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首页> 外文期刊>Biological trace element research >Dispersed Solidified Fine Droplets Based on Sonication of a Low Melting Point Deep Eutectic Solvent: a Novel Concept for Fast and Efficient Determination of Cr(VI) in Urine Samples
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Dispersed Solidified Fine Droplets Based on Sonication of a Low Melting Point Deep Eutectic Solvent: a Novel Concept for Fast and Efficient Determination of Cr(VI) in Urine Samples

机译:基于低熔点深度共晶溶剂的超声处理分散的固化细液滴:一种新的概念,用于快速有效地测定尿液中的Cr(vi)

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摘要

Cr(VI) has carcinogenic effects, so determination of trace amount of chromium in human body such as urine has a great deal of importance. In this work, a novel microextraction method was developed based on solidification of dispersed fine droplets (SDFD) of a low melting point deep eutectic solvent (DES), produced with the aid of sonication, for fast and efficient determination of Cr(VI) in urine samples. Cr(VI) contents of the human urine samples were first complexed using 1,5-diphenylcarbazone at pH approximate to 2.0 and then extracted by the method. A cloudy solution was achieved by the sonication of a microliter volume of a new water-immiscible DES consisting of benzyltriphenylphosphonium bromide (BTPPB) and phenol. Low freezing point of DES makes it possible to use simple, precise, and fast collection of the extraction phase by solidification and the subsequent centrifugation. Finally, the sedimented phase was diluted with methanol and analyzed by electrothermal atomic absorption spectrometry (ETAAS). The influences of the main factors on the efficiency of the procedure were investigated by a four-factor central composite design (CCD). Under the optimum conditions, the calibration curve was linear within the range of 10-1000ngL(-1). The intra- and inter-day RSD% values of 2.6 and 4.7% were obtained at the concentration of 50.0ngL(-1), respectively. The limits of detection (LOD) and quantification (LOQ) were calculated as 2.0 and 7.0ngL(-1), respectively. Moreover, compared to the other approaches, the proposed method presented better or comparable analytical performance and provided accurate, precise, and reliable results for trace analysis of Cr(VI) in urine samples.
机译:Cr(vi)具有致癌作用,因此测定人体中痕量的铬,如尿液具有很大的重要性。在这项工作中,基于借助于超声处理产生的低熔点深对共晶溶剂(DES)的分散细液滴(SDFD)的凝固来开发一种新型微萃取方法,以便快速有效地测定Cr(VI)尿液样本。首先在pH大约为2.0,然后通过该方法用1,5-二苯基咔唑酮使用1,5-二苯基咔唑酮来复合人尿液样品的含量。通过超声处理由亚苄基三苯基鏻(BTPPB)和苯酚组成的新的水不混溶DES的微升体积来实现多云的溶液。低冰点DES使得可以通过凝固和随后的离心来使用简单,精确和快速的提取相。最后,用甲醇稀释沉淀相,通过电热原子吸收光谱(Etaas)分析。通过四因素中央复合设计(CCD)研究了主要因素对程序效率的影响。在最佳条件下,校准曲线在10-1000英寸(-1)的范围内是线性的。在50.0ng1(-1)的浓度分别获得2.6和4.7%的日内和日间的RSD%值。检测限(LOD)和定量(LOQ)分别计算为2.0和7.0ng1(-1)。此外,与其他方法相比,该方法呈现了更好或相当的分析性能,并提供了尿液样本中Cr(VI)的准确,精确,可靠的结果。

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