From macrophyte to algae: Differentiated dominant processes for internal phosphorus release induced by suspended particulate matter deposition

被引:21
作者
Liu, Cheng [1 ]
Du, Yiheng [1 ]
Zhong, Jicheng [1 ]
Zhang, Lei [1 ]
Huang, Wei [1 ]
Han, Chao [1 ]
Chen, Kaining [1 ]
Gu, Xiaozhi [1 ]
机构
[1] Chinese Acad Sci, Nanjing Inst Geog & Limnol, State Key Lab Lake Sci & Environm, 73 East Beijing Rd, Nanjing 210008, Peoples R China
基金
中国国家自然科学基金;
关键词
Suspended particulate matter; Internal phosphorus loading; Macrophyte-dominated area; Algae -dominated area; Sediment -water interface; Lake Taihu; AQUATIC VEGETATION; SHALLOW LAKES; BLACK BLOOMS; LONG-TERM; SEDIMENT; EUTROPHICATION; NITROGEN; DEPTH; DECOMPOSITION; DYNAMICS;
D O I
10.1016/j.watres.2022.119067
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In shallow lakes, eutrophication leads to a shift of the macrophyte-dominated clear state towards an algaedominated turbid state. Phosphorus (P) is a crucial element during this shift and is usually concentrated in the suspended particulate matter (SPM) in water. However, the dominant processes controlling internal P release in the algae- (ADA) and macrophyte-dominated (MDA) areas under the influence of P-concentrated SPM remains unclear. In this study, we conducted monthly field observations of P exchange across the sediment-water interface (SWI) with the deposition of SPM in the ADA and MDA of Lake Taihu. Results revealed that both algae- and macrophyte-originated SPM led to the depletion of oxygen across the SWI during summer and autumn. Redox-sensitive P (Fe-P) and organic P (Org-P) were the dominant mobile P fractions in both areas. High fluxes of P across the SWI were observed in both areas during the summer and autumn. However, the processes controlling P release were quite different. In MDA, P release was mostly controlled by a traditional Fe-P dissolution process influenced by the coupled cycling of iron, sulfur, and P. In the ADA, Org-P control was intensified with the deterioration of algal bloom status, accompanied with the dissolution of Fe-P. Evidence from the current study revealed that the dominant process controlling the internal P release might gradually shift from Fe-P to a coupled process of Fe-P and Org-P with the shift of the macrophyte- to an algae-dominated state in shallow eutrophic lakes. The differentiated processes in the MDA and ADA should be given more attention during future research and management of internal P loadings in eutrophic lakes.
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页数:9
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