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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Determination of total chromium in seawater with isotope dilution sector field ICP-MS following on-line matrix separation
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Determination of total chromium in seawater with isotope dilution sector field ICP-MS following on-line matrix separation

机译:在线基质分离后,通过同位素稀释扇形场ICP-MS测定海水中的总铬

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摘要

An on-line matrix separation and concentration was undertaken for the direct determination of total Cr in seawater using isotope dilution with detection by sector field inductively coupled plasma mass spectrometry (ID SF-ICP-MS). A mini-column packed with 50 μl silica-immobilized diphenylcarbazone (I-DPC) resin was used to extract Cr(III) from seawater following on-line pH adjustment with a pH 9.3 solution of NH_4OH/HNO_3. A preliminary reduction of chromium to Cr(III) was achieved with hydroxylamine hydrochloride. Medium resolution was used to efficiently separate argon polyatomic species and any possible oxide interferences. Using a 7.5 ml volume of sample, throughput was 10 samples h~(-1) with a detection limit (3 s,) of 0.005 ng g~(-1).rnMethod validation was demonstrated by determination of total chromium in seawater CRMs NASS-5 and CASS-4, yielding concentrations of 0.111 ± 0.011 and 0.1296 ± 0.0094 ng ml~(-1) (U, 95% confidence interval, k = 4.30, n = 3) in agreement with certified values. The method was applied to the determination of total Cr in candidate seawater CRMs NASS-6 and CASS-5, yielding concentrations of 0.1132 ± 0.0047 and 0.0942 ± 0.0040 ng g~(-1) (U, 95% confidence interval, k = 2.57, n = 6), respectively. A complete evaluation of uncertainty is presented.
机译:使用同位素稀释在线进行基质分离和浓缩,以直接测定海水中的总Cr,并通过扇形场电感耦合等离子体质谱法(ID SF-ICP-MS)进行检测。在用NH_4OH / HNO_3的pH 9.3溶液进行在线pH调节后,使用装有50μl二氧化硅固定化二苯卡巴zone(I-DPC)树脂的微型柱从海水中萃取Cr(III)。用盐酸羟胺将铬初步还原为Cr(III)。中分辨率用于有效分离氩多原子物质和任何可能的氧化物干扰。使用7.5 ml样品体积,通量为10个样品h〜(-1),检出限(3 s,)为0.005 ng g〜(-1).rn方法验证通过测定海水CRM中的总铬来确定-5和CASS-4,得到的浓度为0.111±0.011和0.1296±0.0094 ng ml〜(-1)(U,95%置信区间,k = 4.30,n = 3),与认证值一致。该方法用于测定候选CRM CRMS NASS-6和CASS-5中的总Cr,浓度为0.1132±0.0047和0.0942±0.0040 ng g〜(-1)(U,95%置信区间,k = 2.57 ,n = 6)。提出了不确定性的完整评估。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2009年第7期|958-963|共6页
  • 作者单位

    Institute for National Measurement Standards, National Research Council Canada, Ottawa, Ontario, Canada K1A 0R6;

    Institute for National Measurement Standards, National Research Council Canada, Ottawa, Ontario, Canada K1A 0R6;

    Institute for National Measurement Standards, National Research Council Canada, Ottawa, Ontario, Canada K1A 0R6;

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