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A Sensitive Microextraction Method Using Effervescence Tablets to Disperse Fe3O4 Nanoparticles for Cadmium Determination in Lake Water Samples

机译:使用泡腾片剂分散Fe3O4纳米颗粒以在湖水样品中测定镉的敏感微萃取方法

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In this study, an effective and sensitive method was developed for the preconcentration of cadmium in flame atomic absorption spectrometer system combined with a 5-holes cut slotted quartz tube (SQT-FAAS). For this aim, a dispersive solid-phase microextraction method based on a magnetic effervescent tablet consisting of Fe3O4 nanoparticles (EA-MNP-dSPME) was proposed. In the developed microextraction method, the dispersion of the nanoparticles used as adsorbents was assisted by the effervescent tablets generated from a mixture of sodium carbonate and sodium dihydrogen phosphate dihydrate. In order to obtain the highest extraction and instrumental output, all variables that affect the efficiency was investigated comprehensively and optimum conditions were determined with univariate optimization steps. The detection power of the conventional FAAS system was enhanced about 135 folds with respect to the LOD value of the developed method (0.34 ng mL~(-1)) obtained under the optimum conditions. The EA-MNP-dSPME method presented high reproducibility with a low %RSD value calculated as 8.1%. In order to validate the accuracy and applicability of the method, matrix matching method based recovery studies were carried out using the lake water samples taken from Horseshoe Island. The percent recovery results reported between 99.9–104.3% with percent relative standard deviation below 7.9% indicated the developed method‘s applicability for the accurate and precise determination of cadmium.
机译:在这项研究中,开发了一种有效而敏感的方法,用于在火焰原子吸收光谱仪系统中与5孔切开的插槽石英管(SQT-FAAS)结合使用。为此,提出了一种基于由Fe3O4纳米颗粒(EA-MNP-DSPME)组成的磁泡片剂的分散固相微萃取方法。在开发的微萃取方法中,用碳酸钠和二氢磷酸二氢二水合物的混合物产生的泡腾片剂辅助了用作吸附剂的纳米颗粒的分散。为了获得最高的提取和工具输出,全面研究了影响效率的所有变量,并通过单变量优化步骤确定最佳条件。相对于在最佳条件下获得的开发方法的LOD值(0.34 ng ml〜(-1)),常规FAAS系统的检测能力增强了约135倍。 EA-MNP-DSPME方法具有高可重现性,低%RSD值计算为8.1%。为了验证该方法的准确性和适用性,使用从马蹄铁岛采集的湖水样品进行了基于基质匹配方法的恢复研究。恢复结果百分比在99.9–104.3%之间,相对标准偏差低于7.9%,表明开发的方法适用于镉的准确和精确测定。

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