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An eco-friendly cellular phase microextraction technique based on the use of green microalgal cells for trace thallium species determination in natural water samples

机译:一种基于绿色微藻细胞的环保型细胞相微萃取技术,用于测定天然水样中的痕量th

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摘要

A simple and environmentally friendly technique named cellular phase microextraction (Cell-PME) was developed for thallium (Tl) species determination. Basically, Tl(III) species were mixed with a solution containing Chlorella vulgaris microalgal cells (480 mg L-1) at pH 7 and the resulting system was stirred with a vortex for 8 min. After a centrifugation process, the sediment phase was directly injected into the graphite furnace of an electrothermal atomic absorption spectrometer. In contrast to Tl(III), Tl(I) species were not retained by the biomass. Optimization of variables influencing the biosorption process, including sample pH, microalgal mass and sample volume, was performed. A biosorption efficiency of 65% and an enrichment factor of 50 were obtained with only 5.00 mL of sample. The limit of detection (LOD) was 8.3 ng L-1 Tl, while the relative standard deviation (RSD) was 5.1% (at 1 mu g L-1 Tl and n = 10), calculated from the peak height of absorbance signals (Gaussian-shape and reproducible peaks). The proposed method was successfully applied to determine Tl species in environmental samples, including drinking and natural water. To the best of our knowledge, a biosorption process is applied for the first time for Tl species separation and determination in the analytical field.
机译:开发了一种简单且环保的技术,称为细胞相微萃取(Cell-PME),用于测定determination(Tl)物种。基本上,将Tl(III)物种与含有小球藻小藻细胞(480 mg L-1)的溶液在pH 7下混合,并将形成的系统涡旋搅拌8分钟。离心过程后,将沉淀相直接注入电热原子吸收光谱仪的石墨炉中。与Tl(III)相反,Tl(I)物种未被生物质保留。优化了影响生物吸附过程的变量,包括样品的pH,微藻质量和样品体积。仅5.00 mL的样品获得了65%的生物吸附效率和50的富集系数。根据吸光度信号的峰高计算得出,检出限(LOD)为8.3 ng L-1 Tl,相对标准偏差(RSD)为5.1%(在1μgL-1 Tl且n = 10时)。高斯形状和可重现的峰)。该方法成功地用于测定环境样品中的T1种类,包括饮用水和天然水。据我们所知,首次将生物吸附过程用于分析领域中T1物种的分离和测定。

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