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海洋溢油污染的遥感——叶绿素浓度的作用。

Remote Sensing of Dispersed Oil Pollution in the Ocean-The Role of Chlorophyll Concentration.

机构信息

Department of Physics, Gdynia Maritime University, ul. Morska 81-87, 81-225 Gdynia, Poland.

出版信息

Sensors (Basel). 2021 May 13;21(10):3387. doi: 10.3390/s21103387.

Abstract

In the contrary to surface oil slicks, dispersed oil pollution is not yet detected or monitored on regular basis. The possible range of changes of the local optical properties of seawater caused by the occurrence of dispersed oil, as well as the dependencies of changes on various physical and environmental factors, can be estimated using simulation techniques. Two models were combined to examine the influence of oceanic water type on the visibility of dispersed oil: the Monte Carlo radiative transfer model and the Lorenz-Mie model for spherical oil droplets suspended in seawater. Remote sensing reflectance, , was compared for natural ocean water models representing oligotrophic, mesotrophic and eutrophic environments (characterized by chlorophyll-a concentrations of 0.1, 1 and 10 mg/m, respectively) and polluted by three different kinds of oils: biodiesel, lubricant oil and crude oil. We found out that dispersed oil usually increases values for all types of seawater, with the highest effect for the oligotrophic ocean. In the clearest studied waters, the absolute values of increased 2-6 times after simulated dispersed oil pollution, while band ratios routinely applied in bio-optical models decreased up to 80%. The color index, CI, was nearly double reduced by dispersed biodiesel BD and lubricant oil CL, but more than doubled by crude oil FL.

摘要

与海面浮油相反,分散型油污尚未得到定期检测或监测。可以利用模拟技术来估计分散型油污出现时海水局部光学性质可能发生的变化范围,以及变化对各种物理和环境因素的依赖关系。结合两种模型来研究海洋水类型对分散型油污能见度的影响:蒙特卡罗辐射传输模型和悬浮在海水中的球形油滴的 Lorenz-Mie 模型。对代表贫营养、中营养和富营养环境的天然海洋水模型进行了比较(分别用叶绿素-a 浓度 0.1、1 和 10mg/m 表示),并对受三种不同类型的油污染的模型进行了比较:生物柴油、润滑油和原油。结果表明,分散型油污通常会增加所有类型海水的 值,对贫营养海洋的影响最大。在研究最透彻的水域中,经模拟分散型油污污染后, 值增加了 2-6 倍,而生物光学模型中常用的 波段比则下降了 80%。分散型生物柴油 BD 和润滑油 CL 使色指数 CI 几乎降低了一倍,但原油 FL 则使色指数 CI 增加了一倍多。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4011/8152263/336f86b9e7f0/sensors-21-03387-g001.jpg

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