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使用负载溴邻苯三酚红的聚氨酯泡沫对无机锑(III和V)进行形态分析。

Speciation of inorganic antimony (III & V) employing polyurethane foam loaded with bromopyrogallol red.

作者信息

Vinhal Jonas O, Gonçalves Aline D, Cruz Graziela F B, Cassella Ricardo J

机构信息

Instituto de Química, Programa de Pós-Graduação em Química, Universidade Federal Fluminense, Outeiro de São João Batista s/n, Centro, Niterói, RJ 24020-141, Brazil.

Instituto de Química, Programa de Pós-Graduação em Química, Universidade Federal Fluminense, Outeiro de São João Batista s/n, Centro, Niterói, RJ 24020-141, Brazil.

出版信息

Talanta. 2016 Apr 1;150:539-45. doi: 10.1016/j.talanta.2015.12.080. Epub 2015 Dec 31.

Abstract

In this work, the speciation analysis of inorganic antimony (Sb(III) and Sb(V)) is proposed using polyurethane foam loaded with bromopyrogallol red (PUF-BPR) as a selective sorbent for Sb(III). The quantification of Sb in the solutions was performed by graphite furnace atomic absorption spectrometry (GF AAS), and several variables that could affect the performance of the method were carefully evaluated. The best conditions for the sorption of Sb(III) were achieved by shaking 50mg of PUF-BPR with the solutions containing Sb(III) at pH 4.0 for 90 min. In this condition, the retention of Sb(V) was not significant, whereas the removal of Sb(III) from the solution was higher than 95%. The desorption of Sb(III) from loaded PUF-BPR was possible by shaking the loaded foam with 7.5 mL of a 2.5 mol L(-1) HNO3 solution for 30 min. No interference of metal cations was observed on the solid-phase extraction of Sb(III) by PUF-BPR. The developed method was applied in the speciation analysis of antimony in river water samples fortified with different concentrations of Sb(III) and Sb(V). Also, we performed the determination of Sb(III) in a sample of a Sb-based drug utilized in the treatment of leishmaniasis. The results show that Sb(III) can be separated from high concentrations of Sb(V), since recoveries in the range of 81-110% were obtained in the analysis of the samples. The method presented limits of detection and quantification of 0.6 and 2 µg L(-1), respectively, for Sb(III) and 1 and 3 µg L(-1) for Sb(V), respectively.

摘要

在本研究中,提出了一种使用负载溴邻苯三酚红的聚氨酯泡沫(PUF-BPR)作为Sb(III)的选择性吸附剂对无机锑(Sb(III)和Sb(V))进行形态分析的方法。通过石墨炉原子吸收光谱法(GF AAS)对溶液中的锑进行定量,并仔细评估了几个可能影响该方法性能的变量。通过将50mg PUF-BPR与含Sb(III)的溶液在pH 4.0下振荡90分钟,实现了Sb(III)吸附的最佳条件。在此条件下,Sb(V)的保留不显著,而溶液中Sb(III)的去除率高于95%。通过将负载的泡沫与7.5 mL 2.5 mol L(-1) HNO3溶液振荡30分钟,可以实现负载PUF-BPR中Sb(III)的解吸。未观察到金属阳离子对PUF-BPR固相萃取Sb(III)的干扰。所建立方法应用于加标不同浓度Sb(III)和Sb(V)的河水样品中锑的形态分析。此外,我们还对一种用于治疗利什曼病的锑基药物样品中的Sb(III)进行了测定。结果表明,Sb(III)可以从高浓度的Sb(V)中分离出来,因为在样品分析中回收率在81-110%范围内。该方法对Sb(III)的检测限和定量限分别为0.6和2 µg L(-1),对Sb(V)分别为1和3 µg L(-1)。

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