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Speciation analysis of chromium in water samples using nanometer zirconium dioxide and direct ultrasonic slurry sampling with electrothermal atomic absorption spectrometry

机译:纳米二氧化锆水样中铬的形态分析及电热原子吸收光谱法直接超声浆液采样

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A new analytical procedure for the determination of chromium Cr(III) and Cr(VI) species in different water samples was developed. The method involves solid-phase extraction (SPE), direct ultrasonic slurry sampling (DUSSS), and subsequent electrothermal atomic absorption spectrometry (ETAAS). The nanometer-sized zirconium dioxide (ZrO2) was used as the sorbent material. The optimal conditions for the proposed solid phase extraction were: 50 mg ZrO2, 20 min extraction time, pH 2.5 for Cr(VI) and pH 8.0 for Cr(III) and for the ETAAS measurement: 1500 degrees C pyrolysis and 2300 degrees C atomisation temperatures, 1.5 g L-1 Mg(NO3)(2) as matrix modifier. The samples were sonicated directly in the autosampler cup, using an ultrasonic probe at 20% power setting for 10 seconds prior to injection into the graphite tube with & vov platform. In this way, all drawbacks due to the elution procedure were eliminated. The limit of detection and limit of quantification for Cr(III) obtained under optimised conditions were 0.48 mu g L-1, and 1.61 mu g L-1, respectively, and for Cr(VI) 0.27 mu g L-1 and 0.90 mu g L-1. The pre-concentration factors attained for both the species were 25. The effects of alkaline, alkaline earth and some metal ions and some anions were also examined. The relative standard deviation estimated from six replicate measurements at a concentration of 0.4 mu g L-1 for both Cr(III) and Cr(VI) with a pre-concentration factor of 25 was 2.96% and 4.06%, respectively. The accuracy of the method was confirmed by analysis of the standard reference material SRM 1643e "Trace Elements in Water &. The proposed technique is simple, sensitive, environmentally friendly, and the risk of contamination is low. Hence, it was successfully applied to spiked synthetic and real water samples with recoveries ranging from 91.3% to 109.2%
机译:建立了一种测定不同水样中铬Cr(III)和Cr(VI)种类的新分析程序。该方法涉及固相萃取(SPE),直接超声浆液采样(DUSSS)和随后的电热原子吸收光谱法(ETAAS)。纳米级二氧化锆(ZrO2)被用作吸附材料。建议的固相萃取的最佳条件为:50 mg ZrO2,萃取时间为20分钟,Cr(VI)的pH 2.5,Cr(III)的pH 8.0,ETAAS测量:1500℃热解和2300℃雾化温度为1.5 g L-1 Mg(NO3)(2)作为基质改性剂。在使用&vov平台将其注入石墨管之前,使用20%功率设置的超声探头将样品直接在自动进样器杯中超声处理10秒。以这种方式,消除了由于洗脱程序而引起的所有缺点。在优化条件下获得的Cr(III)的检出限和定量限分别为0.48μgL-1和1.61μgL-1,对于Cr(VI)为0.27μgL-1和0.90 mu g L-1。两种物种的预富集因子均为25。还检查了碱,碱土以及一些金属离子和一些阴离子的影响。对于六价铬(III)和六价铬(VI),在0.4μg L-1浓度下,六次重复测量,预浓系数分别为2.96%和4.06%。通过分析标准参考材料SRM 1643e “水中的痕量元素和痕量元素,证实了该方法的准确性。所提出的技术简单,灵敏,环境友好且污染风险低。因此,该方法已成功应用于加标合成水和真实水样品,回收率从91.3%到109.2%

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