Institute of Microelectronics, Tsinghua University, Beijing, 100084, China; Beijing National Research Center for Information Science and Technology (BNRist), Tsinghua University, Beijing, 100084, China; Graduate School at Shenzhen, Tsinghua University, Shenzhen, 518055, China; Department of Electronic Engineering, Tsinghua University, Beijing, 100084, China.
Institute of Microelectronics, Tsinghua University, Beijing, 100084, China; Beijing National Research Center for Information Science and Technology (BNRist), Tsinghua University, Beijing, 100084, China.
Anal Chim Acta. 2019 Jun 13;1058:70-79. doi: 10.1016/j.aca.2019.01.030. Epub 2019 Jan 25.
In this work, a high integrated water detection system comprised a miniaturized and high precision homemade colorimeter, a microfluidic analysis module and a wireless module was reported. A reagent reaction based on the ammonium molybdate spectrophotometric method was recorded for the estimation of phosphate in natural water. A laser self-modulating module of 880 nm was used as the radiation source. A microfluidic chip was employed to fit the colorimeter with an optimized micro flow path for low liquid consumption and high precision detection. The wireless module consisted of two parts, using ZigBee and GSM modules to realize short and remote displaying and controlling. Applying a novel optimized algorithm, a wide linear response was obtained ranging from 0.02 up to 9.5 mg L. The optimization of colorimeterare mainly in the core detection part, allowing an improvement of the detection limit, achieving a result of 0.009 mg L. A low reagent consumption of 0.004 mg ascorbic acid and 0.011 mg ammonium molybdate for per determination was attained. Experimental results have also shown that the system could maintain good stability among broad room temperature changing from 17 °C to 35 °C with less energy consumption. The miniaturized colorimeter-based water detection system opens new avenue for operating in remote distance to get high precision measurements of phosphate in natural water.
本工作报道了一种由微型化、高精度自制比色计、微流分析模块和无线模块组成的高集成度水质检测系统。基于钼酸铵分光光度法的试剂反应被记录下来,用于估计天然水中的磷酸盐。采用 880nm 的激光自调制模块作为辐射源。微流控芯片被用来适配比色计,优化微流道以实现低液体消耗和高精度检测。无线模块由两部分组成,使用 ZigBee 和 GSM 模块实现短距离和远程显示和控制。应用一种新颖的优化算法,得到了从 0.02 到 9.5mg/L 的宽线性响应。比色计的优化主要在核心检测部分,提高了检测限,结果达到 0.009mg/L。每次测定仅需消耗 0.004mg 抗坏血酸和 0.011mg 钼酸铵作为试剂。实验结果还表明,该系统在 17°C 至 35°C 宽室温范围内能保持良好的稳定性,且能耗较低。基于微型比色计的水质检测系统为在远程操作开辟了新途径,可实现对天然水中磷酸盐的高精度测量。