National Institute for Research and Development of Optoelectronics Bucharest INOE 2000, Research Institute for Analytical Instrumentation, 67 Donath Street, 400293 Cluj-Napoca, Romania.
SC UTCHIM SRL, 12 Buda Street, 240127 Ramnicu Valcea, Romania.
Molecules. 2020 Jun 2;25(11):2591. doi: 10.3390/molecules25112591.
An analytical method based on microwave-assisted acid digestion and atomic absorption spectrometry with graphite furnace as atomization source was developed and validated for determining trace elements (Cd and Pb) in zeolites used as dietary supplements, for their characterization and safety evaluation. The method was checked for the main performance parameters according to the legislation requirements in the field of dietary supplements. In all cases, the obtained performance parameters were satisfactory. The selectivity study showed no significant non-spectral matrix effect. The linearity study was conducted for the calibration curves in the range of 0-10 ng mL for Cd and 0-30 ng mL for Pb. The obtained limits of detection (LoDs) and the limits of quantification (LoQs) were sufficiently low in order to allow Pb and Cd determination in dietary supplements. For the internal quality control, certified reference materials were analysed and good recoveries were obtained. The precision study was performed in terms of repeatability and reproducibility, considering the requirements imposed by the Commission Decision (2007/333/EC) and the method fulfilled these performance parameters. Expanded measurement uncertainties were estimated to 11% for Cd and 10% for Pb. Cd and Pb content were measured in real zeolite samples and, using these data, a safety evaluation was carried out.
建立并验证了一种基于微波辅助酸消解和石墨炉原子吸收光谱法的分析方法,用于测定作为膳食补充剂的沸石中的微量元素(Cd 和 Pb),以进行其特性和安全性评估。该方法根据膳食补充剂领域的立法要求检查了主要性能参数。在所有情况下,获得的性能参数均令人满意。选择性研究表明,不存在明显的非光谱基质效应。Cd 的校准曲线范围为 0-10ng/mL,Pb 的校准曲线范围为 0-30ng/mL,进行了线性研究。获得的检测限(LoD)和定量限(LoQ)足够低,可用于膳食补充剂中 Pb 和 Cd 的测定。对于内部质量控制,分析了认证参考物质并获得了良好的回收率。根据委员会决定(2007/333/EC)的要求,进行了重复性和再现性方面的精密度研究,该方法满足这些性能参数的要求。Cd 的扩展测量不确定度估计为 11%,Pb 的扩展测量不确定度估计为 10%。测定了实际沸石样品中的 Cd 和 Pb 含量,并使用这些数据进行了安全性评估。