Organic P transformations and release from riparian soils responding to water level fluctuation

被引:0
作者
Haoran Sun
Shuangju Zhao
Diga Gang
Weixiao Qi
Huijuan Liu
机构
[1] Tsinghua University,Center for Water and Ecology, State Key Joint Laboratory of Environment Simulation and Pollution Control, School of Environment
[2] Research Center for Eco-Environmental Sciences,Key Laboratory of Drinking Water Science and Technology
[3] Chinese Academy of Sciences,School of Environment
[4] Northeast Normal University,undefined
[5] Tsinghua University,undefined
[6] Haidian District,undefined
来源
Environmental Monitoring and Assessment | 2021年 / 193卷
关键词
Riparian zone; Organic phosphorus; Absorption; Transformation; Release;
D O I
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中图分类号
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摘要
To manage eutrophication of reservoirs, it is important to consider the potential for unexpected releases of organic phosphorus (OP) from areas around the reservoir where the water level fluctuates. In this study, we investigated the absorption and release of OP from a riparian soil/sediment from the Miyun Reservoir under fluctuating water levels using laboratory simulations. The total organic phosphorus (TOP) content in the soils/sediments ranged from 250.76 to 298.62 mg/kg, which accounted for between 5.6 and 38.5% of the total phosphorus (TP) content. We measured three OP fractions and found that the concentration of moderately labile OP (MLOP) was the highest, followed by labile OP (LOP), and the concentration of non-labile OP (NLOP) was the lowest. As the soils and sediments dried, they adsorbed phosphorus (P). The inorganic phosphorus (IP) contents were significantly and negatively correlated with the LOP and MLOP contents, indicating exchange between IP with these two fractions when the concentrations of bioavailable phosphorus in the soil are low. During flooding, the physicochemical properties varied at the sediment–water interface, inducing the release of Fe/Al-P. Some of the LOP and MLOP in the sediments were mineralized to IP. Our results suggest that when there are external P inputs, P may be released when sediments around a reservoir are subjected to wetting and drying as water levels fluctuate, which may cause P enrichment in reservoirs, especially in areas with poor water exchange.
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[1]  
Ahlgren J(2011)Release of organic P forms from lake sediments Water Research 45 565-572
[2]  
Reitzel K(2006)Degradation of organic phosphorus compounds in anoxic baltic sea sediments: A31P nuclear magnetic resonance study Limnology and Oceanography 51 2341-2348
[3]  
Brabandere HD(1996)Effects of exposure to air and subsequent drying on the phosphate sorption characteristics of sediments from a eutrophic reservoir Limnology & Oceanography 41 1725-1732
[4]  
Gogoll A(2006)Surface properties of sediments from two Argentinean reservoirs and the rate of phosphate release Water Research 40 2659-2666
[5]  
Rydin E(1988)Exchange of phosphorus across the sediment-water interface Hydrobiologia 170 229-244
[6]  
Ahlgren J(2018)Mechanisms driving phosphorus release during algal blooms based on hourly changes in iron and phosphorus concentrations in sediments Water Research 133 153-1001
[7]  
Reitzel K(2019)The effect of hydrodynamic forces of drying/wetting cycles on the release of soluble reactive phosphorus from sediment Environmental Pollution 252 992-1141
[8]  
Tranvik L(1992)Temperature dependence of net nitrogen and sulfur mineralization Soil Science Society of America Journal 56 1133-20782
[9]  
Rydin GE(2016)Comprehensive assessment of seldom monitored trace elements pollution in the riparian soils of the Miyun Reservoir China. Environmental Science and Pollution Research 23 20772-207
[10]  
Baldwin DS(1999)Allocation of phosphorus in a tropical savanna Chemosphere 39 199-45