Grupo Bioxeoquímica Mariña, Instituto de Investigacións Mariñas-CSIC, Vigo, Spain.
Grupo Bioxeoquímica Mariña, Instituto de Investigacións Mariñas-CSIC, Vigo, Spain.
Talanta. 2016 Jan 1;146:737-43. doi: 10.1016/j.talanta.2015.06.032. Epub 2015 Jun 18.
Rhodium (Rh) is present at the Earth's surface at ultra-trace concentrations (0.06 ng g(-1)); however, its use in catalytic converters has increased its deposition nearby traffic pressure and therefore the interest in analytical techniques for Rh determination has raised in the recent years. In this study we propose an improvement of Rh measurement by adsorptive voltammetry applying second-derivative signal transformation. The optimization of experimental parameters affecting the voltammetric analysis were carried out using sediment samples; these include the amount of sample digest used, the hydrochloric acid and formaldehyde concentrations, deposition potential and equilibration time. The use of the second derivative transformation provided well-defined peaks due to the minimization of background interferences, leading to a significant decrease in the detection limits. Accordingly, a detection limit of 200 fM Rh in the cell was obtained, which corresponds to 14 pg g(-1) of Rh for 200mg of sediments. The optimized methodology was applied to the analysis of Rh in a sediment core collected close to a motorway bridge from Tagus Estuary (Lisbon, Portugal). Here, Rh concentrations ranged from 0.06 to 0.47 ng g(-1), showing a surface Rh-enrichment linked to traffic, which was consistent with a Pt superficial peak. Reference materials were also analyzed, including road dust (BCR-723) and river sediment (JSD-2), and values obtained were in agreement with certified concentrations and previously values reported in the literature.
铑(Rh)在地球表面的浓度极低(0.06ng g(-1));然而,由于其在催化转化器中的应用,其在附近交通压力下的沉积量有所增加,因此近年来人们对 Rh 测定的分析技术产生了兴趣。在本研究中,我们提出了一种通过吸附伏安法应用二阶导数信号转换来改进 Rh 测量的方法。使用沉积物样品对影响伏安分析的实验参数进行了优化,这些参数包括使用的样品消化量、盐酸和甲醛浓度、沉积电位和平衡时间。二阶导数转换的使用提供了定义良好的峰,因为背景干扰最小化,从而显著降低了检测限。因此,在细胞中获得了 200 fM Rh 的检测限,这对应于 200mg 沉积物中 14pg g(-1)的 Rh。优化后的方法应用于从塔古斯河口(葡萄牙里斯本)附近的高速公路桥采集的沉积物芯中 Rh 的分析。这里,Rh 的浓度范围为 0.06 至 0.47ng g(-1),显示出与交通有关的 Rh 表面富集,这与 Pt 的表面峰一致。还分析了参考物质,包括道路灰尘(BCR-723)和河流沉积物(JSD-2),得到的结果与认证浓度和文献中先前报道的值一致。