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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Preconcentration on metal organic framework UiO-66 for slurry sampling hydride generation-atomic fluorescence spectrometric determination of ultratrace arsenic
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Preconcentration on metal organic framework UiO-66 for slurry sampling hydride generation-atomic fluorescence spectrometric determination of ultratrace arsenic

机译:金属有机框架UIO-66对浆料采样氢化物产生 - 原子荧光光谱法测定超racrace砷的原子荧光光谱法测定

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In this work, metal organic framework (MOF) UiO-66 with strong stability in water was synthesized and used for the preconcentration of ultratrace arsenic in environment water and the precipitated UiO-66 was converted to slurry for direct determination with hydride generation-atomic fluorescence spectrometry (HG-AFS). Factors affecting the adsorption of arsenic by UiO-66, including pH, adsorption time, stability of UiO-66, masking agents together with the optimum conditions of HG-AFS were investigated in detail. The performance of UiO-66 for adsorbing arsenic was excellent at room temperature over a wide range of pH from 1 to 11, and adsorption efficiencies of >95% could be achieved within only 5 min. Meanwhile, since conventional digestion process is avoided, the slurry sampling method is fast and convenient with greatly reduced matrix interference. Under the optimum conditions, it shows a good linear relationship between AFS intensities (I) and the concentrations of arsenic (C) (I = 547C + 61) with linear correlation coefficients better than 0.99. A precision of 3% (RSD%, n = 11) at 1 ng/mL and a limit of detection (LOD) of 0.0002 ng/mL were obtained. (C) 2017 Published by Elsevier B.V.
机译:在这项工作中,合成了具有强稳定性的金属有机骨架(MOF)UIO-66并用于环境水中的超砷的前浓缩,将沉淀的UIO-66转化为浆料,用于直接测定氢化物产生 - 原子荧光光谱法(HG-AFS)。通过UIO-66影响砷的吸附的因素,包括pH,吸附时间,UIO-66的稳定性,掩蔽剂以及HG-AFS的最佳条件的掩模剂进行了详细研究。用于吸附砷的UIO-66的性能在室温下优异,在宽范围为1至11,并且可以在仅5分钟内实现> 95%的吸附效率。同时,由于避免了常规消化过程,因此浆料采样方法快速方便,大大降低了矩阵干扰。在最佳条件下,它显示了AFS强度(I)和砷(C)(I = 547C + 61)的浓度之间的良好线性关系,线性相关系数优于0.99。获得1ng / ml的3%(RSD%,n = 11)的精度,并获得0.0002ng / ml的检测极限(LOD)。 (c)2017年由Elsevier B.V发布。

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