National Engineering Research Center of Optical Instrumentation, Centre for Optical and Electromagnetic Research, Zhejiang University, Hangzhou 310058, China.
Sensors (Basel). 2018 Dec 13;18(12):4415. doi: 10.3390/s18124415.
The fast response and analysis of oil spill accidents is important but remains challenging. Here, a compact fluorescence hyperspectral system based on a grating-prism structure able to perform component analysis of oil as well as make a quantitative estimation of oil film thickness is developed. The spectrometer spectral range is 366⁻814 nm with a spectral resolution of 1 nm. The feasibility of the spectrometer system is demonstrated by determining the composition of three types of crude oil and various mixtures of them. The relationship between the oil film thickness and the fluorescent hyperspectral intensity is furthermore investigated and found to be linear, which demonstrates the feasibility of using the fluorescence data to quantitatively measure oil film thickness. Capable of oil identification, distribution analysis, and oil film thickness detection, the fluorescence hyperspectral imaging system presented is promising for use during oil spill accidents by mounting it on, e.g., an unmanned aerial vehicle.
溢油事故的快速响应和分析很重要,但仍然具有挑战性。在这里,我们开发了一种基于光栅-棱镜结构的紧凑型荧光高光谱系统,该系统能够对油进行成分分析,以及对油膜厚度进行定量估计。该光谱仪的光谱范围为 366-814nm,光谱分辨率为 1nm。通过测定三种类型的原油及其各种混合物的组成,验证了该光谱仪系统的可行性。此外,还研究了油膜厚度与荧光高光谱强度之间的关系,发现它们之间呈线性关系,这表明可以使用荧光数据对油膜厚度进行定量测量。该荧光高光谱成像系统能够进行油识别、分布分析和油膜厚度检测,有望通过将其安装在无人机等设备上,应用于溢油事故中。