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一种双读数纸基分析装置,用于同时测定六价铬和总铬。

A dual-readout paper-based analytical device for the simultaneous determination of hexavalent Cr and total Cr.

机构信息

Beijing Key Laboratory for Green Catalysis and Separation, Department of Chemistry and Chemistry Engineering, Beijing University of Technology, Beijing, China.

Key Laboratory of Consumer Product Quality Safety Inspection and Risk Assessment for State Market Regulation, Chinese Academy of Inspection and Quarantine, Beijing, China.

出版信息

Mikrochim Acta. 2022 Nov 11;189(12):445. doi: 10.1007/s00604-022-05532-x.

Abstract

A paper-based analytical device (PAD) is presented with colorimetric/electrochemical dual readouts for the simultaneous sensing of total chromium (Cr) and hexavalent chromium (Cr(VI)). This device consists of a homemade three-electrode system and a patterned paper chip, integrating multiple functions including electrochemical detection, fluid driving, online oxidation, and colorimetric detection. The fiberglass filter paper with a hydrophilic microchannel was used to achieve self-driving fluidics without external equipment. One end of the microchannel was integrated with a homemade three-electrode system to achieve sample loading and electrochemical detection. The middle region on the microchannel was modified with oxidizing reagents to perform online pretreatment, and the yield of Cr(III) oxidation can reach 97.9%, ensuring reliable colorimetric detection of total Cr at another end of the microchannel modified with chromogenic agents. With this device, the signals of Cr(VI) (the signal peak at 0.29 V vs. Ag/AgCl) and total Cr can be obtained in one single injection. After optimization, the limit of detection (LOD) of Cr(VI) and total Cr were 0.01 mg L and 0.06 mg L and the linear ranges were 0.05-3.0 mg L and 0.2-3.0 mg L, respectively. The relative standard deviations (RSD) of the electrochemical testing of Cr(VI) results were in a range 1.3%-8.7% (n = 3), and the RSD values of the colorimetric testing of total Cr were between 0.7-9.2% (n = 3). The device's reliability was demonstrated by performing the practical speciation of Cr in tap water, river water, and electroplating wastewater while the recoveries obtained using the present method were in the range 93.5-106%. Overall, the proposed device provides high application prospect in the on-site rapid Cr speciation.

摘要

一种基于纸的分析装置(PAD)具有比色/电化学双重读数功能,可同时感应总铬(Cr)和六价铬(Cr(VI))。该装置由自制的三电极系统和图案化的纸芯片组成,集成了电化学检测、流体驱动、在线氧化和比色检测等多种功能。使用带有亲水微通道的玻璃纤维滤纸实现了无需外部设备的自驱动流体。微通道的一端集成了自制的三电极系统,用于样品加载和电化学检测。微通道的中间区域用氧化试剂进行修饰,进行在线预处理,Cr(III)氧化的产率可达 97.9%,确保在微通道的另一端用显色剂修饰后可靠地检测总 Cr。使用该装置,可在单次进样中获得 Cr(VI)(在 0.29 V 相对于 Ag/AgCl 的信号峰)和总 Cr 的信号。经过优化,Cr(VI)和总 Cr 的检测限(LOD)分别为 0.01 毫克/升和 0.06 毫克/升,线性范围分别为 0.05-3.0 毫克/升和 0.2-3.0 毫克/升。Cr(VI)电化学测试的相对标准偏差(RSD)在 1.3%-8.7%(n=3)范围内,总 Cr 的比色测试的 RSD 值在 0.7-9.2%(n=3)之间。该装置在自来水中、河水中和电镀废水中进行实际的 Cr 形态分析,证明了其可靠性,而使用本方法获得的回收率在 93.5-106%之间。总体而言,该方法在现场快速 Cr 形态分析方面具有很高的应用前景。

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