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Potential of solid sampling high-resolution continuum source graphite furnace atomic absorption spectrometry to monitor the Ag body burden in individual Daphnia magna specimens exposed to Ag nanoparticles

机译:固体采样高分辨率连续谱源石墨炉原子吸收光谱法监测暴露于Ag纳米颗粒的大型水蚤标本中Ag体负荷的潜力

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This work evaluates the potential of solid sampling high-resolution continuum source graphite furnace atomic absorption spectrometry (HR CS GFAAS) for the direct determination of the Ag body burden in individual specimens of Daphnia magna (a small aquatic invertebrate of approx. 2 mm length typically used in ecotoxicological studies) exposed to different Ag species, and particularly to Ag nanoparticles (NPs). It is shown that this technique offers unique features for this type of application, permitting the direct analysis of these organisms in a very straightforward way (only approx. 2a€“3 min are required for the analysis of every individual) and constructing the calibration curve with aqueous standards. Moreover, appropriate selection of the detector pixels used for signal quantification makes it feasible to achieve a very broad linear range for any set of experimental conditions, contrary to what occurs for traditional line source-GFAAS. This feature is particularly important for this application, as every Daphnia magna specimen can be measured only once and its Ag content is not known in advance. In this case, the use of central and/or side pixels permits achieving a working range between 3 pg and 1 ??g for the 328.068 nm Ag line, thus allowing analysis of all the samples of interest with the same experimental settings.
机译:这项工作评估了固体采样高分辨率连续谱源石墨炉原子吸收光谱法(HR CS GFAAS)的潜力,可直接测定水蚤(单个长约2毫米的小型水生无脊椎动物)中的Ag体负荷。暴露于不同的Ag物种,尤其是暴露于Ag纳米颗粒(NPs)的生态毒理研究中。结果表明,该技术为此类应用提供了独特的功能,允许以非常直接的方式直接分析这些生物(每个人的分析仅需要大约2至3分钟),并绘制校准曲线水性标准。此外,用于信号定量检测器像素的适当选择使得它可行实现非常宽的线性范围的任何一组的实验条件下,相反的是传统的线源-GFAAS发生。此功能对于此应用尤为重要,因为每个大型蚤(Daphnia magna)标本只能进行一次测量,并且其Ag含量事先未知。在这种情况下,使用中央和/或侧面像素可以使328.068 nm Ag线的工作范围在3 pg至1 ?? g之间,从而可以在相同的实验设置下分析所有感兴趣的样品。

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