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Phosphorus–iron interaction in sediments : can an electrode minimize phosphorus release from sediments?

机译:沉积物中磷与铁的相互作用:电极能否使磷从沉积物中释放出来?

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摘要

All restoration strategies to mitigate eutrophication depend on the success of phosphorus (P) removal from the water body. Therefore, the inputs from the watershed and from the enriched sediments, that were the sink of most P that has been discharged in the water body, should be controlled. In sediments, iron (hydr)oxides minerals are potent repositories of P and the release of P into the water column may occur upon dissolution of the iron (hydr)oxides mediated by iron reducing bacteria. Several species of these bacteria are also known as electroactive microorganisms and have been recently identified in lake sediments. This capacity of bacteria to transfer electrons to electrodes, producing electricity from the oxidation of organic matter, might play a role on P release in sediments. In the present work it is discussed the relationship between phosphorus and iron cycling as well as the application of an electrode to work as external electron acceptor in sediments, in order to prevent metal bound P dissolution under anoxic conditions.
机译:缓解富营养化的所有恢复策略都取决于从水体中去除磷(P)的成功程度。因此,应该控制来自流域和富集沉积物的输入,这些沉积物是已排放到水体中的大多数P的汇。在沉积物中,氧化铁矿物质是P的有效沉积物,在还原铁细菌介导的氧化铁溶解时,P可能释放到水柱中。这些细菌的几种也称为电活性微生物,最近在湖泊沉积物中被发现。细菌将电子转移到电极上的这种能力,可以通过有机物的氧化产生电能,这可能对沉积物中的磷释放起一定作用。在本工作中,讨论了磷和铁循环之间的关系,以及在沉积物中使用电极作为外部电子受体的目的,以防止金属结合的P在缺氧条件下溶解。

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