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Inherent optical properties of suspended particulate matter in the southern Baltic Sea

机译:波罗的海南部悬浮颗粒物的固有光学性质

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The inherent optical properties (IOPs) of suspended particulate matter and their relations with the main biogeochemical characteristics of particles have been examined in the surface waters of the southern Baltic Sea. The empirical data were gathered at over 300 stations in open Baltic Sea waters as well as in the coastal waters of the Gulf of Gdansk. The measurements included IOPs such as the absorption coefficient of particles, absorption coefficient of phytoplankton, scattering and backscattering coefficients of particles, as well as biogeochemical characteristics of suspended matter such as concentrations of suspended particulate matter (SPM), particulate organic matter (POM), particulate organic carbon (POC) and chlorophyll a (Chi a). Our data documented the very extensive variability in the study area of particle concentration measures and IOPs (up to two orders of magnitude). Although most of the particle populations encountered were composed primarily of organic matter (ay. POM/SPM = ca 0.8), the different particle concentration ratios suggest that the particle composition varied significantly. The relations between the optical properties and biogeochemical parameters of suspended matter were examined. We found significant variability in the constituent-specific IOPs (coefficients of variation (CVs) of at least 30% to 40%; usually more than 50%). Simple best-fit relations between any given IOP versus any constituent concentration parameter also highlighted the significant statistical errors involved. As a result, we conclude that for southern Baltic samples an easy yet precise quantification of particle TOPs in terms of the concentration of only one of the following parameters SPM, POM, POC or Chl a is not achievable. Nevertheless, we present a set of best statistical formulas for a rough estimate of certain seawater constituent concentrations based on relatively easily measurable values of seawater IOPs. These equations can be implemented in practice, but their application will inevitably entail effective statistical errors of estimation of the order of 50% or more.
机译:悬浮颗粒物的固有光学性质(IOP)及其与颗粒主要生物地球化学特征的关系已在波罗的海南部地表水中进行了检查。在波罗的海开放水域和格但斯克湾沿岸水域的300多个站点收集了经验数据。这些测量包括IOP,例如颗粒的吸收系数,浮游植物的吸收系数,颗粒的散射和反向散射系数,以及悬浮物的生物地球化学特征,例如悬浮颗粒物(SPM),颗粒有机物(POM)的浓度,颗粒有机碳(POC)和叶绿素a(Chi a)。我们的数据记录了颗粒物浓度测量和IOP(最多两个数量级)研究领域的广泛变化。尽管遇到的大多数粒子群主要由有机物组成(ay。POM / SPM = ca 0.8),但不同的粒子浓度比表明粒子组成有很大变化。研究了悬浮物的光学性质与生物地球化学参数之间的关系。我们发现特定成分的IOP具有显着的变异性(变异系数(CV)至少为30%至40%;通常大于50%)。任何给定的IOP与任何成分浓度参数之间的简单最佳拟合关系也突出了所涉及的显着统计误差。结果,我们得出结论,对于南部波罗的海样品,仅通过以下参数SPM,POM,POC或Chla中的一个参数的浓度,就无法轻松,精确地量化颗粒TOP。尽管如此,我们还是根据相对较容易测量的海水IOP值,提供了一套最佳的统计公式,用于粗略估算某些海水成分的浓度。这些方程式可以在实践中实现,但是它们的应用将不可避免地带来有效的统计误差,其估计值约为50%或更高。

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