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Optical assessment of particle size and composition in the Santa Barbara Channel, California

机译:光学评估加州圣塔芭芭拉海峡的粒径和成分

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The suspended particle assemblage in complex coastal waters is a mixture of living phytoplankton, other autochthonous matter, and materials of terrestrial origin. The characterization of suspended particles is important for understanding regional primary productivity and rates of carbon sequestration, the fate of anthropogenic materials released to the coastal environment, as well as its effects on bulk optical properties, which influence the passive optical remote sensing of the coastal ocean. Here, the extensive biooptical Plumes and Blooms data set is used to characterize the surface particle assemblage in the Santa Barbara Channel, California, a highly productive, upwelling-dominated, coastal site affected by episodic sediment inputs. Available variables sensitive to characteristics of the particle assemblage include particle beam attenuation and backscattering coefficients, High Performance Liquid Chromatography (HPLC) pigment concentration observations, chlorophyll and particulate organic carbon concentration, particulate and phytoplankton absorption coefficients, and Laser In-situ Scattering and Transmissometry (LISST) 100-X particle sizer observations. Comparisons among these particle assemblage proxy variables indicate good agreement and internal consistency among the data set. Correlations among chlorophyll concentration, particulate organic carbon concentration (POC), HPLC pigments, and proxies sensitive to the entire particle assemblage such as backscattering and LISST data strongly indicate that in spite of its coastal character, variability in the particle assemblage in the Santa Barbara Channel is dominated by its marine biogenic component. Relatively high estimates of the bulk real index of refraction and its positive correlation with chlorophyll and lithogenic silica concentration tentatively indicate that there is minerogenic particle influence in the Santa Barbara Channel that tends to covary with the phytoplankton blooms. Limitations of each particle assemblage proxy and remote-sensing applications are discussed.
机译:复杂沿海水域中的悬浮颗粒集合是活体浮游植物,其他自生物质和陆源物质的混合物。悬浮颗粒的表征对于理解区域初级生产力和碳固存速率,释放到沿海环境的人为物质的命运及其对整体光学特性的影响非常重要,这些影响了沿海海洋的无源光学遥感。在这里,广泛的生物光学“羽状和布鲁姆”数据集用于表征加利福尼亚州圣塔芭芭拉海峡的地表颗粒组合,这是一个高产,上升流为主的沿海地区,受到周期性沉积物输入的影响。对粒子集合的特征敏感的可用变量包括粒子束衰减和反向散射系数,高效液相色谱(HPLC)颜料浓度观测值,叶绿素和颗粒有机碳浓度,颗粒和浮游植物吸收系数以及激光原位散射和透射法( LISST)100-X粒度仪观测值。这些粒子组合代理变量之间的比较表明,数据集之间具有良好的一致性和内部一致性。叶绿素浓度,颗粒有机碳浓度(POC),HPLC颜料和对整个粒子组合敏感的代理(例如反向散射和LISST数据)之间的相关性强烈表明,尽管具有沿海特征,但圣塔芭芭拉海峡中粒子组合的可变性主要由其海洋生物成因组成。相对较高的总体实际折射指数估计值及其与叶绿素和生石二氧化硅浓度的正相关性初步表明,圣塔芭芭拉海峡中存在成矿颗粒影响,倾向于与浮游植物的花样共存。讨论了每个粒子集合代理和遥感应用程序的局限性。

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