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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Simultaneous speciation analysis of Sb(III), Sb(V) and (CH3)(3)SbCl(2)by high performance liquid chromatography-hydride generation-atomic fluorescence spectrometry detection (HPLC-HG-AFS): Application to antimony speciation in sea water
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Simultaneous speciation analysis of Sb(III), Sb(V) and (CH3)(3)SbCl(2)by high performance liquid chromatography-hydride generation-atomic fluorescence spectrometry detection (HPLC-HG-AFS): Application to antimony speciation in sea water

机译:高效液相色谱-氢化物发生-原子荧光光谱检测(HPLC-HG-AFS)对Sb(III),Sb(V)和(CH3)(3)SbCl(2)进行同时形态分析:在锑形态分析中的应用海水

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This paper presents an improvement for the simultaneous separation of Sb(V), Sb(III) and (CH3)(3)SbCl2 species by high performance liquid chromatography (HPLC) and its detection by hydride generation-atomic fluorescence spectrometry (HG-AFS). The separation was performed on an anion exchange column PRP-X100 using a gradient elution program between EDTA/KHP (potasium hydrogen phtalate) as first mobile phase and phosphate solutions solution as the second one. The chromatographic separation and the HG-AFS parameters were optimized by experimental design. The best results were obtained by using an elution program with 20 mmol l(-1) EDTA + 2 mmol l(-1) KHP solution at pH 4.5, during 1.15 min, then change to 50 mmol l(-1) (NH4)(2)HPO4 solution at pH 8.3, switching back after 4.0 min to the first mobile phase, until 5 min, with a constant flow rate of 1.5 ml min(-1). Retention time of Sb(V), Sb(III) and trimethylantimony species were 1.22, 2.31 and 3.45 min and the detection limits were 0.13; 0.07 and 0.13 mu g l(-1), respectively. Studies on the stability of this antimony species in sea water samples on the function of the elapsed time of storage in refrigerator at 4 degrees C was performed employing the optimized method. Results revealed that Sb(III) is easily oxidized within some hours to Sb(V) in sea water stored at 4 degrees C. However, when the sea water was immediately mixed with EDTA no oxidation of Sb(III) was observed up to I week of storage. The proposed methodology was then applied to the antimony speciation in sea water samples. (c) 2005 Elsevier B.V. All rights reserved.
机译:本文提出了一种通过高效液相色谱(HPLC)同时分离Sb(V),Sb(III)和(CH3)(3)SbCl2种类并通过氢化物发生原子荧光光谱法(HG-AFS)检测的改进方法)。分离是在阴离子交换柱PRP-X100上进行的,使用的梯度洗脱程序为EDTA / KHP(邻苯二甲酸氢钾)作为第一流动相,而磷酸盐溶液作为第二流动相。通过实验设计优化了色谱分离和HG-AFS参数。通过使用洗脱程序,在pH值为4.5的条件下,用20 mmol l(-1)EDTA + 2 mmol l(-1)KHP溶液洗脱,在1.15分钟内可获得最佳结果,然后将其更改为50 mmol l(-1)(NH4) (2)pH 8.3的HPO4溶液,在4.0分钟后切换回第一个流动相,直到5分钟,并以1.5 ml min(-1)的恒定流速流动。 Sb(V),Sb(III)和三甲基锑的保留时间分别为1.22、2.31和3.45分钟,检出限为0.13;分别为0.07和0.13微克l(-1)。采用优化方法对海水样品中这种锑物种的稳定性进行了研究,研究了其在4摄氏度冰箱中的储存时间对功能的影响。结果表明,在4摄氏度下储存的海水中,Sb(III)在数小时内很容易被氧化为Sb(V)。但是,当海水立即与EDTA混合时,直到I为止都未观察到Sb(III)的氧化。储存一周。然后将所提出的方法应用于海水样品中的锑形态。 (c)2005 Elsevier B.V.保留所有权利。

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