Appl Opt. 2020 Aug 20;59(24):7364-7370. doi: 10.1364/AO.396831.
An optical sensor that simultaneously measures the concentration of the biochemical oxygen demand (BOD) and temperature in water based on a tapered microfiber is proposed for environmental monitoring. The sensor is characterized by a strong evanescent field, which is more sensitive to liquids with a low refractive index and a low transmission loss. The results show that as the BOD concentration increases, the interference spectrum shifts toward longer wavelengths, the spectral loss decreases, and the sensitivities of the BOD are 12.17 nm/mg/mL and -2.387// in the range of 0.25-1 mg/mL, which indicates the extent of the water pollution. The detection limit for the BOD concentration is as low as 0.0016 mg/mL. As the ambient temperature increases, the interference spectrum shifts toward shorter wavelengths, the spectral loss decreases, and the temperature sensitivities are -0.339/ and -0.031/ in the range of 30°C-60°C. The matrix method can be used to achieve the simultaneous measurement of the BOD concentration and environmental temperature because the spectral interference peaks have different responses to these two parameters. The sensor can not only be used for detecting water pollution in rivers, drinking water, and groundwater but can also be utilized for other types of environmental monitoring. This sensor has great potential to act as a basic sensing unit in fiber-optic sensor networks for multiparameter measurements and intelligent monitoring.
一种基于锥形微光纤的同时测量水中生化需氧量(BOD)浓度和温度的光学传感器,可用于环境监测。该传感器的特点是具有强消逝场,对低折射率和低传输损耗的液体更敏感。结果表明,随着 BOD 浓度的增加,干涉光谱向长波长移动,光谱损耗减小,BOD 的灵敏度在 0.25-1mg/mL 范围内为 12.17nm/mg/mL 和-2.387//,这表明了水污染的程度。BOD 浓度的检测限低至 0.0016mg/mL。随着环境温度的升高,干涉光谱向短波长移动,光谱损耗减小,在 30°C-60°C 范围内的温度灵敏度分别为-0.339/和-0.031/。可以使用矩阵方法实现 BOD 浓度和环境温度的同时测量,因为光谱干涉峰对这两个参数有不同的响应。该传感器不仅可用于检测河流、饮用水和地下水的水污染,还可用于其他类型的环境监测。该传感器在光纤传感器网络中的多参数测量和智能监测中作为基本传感单元具有很大的潜力。