使用智能手机传感器作为检测器测定废水中总酚类物质的新型纸基微流体设计 (µPAD)

Mahmoud Yousef Rashed, Mustafa Abdulkadhim Hussein
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引用次数: 0

摘要

酚是众所周知的有害化合物,经常存在于各种水源中。本研究采用了一种新方法,利用智能手机传感器,使用微流体纸基 (µPAD) 测定总酚。该方法便携、廉价、环保。试剂纸是用滤纸通过切割法制备的。试剂在纸上干燥。智能手机设备的色彩传感器通过下载到手机上的软件,利用智能手机捕捉到的图像作为样品的色彩强度传感器。样品的焦点是通过 (iPhone 14) 设备拍摄的图像的 RGB 值测量的,其中每张图像代表一个特定的焦点。该方法的校准曲线在 M (0.00016-0.5) 范围内,相关系数 (R2) 等于 (0.9753),检测限为 (0.000032) M,浓度的相对标准偏差 (RSD%) 为 (0.02) M,重复检测 (10) 次,其值为 (0%),回收率 (Recovery%) 等于 (100%)。该方法成功地应用于废水中总酚的测定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Paper-Based Microfluidic Design (µPAD) for the Determination of Total Phenols in Wastewater Using a Smartphone Sensor as a Detector
Phenols are well-known noxious compounds, that are often found in various water sources. In this research, a new method was used to determine the total phenol by using microfluidic paper-based (µPAD), with a smartphone Sensor. It is portable,  inexpensive, and environmentally friendly. The paper was prepared using filter paper by the cutting method. The reagent was dried on the paper. The color sensor of the smartphone device was used as the color intensity sensor of the samples through the images captured by the smartphone through software downloaded to the phone. The focus of the samples is measured from the RGB value of the images taken from the (iPhone 14) device, where each image represents a specific focus. The calibration curve for this method was in the range of M (0.00016–0.5), the correlation coefficient (R2) was equal to (0.9753), the limit of detection was in the amount of (0.000032) M, and the relative standard deviation (RSD%) for the concentration was (0.02) M, for which the examination was repeated (10) times and its value was (0 %), and the recovery value (Recovery%) was equal to (100 %). The method was successfully applied for the determination of total phenols in wastewater.
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