首页> 外文期刊>International journal of environmental analytical chemistry >Preconcentration of trace indium in aqueous samples using sodium dodecyl sulphate/activated carbon prior to electrothermal furnace absorption spectrometry
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Preconcentration of trace indium in aqueous samples using sodium dodecyl sulphate/activated carbon prior to electrothermal furnace absorption spectrometry

机译:在电热炉吸收光谱前使用十二烷基硫酸钠/活性炭水溶液中痕量铟的预浓缩

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In this study, activated carbon (AC) modified by sodium dodecyl sulphate (SDS), written as SDS/AC, has been proposed for preconcentration and determination of indium from aqueous solutions in a solid phase extraction technique. AC was put on the membrane filter in the column, and SDS was added into sample solutions. Subsequently, with the SDS modification on AC, the preconcentration of indium onto the adsorbent was simultaneously performed in the flow system as solid-phase extraction. After the preconcentration step, indium retained on SDS/AC was eluted with 1 mol L-1 HNO3, and the indium concentration in collected eluent was determined by electrothermal atomic absorption spectrometry (ETAAS). Some important analytical parameters, such as the conditions of adsorbent, sample solution, eluent and interfering elements, were investigated and optimised for the quantitative determination of trace indium. In the case of sample solution of 200 mL at 1 mu g L-1 indium, the enrichment factor and the relative standard deviation (n= 5) were 363% and 3.8%, respectively. The detection limits (3S/N) were calculated to be 0.2 ng L-1. This developed procedure was successfully applied into the separation and determination of trace amount of indium from environmental samples.
机译:在本研究中,已经提出了作为SDS / Ac的十二烷基硫酸钠(SDS)改性的活性炭(AC)用于预浓缩和测定来自固相萃取技术的水溶液。将AC放在柱中的膜过滤器上,并将SDS加入样品溶液中。随后,随着SDS修饰对AC,在流动系统中同时进行铟上的铟上浓缩,作为固相萃取。在预浓缩步骤之后,用1mol L-1 HNO 3洗脱保留在SDS / Ac上的铟,通过电热原子吸收光谱法(Etaas)测定收集的洗脱液中的铟浓度。研究并优化了一些重要的分析参数,例如吸附剂,样品溶液,洗脱液和干扰元件的条件,以定量测定痕量铟。在1μg10mL-1铟的样品溶液的情况下,富集因子和相对标准偏差(n = 5)分别为363%和3.8%。检测限制(3S / N)计算为0.2ng L-1。该开发的程序已成功应用于从环境样品中分离和测定痕量的铟。

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