Fernandes Samuel, Tlemçani Mouhaydine, Bortoli Daniele, Feliciano Manuel, Lopes Maria Elmina
Department of Mechatronics Engineering, School of Science and Technology, Universidade de Évora, 7000-671 Évora, Portugal.
Instrumentation and Control Laboratory (ICL), Insititute of Earth Sciences (ICT), Universidade de Évora, 7000-671 Évora, Portugal.
Sensors (Basel). 2024 Aug 20;24(16):5367. doi: 10.3390/s24165367.
Nitrates can cause severe ecological imbalances in aquatic ecosystems, with considerable consequences for human health. Therefore, monitoring this inorganic form of nitrogen is essential for any water quality management structure. This research was conducted to develop a novel Nitrate Portable Measurement System (NPMS) to monitor nitrate concentrations in water samples. NPMS is a reagent-free ultraviolet system developed using low-cost electronic components. Its operation principle is based on the Beer-Lambert law for measuring nitrate concentrations in water samples through light absorption in the spectral range of 295-315 nm. The system is equipped with a ready-to-use ultraviolet sensor, light emission diode (LED), op-amp, microcontroller, liquid crystal display, quartz cuvette, temperature sensor, and battery. All the components are assembled in a 3D-printed enclosure box, which allows a very compact self-contained equipment with high portability, enabling field and near-real-time measurements. The proposed methodology and the developed instrument were used to analyze multiple nitrate standard solutions. The performance was evaluated in comparison to the Nicolet Evolution 300, a classical UV-Vis spectrophotometer. The results demonstrate a strong correlation between the retrieved measurements by both instruments within the investigated spectral band and for concentrations above 5 mg NO/L.
硝酸盐会导致水生生态系统严重的生态失衡,对人类健康造成相当大的影响。因此,监测这种无机氮形式对于任何水质管理结构都至关重要。本研究旨在开发一种新型硝酸盐便携式测量系统(NPMS),用于监测水样中的硝酸盐浓度。NPMS是一种使用低成本电子元件开发的无试剂紫外线系统。其工作原理基于比尔-朗伯定律,通过在295-315nm光谱范围内的光吸收来测量水样中的硝酸盐浓度。该系统配备了即用型紫外线传感器、发光二极管(LED)、运算放大器、微控制器、液晶显示器、石英比色皿、温度传感器和电池。所有组件都组装在一个3D打印的外壳盒中,这使得设备非常紧凑且自成一体,具有很高的便携性,能够进行现场和近实时测量。所提出的方法和开发的仪器用于分析多种硝酸盐标准溶液。与经典的紫外可见分光光度计Nicolet Evolution 300相比,对其性能进行了评估。结果表明,在研究的光谱带内以及浓度高于5mg NO/L时,两种仪器的测量结果之间存在很强的相关性。