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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >UV photochemical vapor generation of noble metals (Au, Ir, Pd, Pt and Rh): a feasibility study using inductively coupled plasma mass spectrometry and seawater as a test matrix
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UV photochemical vapor generation of noble metals (Au, Ir, Pd, Pt and Rh): a feasibility study using inductively coupled plasma mass spectrometry and seawater as a test matrix

机译:贵金属(Au,Ir,Pd,Pt和Rh)的UV光化学蒸气产生:使用电感耦合等离子体质谱法和海水作为测试基质的可行性研究

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The results originated from the application of a simple and straightforward photochemical reactor to generate volatile species from noble metals (Au, Ir, Pd, Pt and Rh) are presented. Seawater samples were spiked with known amounts of the analytes and mixed with formic acid, followed by irradiation of the solution at 253.7 nm. The irradiated solution was driven to a gas-liquid separator and the volatile species were carried by an argon stream for detection using inductively coupled plasma mass spectrometry. Parameters such as formic acid concentration, carrier gas flow rate, UV irradiation period and RF power were evaluated. The optimum conditions were determined as 20% (v/v) formic acid, 1.0 L min(-1) Ar, 45 s of UV exposure for Au, Pd, Pt and Rh or 120 s for Ir and 1300 W ICP RF power. Evaluation of potential interferences has shown that the addition of Cu2+ at ppm levels improved the overall efficiency of the photochemical process for Ir and Rh. Hence, Cu2+ was added as a modifier prior to the quantitation of Ir and Rh. Three seawater samples collected locally were used to evaluate the ability to carry out quantitative analysis of the investigated elements. The concentration of noble metals was, as expected, below the quantification limit, but recovery tests were successfully performed. Detection limits ranged from 0.02 to 0.1 g L-1. Typical relative standard deviations were lower than 13% and the method was proven successful as an alternative to carry out the analysis of mildly diluted seawater samples.
机译:提出的结果源自应用简单直接的光化学反应器从贵金属(Au,Ir,Pd,Pt和Rh)生成挥发性物质的过程。海水样品中掺入已知量的分析物,并与甲酸混合,然后在253.7 nm处辐照溶液。将辐照后的溶液驱动至气液分离器,并通过氩气流携带挥发性物质,以使用感应耦合等离子体质谱法进行检测。评估了甲酸浓度,载气流速,紫外线照射时间和射频功率等参数。确定最佳条件为20%(v / v)甲酸,1.0 L min(-1)Ar,Au,Pd,Pt和Rh的UV暴露时间为45 s,Ir和1300 W ICP RF功率为120 s。对潜在干扰的评估表明,以ppm级添加Cu2 +可以提高Ir和Rh光化学过程的整体效率。因此,在定量Ir和Rh之前,先添加Cu2 +作为改性剂。在当地收集的三个海水样品用于评估对所调查元素进行定量分析的能力。如所预期的那样,贵金属的浓度低于定量限,但是成功进行了回收率测试。检出限为0.02至0.1 g L-1。典型的相对标准偏差低于13%,该方法被证明是成功进行轻度稀释海水样品分析的替代方法。

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