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Integrated microfluidic array chip and LED photometer system for sulfur dioxide and methanol concentration detection

机译:集成的微流控阵列芯片和LED光度计系统,用于检测二氧化硫和甲醇的浓度

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摘要

An integrated platform comprising a PMMA (Polymethyl-Methacrylate) microfluidic array chip and a LED photometer system is proposed for the concentration detection of sulfur dioxide (SO2) and methanol (CH4O). In the proposed device, the sample and reagent are injected into six open chambers on the microfluidic chip and are mixed via a vortex stirring effect. Following the mixing process, a colorimetric reaction is induced between the sample and the reagent by means of a microhotplate positioned beneath the microfluidic chip array. The microfluidic chip is then transferred to a LED photometer system for detection purposes. The experimental results show that correlation coefficients of R~2 = 0.9915 and R2 = 0.9941 are obtained when plotting the photometer output voltage against the SO2 and CH4O concentrations of control samples with known concentrations ranging from 50 to 500 ppm. The real-world applicability of the proposed experimental platform is demonstrated by measuring the SO2 concentration in two commercial Chinese herbs and the CH4O concentration in two commercial wines. It is shown that the concentration measurements obtained using the proposed system deviate by no more than 9% from those obtained using standard macroscale methods. Overall, the results presented in this study show that the proposed integrated microfluidic platform provides a compact and reliable tool for SO2 and CH4O concentration measurement purposes.
机译:提出了一种包含PMMA(聚甲基丙烯酸甲酯)微流体阵列芯片和LED光度计系统的集成平台,用于二氧化硫(SO2)和甲醇(CH4O)的浓度检测。在提出的装置中,将样品和试剂注入微流控芯片上的六个开放腔室中,并通过涡旋搅拌作用进行混合。在混合过程之后,借助于位于微流控芯片阵列下方的微热板在样品和试剂之间引发比色反应。然后将微流体芯片转移到LED光度计系统中进行检测。实验结果表明,将光度计输出电压与已知浓度为50至500 ppm的对照样品的SO2和CH4O浓度作图时,可获得R〜2 = 0.9915和R2 = 0.9941的相关系数。通过测量两种市售中草药中的SO2浓度和两种市售葡萄酒中CH4O的浓度,证明了该实验平台在现实世界中的适用性。结果表明,使用建议的系统获得的浓度测量值与使用标准宏观方法获得的浓度测量值相差不超过9%。总体而言,本研究提出的结果表明,所提出的集成微流体平台为SO2和CH4O浓度测量提供了一个紧凑而可靠的工具。

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