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A basic and effective liquid phase microextraction with a novel automated mixing system for the determination of cobalt in quince samples by flame atomic absorption spectrometry

机译:一种基本且有效的液相微萃取,具有新的自动化混合系统,用于通过火焰原子吸收光谱法测定柑橘样品中的钴

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摘要

A new, green, and simple liquid-phase microextraction method namely sieve conducted two syringe-based pressurized liquid-phase microextraction methods was combined with flame atomic absorption spectrometry for the preconcentration and determination of cobalt. For this aim, a novel automated syringe mixing system was developed to be used in the developed extraction procedure. Two syringes were connected to each other by an apparatus having six holes to produce efficient dispersion of the extractant. The pressure created between the two syringes by the forward and backward movements of the syringe plungers created an efficient dispersion of the extractant. In the present study, ligand as complexing agent was synthesized in our laboratory. Limits of detection and quantification were determined to be 1.8 and 6.0 mu g L-1, respectively. A 33.7-fold enhancement in detection power was obtained with the developed method. Method was effectively applied for the determination of cobalt in quince samples.
机译:一种新的绿色和简单的液相微萃取方法,即筛网进行了​​两种基于注射器的加压液相微萃取方法,与火焰原子吸收光谱相结合,用于预浓缩和测定钴。为此目的,开发了一种新型的自动注射器混合系统以在开发的提取过程中使用。通过具有六个孔的装置彼此连接两个注射器以产生萃取剂的有效分散体。通过注射器柱塞的前后运动在两个注射器之间产生的压力产生了萃取剂的有效分散。在本研究中,在我们的实验室中合成了作为络合剂的配体。检测和定量的限制分别测定为1.8和6.0μgl-1。通过开发方法获得了检测功率的33.7倍的增强。有效地应用了柑橘样品中钴的测定。

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