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SMARTPHONE-BASED DEVICE FOR MONITORING CHEMICAL POLLUTANTS IN WATER

机译:基于智能手机的智能手机监测水中化学污染物的装置

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There remains a need for a cost-effective, sensitive and on-site analytical technique which requires minimal technical skills for monitoring chemical contaminants in water. This research work presents a smartphone-based colorimetric detection of trace chemical pollutants in water. Components of the Hue, Saturation and Value (HSV) color space within a global region of interest (ROI) of analytes' image were utilized in developing an algorithm for the quantitative detection of target ions. Calibrations were conducted with Chromium (VI) and Nitrite analytes ranging between 0-250 ppb and 0-3000 ppb respectively. The calibration equation and coefficient of correlation as obtained were HS~2=-0.00918C+6.46003; R~2=0.9997 and HS~2=-0.00584C+4.85119; R~2=0.98228 respectively. The smartphone-based monitoring system was utilized to systematically obtain the concentration of target ions in arbitrary solutions. Limits of detection of the system for Nitrite and Chromium (VI) which are within USEPA specification were approximately 285 ppb and 16 ppb respectively. Appreciable agreements between conventional and proposed techniques were obtained with a maximum percentage difference of 8.21% in the concentration of an arbitrary sample.
机译:仍然需要一种成本效益,敏感和现场的分析技术,需要最少的技术技能来监测水中的化学污染物。该研究工作介绍了基于智能手机的色谱污染物在水中的比色性检测。利用分析物图像的全局感兴趣区域(ROI)内的色调,饱和度和值(HSV)颜色空间的组成部分,用于开发靶离子定量检测的算法。用铬(VI)和亚硝酸盐分析物分别在0-250ppb和0-3000ppb之间进行校准。获得的校准方程和所得相关系数是HS〜2 = -0.00918C + 6.46003; R〜2 = 0.9997和HS〜2 = -0.00584C + 4.85119; r〜2 = 0.98228分别。利用智能手机的监测系统系统地获得任意溶液中靶离子的浓度。在USEPA规范内的亚硝酸盐和铬(VI)的检测限制分别为约285ppb和16ppb。在常规和所提出的技术之间获得的可观协议在任意样品的浓度下最大百分比差异为8.21%。

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