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A new combination for the determination of ultratrace cadmium: solid-phase microextraction by stearic acid-coated magnetic nanoparticles prior to batch-type hydride generation atomic absorption spectrometry

机译:测定超痕量镉的新组合:在批次式氢化物发生原子吸收光谱法之前,通过硬脂酸涂层磁性纳米颗粒进行固相微萃取

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摘要

Solid-phase microextraction method based on stearic acid-coated magnetic nanoparticle has been combined with batch-type hydride generation atomic absorption spectrometry (BT-HGAAS) system to determine cadmium at ultratrace levels. After the adsorption of cadmium ions onto stearic acid-coated magnetic nanoparticles, they were easily separated from the aqueous phase by means of a magnet. All the instrumental and experimental parameters such as pH of buffer solution, interaction period, concentration, and volume of NaBH4 were optimized. Under the optimal conditions, limit of quantification (LOQ) and limit of detection (LOD) for the solid-phase microextraction (SPME) based on stearic acid-coated magnetic nanoparticles-BT-HGAAS (SACMNP-BT-HGAAS) method were obtained as 270.8ng/L and 81.7ng/L, respectively. The matrix-matching calibration method was performed in order to improve the accuracy of cadmium quantification in tap water and the recovery results obtained were as follows: 88.568.92 and 97.439.76, for 6.0 and 8.0ng/mL of cadmium-spiked tap water samples, respectively.
机译:基于硬脂酸包覆的磁性纳米粒子的固相微萃取方法与间歇式氢化物发生原子吸收光谱法(BT-HGAAS)系统相结合,可测定超痕量镉。镉离子吸附在硬脂酸涂层的磁性纳米颗粒上后,它们很容易通过磁体与水相分离。优化了所有仪器和实验参数,例如缓冲溶液的pH,相互作用时间,NaBH4的浓度和体积。在最佳条件下,获得了基于硬脂酸包覆的磁性纳米颗粒-BT-HGAAS(SACMNP-BT-HGAAS)方法的固相微萃取(SPME)的定量限(LOQ)和检测限(LOD),分别为分别为270.8ng / L和81.7ng / L。为了提高自来水中镉的定量准确度,进行了基质匹配校正方法,回收率如下:88.568.92和97.439.76,分别用于6.0和8.0ng / mL的加镉自来水样本。

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