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Research and application of near-infrared spectroscopy in rapid detection of water pollution

机译:近红外光谱技术在水质快速检测中的研究与应用

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Objective: To study the method of rapid detection of water quality by means of near-infrared spectroscopy. Methods: Adopting USB2000 fiber optic spectrometer to carry out the near-infrared spectra for different water collected in the natural environment, comparing the reflectance rate between the polluted lake water and clean lake water in different regions, and making comparison on the reflectance rate of clean water in different water environment, so as to learn the changes of the near-infrared spectroscopy. Results: There are different absorption peaks and peaks in polluted and non-polluted water, and the trend of the reflectance spectra for water in different environments is approximately the same. Conclusion: Spectra technology has the advantages of low cost and easy operation and so on, which reflects its advantages in water quality detection. It has a good effect on solving water pollution problem, which has great significance for water quality monitoring.
机译:目的:研究近红外光谱法快速检测水质的方法。方法:采用USB2000光纤光谱仪对自然环境中收集的不同水进行近红外光谱分析,比较不同地区被污染的湖水与干净的湖水之间的反射率,比较干净的湖水的反射率。在不同水环境中的水,从而了解近红外光谱的变化。结果:受污染和未污染的水有不同的吸收峰和吸收峰,并且在不同环境下水的反射光谱趋势大致相同。结论:光谱技术具有成本低廉,操作简便等优点,体现了其在水质检测中的优势。它对解决水污染问题有很好的效果,对水质监测具有重要意义。

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