe,Co,Ni,Cu和Zn)外,使用FDC制备的空白位于PG级别。从瓶装饮用水中的五十二个元素的丰度从五种不同的地质源测定,质量级分具有高精度的FG G(-1)至MU G(-1)水平。

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