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Dissolved and particulate aluminum in the Columbia River and coastal waters of Oregon and Washington: Behavior in near-field and far-field plumes

机译:哥伦比亚河以及俄勒冈州和华盛顿州沿海水域中溶解的颗粒状铝:近场和远场羽流中的行为

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The distribution of dissolved (soluble and total) and particulate (leachable and total) aluminum was examined in the Columbia River and estuary, in near-field and far-field river plumes, and in adjacent coastal waters of Washington and Oregon during the River Influence on Shelf Ecosystems (RISE) cruise of May/June 2006. Dissolved and particulate aluminum (Al) concentrations were significantly greater in the river than in the coastal waters that mixed to form the plume. Dissolved Al concentrations in the Columbia River (~80nM) were low relative to other major rivers. Leachable and total particulate Al concentrations within the river reached concentrations greater than 1000 nM and 18,000 nM, respectively. Dissolved Al within the Columbia River estuary showed a significant removal (~60%) at salinities between 0 and 10 with salt-induced flocculation of colloidal Al complexes and enhanced particle scavenging being probable explanations for aluminum removal. Dissolved and particulate Al concentrations were significantly greater in near-field plumes relative to surrounding coastal waters. As the plume advected from near-field to far-field away from the river mouth, dilution of the plume with lower dissolved Al surface waters as well as particle scavenging along the flow path appeared to be controlling dissolved Al distributions. Particle settling as well as dilution with lower particle-load waters led to observed decreases in particulate Al as the plume moved from near-field to far-field. However, the percent-leachable particulate aluminum in both near-field and far-field plumes was remarkably constant at ~7%. Dissolved and particulate Al in a far-field plume over 100 km southwest of the Columbia River mouth were over an order-of-magnitude greater than surrounding waters, illustrating the importance of the Columbia River plume as a mechanism for transporting Al offshore. Aluminum could be used to trace the input of biologically-required elements such as iron into waters off the shelf.
机译:在河水影响期间,对哥伦比亚河和河口,近场和远场河羽以及华盛顿和俄勒冈州附近沿海水域中溶解(可溶和总)和颗粒状(可溶和总)铝的分布进行了检查。在2006年5月/ 6月的陆架生态系统(RISE)航行中。河流中的溶解性和颗粒性铝(Al)浓度明显高于混合形成烟羽的沿海水域。相对于其他主要河流,哥伦比亚河中的溶解铝浓度(〜80nM)较低。河流中的可浸出Al和总颗粒Al浓度分别达到了大于1000 nM和18,000 nM的浓度。在盐度为0到10时,哥伦比亚河河口中溶解的Al表现出显着的去除(〜60%),盐诱导的胶态Al络合物的絮凝和增强的颗粒清除能力可能是铝去除的原因。与周围的沿海水域相比,近场羽流中溶解的和颗粒状的铝浓度明显更高。随着羽流从远离河口的近场向远场平流,用较低的溶解Al地表水稀释羽流以及沿流路清除颗粒似乎可以控制溶解Al的分布。随着羽流从近场移动到远场,颗粒沉降以及用较低的颗粒负载水稀释导致观察到的颗粒Al减少。但是,近场和远场羽流中的可浸出颗粒铝百分比均显着恒定在〜7%。在哥伦比亚河河口西南方100多公里远场羽流中,溶解的颗粒状Al的数量级比周围水域大一个数量级,这说明了哥伦比亚河羽流作为将Al海上运输的机制的重要性。铝可以用来追踪生物需要的元素(例如铁)在现成的水中的输入。

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