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Updated: Sep 17, 2026

Laboratory-determined Phosphorus Flux from Lake Sediments as a Measure of Internal Phosphorus Loading
Published on: March 6, 2014
Endogenous phosphorus release risks and functional pathway responses: a comparative study on plateau and plain
Wei Huang1, Lan Zhang1, Xueying Wang1
1College of Environmental Science and Engineering, Donghua University, Shanghai, 201620, China.
Abstract:
The regional characteristics of plateau and plain lakes are critical factors influencing endogenous phosphorus (P) release from sediments. This study focuses on two representative lakes: a plateau lake (YamdrokTso Lake) and a plain lake (Taihu Lake), to investigate differences in P release characteristics, risks, and fraction contributions in sediments between these two systems. The results showed that the sediments from the plateau lake (Sau) exhibited a higher P sorption capacity (2.24 mg g-1), with sediments in all regions acting as P sinks. In contrast, most sediments from the plain lake (Sin) functioned as P sources, with a few regions acting as P sinks. The mean value of P release risk index (ERI) of Sau was 30.10%, while the maximum ERI of Sin reached 86.80%, indicating lower P release risk in Sau and higher risk in Sin. Further analysis of P form contributions to overlying water across long-time (bottom sediment) and short-time (surface sediment) gradients revealed that in Sin, all P fractions in both bottom and surface sediments significantly contributed to P concentration in overlying water, NaOH-P being the dominant contributor. In Sau, organic P (OP) and HCl-P from surface sediment contributed moderately to P concentrations in overlying water, while HCl-P emerged as the primary contributor over the long-time gradient. Function prediction results showed that the activities of key pathways related to P activation, such as "inositol phosphate metabolism" and "phospholipase D signaling pathway", were suppressed in plateau sediments yet strongly enriched in plain lake sediments. This study links sediment P source-sink behaviors to microbial functional traits across plateau and plain lakes, providing theoretical support for regional endogenous lake pollution control.
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