首页> 外文期刊>Limnology and oceanography, methods >Data trend shifts induced by method of concentration for trace metals in seawater: Automated online preconcentration vs. borohydride reductive coprecipitation of nearshore seawater samples for analysis of Ni, Cu, Zn, Cd, and Pb via ICP-MS
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Data trend shifts induced by method of concentration for trace metals in seawater: Automated online preconcentration vs. borohydride reductive coprecipitation of nearshore seawater samples for analysis of Ni, Cu, Zn, Cd, and Pb via ICP-MS

机译:海水中痕量金属浓度诱导的数据趋势转移:通过ICP-MS分析Ni,Cu,Zn,Cd和Pb的近岸海水样本的自动化在线预浓度与硼氢化物还原共沉淀。

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摘要

This research compares performance, reproducibility, and detection limits of ambient seawater analysis for trace metals using both borohydride reductive coprecipitation and an automated chelation column (seaFAST? 2) preconcentration for matrix interferent elimination on total and dissolved grab samples in nearshore to marine waters, over a broad concentration range, prior to inductively coupled plasma mass spectrometry (ICP-MS) injection. A move to an online preconcentration method both minimizes sample preparation, and eliminates correction errors when accounting for trace impurities in precipitated samples, induced via reagents. The reproducability of the online preconcentration method described, coupled with low blanks and method detection limits (MDLs), demonstrates the effectiveness of the automated procedure using ethylenediaminetriacetic and iminodiacetate acid chelation exchange resin and multianalyte determination by ICP-MS for total and dissolved Ni, Cu, Zn, Cd, and Pb in marine water samples. Average CASS-5 recoveries using the online preconcentration method (n = 9) were 109% - 7%, 104% - 5%, 103% - 7%, 101% - 3%, and 86% - 8%, respectively. The MDLs obtained from the automated method for Ni, Cu, Zn, Cd, and Pb were 3.3, 1.8, 13.5, 4, and 10 times lower, respectively, than for the Borohydride method. There were statistically significant differences between the methods for CASS-5 recoveries of Ni, Cu, Zn (p < 0.0001), and Pb (p = 0.0024). Comparison of methods gave high concordance (rC ≥ 0.90) between methods for total and dissolved Ni, Cu, Zn, and Pb, and total Cd.
机译:该研究比较了使用硼氢化硼还原共沉淀和自动螯合柱(SEAFAST'2)预浓缩的痕量金属对痕量金属的性能,可重复性和检测限制进行了预征,在近岸的近岸溶解的抢劫样本中的基质干扰消除广泛的浓度范围,在电感耦合等离子体质谱(ICP-MS)注射之前。通过转向在线预浓缩方法,两者都会最小化样品制备,并在沉淀样品中占痕量杂质时消除校正误差,通过试剂诱导。所述在线预浓缩方法的再现性与低坯料和方法检测限(MDL)相结合,证明了使用乙二胺四乙酸和乙酰乙酯酸螯合交换树脂和通过ICP-MS的多分析测定的自动化程序的有效性,并且溶解Ni,Cu ,Zn,Cd和Pb在海水水样中。使用在线前浓度法(n = 9)的平均CASS-5回收率分别为109% - 7%,104%-5%,103%-7%,101%-3%和86%-8%。从Ni,Cu,Zn,Cd和Pb的自动化方法获得的MDL分别为3.3,1.8,13.5,4和10倍,而不是硼氢化物方法。在Ni,Cu,Zn(P <0.0001)和Pb的CU,Cu,Zn(P <0.0001)和Pb的CAS-5回收方法之间存在统计学上显着的差异(P = 0.0024)。方法比较总和溶解Ni,Cu,Zn和Pb的方法之间的高一致性(Rc≥0.90),以及总CD。

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