Development of a laser spectroscopy method and a hard-software framework for ecological monitoring of underwater areas by remote operated vehicles

D. Proschenko, I. Bukin
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Abstract

The results of the experimental development of the method and the hard-software framework for a remote-operated underwater vehicle are presented in this work. The method of laser induced fluorescence (LIF) and a small-sized laser spectrometer are designed to monitor of the dissolved oil products pollution of underwater areas and to assess the impact of pollution on the phytoplankton community state. The excitation technique of the sea water LIF was experimentally tested to simultaneously measure the concentration of chlorophyll A, the specific reproduction of dissolved organic matter by phytoplankton cells, and the concentration of oil products dissolved in sea water. It has been experimentally shown that to implement this technique, it is necessary to carry out the excitation of the LIF by two wavelength radiation. To measure the concentration of chlorophyll A and the specific reproduction of dissolved organic matter (DOM), it is necessary to use excitation by radiation in the green region of the spectrum (532 nm in this work). To measure the concentration of dissolved petroleum products in sea water, it is necessary to use UV radiation (278 nm in this work). The results of tests of the spectrometer under laboratory conditions on sea water samples containing phytoplankton cells and solutions of petroleum products are described. The results of the work create a methodological and software-hardware basis for carrying out the mission of ecological monitoring of underwater areas with the simultaneous solution of the problem of detecting oil pollution and assessing its impact on the phytoplankton community.
开发一种激光光谱方法和一种用于水下遥控航行器生态监测的软硬件框架
本文介绍了该方法的实验开发结果和遥控水下航行器的硬件软件框架。设计了激光诱导荧光法(LIF)和小型激光光谱仪对水下海域溶解油品污染进行监测,并评估污染对浮游植物群落状态的影响。实验测试了海水LIF的激发技术,可以同时测量叶绿素A浓度、浮游植物细胞对溶解有机物的特定繁殖以及海水中溶解油品的浓度。实验表明,要实现这一技术,必须对LIF进行双波长的激发。为了测量叶绿素A的浓度和溶解有机物(DOM)的特定繁殖,需要在光谱的绿色区域(532 nm)使用辐射激发。为了测量海水中溶解石油产品的浓度,需要使用紫外辐射(278 nm)。介绍了该光谱仪在实验室条件下对含浮游植物细胞的海水样品和石油产品溶液的测试结果。工作结果为开展水下区域生态监测任务,同时解决石油污染检测和评估其对浮游植物群落影响的问题奠定了方法论和软硬件基础。
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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