References
- S.Y. Lu, M.S. Xu, X.C. Jin, G.Z. Huang, W. Hu, Pollution
characteristics and evaluation of nitrogen, phosphorus and
organic matter in surface sediment of Lake Changshouhu
in Chongqing, China, Environ. Sci., 33 (2012) 393–398.
- G.C. Holdren, D.E. Armstrong, Factors affecting phosphorus
release from intact lake sediment cores, Environ. Sci.
Technol., 14 (1980) 79–87.
- X. Jin, N. Rong, W. Zhang, X. Meng, B. Shan, Bioavailability
of organic phosphorus in an eutrophic lake: insights from an
in-situ experiment, Ecol. Indic., 107 (2019) 105622.
- X.K. Ku, J.Z. Lin, Fiber orientation distributions in slit channel
flow with abrupt expansion for fiber suspensions, J. Hydrodyn.,
20 (2008) 696–705.
- W.S. Andrew, D.G. Courtney, D.F.I. Peter, Y.Y. Xu, P. Zachary,
K. Gregory, Dynamic coupling of iron, manganese, and
phosphorus behavior in water and sediment of shallow icecovered
Eutrophic Lakes, Environ. Sci. Technol., 49 (2015)
9758–9767.
- E. Rydin, Potentially mobile phosphorus in Lake Erken
sediment, Water Res., 34 (2000) 2037–2042.
- J. Li, C.Q. Liu, Z. Zhu, Historical eutrophication in Lake
Taihu: evidence from biogenic silica and total phosphorus
accumulation in sediments from northern part of Lake Taihu,
Environ. Geol., 55 (2008) 1493–1500.
- A.J.C. Sinke, A.A. Cornelese, P. Keizer, O.F.R.V. Tongeren,
T.E. Cappenberg, Mineralization, pore water chemistry and
phosphorus release from peaty sediments in the eutrophic
Loosdrecht lakes, The Netherlands, Freshwater Biol., 23 (2006)
587–599.
- E. Sara, R. Kasper, A. Frede, R.F. Mogens, Chemical lake
restoration products: sediment stability and phosphorus
dynamics, Environ. Sci. Technol., 44 (2010) 985–991.
- State Environmental Protection Administration (SEPA) of
China, Monitor and Analysis Method of Water and Wastewater,
Chinese Environmental Science Publishing House, Beijing,
ISBN 7-80163-400-4, 2002, pp. 10–14.
- Y.A. Pan, P. Lei, H. Zhang, B.Q. Shan, L.I. Jie, Distribution of
nitrogen and phosphorus in the sediments and estimation
of the nutrients fluxes in Longjinghu Lake, Chongqing City,
during the initial impoundment period, Environ. Sci., 35 (2014)
1727–1734.
- D.C. Riberio, G. Martins, R. Nogueira, J.V. Cruz, A.G. Brito,
Phosphorus fractionation in volcanic lake sediments(Azores-
Portugal), Chemosphere, 70 (2008) 1256–1263.
- G. Xu, Z. Sun, W. Fang, J. Liu, X. Xu, C. Lv, Release of phosphorus
from sediments under wave-induced liquefaction, Water Res.,
144 (2018) 503–511.
- V. Ruban, Harmonized protocol and centified reference
material for the determination of extractable contents of
phosphorus in freshwater sediments-a synthesis of recent
works, Fresenius J. Anal. Chem., 370 (2001) 224–228.
- J. Ji, Y. Peng, B. Wang, X. Li, Q. Zhang, A novel SNPR process for
advanced nitrogen and phosphorus removal from mainstream
wastewater based on anammox, endogenous partial-denitrification
and denitrifying dephosphatation, Water Res., 170 (2020)
115363.
- S.Y. Wang, S.P. Hao, P. Wang, Z.F. Xie, L.V. Chen, Experiment
on Sediment of Meiliang Bay under Simulative Disturbing
Conditions, Environ. Sci. Technol., 33 (2010) 1–5.
- Y. Xiong, K.L. Wang, Eco-compensation effects of the wetland
recovery in Dongting Lake area, J. Geogr. Sci., 20 (2010)
389–405.
- J.B. Sumner, A method for the colorimetric determination
of phosphorus, Science, 100 (1944) 413–414.
- Z. He, C.W. Honeycutt, A modified molybdenum blue method
for orthophosphate determination suitable for investigating
enzymatic hydrolysis of organic phosphates, Commun.
Soil Sci. Plant Anal., 36 (2005) 1373–1383.
- V. Ruban, S. Brigault, D. Demare, An investigation of the origin
and mobility of phosphorus in freshwater sediments from
Bort-Les-Orgues Reservoir, France, J. Environ. Monit., 1 (1999)
403–407.
- L.H. Kim, C. Euiso, G. Kyung-Ik, K.S. Michael, Phosphorus
release rates from sediments and pollutant characteristics in
Han River, Seoul, Korea, Sci. Total Environ., 321 (2004) 115–125.
- C.J.F. ter Braak, P. Šmilauer, Cancoco Reference Manual and
CanoDraw for Windows User’s Guide: Software for Canonical
Community Ordination (version4.5), Microcomputer Power,
Ithaca, NY, 2002, pp. 500.
- L.H. Kim, E. Choi, M.K. Stenstrom, Sediment characteristics,
phosphorus types and phosphorus release rates between
river and lake sediments, Chemosphere, 50 (2003) 53–61.
- H.X. Chen, P.P.G. Dyke, Multivariable time series sediment
dynamical model and its identification in Rufiji Delta,
Tanzania, Appl. Math. Modell., 20 (1996) 758–765.
- S. Wang, G.H. Huang, L. He, Development of a clusterwiselinear-
regression-based forecasting system for characterizing
DNAPL dissolution behaviors in porous media, Sci. Total
Environ., 433 (2012) 141–150.
- Y. Liu, H. Guo, P. Yang, Exploring the influence of lake water
chemistry on chlorophyll a: a multivariate statistical model
analysis, Ecol. Modell., 221 (2010) 681–688.
- A. Fytianos, A. Kotzakioti, Sequential fractionation of
phosphorus in lake sediments of north Greece, Environ.
Monit. Assess., 100 (2005) 191–200.
- B.M. Spears, S. Meis, A. Anderson, M. Kellou, Comparison of
phosphorus (P) removal properties of materials proposed for
the control of sediment P release in UK lakes, Sci. Total Environ.,
442 (2013) 103–110.
- M. Dittrich, A. Chesnyuk, A. Gudimov, Phosphorus retention in
a mesotrophic lake under transient loading conditions: insights
from a sediment phosphorus binding form study, Water Res.,
47 (2013) 1433–1447.
- M. Ostrofsky, Differential post-depositional mobility of
phosphorus species in lake sediments, J. Paleolimnol., 48 (2012)
559–569.
- K. Lukkari, H. Hartikainen, M. Leivuori, Fractionation of
sediment phosphorus revisited. I: fractionation steps and their
biogeochemical basis, Limnol. Oceanogr., 5 (2007) 433–444.
- K.M. Katarzyna, G. Ryszard, D. Martyna, Spatial and seasonal
changes of phosphorus internal loading in two lakes with
different trophy, Ecol. Eng., 74 (2015) 187–195.
- X. Chuai, W. Ding, X. Chen, X. Wang, A. Miao, Phosphorus
release from cyanobacterial blooms in Meiliang Bay of Lake
Taihu, China, Ecol. Eng., 37 (2011) 842–849.
- H. Lu, J. Wan, J. Li, H. Shao, Y. Wu, Periphytic biofilm: a buffer
for phosphorus precipitation and release between sediments
and water, Chemosphere, 144 (2015) 2058–2064.
- X. Jiang, X.C. Jin, Y. Yao, L. Li, F.C. Wu, Effects of biological
activity, light, temperature and oxygenon phosphorus release
processes at the sediment and water interface of Taihu Lake,
China, Water Res., 42 (2008) 2251–2259.
- S.R. Wang, X.C. Jin, H.C. Zhao, F.C. Wu, Phosphorus release
characteristics of different trophic lake sediments under
simulative disturbing conditions, J. Hazard. Mater., 161 (2009)
1551–1559.
- Y.Z. Li, B.C. Xia, J.Y. Zhang, C.H. Li, W.Z. Zhu, Assessing high
resolution oxidation-reduction potential and soluble reactive
phosphorus variation across vertical sediments and water
layers in Xinghu Lake: a novel laboratory approach, J. Environ.
Sci., 22 (2010) 982–990.
- E. Gomez, C. Durillon, G. Rofes, B. Picot, Phosphate adsorption
and release from sediments of brackish lagoons: pH, O2 and
loading influence, Water Res., 33 (1999) 2437–2447.
- S.R. Wang, X.C. Jin, Q.Y. Bu, X.N. Zhou, F.C. Wu, Effects of
partiele size, organic matter and ionic strength on the PhosPhate
sorption in different tro Phie lake sediments, J. Hazard. Mater.,
128 (2006) 95–105.
- X. Jin, S. Wang, Y. Pang, F.C. Wu, Phosphorus fractions and the
effect of pH on the phosphorus release of the sediments from
different trophic areas in Taihu Lake, China, Environ. Pollut.,
139 (2006) 288–295.
- L. Goa, Phosphorus release from the sediments in Rongcheng
Swan lake under different pH conditions, Procedia Environ.
Sci., 13 (2012) 2077–2084.
- W. Xue, S.Y. Lu, Effects of inactivation agents and temperature
on phosphorus release from sediment in Dianchi Lake, China,
Environ. Earth Sci., 8 (2014) 1–9.
- M.H. Bates, N.J.E. Neafus, Phosphorus release from sediments
from Lake Carl Blackwell, Oklahoma, Water Res., 14 (1980)
1477–1481.
- S. Pulatsu, A. Topcu, Seasonal and vertical distributions of
porewater phosphorus and iron concentrations in a macrophytedominated
eutrophic lake, J. Environ. Biol., 30 (2009) 801–806.
- D.R. Smith, E.A. Warnemuende, B.E. Haggard, C. Huang,
Changes in sediment-water column phosphorus interactions
following sediment disturbance, Ecol. Eng., 27 (2006) 71–78.
- H.Q. Sun, P. Wang, H.L. Jiang, Behavior of phosphorus in
interface of sediment-overlying water in Taihu Lake under
different simulative conditions, Environ. Sci. Technol., 35 (2012)
141–146 (in Chinese).
- H.Y. Lu, J.Z. Chen, Y.D. Li, Y.M. Fang, Migration and
transformation of phosphorus among the three-phase system:
sediments-periphyton biofilm-overlying water, J. Lake Sci.,
26 (2014) 497–504.
- A. Moore, K.R. Reddy, Role of Eh and pH on phosphorus
geochemistry in sediments of Lake Okeechobee, Florida,
J. Environ. Qual., 23 (1994) 955–964.
- F.J. J-Peryer, J.M. Abell, D. Clarke, Spatial variability in sediment
phosphorus characteristics along a hydrological gradient
upstream of Lake Rotorua, New Zealand, Environ. Earth Sci.,
73 (2015) 1–13.
- E.A.A. Heety, A.M. Turky, E.M.A. Othman, Physico-chemical
assessment of Euphrates River between Heet and Ramadi cities,
Iraq, J. Water Resour. Protect., 3 (2011) 812–823.
- R.A. Jones, G.F. Lee, Recent advances in assessing impact of
phosphorus loads on eutrophication-related water quality,
Water Res., 16 (1982) 503–515.
- J.M. Malmaeus, L. Hakanson, Development of a lake
eutrophication model, Ecol. Modell., 171 (2004) 35–63.
- Z. Xu, C. Yu, H. Sun, Z. Yang, The response of sediment
phosphorus retention and release to reservoir operations:
numerical simulation and surrogate model development,
J. Cleaner Prod., 271 (2020) 122688.
- J. Pu, Z. Ni, S. Wang, Characteristics of bioavailable phosphorus
in sediment and potential environmental risks in Poyang
Lake: the largest freshwater lake in China, Ecol. Indic.,
115 (2020) 106409.
- C. Woolston, Papers predict future lab heads, Nature, 510 (2014)
191–191.
- F. Wang, X. Wang, B. Chen, Y. Zhao, Z. Yang, Chlorophyll a
simulation in a lake ecosystem using a model with wavelet
analysis and artificial neural network, Environ. Manage.,
51 (2013) 1044–1054.