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Microfluidic Paper based Analytical Device(μpads)for Analysis of Benzoat Acid in Packaged Beverages

机译:基于微流体纸的分析装置(μPADS),用于分析包装饮料中的苯唑酸

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Microfluidic Paper-based Analytical Devices(μPADs)are a simple analytical platform that satisfy combination of low cost, portability, and ease-to-use with selectivity, sensitivity, and accuracy.In this experiment, the μPADs devices are prepared using a chromatographic paper and designed at appropriate pattern prior to printing by mean of a solid ink(wax)printer to produce hydrophobic barriers and hydrophilic channels.Then, the μPADs are heated at 120°C for 3 min to allow a wax penetrates in the both side of a paper.The resulted μPADs are used for the detection of benzoic acid through alkalimetry principle.For this purpose, the devices are implanted with 5M NaOH in the detection zone and a 2% phenolphthalein indicator in the sample zone before dried in open air.When the devices have dried, the(tPADs are ready to be used to detect benzoic acid.To avoid color interferences, the samples are distilled before introduced to the sample zone for quantitative detection.The result soft the color changes can be immediately seen by naked eye, and their intensities are quantified by the Image J software.Excellent linearity is achieved in the range of benzoic acid concentration of 20-120 ppm with the linear equation of Y = 0.0102 x + 0.0077 and the correlation coefficient(R2)of 0.9999.The optimized μPADs devices are successfully applied to the quantitative analysis of benzoic acid in the 5 kinds of commercially packaged beverages.There is no significantly different of the analytical results obtained by the μPADs in comparison to the spectrophotometric method.Overall, the results obtained in this study indicate that the μPADs devices are a reliable tool for high throughout and on-site determination of benzoic acid content in commercial drinks.
机译:基于微流体纸的分析装置(μPAD)是一种简单的分析平台,满足低成本,可移植性和易用性的组合,具有选择性,灵敏度和准确性。在该实验中,使用色谱纸制制备μPAD装置并在通过固体油墨(蜡)打印机的平均值之前以适当的图案设计,以产生疏水性屏障和亲水通道。该μPAD在120℃下加热3分钟,以允许蜡穿在a的两侧纸张。所得的μPAD用于通过金碱仪原理检测苯甲酸。对于此目的,将器件植入检测区中的5M NaOH,在露天露天干燥之前在样品区中的2%酚酞指示器。当器件干燥,(TPAD已准备好用于检测苯甲酸。要避免彩色干扰,请在引入样品区之前蒸馏出样品以进行定量检测。结果柔和的颜色肉眼可以立即看到改变,并且它们的强度通过图像J软件量化。在苯甲酸浓度为20-120ppm的范围内实现了y = 0.0102 x + 0.0077的线性方程和相关性系数(R2)为0.9999.优化的μPADS器件成功地应用于5种商业包装饮料中苯甲酸的定量分析。与分光光度法相比,通过μPAD获得的分析结果没有显着差异。总的来说,在本研究中获得的结果表明,μPADS装置是高度和现场测定商业饮料中苯甲酸含量的可靠工具。

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