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An optical sensor for monitoring of dissolved oxygen based on phase detection

机译:基于相位检测的用于监测溶解氧的光学传感器

摘要

Dissolved oxygen (DO) monitoring is of vital importance to water treatment, sewage treatment, aquaculture and biological research. The traditional method for DO detection is an electrochemical method called the Clark electrode. This electrochemical method has been widely used as it is simple and inexpensive; however, the critical drawback for this kind of sensor is that it is easily affected by pH variations, and by the concentration of H2S and SO2. Optical sensing for DO detection is a newly developed technology, which can avoid most of the drawbacks of the electrochemical sensors. A DO sensor using fluorescence detection is described in this paper. The oxygen concentration measurement principle is based on optical phase detection, which is more precise than the traditional intensity detection method. Emission is carried out by a low-cost, specially designed light emitting diode (LED) source. To avoid an unwanted phase shift, a reference LED is used to improve the degree of accuracy. The sensing material for fluorescence is a ruthenium complex. A discrete Fourier transform (DFT) algorithm was used for the phase calculation. The system was designed into a stainless steel probe, and dissolved oxygen concentration measurement results for various applications are presented in this paper.
机译:溶解氧(DO)监测对于水处理,污水处理,水产养殖和生物学研究至关重要。用于DO检测的传统方法是一种称为Clark电极的电化学方法。由于该电化学方法简单且廉价,因此已被广泛使用。但是,这种传感器的关键缺点是容易受到pH值变化以及H2S和SO2浓度的影响。用于溶解氧检测的光学传感技术是一项新兴技术,可以避免电化学传感器的大多数缺点。本文介绍了使用荧光检测的DO传感器。氧气浓度测量原理基于光学相位检测,比传统的强度检测方法更加精确。发射是通过低成本,专门设计的发光二极管(LED)光源进行的。为避免不必要的相移,参考LED用于提高准确性。荧光的传感材料是钌络合物。离散傅里叶变换(DFT)算法用于相位计算。该系统被设计成一个不锈钢探头,本文介绍了各种应用中的溶解氧浓度测量结果。

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