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Partitioning and transformation of organic and inorganic phosphorus among dissolved, colloidal and particulate phases in a hypereutrophic freshwater estuary

机译:二脱发淡水灾区溶解,胶体和颗粒阶段中有机和无机磷的分配和转化

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Phosphorus (P) loadings to the Great Lakes have been regulated for decades, but re-eutrophication and seasonal hypoxia have recently been increasingly reported. It is of paramount importance to better understand the fate, transformation, and biogeochemi-cal cycling processes of different P species across the river-lake interface. We report here results on chemical speciation of P in the seasonally hypoxic Fox River-Green Bay system and variations in sources and partitioning of P species along the aquatic continuum. During midsummer when productivity is generally high, phosphate and dissolved organic P (DOP) were the major species in river water while particulate-organic-P predominated in open bay waters, showing a dynamic change in the chemical speciation of P along the river-bay transect with active transformations between inorganic and organic P and between colloidal and particulate phases. Colloidal organic P (COP, > 1 kDa) comprised 3365% of the bulk DOP, while colloidal inorganic P was generally insignificant and undetectable especially in open bay water. Sources of COP changed from mainly allochthonous in the Fox River, having mostly smaller sized colloids (1-3 kDa) and a lower organic carbon to phosphorus (C/P) ratio, to predominantly autochthonous in open bay waters with larger sized colloids (> 10 kDa) and a higher organic C/P ratio. The observed high apparent distribution coefficients (K_d) of P between dissolved and particulate phases and high-abundant autochthonous colloidal and particulate organic P in the hypereutrophic environment suggest that, in addition to phosphate, colloidal/particulate organic P may play a critical role in the biogeochemical cycling of P and the development of seasonal hypoxia.
机译:几十年来,磷(P)加载到大湖泊的含量,但最近越来越多地报道了再富营养化和季节性缺氧。在河湖界面上更好地了解不同P种的命运,转化和生物良象化学过程至关重要。我们在此报告结果是在季节性低氧狐狸河 - 绿湾系统中P的化学品质和沿着水生连续体的P种源的变化和分区。在仲夏期间,当生产率通常很高时,磷酸盐和溶解的有机P(DOP)是河水中的主要物种,而在开放的海湾水域中占主导地位的颗粒 - 有机P,沿河湾沿河湾的化学品质变化在无机和有机P之间以及胶体和颗粒相之间的主动变换横断。胶体有机P(COP,> 1 KDA)包含3365%的散装DOP,而胶体无机P通常是微不足道的,特别是在开放的海湾水中的不可检测。 COP的来源从狐狸河中的主要流动发生变化,大多数较小的胶体(1-3kDa)和磷(C / P)比的较低的有机碳,以较大大小的胶体(> 10kDa)和更高的有机C / P比。观察到的溶解和颗粒阶段的P的高表观分布系数(K_D)和过脱发环境中的高丰富的自身加热胶体和颗粒状有机P表明,除磷酸盐外,胶体/颗粒状有机P可能在P的生物地球化学循环与季节性缺氧的发展。

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    《Oceanographic Literature Review》 |2021年第5期|997-997|共1页
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