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Automated, in-water determination of colored dissolved organic material and phytoplankton community structure using the optical phytoplankton discriminator

机译:使用光学浮游生物鉴别器自动在水中确定有色溶解的有机物质和浮游生物群落结构

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Optical Phytoplankton Discriminator (OPD, a.k.a. BreveBuster) determines colored dissolved organic material (CDOM) absorption spectra and particulate light absorbance spectra. The CDOM absorption spectra and correlation coefficients (referred to as 'similarity indexes') between the particulate absorbance spectra and known phytoplankton classes are available in real-time. Post-deployment processing calculates the best fit of multiple absorbance spectra from known phytoplankton taxonomic classes. Through this process the OPD provides an estimate of the phytoplankton community chlorophyll distribution among the classes included in the fit process. The major components of the OPD include: a liquid-waveguide capillary cell (LWCC), a fiber-optic spectrometer, a tungsten-deuterium fiber-optic light and a 0.2 micrometer pore cross-flow filter. In-water operation of the OPD began in May 2003. Since that date 25 of these instruments have been deployed on a variety of autonomous underwater vehicles, buoys, piers, channel markers and boats and ships. It has been utilized in CDOM studies off the New Jersey coast, in HAB monitoring efforts in the Gulf of Mexico and the Great Lakes, and in phytoplankton community structure studies in the Galapagos Islands and the Mediterranean Sea. Most recently, it has been deployed to Veracruz, Mexico for HAB monitoring. Presently, several OPD's operating on Slocum gliders and coastal buoys make up a local HAB observatory south of Tampa Bay, Florida, partially supported by the NOAA/IOOS through GCOOS. This presentation will detail the OPD's capabilities and report results from several of the deployments listed above. The ongoing effort to effectively visualize 4-D phytoplankton community structure will be discussed.
机译:光学浮游植物鉴别仪(OPD,a.k.a. BreveBuster)确定有色溶解有机物质(CDOM)吸收光谱和颗粒光吸收光谱。 CDOM吸收光谱和颗粒吸收光谱与已知浮游植物类别之间的相关系数(称为“相似性指数”)可实时获得。部署后处理从已知的浮游植物分类学类别中计算多个吸收光谱的最佳拟合。通过该过程,OPD提供了拟合过程中所包括的各类之间浮游植物群落叶绿素分布的估计值。 OPD的主要组件包括:液体波导毛细管池(LWCC),光纤光谱仪,钨-氘光纤光和0.2微米孔错流滤光片。 OPD的水下操作始于2003年5月。自那时以来,这些仪器中的25种已部署在各种自动水下车辆,浮标,码头,航道标志物和船只上。它已用于新泽西州沿海的CDOM研究,墨西哥湾和五大湖的HAB监测工作以及加拉帕戈斯群岛和地中海的浮游植物群落结构研究中。最近,它已部署到墨西哥韦拉克鲁斯(Veracruz)进行HAB监控。目前,一些在Slocum滑翔机和沿海浮标上运行的OPD组成了佛罗里达州坦帕湾以南的当地HAB天文台,NOAA / IOOS通过GCOOS为其提供了部分支持。本演示将详细介绍OPD的功能,并报告上面列出的几种部署的结果。将讨论正在进行的有效可视化4-D浮游植物群落结构的工作。

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