Distributed pH sensing based on optical frequency domain reflectometry

Han Xiao, Huafeng Lu, Zeheng Zhang, Guolu Yin, T. Zhu
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Abstract

A distributed pH sensor was proposed by using the optical frequency domain reflectometry and a hydrogel coated single mode fiber (SMF). The swelling of the hydrogel will convert the pH value to the axial strain in the fiber. Taking capacity of distributed strain measurement with high spatial resolution, the pH value of the external medium surrounding the hydrogel-based optical fibers is distributed measured by the optical frequency shifts of the local back-reflection spectra in optical frequency domain reflectometry. In the experiment, the range of the pH value from 2 to 5 was measured with a spatial resolution of a 3.1 mm and a sensitivity of 60 pm/pH when the hydrogel coating diameter is 0.8 mm.
基于光频域反射法的分布式pH传感
采用光频域反射法和水凝胶包覆单模光纤(SMF),设计了一种分布式pH传感器。水凝胶的膨胀会将pH值转化为纤维的轴向应变。光频域反射法利用高空间分辨率的分布式应变测量能力,利用局部背反射光谱的光频移来测量水凝胶基光纤周围外部介质的pH值。实验中,水凝胶包被直径为0.8 mm时,测量pH值为2 ~ 5的范围,空间分辨率为3.1 mm,灵敏度为60 pm/pH。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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