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Laboratory studies on the coprecipitation of phosphate with calcium carbonate in the Salton Sea, California

机译:加利福尼亚州萨尔顿海中磷酸盐与碳酸钙共沉淀的实验室研究

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The Salton Sea is a hypereutrophic, saline lake in the desert of southern California. Like many lakes, the primary productivity of the Sea is limited by phosphorus. However, unlike most lakes, the release of P from the sediments is not controlled by the reductive dissolution of Fe(III)-oxide minerals. Most of the iron in the sediments of the Salton Sea is present as Fe(II)-sulfides and silicates. Rather, the sediments are dominated by calcite which is actively precipitating due to alkalinity production via sulfate reduction reactions. We hypothesized that calcite could be an important sink for phosphorus released from the decomposing organic matter. In this work we evaluated the potential for phosphate to coprecipitate with calcite formed in simulated Salton Sea sediment pore water. At calcite precipitation levels and P concentrations typical for the Salton Sea pore water, coprecipitation of P removed 82-100% of the dissolved phosphorus. The amount of P incorporated into the calcite was independent of temperature. The results of this work indicate that the internal loading of P within the Salton Sea is being controlled by calcite precipitation. Management of external P loading should have an immediate impact on reducing algae blooms in the Salton Sea.
机译:索尔顿海是加利福尼亚南部沙漠中的富营养盐湖。像许多湖泊一样,海洋的主要生产力受到磷的限制。但是,与大多数湖泊不同,磷从沉积物中的释放不受氧化铁(III)矿物质还原溶解的控制。索尔顿海沉积物中的大多数铁以硫化铁(II)和硅酸盐的形式存在。相反,沉积物以方解石为主,方解石由于通过硫酸盐还原反应产生的碱而活跃地沉淀。我们假设方解石可能是分解有机物释放出的磷的重要吸收剂。在这项工作中,我们评估了磷酸盐与模拟索尔顿海沉积物孔隙水中形成的方解石共沉淀的可能性。在方解石沉淀水平和Salton Sea孔隙水中典型的P浓度下,P的共沉淀去除了82-100%的溶解磷。掺入方解石中的P量与温度无关。这项工作的结果表明,方解石沉淀控制了索尔顿海中磷的内部负荷。外部磷负荷的管理应立即对减少萨尔顿海藻繁殖的影响。

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