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Particle aggregation, pH changes and metal behaviour during estuarine mixing: review and integration

机译:雌曲调混合过程中的颗粒聚集,pH变化和金属行为:审查和集成

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摘要

Estuaries are dynamic mixing zones where river water interacts with seawater, resulting in large and complex geochemical changes. How two key factors, particle aggregation and pH, affect metal behaviour in estuaries is reviewed and integrated in this paper. Riverine particles are coated with organic matter and electrostatic repulsive forces restrict aggregation. In estuaries, increased concentrations of divalent cations reduce the repulsive forces between particles at low salinities, resulting in their rapid coagulation and removal of particulate-associated metals (e.g. Fe and Pb). However, truly dissolved metals may mix conservatively, and metals associated more with colloidal and dissolved organic material (e.g. Cu and Zn) can show variable behaviour. In many field studies and modelling of river inputs with different compositions, pH decreases slightly at low salinity. Geochemical model simulations of dissolved metal speciation indicated that Zn would be desorbed from iron oxide binding surfaces due to these pH and cation concentration changes, with Cu also showing less binding to dissolved organic matter (DOM). DOM, pH and particle surfaces can influence individual metal behaviour at various spatial and temporal scales. Further integrated field and laboratory research in estuaries where key geochemical processes affecting metal concentrations are measured and modelled is needed.
机译:河口是动态混合区,河水与海水相互作用,导致地球化学变化大而复杂。在本文中审查并整合了两个关键因素,颗粒聚集和pH,影响河口中的金属行为。河流颗粒涂有有机物质,静电排斥力限制聚集。在河口中,增加的二价阳离子的浓度降低了低盐素的颗粒之间的排斥力,导致它们的快速凝结和除去颗粒状相关金属(例如Fe和Pb)。然而,真正溶解的金属可以保守地混合,并且用胶体和溶解的有机材料(例如Cu和Zn)相关的金属可以显示可变行为。在许多实地研究和河流输入的型号与不同组成的建模中,pH在低盐度下略微降低。溶解金属形状的地球化学模型模拟表明,由于这些pH和阳离子浓度的变化,Zn将从氧化铁结合表面中解吸,Cu也显示与溶解有机物质(DOM)的结合较少。 DOM,pH和颗粒表面可以影响各种空间和时间尺度的单个金属行为。需要进一步综合的沟通和实验室研究,其中测量和模拟影响金属浓度的关键地球化学过程。

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