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A large artificial dyke greatly alters partitioning of sulfate and iron reduction and resultant phosphorus dynamics in sediments of the Yeongsan River estuary, Yellow Sea

机译:大型人造堤坝大大改变了云杉河口沉积物中硫酸盐和铁还原和磷动力学的分区,黄海

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摘要

We investigated sediment geochemistry, partitioning of organic carbon (C-org) oxidation by iron reduction (FeR) and sulfate reduction (SR), and benthic phosphorus (P) release, togetherwith the P speciation in the sediments to elucidate the P dynamics in two contrasting sediments (i.e., estuarine vs. limnetic) separated by a large dyke in the Yeongsan River estuary of the Yellow Sea. In the sediments of the Yeongsan River estuary (St. YE), SR dominated the C-org oxidation pathway, accounting for 81.7% of total anaerobic C-org oxidation. Under the SR-dominated condition, H2S derived from SR reacts quickly with iron oxides to form iron sulfides, which ultimately release the P bound to Fe(III) into the pore water. The enhanced benthic P flux (0.24 mmol m(-2) d(-1)) at the YE site accounted for 80% of the P required for primary production in the water column. In contrast, in the limnetic sediments of the Yeongsan Lake (St. YL), where high levels of CH4 accumulated, most P was bound to Fe and Al, which resulted in a low benthic P flux (0.03 mmol m(-2) d(-1)). The results suggest that the frequent discharge of relatively P-depleted freshwater into the estuary via the artificial dyke may result in relatively P-limiting conditions in estuarine ecosystems. As a result, benthic P release from the SR-dominated estuarine sediment is a significant internal source of P in the coastal ecosystem. Our results indicate that the construction of a large dyke at a river mouth greatly alters C-org oxidation pathways and P dynamics in coastal ecosystems. (c) 2019 Elsevier B.V. All rights reserved.
机译:我们调查了沉积物地球化学,通过铁还原(FER)和硫酸铁还原(SR)和硫酸磷(SR)氧化分配,以及底磷(P)释放,在沉积物中的P形态释放,以阐明两个动态对比沉积物(即,偏卤素与紫色)在黄海涌山河口的大堤坝中分开。在云杉河口(St. Ye)的沉积物中,SR占据了C-org氧化途径,占总厌氧C-氧化菌氧化的81.7%。在SR标准的条件下,衍生自Sr的H 2 S用氧化铁迅速反应以形成硫化铁,这最终将P与Fe(III)结合到孔水中。 YE位点的增强型底栖P通量(0.24mmol M(-2)d(-1))占水柱中初级生产所需的P的80%。相比之下,在云山湖(St. Y1)的紫色沉积物中,其中累积的高水平CH4,大多数P与Fe和Al结合,导致低底菌P通量(0.03mmol m(-2)d (-1))。结果表明,通过人工堤症频繁地将相对p耗尽的淡水进入河口中的河口可能导致河口生态系统中的相对p限制性条件。结果,来自SR主导的河沉积物的Benthic P释放是沿海生态系统中P的重要内部来源。我们的结果表明,在河口的大型堤坝的构建极大地改变了沿海生态系统的C-Org氧化途径和P动力学。 (c)2019 Elsevier B.v.保留所有权利。

著录项

  • 来源
    《The Science of the Total Environment》 |2019年第may15期|752-761|共10页
  • 作者单位

    Hanyang Univ Dept Marine Sci & Convergence Technol 55 Hanyangdaehak Ro Ansan 15588 Gyeonggi Do South Korea;

    Hanyang Univ Dept Marine Sci & Convergence Technol 55 Hanyangdaehak Ro Ansan 15588 Gyeonggi Do South Korea;

    Hanyang Univ Dept Marine Sci & Convergence Technol 55 Hanyangdaehak Ro Ansan 15588 Gyeonggi Do South Korea|Korea Inst Ocean Sci & Technol Marine Environm Res Ctr 385 Haeyang Ro Busan Metropolitan City 49111 South Korea;

    GeoSyst Res Corp Inst Res & Dev Gunpo 15807 South Korea;

    Hanyang Univ Dept Marine Sci & Convergence Technol 55 Hanyangdaehak Ro Ansan 15588 Gyeonggi Do South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    P dynamics; Sulfate reduction; Iron reduction; Benthic P flux; Benthic-pelagic coupling; Yeongsan River dyke;

    机译:p动力学;硫酸盐减少;铁减少;底栖Pelagic耦合;云山河堤;

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