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.
Environ Pollut. 2021 Aug 15;283:117104. doi: 10.1016/j.envpol.2021.117104. Epub 2021 Apr 10.
Lake eutrophication and algal blooms may result in the mortality of macrozoobenthos. However, it is still not clear how macrozoobenthos decomposition affect phosphorus (P) mobility in sediments. High-resolution dialysis (HR-Peeper) and the diffusive gradients in thin films (DGT) technique were used in this study to assess the dissolved organic matter (DOM), dissolved/DGT-labile iron (Fe), P, and sulfur (S(-II)) profiles at a millimeter resolution. The decomposition of Bellamya aeruginosa significantly increased the internal loading of sediments P. The Fe(III) and sulfate were reduced under anaerobic conditions and promoted P desorption from sediments. This was supported by the significant increase in DGT-labile S(-II) and dissolved/DGT-labile P, Fe(II) and the significant positive correlation between Fe and P on day 8. The simultaneous increase in DOM and soluble reactive phosphorus (SRP) and the significant positive relationship between these factors were observed during the decomposition of B. aeruginosa. This suggested that complexation of DOM with metals may promotes the release of P from sediments.
湖泊富营养化和藻类大量繁殖可能导致大型底栖动物死亡。然而,大型底栖动物分解如何影响沉积物中磷(P)的迁移仍然不清楚。本研究采用高分辨率透析(HR-Peeper)和薄膜扩散梯度(DGT)技术,以毫米分辨率评估溶解有机质(DOM)、溶解/DGT 不稳定铁(Fe)、P 和硫(S(-II))的分布。铜锈环棱螺(Bellamya aeruginosa)的分解显著增加了沉积物内部的 P 负荷。在厌氧条件下,Fe(III)和硫酸盐减少,促进了 P 从沉积物中解吸。这得到了 DGT 不稳定 S(-II)和溶解/DGT 不稳定 P、Fe(II)的显著增加以及第 8 天 Fe 和 P 之间显著正相关的支持。在铜锈环棱螺分解过程中,观察到 DOM 和可溶性反应磷(SRP)的同时增加,以及这些因素之间的显著正相关关系。这表明 DOM 与金属的络合可能促进了 P 从沉积物中的释放。