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Interference-free Determination of Pb in Complicated Matrices by Displacement-Cloud Point Extraction Coupled With Thermospray Flame Furnace Atomic Absorption Spectrometry

机译:浊点萃取-热喷雾火焰炉原子吸收光谱法无干扰测定复杂基质中的铅

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In this study, cloud point extraction (CPE) was coupled with micro-sampling thermospray flame furnace atomic absorption spectrometry for trace lead determination. To improve the selectivity of CPE, a displacement strategy was employed based on the stability difference of metal complexes. First, Zn2+ reacts with diethyldithiocarbamate (DDTC) to form Zn-DDTC before it is extracted; then, after removing the aqueous phase, the sample or standard solution containing Pb2+ is added and another CPE procedure is carried out. Because the stability of Pb-DDTC is larger than that of Zn-DDTC, Pb2+ can displace Zn2+ from the pre-extracted Zn-DDTC, and thus the preconcentration and separation of Pb2+ from the complicated sample matrix is achieved. A potential interference from co-existing transition metal ions with lower DDTC complex stability was largely eliminated since they cannot displace Zn2+ from the Zn-DDTC complex. Compared with conventional CPE, the tolerance limit for the co-existing transition metal ions was increased by at least one order of magnitude. Under the optimal chemical and instrumental conditions, the limit of detection was 0.5 mu g/L for lead with a sample volume of 10 mL, and a sensitivity enhancement factor of 31 was achieved. The proposed method was successfully applied to the interference-free determination of trace lead in tea and soil samples with a high content of co-existing heavy metals.
机译:在这项研究中,浊点萃取(CPE)与微采样热喷雾火焰炉原子吸收光谱法结合使用,可测定痕量铅。为了提高CPE的选择性,基于金属配合物的稳定性差异,采用了置换策略。首先,Zn2 +与二乙基二硫代氨基甲酸酯(DDTC)反应形成Zn-DDTC,然后将其萃取。然后,除去水相后,添加含Pb2 +的样品或标准溶液,然后执行另一次CPE程序。由于Pb-DDTC的稳定性大于Zn-DDTC的稳定性,因此Pb2 +可以从预提取的Zn-DDTC中置换Zn2 +,从而实现了Pb2 +从复杂样品基质中的富集和分离。 DDTC配合物稳定性较低的过渡金属离子共存的潜在干扰已基本消除,因为它们无法取代Zn-DDTC配合物中的Zn2 +。与常规CPE相比,共存过渡金属离子的公差极限提高了至少一个数量级。在最佳化学和仪器条件下,样品量为10 mL的铅的检出限为0.5μg / L,灵敏度提高系数达到31。所提出的方法已成功地用于高含量共存重金属茶叶和土壤样品中痕量铅的无干扰测定。

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