State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu, 610500, China and School of Chemistry and Chemical Engineering, Southwest Petroleum University, Chengdu, 610500, China.
School of Chemistry and Chemical Engineering, Southwest Petroleum University, Chengdu, 610500, China.
Analyst. 2016 May 10;141(10):3041-9. doi: 10.1039/c6an00159a.
Fluoride concentration is a key aspect of water quality and essential for human health. Too much or too little fluoride intake from water supplies is harmful to public health. In this study, a capillary waveguide integrated fiber-optic sensor was fabricated for fluoride measurement in water samples. The sensor was modularly designed with three parts, i.e., a light source, capillary flow cell and detector. When light propagated from a light emitting diode (LED) to the capillary waveguide cell through an excitation fiber, it interacted with the sensing reagent, and its intensity changed with different fluoride concentrations. Then, the light propagated to the detector through a detection fiber for absorption determination of fluoride according to Beer's law. This miniaturized sensor showed advantages of fast analysis (9.2 s) and small reagent demand (200 μL) per sample, and it also had a low detection limit (8 ppb) and high selectivity for fluoride determination. The sensor was applied to fluoride determination in different water samples. The results obtained were compared with those obtained by conventional spectrophotometry and ion chromatography, showing agreement and validating the sensor's potential application.
氟化物浓度是水质的一个关键方面,对人类健康至关重要。饮用水中氟化物的摄入量过多或过少都会对公众健康造成危害。在这项研究中,我们制备了一种用于水样中氟化物测量的毛细管波导集成光纤传感器。该传感器采用模块化设计,由光源、毛细管流动池和探测器三部分组成。当光从发光二极管(LED)通过激发光纤传播到毛细管波导池时,它与传感试剂相互作用,其强度随不同的氟化物浓度而变化。然后,光通过检测光纤传播到探测器,根据比尔定律进行氟化物的吸收测定。这种小型化的传感器具有快速分析(9.2 s)和小试剂需求(每个样品 200 μL)的优点,其检测限低(8 ppb),对氟化物的选择性高。该传感器应用于不同水样中的氟化物测定。将得到的结果与传统分光光度法和离子色谱法的结果进行比较,结果一致,验证了传感器的潜在应用。