J. Rivera-Mejia, J. Rivera-Jacquez, C. Modesto-Acosta, M. Tena-Vega
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引用次数: 2
摘要
由于水可能受到自然环境的污染,对人类用水的原位和连续供水监测是世界各国关心消费者健康的一个重要课题。为了回顾这一点,本文展示了“University: Instituto Tecnológico de Chihuahua”的一项研究结果,其中使用商业设备分析了约5000名用户使用的13点水源的质量。采用数据采集系统和智能传感器体系结构对离子选择电极测量氟化物浓度的响应进行了评价,定义并选择了补偿方法。对智能传感器的响应时间进行了评价,并与设定时间进行了比较。使用氟化物标准参考溶液验证了所设计的智能传感器在1 ~ 50 ppm和1 ~ 200 ppm两个不同范围内与商用设备相比具有更好的性能。本设计程序可应用于设计智能传感器,以离子选择电极测量其他水参数,并在公共供水系统中进行原位和连续监测。
Auto-compensed smart sensor with F-ISE to continuous monitoring in public water supplies
The in situ and continuous water supplies monitoring for human use it is an important topic around the world for caring consumer's health because the water could be contaminated from natural environment. To review this, in this paper are shown the results of a study at “University: Instituto Tecnológico de Chihuahua” in which the quality of thirteen points of waters sources, used for around 5000 users, were analyzed using commercial equipment. The response of ion selective electrode was evaluated with data acquisition system and the smart sensor architecture to measure Fluride concentration it was defined and the compensation method was selected. Also the response time of smart sensor was evaluated and compared with the setting time. Using standard reference solutions of Fluoride was demonstrated that the smart sensor designed has better performance compared with commercial equipment in two different ranges from 1 to 50 ppm and from 1 to 200 ppm. This design procedure can be applied to design smart sensors to measure other water parameters with ion selective electrodes and to do in situ and continuous monitoring in public water supplies.