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首页> 外文期刊>Frontiers in Marine Science >Phosphorus forms in sediments of a river-dominated estuary
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Phosphorus forms in sediments of a river-dominated estuary

机译:磷在河流控制的河口沉积物中形成

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Estuaries are biologically productive transition zones between land and sea that play a vital role in transforming, recycling, and sequestering nutrients and organic matter, thus influencing nutrient loading to coastal systems. Yet, the processes involved in phosphorus (P) transformation and cycling among inorganic and organic P forms are poorly known in estuaries. To better understand the potential for P transformation and sequestration, we identified P forms and estimated their contributions to total P in intertidal wetland sediments of a river-dominated estuary (Columbia River, Oregon, USA) using solution 31P nuclear magnetic resonance spectroscopy (P-NMR). Inorganic P forms dominated sediment P extracts throughout the estuary, with orthophosphate accounting for 71–84% of total extracted P. However, biologically-derived inorganic and organic P forms were also detected. Polyphosphates were found in sediment extracts throughout the estuary, contributing as much as 10% of extracted P. Similar to other wetlands, orthophosphate monoesters and diesters made approximately equal contributions (~ 20%) to total extracted P. However, monoesters (e.g., phytate) were more abundant in sedimentary environments characterized by low organic matter content, while diesters (e.g., DNA) were more abundant in sedimentary environments with high organic matter, regardless of salinity. Collectively, the data show strong evidence for P transformation in sediments of a large, river-dominated estuary, which influences its transport to the coastal Pacific Ocean via the expansive Columbia River plume.
机译:河口是陆地和海洋之间的生物生产过渡区,在转化,循环利用和隔离养分和有机物质方面起着至关重要的作用,从而影响养分向沿海系统的负载。然而,在河口中鲜为人知的是涉及磷(P)转化以及无机和有机P形式之间循环的过程。为了更好地了解P转化和螯合的潜力,我们使用溶液31P核磁共振波谱法(P- NMR)。在整个河口,以无机磷形式占主导的沉积物磷提取物,正磷酸盐占提取的磷总量的71–84%。但是,还检测到了生物来源的无机和有机磷形式。在整个河口的沉积物提取物中发现了多磷酸盐,占提取磷的比例高达10%。与其他湿地类似,正磷酸盐单酯和二酯对总提取磷的贡献大致相同(〜20%)。 )在有机质含量低的沉积环境中含量较高,而二酯(例如DNA)在有机质含量高的沉积环境中含量较高,而与盐度无关。总体而言,数据显示了在一个以河为主导的大河口沉积物中磷转化的有力证据,这影响了它通过广阔的哥伦比亚河羽流向沿海太平洋的运输。

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