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Analysis of mercury in sequential micrometer segments of single hair strands of fish-eaters

机译:食鱼者单发的连续微米级中的汞分析

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Although it has been established that mercury (Hg) can be detected in single hair strands using laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS), calibration remains a challenge due to the lack of well-characterized matrix-matched standards. We concurrently evaluated two strategies for quantifying Hg signals in single hair strands using LA-ICP-MS. The main objective was to obtain time-resolved Hg concentrations in single hair strands of fish-eaters that would correspond to the changes of their body burden over time. Experiments were conducted using hair samples collected from 10 individuals. The first experiment involved the construction of a calibration curve with four powdered hair standard reference materials (SRMs) with a range of Hg concentrations (0.573-23.2 mg/kg). An internal standard, sulfur, as S-34, was applied to correct for ablation efficiency for both the hair strands and the SRMs. Results showed a linear relationship (R (2) = 0.899) between the ratio of Hg-202 to S-34 obtained by LA-ICP-MS and the certified total Hg concentration in the SRMs. Using this calibration curve, average Hg concentrations of 10 shots within a 1-cm segment of a hair strand were calculated and then compared to the total Hg concentrations in the matched 1-cm segment as measured by cold vapor atomic absorption spectrometry (CV-AAS). A significant difference (p < 0.05) was observed. The difference could be attributed to the highly variable ablation/sampling process caused by the use of the laser on the hair powder SRM pellets and the difference in the physical properties of the SRMs. An alternative approach was adopted to quantify consecutive Hg-202 to S-34 ratios by calibrating the signals against the average Hg concentration of the matched hair segment as measured by CV-AAS. Consecutive daily Hg deposition in single hairs of fish eaters was determined. Results showed that apparent daily changes in Hg concentrations within a hair segment that corresponds to 1 month of hair growth. In addition, a significant decreasing or increasing time-trend was observed. The difference between the minimum and maximum Hg concentration within each individual corresponded to a change of 26-40%. Our results showed that LA-ICP-MS can be used to reconstruct time-resolved Hg exposure in micrometer segments of a single hair strand.
机译:尽管已经确定可以使用激光烧蚀-电感耦合等离子体质谱法(LA-ICP-MS)在单根发丝中检测到汞(Hg),但由于缺乏特征明确的基质匹配,校准仍然是一个挑战标准。我们同时评估了使用LA-ICP-MS定量单发中Hg信号的两种策略。主要目的是获得食鱼者单发中时间分辨的汞浓度,该浓度对应于其随时间变化的身体负担。使用从10个人身上收集的头发样本进行实验。第一个实验涉及用四种粉末状头发标准参考物质(SRM)绘制一系列汞含量范围(0.573-23.2 mg / kg)的校准曲线。内标硫S-34用于校正发束和SRM的消融效率。结果显示,通过LA-ICP-MS获得的Hg-202与S-34的比例与SRM中认证的总Hg浓度之间存在线性关系(R(2)= 0.899)。使用该校准曲线,计算出发束的1厘米段内10击的平均Hg浓度,然后与通过冷蒸气原子吸收光谱法(CV-AAS)测量的匹配的1厘米段内的总Hg浓度进行比较)。观察到显着差异(p <0.05)。差异可能归因于在发粉SRM颗粒上使用激光导致的高度可变的消融/采样过程,以及SRM物理特性的差异。通过将信号相对于通过CV-AAS测量的匹配头发段的平均Hg浓度进行校准,采用了另一种方法来量化连续的Hg-202与S-34的比例。确定连续连续每天在食鱼者的单毛中沉积汞。结果表明,对应于头发生长1个月的头发段中汞浓度的每日明显变化。另外,观察到明显的减少或增加的时间趋势。每个人体内最小和最大汞浓度之间的差异对应于26%至40%的变化。我们的结果表明,LA-ICP-MS可用于重建单个发束的微米段中的时间分辨汞暴露。

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