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利用机载高光谱短波红外成像仪探测海洋塑料。

Sensing Ocean Plastics with an Airborne Hyperspectral Shortwave Infrared Imager.

机构信息

The Ocean Cleanup Foundation , Batavierenstraat 15 , Rotterdam 3014 JH , Netherlands.

Department of Marine Sciences, Avery Point Campus , University of Connecticut , 1080 Shennecossett Road , Groton , Connecticut 06340 , United States.

出版信息

Environ Sci Technol. 2018 Oct 16;52(20):11699-11707. doi: 10.1021/acs.est.8b02855. Epub 2018 Sep 25.

DOI:10.1021/acs.est.8b02855
PMID:30249095
Abstract

Here, we present a proof-of-concept on remote sensing of ocean plastics using airborne shortwave infrared (SWIR) imagery. We captured red, green, and blue (RGB) and hyperspectral SWIR imagery with equipment mounted on a C-130 aircraft surveying the "Great Pacific Garbage Patch" at a height of 400 m and a speed of 140 knots. We recorded the position, size, color, and type (container, float, ghost net, rope, and unknown) of every plastic piece identified in the RGB mosaics. We then selected the top 30 largest items within each of our plastic type categories (0.6-6.8 m in length) to investigate SWIR spectral information obtained with a SASI-600 imager (950-2450 nm). Our analyses revealed unique SWIR spectral features common to plastics. The SWIR spectra obtained ( N = 118 items) were quite similar both in magnitude and shape. Nonetheless, some spectral variability was observed, likely influenced by differences in the object optical properties, the level of water submersion, and an intervening atmosphere. Our simulations confirmed that the ∼1215 and ∼1732 nm absorption features have potential applications in detecting ocean plastics from spectral information. We explored the potential of SWIR remote sensing technology for detecting and quantifying ocean plastics, thus provide relevant information to those developing better monitoring solutions for ocean plastic pollution.

摘要

在这里,我们提出了一个使用机载短波红外(SWIR)图像对海洋塑料进行遥感探测的概念验证。我们使用安装在 C-130 飞机上的设备拍摄了红、绿、蓝(RGB)和高光谱 SWIR 图像,飞机在 400 米的高度以 140 节的速度飞越“大太平洋垃圾带”。我们记录了在 RGB 镶嵌图中识别出的每一块塑料的位置、大小、颜色和类型(容器、浮标、幽灵网、绳索和未知)。然后,我们从每个塑料类型(0.6-6.8 米长)类别中选择前 30 个最大的物品,以研究使用 SASI-600 成像仪(950-2450nm)获得的 SWIR 光谱信息。我们的分析揭示了塑料共有的独特 SWIR 光谱特征。获得的 SWIR 光谱(N=118 个样本)在幅度和形状上都非常相似。尽管如此,还是观察到了一些光谱变化,这可能是由物体光学特性、水淹没程度和中间大气的差异造成的。我们的模拟证实,约 1215nm 和 1732nm 的吸收特征具有从光谱信息中检测海洋塑料的潜在应用。我们探索了 SWIR 遥感技术在检测和量化海洋塑料方面的潜力,从而为那些开发更好的海洋塑料污染监测解决方案的人提供了相关信息。

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