Department of Chemistry "Ugo Schiff", University of Florence, Via della Lastruccia 3, 50019 Sesto Fiorentino, FI, Italy.
National Interuniversity Consortium of Materials Science and Technology (INSTM), Via G. Giusti 9, 50121 Firenze, FI, Italy.
Molecules. 2022 May 11;27(10):3087. doi: 10.3390/molecules27103087.
Recently, the new updates in legislation about drinking water control and human health have increased the demand for novel electrochemical low-cost sensors, such as potentiometric ones. Nowadays, the determination of chloride ion in aqueous solutions has attracted great attention in several fields, from industrial processes to drinking water control. Indeed, chloride plays a crucial role in corrosion, also influencing the final taste of beverages, especially coffee. The main goal is to obtain devices suitable for continuous and real-time analysis. For these reasons, we investigated the possibility to develop an easy, low-cost potentiometric chloride sensor, able to perform analysis in aqueous mediums for long immersion time and reducing the need of periodic calibration. We realized a chloride ion selective electrode made of Ag/AgCl sintered pellet and we tested its response in model solutions compatible with drinking water. The sensor was able to produce a stable, reproducible, and accurate quantification of chloride in 900 s, without the need for a preliminary calibration test. This opens the route to potential applications of this sensor in continuous, in situ, and real time measurement of chloride ions in industrial processes, with a reduced need for periodic maintenance.
最近,关于饮用水控制和人类健康的新立法更新增加了对新型电化学低成本传感器(如电位传感器)的需求。如今,水溶液中氯离子的测定在许多领域引起了极大的关注,从工业过程到饮用水控制。事实上,氯离子在腐蚀中起着至关重要的作用,也影响着饮料的最终口感,尤其是咖啡。主要目标是获得适合连续实时分析的设备。出于这些原因,我们研究了开发一种简单、低成本的电位氯离子传感器的可能性,该传感器能够在长时间浸泡的水中进行分析,并减少定期校准的需要。我们制备了由 Ag/AgCl 烧结颗粒制成的氯离子选择电极,并在与饮用水兼容的模型溶液中测试了其响应。该传感器能够在 900 秒内对氯离子进行稳定、可重复且准确的定量,无需进行初步校准测试。这为该传感器在工业过程中连续、原位和实时测量氯离子开辟了潜在应用途径,减少了对定期维护的需求。