INQUISUR, Departamento de Química, Universidad Nacional del Sur, (UNS)-CONICET, Av. Alem 1253, B8000CPB, Bahía Blanca, Argentina.
INQUISUR, Departamento de Química, Universidad Nacional del Sur, (UNS)-CONICET, Av. Alem 1253, B8000CPB, Bahía Blanca, Argentina.
Chemosphere. 2018 Apr;196:361-367. doi: 10.1016/j.chemosphere.2017.12.178. Epub 2017 Dec 29.
A soft material formed by multiwall carbon nanotubes and 1-butyl-3-methyl imidazolium chloride was used as sorbent material to perform the chromium speciation in natural waters. This soft material was not yet used for the speciation of metals as chromium. Thus, a multicommutated flow system containing a minicolumn packed with the soft material was designed. The procedure was based on the capacity of the sorbent to retain Cr(VI) as CrO and allow to pass Cr(III) through the column. Then, a fully automated flow-batch analysis system was developed to quantify both species using chemiluminescence detection. Thus, Cr(III) was determined as catalyst of the luminol and hydrogen peroxide reaction and Cr(VI) as oxidant of luminol reaction. This represents a new approach because the oxidation of luminol using CrO has not been reported in literature. The variables of the two systems were optimized. The limits of detection were 1.4 μg L for Cr(VI) and 4.0 μg L for Cr(III). The precision of the method was 3.8% and 7.0% for Cr(VI) and Cr(III), respectively. The present method was applied to real water samples with recoveries between 95% and 107%. Besides, these results were in accordance with those obtained using inductive coupled plasma-optical emission spectrometry technique.
一种由多壁碳纳米管和 1-丁基-3-甲基咪唑氯组成的软物质被用作吸附材料,以实现天然水中铬的形态分析。这种软物质尚未用于金属的形态分析,如铬。因此,设计了一种包含填充有软物质的微型柱的多交替流动系统。该方法基于吸附剂保留六价铬(Cr(VI))为 CrO 的能力,并允许三价铬(Cr(III))通过柱子。然后,开发了一种全自动流动批处理分析系统,使用化学发光检测来定量两种物质。因此,Cr(III)被确定为鲁米诺和过氧化氢反应的催化剂,Cr(VI)被确定为鲁米诺反应的氧化剂。这是一种新的方法,因为使用 CrO 氧化鲁米诺在文献中尚未报道。对两个系统的变量进行了优化。Cr(VI)和 Cr(III)的检出限分别为 1.4μg/L 和 4.0μg/L。方法的精密度分别为 Cr(VI)和 Cr(III)的 3.8%和 7.0%。本方法应用于实际水样,回收率在 95%至 107%之间。此外,这些结果与使用电感耦合等离子体-光学发射光谱技术获得的结果一致。