Submerged macrophytes successfully restored a subtropical aquacultural lake by controlling its internal phosphorus loading

水生植物 富营养化 环境科学 沉积物 水生植物 薄膜中的扩散梯度 水文学(农业) 亚热带 环境化学 化学 生物 渔业 生态学 有机化学
作者
Yan Li,Ligong Wang,Chuanxin Chao,Hongwei Yu,Dan Yu,Chunhua Liu
出处
期刊:Environmental Pollution [Elsevier]
卷期号:268: 115949-115949 被引量:26
标识
DOI:10.1016/j.envpol.2020.115949
摘要

Abstract Intensive aquaculture has largely changed the global phosphorus (P) flow and become one of the main reasons for the eutrophication of global aquatic ecosystem. Artificial planting submerged macrophytes has attracted enormous interest regarding the restoration of eutrophic lakes. However, few large-scale (>80 km2) studies have focused on the restoration of aquatic vegetation in the subtropical lakes, and the mechanism underlying the restrain of sediment P release by macrophytes remains unknown. In this study, field surveys and the diffusive gradients in thin films (DGT) technique were used to elucidate the effects of macrophytes on internal P loading control in a typical eutrophic aquacultural lake. Results showed that half of the P content in overlying water and sediments, particularly dissolved P in overlying water and calcium bound P (Ca–P) in sediment, were removed after restoration. Temperature, as well as dissolved oxygen (DO) and P concentration gradients near the sediment-water interface (SWI) jointly controlled the release of labile P from surface sediments. Submerged macrophytes can effectively inhibit the release of sediment P into the overlying water, which depended on DO concentration in the bottom water. Future restoration projects should focus on the temperature response of submerged macrophytes of different growth forms (especially canopy-forming species) to avoid undesirable restoration effects. Our results complement existing knowledge about submerged macrophytes repairing subtropical P-contaminated lakes and have positive significance for lake restoration by in situ phytoremediation.
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