Group of Sensors and Biosensors, Department of Chemistry, Autonomous University of Barcelona, Edifici Cn, 08193 Bellaterra, Barcelona, Spain.
Group of Sensors and Biosensors, Department of Chemistry, Autonomous University of Barcelona, Edifici Cn, 08193 Bellaterra, Barcelona, Spain.
Talanta. 2021 Jan 1;221:121508. doi: 10.1016/j.talanta.2020.121508. Epub 2020 Aug 7.
The analysis of soluble reactive phosphate (SRP) in water is key to control water quality. In order to continuous monitor orthophosphate content in water during treatment processes and in the effluents of wastewater treatment plants, conventional procedures, usually performed in a laboratory, must be adapted. This means pursuing efforts on miniaturizing systems to operate in situ and automating analytical methods to work on-line. The design, construction and evaluation of an automatic and low cost cyclic olefin copolymer (COC)-based spectrophotometric microanalyzer, capable of operating in unattended conditions, is presented to monitor soluble reactive phosphorous, as orthophosphate ion, in wastewater samples coming from sewage treatment plants. The microsystem, constructed by CNC micromilling and using a multilayer approach, integrates microfluidics to carry out the phosphomolybdenum blue (PMB) reaction and an optical flow-cell for the spectrophotometric orthophosphate determination in a single polymeric substrate smaller than a credit card. It is connected to a compact optical detection system composed by a LED emitting at 660 nm and a PIN-photodiode, both integrated in a PCB. Flow management is automatically performed by programmed microvalves and micropumps, which control autocalibration processes and allow unattended operation. Analytical features after the optimization of the microfluidic platform and the chemical and the hydrodynamic variables, were a linear range from 0.09 to 32 mg L P and a detection limit of 0.03 mg L P with a sampling rate of 24 samples h, demonstrating the microanalyzer suitability for SRP monitoring in water. Moreover, real samples were analyzed obtaining promising results.
分析水中的可溶解性活性磷酸盐(SRP)是控制水质的关键。为了在处理过程中和污水处理厂的废水中连续监测正磷酸盐的含量,必须对常规程序进行适应。这意味着需要努力将系统微型化,以实现原位操作,并使分析方法自动化,以便在线工作。本文提出了一种自动、低成本的基于环状烯烃共聚物(COC)的循环分光光度计的设计、构建和评估,该光度计可在无人值守的情况下运行,用于监测来自污水处理厂的废水中的可溶解性活性磷(以正磷酸盐形式存在)。该微系统由数控微铣削制成,并采用多层方法,集成微流控技术以进行磷钼蓝(PMB)反应,并在小于信用卡的单个聚合物基底上集成光学流通池,用于分光光度法定量测定正磷酸盐。它与一个紧凑的光学检测系统相连,该系统由一个在 660nm 处发射的 LED 和一个 PIN 光电二极管组成,都集成在一个 PCB 上。通过程控微阀和微泵自动执行流量管理,微阀和微泵可控制自动校准过程,并实现无人值守操作。在优化微流控平台和化学及流体动力学变量后,分析特性为 0.09 至 32mg/L P 的线性范围和 0.03mg/L P 的检测限,采样率为 24 个样品/h,证明了该微分析仪适用于水中 SRP 的监测。此外,还分析了实际样品,得到了有前景的结果。