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Nickel as a Chemical Modifier for Sensitivity Enhancement and Fast Atomization Processes in Electrothermal Atomic Absorption Spectrometric Determination of Cadmium in Biological and Environmental Samples

机译:镍作为电热原子吸收光谱法测定生物和环境样品中镉的敏感性增强和快速雾化过程的化学改性剂

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A systematic study of the efficiency of protons, Ni, Pd and Th as chemical modifiers for the determination of cadmium by electrothermal atomic absorption spectrometry (ETAAS) using fast temperature programs was made for platform atomization. A comparison was made in terms of the salt type, absorbance-time profiles and elimination of the sodium chloride interference. The results were adapted to develop a method for the ETAAS determination of cadmium in biological and environmental samples. The highest sensitivity to determine cadmium in biological and environmental samples was obtained using nickel (together with protons) as a chemical modifier. The accuracy of the method was tested by the determination of cadmium in different certified reference materials. The best detection limit and the characteristic mass of Cd were found to be 0.03 ng mL-1 and 0.35 pg, respectively.
机译:系统地研究了质子,Ni,Pd和Th作为质子修饰剂的效率,使用快速温度程序通过电热原子吸收光谱法(ETAAS)测定镉,用于平台雾化。在盐类型,吸收时间曲线和消除氯化钠干扰方面进行了比较。将该结果用于开发ETAAS测定生物和环境样品中镉的方法。使用镍(与质子一起)作为化学改性剂,可以测定生物和环境样品中的镉,灵敏度最高。该方法的准确性通过测定不同认证参考物质中的镉来测试。镉的最佳检出限和特征质量分别为0.03 ng mL-1和0.35 pg。

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