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基于纳米尺寸磁性 Ni 粒子的分散固相萃取-火焰原子吸收光谱法测定痕量 Cd:一种新的、准确和灵敏的定量方法。

Nano-sized magnetic Ni particles based dispersive solid-phase extraction of trace Cd before the determination by flame atomic absorption spectrometry with slotted quartz tube: a new, accurate, and sensitive quantification method.

机构信息

Department of Physics, Yildiz Technical University, 34349, İstanbul, Turkey.

Department of Chemistry, Yildiz Technical University, 34349, İstanbul, Turkey.

出版信息

Environ Monit Assess. 2020 Aug 15;192(9):583. doi: 10.1007/s10661-020-08548-z.

Abstract

In this study, a new analytical strategy was developed to determine trace cadmium in aqueous samples with high sensitivity and accuracy. A combination of magnetic nickel nanoparticles (Ni-MNPs) based dispersive solid-phase extraction (DSPE) and flame atomic absorption spectrometry fitted with a slotted quartz tube (SQT-FAAS) lowered the detection limit of cadmium. The magnetic Ni nanoparticles were synthesized, characterized, and thoroughly optimized in a stepwise approach. The quartz tube was custom cut in the laboratory to suit the specifics of the flame burner. Using the optimized conditions, a limit of detection value of 0.58 μg/L and limit of quantification value of 1.93 μg/L were obtained. To demonstrate accuracy and applicability of the developed method, well water samples were analyzed for their Cd content, and matrix effect on the extraction yield was investigated. The percent recovery results calculated ranged from 93.8 to 108.2%, with corresponding standard deviation values ranging from 1.7 to 7.7. These results established the developed method as sensitive, accurate, and precise for determination of cadmium at trace levels.

摘要

在这项研究中,开发了一种新的分析策略,以高灵敏度和准确性测定水样中的痕量镉。基于磁性镍纳米粒子 (Ni-MNPs) 的分散固相萃取 (DSPE) 与带有狭缝石英管的火焰原子吸收光谱法 (SQT-FAAS) 的组合降低了镉的检测限。磁性 Ni 纳米粒子通过逐步方法进行合成、表征和彻底优化。石英管在实验室中进行定制切割,以适应火焰燃烧器的具体情况。在优化条件下,获得了 0.58μg/L 的检测限和 1.93μg/L 的定量限。为了证明所开发方法的准确性和适用性,对井水样品进行了 Cd 含量分析,并研究了基质对萃取产率的影响。计算得出的回收率结果在 93.8%至 108.2%之间,相应的标准偏差值在 1.7%至 7.7%之间。这些结果表明,所开发的方法对于痕量镉的测定具有灵敏度高、准确性好和精密度高的特点。

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