Release of Endogenous Nutrients Drives the Transformation of Nitrogen and Phosphorous in the Shallow Plateau of Lake Jian in Southwestern China
Abstract
:1. Introduction
2. Materials and Methods
2.1. Overview of Lake Jian
2.2. Sampling and Detecting
2.3. Statistical Analysis
3. Results and Discussion
3.1. Nutrient Level and Water Quality of Lake Jian
3.2. Spatial Distribution of Environmental Parameters in Surface Sediments
3.3. Source of Sedimentary OM and N
3.4. Exogenous Pollution due to N and P
3.5. Endogenous Load and Different Forms of Nutrient Elements Pollutants
3.6. Transformation of N/P-Limitation Driven by Endogenous Pollution
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Reitzel, K.; Ahlgren, J.; Gogoll, A.; Rydin, E. Effects of aluminum treatment on phosphorus, carbon, and nitrogen distribution in lake sediment: A 31P NMR study. Water Res. 2006, 40, 647–654. [Google Scholar] [CrossRef] [PubMed]
- Hai, X.; Paerl, H.W.; Qin, B.; Zhu, G.; Gao, G. Nitrogen and Phosphorus Inputs Control Phytoplankton Growth in Eutrophic Lake Taihu, China. Limnol. Oceanogr. 2010, 55, 420–432. [Google Scholar] [CrossRef]
- Qin, B.; Zhou, J.; Elser, J.J.; Gardner, W.S.; Deng, J.; Brookes, J.D. Water Depth Underpins the Relative Roles and Fates of Nitrogen and Phosphorus in Lakes. Environ. Sci. Technol. 2020, 54, 3191–3198. [Google Scholar] [CrossRef] [PubMed]
- Ma, J.; Qin, B.; Wu, P.; Zhou, J.; Niu, C.; Deng, J.; Niu, H. Controlling cyanobacterial blooms by managing nutrient ratio and limitation in a large hyper-eutrophic lake: Lake Taihu, China. J. Environ. Sci. 2015, 27, 80–86. [Google Scholar] [CrossRef] [PubMed]
- Qin, B.Q. The nutrient forms, cycling and exchange flux in the sediment and overlying water system in lakes from the middle and lower reaches of Yangtze River. Sci. China Ser. D Earth Sci. 2006, 49, 1–13. [Google Scholar] [CrossRef]
- Zhan, Q.; Stratmann, C.N.; Geest, H.G.V.D.; Veraart, A.J.; Brenzinger, K.; Lürling, M.; Domis, L.N.D.S. Effectiveness of phosphorus control under extreme heatwaves: Implications for sediment nutrient releases and greenhouse gas emissions. Biogeochemistry 2021, 156, 421–436. (In English) [Google Scholar] [CrossRef]
- Chen, X.; Wang, Y.; Sun, T.; Huang, Y.; Chen, Y.; Zhang, M.; Ye, C. Effects of Sediment Dredging on Nutrient Release and Eutrophication in the Gate-Controlled Estuary of Northern Taihu Lake. J. Chem. 2021, 2021, 1–13. (In English) [Google Scholar] [CrossRef]
- Lee, J.K.; Oh, J.M. A Study on the Characteristics of Organic Matter and Nutrients Released from Sediments into Agricultural Reservoirs. Water 2018, 10, 980. (In English) [Google Scholar] [CrossRef]
- Grygar, T.M.; Nováková, T.; Bábek, O.; Elznicová, J.; Vadinová, N. Robust assessment of moderate heavy metal contamination levels in floodplain sediments: A case study on the Jizera River, Czech Republic. Sci. Total Environ. 2013, 452, 233–245. [Google Scholar] [CrossRef]
- Grygar, T.M.; Elznicová, J.; Tůmová, Š.; Faměra, M.; Balogh, M.; Kiss, T. Floodplain architecture of an actively meandering river (the Ploučnice River, the Czech Republic) as revealed by the distribution ofpollution and electrical resistivity tomography. Geomorphology 2016, 254, 41–56. [Google Scholar] [CrossRef]
- Duan, L.; Zhang, H.; Chang, F.; Li, D.; Liu, Q.; Zhang, X.; Liu, F.; Zhang, Y. Isotopic constraints on sources of organic matter in surface sediments from two north–south oriented lakes of the Yunnan Plateau, Southwest China. J. Soils Sediments 2022, 22, 1597–1608. [Google Scholar] [CrossRef]
- Yuan, H.Z.; Shen, J.; Liu, E.F.; Wang, J.J.; Meng, X.H. Assessment of nutrients and heavy metals enrichment in surface sediments from Taihu Lake, a eutrophic shallow lake in China. Environ. Geochem. Health 2011, 33, 67–81. [Google Scholar] [CrossRef]
- Chen, G.Z.; Jin, J.J.; Zhang, F.F.; Qiu, Y.P.; Li, Z.H. Fish diversity change and fauna evolution in Jianhu Lake, Yunnan, China. Chin. J. Ecol. 2018, 37, 3691–3700. (In Chinese) [Google Scholar] [CrossRef]
- Zhang, Q.; Peng, E.R.; Zhao, Q.Q.; Shi, J. Research Progress of Jianhu Wetland in Northwest Yunnan. Environ. Sci. Surv. 2019, 38, 30–35. (In Chinese) [Google Scholar] [CrossRef]
- Guo, Y.; Wang, Y.; Zheng, Y.; Liu, Y.; Wen, G.; Zhan, P. Temporal and spatial evolution of landscapes in Jianhu Lake Basin of northwestern Yunnan Province. J. Zhejiang A F Univ. 2018, 35, 695–704. (In Chinese) [Google Scholar] [CrossRef]
- Liu, S.; Chen, G.J.; Wang, J.Y.; Deng, Y. Diatom community response to long-term enviromental changes and ecological evaluation in Jianhu Lake, northwest Yunnan. Quat. Sci. 2018, 38, 939–952. (In Chinese) [Google Scholar]
- Guo, Y.; Zheng, Y.; Wang, Y.; Liu, Y. Evolution of Jianhu Lake and its eco-environmental effects in the northwestern Yunnan Province. Environ. Eng. 2017, 4, 105–112. (In Chinese) [Google Scholar] [CrossRef]
- Yang, R.; Wu, D.; Li, Z.; Yuan, Z.; Niu, L.; Zhang, H.; Chen, J.; Zhou, A. Holocene-Anthropocene transition in northwestern Yunnan revealed by records of soil erosion and trace metal pollution from the sediments of Lake Jian, southwestern China. J. Paleolimnol. 2021, 68, 91–102. (In English) [Google Scholar] [CrossRef]
- Li, B.; Wang, H.; Yu, Q.G.; Wei, F.; Zhang, Q. Ecological Assessment of Heavy Metals in Sediments from Jianhu Lake in Yunnan Province, China. Pol. J. Environ. Stud. 2020, 29, 4139–4150. (In English) [Google Scholar] [CrossRef]
- Ouyang, M.; Yu, Q.; Zhao, X.; Li, J.; Li, B.; Wang, J.; Zhang, Y. The distribution characteristics and the risk assessment of organochlorine pesticides in the sediments of Jianhu Lake. Acta Sci. Circumstantiae 2019, 39, 4075–4087. (In Chinese) [Google Scholar] [CrossRef]
- Bábek, O.; Grygar, T.M.; Faměra, M.; Hron, K.; Nováková, T.; Sedláček, J. Geochemical background in polluted river sediments: How to separate the effects of sediment provenance and grain size with statistical rigour? Catena 2015, 135, 240–253. [Google Scholar] [CrossRef]
- Reimann, C.; Garrett, R.G. Geochemical background—Concept and reality. Sci. Total Environ. 2005, 350, 12–27. [Google Scholar] [CrossRef] [PubMed]
- Redfield, A.C. The biological control of chemical factors in the environment. Am. Sci. 1958, 46, 205–221. [Google Scholar] [CrossRef]
- Gregg, P.J.W. Source partitioning using stable isotopes: Coping with too many sources. Oecologia 2003, 136, 261–269. [Google Scholar] [CrossRef]
- Wu, H.; Zhang, H.; Chang, F.; Duan, L.; Zhang, X.; Peng, W.; Liu, Q.; Zhang, Y.; Liu, F. Isotopic constraints on sources of organic matter and environmental change in Lake Yangzong, Southwest China. J. Asian Earth Sci. 2021, 217, 104845–104856. [Google Scholar] [CrossRef]
- He, Z.; Cai, J.; Ni, Z.; Huang, Y.; Zhao, J.; Wang, S. Seasonal characteristics of nitrogen sources from different ways and its contribution to water nitrogen in Lake Erhai. Acta Entiae Circumstantiae 2018, 38, 1939–1948. (In Chinese) [Google Scholar] [CrossRef]
- Hammer, Ø.; Harper, D.; Ryan, P.D. Past: Paleontological statistics software package for education and data analysis. Palaeontol. Electron. 2001, 4, 1–9. [Google Scholar] [CrossRef]
- Guo, Y.; Wang, Y.; Liu, Y.G. The Dynamic Changes and Simulating Prediction of Land Use in Jianhu Lake Basin from 1990 to 2015. J. Southwest For. Univ. Nat. Sci. 2016, 6, 87–93. (In Chinese) [Google Scholar] [CrossRef]
- Sun, X.; Zhu, G.; Luo, L.C. Experimental study on phosphorus release from sediments of shallow lake in wave flume. Sci. China Ser. 2006, 49, 92–101. [Google Scholar] [CrossRef]
- Rudneva, I.I.; Zalevskaya, I.N.; Shaida, V.G.; Memetlaeva, G.N.; Scherba, A.V. Biogenic Migration of Nitrogen and Phosphorus in Crimean Hypersaline Lakes: A Seasonal Aspect. Geochem. Int. 2020, 58, 1123–1134. [Google Scholar] [CrossRef]
- Long, E.R.; Macdonald, D.D.; Smith, S.L.; Calder, F.D. Incidence of adverse biological effects within ranges of chemical concentrations in marine and estuarine sediments. Environ. Manag. 1995, 19, 81–97. [Google Scholar] [CrossRef]
- Xu, C.R. Research on Nitrogen and Phosphorus Release from Sediments in Small Inland Freshwater Lakes. Adv. Mater. Res. 2013, 864, 248–255. [Google Scholar] [CrossRef]
- Wang, Z.; Bao, L.I.; Liang, R. Comparative study on endogenous release of nitrogen and phosphorus in Nansi Lake, China. Acta Sci. Circumstantiae 2013, 33, 487–493. (In Chinese). Available online: https://www.actasc.cn/hjkxxb/ch/reader/view_abstract.aspx?file_no=20120602001&flag=1 (accessed on 14 March 2022).
- Jiang, Y.S.; Xiao-Chen, L.I.; Xing, Y.H.; Jiang, R.X. Impacts of Disturbance on Release of Total Nitrogen and Total Phosphorus from Surficial Sediments of Dongping Lake. Environ. Sci. Technol. 2010, 33, 41–44. [Google Scholar] [CrossRef]
- Bennett, E.M.; Carpenter, S.R.; Caraco, N.F. Human Impact on Erodable Phosphorus and Eutrophication: A Global Perspective. Bioscience 2001, 51, 227–234. [Google Scholar] [CrossRef]
- GaChter, R.; Wehrli, B. Ten Years of Artificial Mixing and Oxygenation: No Effect on the Internal Phosphorus Loading of Two Eutrophic Lakes. Environ. Sci. Technol. 1998, 32, 3659–3665. [Google Scholar] [CrossRef]
- Wu, F.; Zhan, J.Y.; Deng, X.Z.; Lin, Y.Z. Influencing factors of lake eutr0phicati0n in China A case study in 22 lakes in China. Ecol. Environ. Sci. 2012, 21, 94–100. (In Chinese) [Google Scholar] [CrossRef]
- Paerl, H.W. Assessing and managing nutrient-enhanced eutrophication in estuarine and coastal waters: Interactive effects of human and climatic perturbations. Ecol. Eng. 2006, 26, 40–54. [Google Scholar] [CrossRef]
- Heike, K.; Patrick, G.H. Sequestration of organic nitrogen in the sapropel from Mangrove Lake, Bermuda. Org. Geochem. 2001, 32, 733–744. [Google Scholar] [CrossRef]
- Hadas, O.; Altabet, M.A.; Agnihotri, R. Seasonally varying nitrogen isotope biogeochemistry of particulate organic matter in Lake Kinneret, Israel. Limnol. Oceanogr. 2009, 54, 75–85. [Google Scholar] [CrossRef]
- Zhu, H.; Yan, B.; Pan, X.; Yang, Y.; Wang, L. Geochemical characteristics of heavy metals in riparian sediment pore water of Songhua River, Northeast China. Chin. Geogr. Sci. 2011, 21, 195–203. [Google Scholar] [CrossRef]
- Kleeberg, A.; Kozerski, H.P. Phosphorus release in Lake Großer Müggelsee and its implications for lake restoration. Springer Neth. 2021, 119, 9–26. [Google Scholar] [CrossRef]
- Sun, X.J.; Qin, B.Q.; Zhu, G.W.; Zhang, Z.P.; Gao, Y.X. Release of Colloidal N and P from Sediment of Lake Caused by Continuing Hydrodynamic Disturbance. Environ. Sci. 2007, 28, 1223–1232. (In Chinese) [Google Scholar] [CrossRef]
- Wenchao, L.I.; Yin, C.; Chen, K.; Qinglong, W.U.; Pan, J. Discussion on Phosphorous Release from Lake Sediment. J. Lakeence 1999, 11, 296–303. (In Chinese) [Google Scholar] [CrossRef]
- Bloemsma, M.R.; Zabel, M.; Stuut, J.; Tjallingii, R.; Collins, J.A.; Weltje, G.J. Modelling the joint variability of grain size and chemical composition in sediments. Sediment. Geol. 2012, 280, 135–148. [Google Scholar] [CrossRef]
- Correll, D.L. The Role of Phosphorus in the Eutrophication of Receiving Waters: A Review. J. Environ. Qual. 1998, 27, 261–266. [Google Scholar] [CrossRef]
- Bogdanović, D. The role of phosphorus in eutrophication. Zb. Matice Srp. Prir. Nauk. 2006, 111, 75–86. [Google Scholar] [CrossRef]
- Liu, S.; Chen, G.J.; Wang, J.Y. Long-term response model and ecological assessment of diatom community in Jianhu Lake. Quat. Sci. 2018, 38, 939–952. (In Chinese) [Google Scholar]
- Pettersson, K. Mechanisms for internal loading of phosphorus in lakes. Hydrobiologia 1998, 373, 21–25. [Google Scholar] [CrossRef]
- Jones, D.L.; Shannon, D.; Murphy, D.V.; Farrar, J. Role of dissolved organic nitrogen (DON) in soil N cycling in grassland soils. Soil Biol. Biochem. 2004, 36, 749–756. [Google Scholar] [CrossRef]
Environmental Parameters | Range | Environmental Parameters | Range | ||
---|---|---|---|---|---|
TN | Surface water | 0.05~0.99 mg/L | TP | Surface water | 0.003~0.173 mg/L |
Bottom water | 0.09~0.76 mg/L | Bottom water | 0.003~0.140 mg/L | ||
Surface sediment | 2.15~9.55 g/kg | Surface sediment | 0.76~1.74 g/kg | ||
Output river | 1.55 mg/L | Output river | 0.052 mg/L | ||
Rivers and streams | 0.14~2.81 mg/L | Rivers and streams | 0.015~0.428 mg/L | ||
Pre-rivers and streams a | 0.04~1.85 mg/L | Pre-rivers and streams a | 0.020~0.360 mg/L | ||
Pre-surface water b | 0.13~0.56 mg/L | Pre-surface water b | 0.020~0.035 mg/L | ||
Chl-a | Surface water | 16.90~63.68 μg/L | pH | Surface water | 8.34~9.23 |
Bottom water | 12.50~85.73 μg/L | Bottom water | 8.21~9.17 | ||
DO | Surface water | 6.53~10.96 mg/L | EC | Surface water | 250~284 μS/cm |
Bottom water | 1.57~8.87 mg/L | Bottom water | 252~275 μS/cm | ||
OM | Surface sediment | 4.25~21.30% | C/N | Surface sediment | 10.76~16.53 |
δ15N | Surface sediment | 2.45~5.00‰ | δ13C | Surface sediment | −30.08~−24.08‰ |
Clay | Surface sediment | 26.80~72.28% | Silt | Surface sediment | 27.49~67.38% |
Fine-grain size | Surface sediment | 90.32~100% | Sand | Surface sediment | 0~9.68% |
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Zhang, Y.; Chang, F.; Zhang, X.; Li, D.; Liu, Q.; Liu, F.; Zhang, H. Release of Endogenous Nutrients Drives the Transformation of Nitrogen and Phosphorous in the Shallow Plateau of Lake Jian in Southwestern China. Water 2022, 14, 2624. https://doi.org/10.3390/w14172624
Zhang Y, Chang F, Zhang X, Li D, Liu Q, Liu F, Zhang H. Release of Endogenous Nutrients Drives the Transformation of Nitrogen and Phosphorous in the Shallow Plateau of Lake Jian in Southwestern China. Water. 2022; 14(17):2624. https://doi.org/10.3390/w14172624
Chicago/Turabian StyleZhang, Yang, Fengqin Chang, Xiaonan Zhang, Donglin Li, Qi Liu, Fengwen Liu, and Hucai Zhang. 2022. "Release of Endogenous Nutrients Drives the Transformation of Nitrogen and Phosphorous in the Shallow Plateau of Lake Jian in Southwestern China" Water 14, no. 17: 2624. https://doi.org/10.3390/w14172624
APA StyleZhang, Y., Chang, F., Zhang, X., Li, D., Liu, Q., Liu, F., & Zhang, H. (2022). Release of Endogenous Nutrients Drives the Transformation of Nitrogen and Phosphorous in the Shallow Plateau of Lake Jian in Southwestern China. Water, 14(17), 2624. https://doi.org/10.3390/w14172624