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Kinetics of phosphorus release from sediments and its relationship with iron speciation influenced by the mussel (Corbicula fluminea) bioturbation

机译:贻贝(Corbicula fluminea)生物扰动影响沉积物释放磷的动力学及其与铁形态的关系

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摘要

The effects of bivalve (Corbicula fluminea) bioturbation on the lability of phosphorus (P) in sediments were investigated. The high-resolution dialysis (HR-Peeper) and diffusive gradients in thin films (DGT) techniques were employed to obtain soluble and labile P/Fe profiles at a vertical resolution of 2 and 1 mm, respectively. The bivalve bioturbation increased the concentrations of soluble reactive P (SRP) in pore water and DGT-labile P up to 116% and 833% of the control within the sediment depths from the sediment water interface (SWI) to - 64 mm and -44 mm, respectively. The sediments with bioturbation had a smaller distribution coefficient than the control (1964 vs. 3010 cm~3 g~(-1)), reflecting a weaker ability in retaining P. Meanwhile, the sediments with bioturbation had a greater ratio of the concentration of DGT-labile P to that of SRP (0.20 vs. 0.03), demonstrating a stronger ability to resupply pore water SRP by the sediment solids when they are affected by the bioturbation. The DGT-induced fluxes in sediments (DIFS) modeling further showed a much shorter response time (277.9 vs. 18,670 s) and a much higher rate (0.192 vs. 0.002 day~(-1)) of the solids in release of P with the bioturbation. Correspondingly, the flux of P to the overlying water from the bioturbation treatment increased up to 157% of the control. The bivalve bioturbation significantly increased the concentrations of soluble Fe(Ⅱ) and DGT-labile Fe up to 84% and 334% of the control from the SWI to - 46 mm, respectively. The SRP and DGT-labile P were highly correlated with respective soluble and DGT-labile Fe. It was concluded that the release of P from the sediments with bioturbation to the pore water and the overlying water was promoted by the reductive dissolution of easily reducible Fe(oxyhydr)oxides due to the depletion of oxygen in the top sediments from bivalve respiration.
机译:研究了双壳类(Corbicula fluminea)生物扰动对沉积物中磷(P)不稳定性的影响。高分辨率透析(HR-Peeper)和薄膜中的扩散梯度(DGT)技术分别用于获得垂直分辨率为2mm和1mm的可溶性和不稳定的P / Fe曲线。在从沉积物水界面(SWI)到-64 mm和-44的沉积深度内,双瓣生物扰动使孔隙水和DGT不稳定P的可溶性反应性P(SRP)浓度增加至对照的116%和833%。毫米。具有生物扰动的沉积物的分配系数比对照组小(1964年比3010 cm〜3 g〜(-1)),反映了其保留P的能力较弱。同时,具有生物扰动的沉积物的P浓度比更大。 DGT对SRP的不稳定P(0.20 vs.0.03),表明当沉积物固体受到生物扰动影响时,它们可以更强地为孔隙水SRP提供补给。 DGT诱导的沉积物通量(DIFS)模型进一步显示了释放P并释放P时固体的响应时间更短(277.9 vs. 18,670 s)和更高的响应速度(0.192 vs.0.002 day〜(-1))。生物扰动。相应地,从生物扰动处理到上覆水中的P通量增加到对照的157%。双瓣生物扰动将可溶性Fe(Ⅱ)和DGT不稳定的Fe浓度从SWI分别提高至对照的84%和334%,分别达到-46 mm。 SRP和DGT不稳定的P与可溶性铁和DGT不稳定的Fe高度相关。结论是,由于双壳类动物呼吸作用使顶部沉积物中的氧气耗尽,易生物还原的Fe(羟基)氧化物还原溶解,促进了生物扰动沉积物中磷向孔隙水和上层水的释放。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第15期|833-840|共8页
  • 作者单位

    College of Hydrology and Water Resources, Hohai University, Nanjing 210098, China,State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 210008, China;

    State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 210008, China;

    College of Hydrology and Water Resources, Hohai University, Nanjing 210098, China;

    State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 210008, China;

    State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 210008, China;

    College of Environmental Science and Engineering, Anhui Normal University, Wuhu 241000, China;

    GIS Centre, Ryan Institute and School of Geography and Archaeology, National University of Ireland, Galway, Ireland;

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

    Bioturbation; Sediment; Phosphorus; Diffusive gradients in thin films; High resolution;

    机译:生物扰动;沉淀;磷;薄膜中的扩散梯度;高分辨率;

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