首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Investigation of on-line coupling electrothermal atomic absorption spectrometry with flow injection sorption preconcentration using a knotted reactor for totally automatic determination of lead in water samples
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Investigation of on-line coupling electrothermal atomic absorption spectrometry with flow injection sorption preconcentration using a knotted reactor for totally automatic determination of lead in water samples

机译:使用打结反应器的流动注射吸附富集在线耦合电热原子吸收光谱法全自动测定水中样品中铅的研究

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A flow injection on-line sorption preconcentration electrothermal atomic absorption spectrometric system for fully automatic determination of lead in water was investigated. The discrete non-flow-through nature of ETAAS, the limited capacity of the graphite tube and the relatively large volume of the knotted reactor (KR) are obstacles to overcome for the on-line coupling of the KR sorption preconcentration system with ETAAS. A new FI manifold has been developed with the aim of reducing the eluate volume and minimizing dispersion. The lead diethyldithiocarbamate complex was adsorbed on the inner walls of a knotted reactor made of PTFE tubing (100 cm long, 0.5 mm i.d.). After that, an air flow was introduced to remove the residual solution from the KRand the eluate delivery tube, then the adsorbed analyte chelate was quantitatively eluted into a delivery tube with 50 μl of ethanol. An air flow was used to propel the eluent from the eluent loop through the reactor and to introduce all the ethanoliceluate onto the platform of the transversely heated graphite tube atomizer, which was preheated to 80°C. With the use of the new FI manifold, the consumption of eluent was greatly reduced and dispersion was minimized. The adsorption efficiency was 58%,and the enhancement factor was 142 in the concentration range 0.01-0.05 μg l~(-1) Pb at a sample loading rate of 68 ml min~(-1) with 60 s preconcentration time. For the range 0.1-2.0 μg l~(-1) of Pb a loading rate of 3.0 ml min~(-1) and 30 s preconcentration time were chosen, resulting in an adsorption efficiency of 42% and an enhancement factor of 21, respectively. A detection limit (3σ) of 22 ng l~(-1) of lead was obtained using a sample loading rate of 6.8 ml min~(-1) and 60 s preconcentration. The relative standard deviation of the entire procedure was 49% at the 0.01 μg l~(-1) Pb level with a loading rate of 6.8 ml min~(-1) and 60 s preconcentration, and 2.9% at the 0.5 μg l~(-1) Pb level with a 3.0 ml min~(-1) loading rate and 30 s preconcentration. Efficient washing of the matrix from the reactor was critical, requiring the use of the standard addition method for seawater samples. The analytical results obtained for seawater and river water standard reference materials were in good agreement with the certified values.
机译:研究了用于全自动测定水中铅的流动注射在线吸附预浓缩电热原子吸收光谱系统。 ETAAS的离散非流通性质,石墨管的有限容量和打结反应器(KR)的相对较大体积,是将KR吸附预浓缩系统与ETAAS在线耦合时要克服的障碍。已经开发了一种新型的FI歧管,旨在减少洗脱液体积并最大程度地减少分散。二乙基二硫代氨基甲酸铅络合物吸附在由PTFE管制成的打结反应器(长100 cm,内径0.5 mm)的内壁上。之后,引入气流以从KR和洗脱液输送管中去除残留溶液,然后将吸附的分析物螯合物定量洗脱到装有50μl乙醇的输送管中。使用空气流将洗脱液从洗脱液回路中推进通过反应器,并将所有乙醇冰液引入到横向加热的石墨管雾化器的平台上,该平台已预热至80°C。使用新的FI歧管,大大减少了洗脱液的消耗,并最大程度地减少了分散。样品加载速率为68 ml min〜(-1)且预浓缩时间为60 s,在0.01-0.05μgl〜(-1)Pb浓度范围内,吸附效率为58%,增强因子为142。对于0.1-2.0μgl〜(-1)的Pb范围,选择3.0 ml min〜(-1)的加载速率和30 s的预浓缩时间,吸附效率为42%,增强因子为21,分别。使用6.8 ml min〜(-1)的样品上样速率和60 s的预浓缩,可获得22 ng l〜(-1)的铅的检出限(3σ)。整个过程的相对标准偏差在0.01μgl〜(-1)的Pb水平下为49%,负载率为6.8 ml min〜(-1)和60 s的预浓缩,在0.5μgl〜(2.90)下为2.9% (-1)铅含量为3.0 ml min〜(-1)加载速率,预浓缩时间为30 s。从反应器中高效洗净基质至关重要,需要对海水样品使用标准添加方法。海水和河水标准参考物质的分析结果与认证值高度吻合。

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