References
- Y.C. Jin, J.W. Luo, Y.P. Zhu, L.J. Xin, Z.Y. Diao, B. Chen, W. Wang,
Assessment of effectiveness of wetland conservation in Huihe
National Nature Reserve in Inner Mongolia, Res. Environ. Sci.,
28 (2015) 1424–1429.
- R. Virkkala, R.K. Heikkinen, S. Fronzek, H. Kujala, N. Leikola,
Does the protected area network preserve bird species of
conservation concern in a rapidly changing climate? Biodivers.
Conserv., 22 (2013) 459–482.
- F.C. Guan, C. Yan, Z.W. Liang, Differences of the soil and
vegetation in Phragamites australis community between
enclosed and grazed alkali-salinity wetlands, Wetland Sci., 7
(2009) 47–52.
- M.A. Burford, K. Lorenzen, Modeling nitrogen dynamics in
intensive shrimp ponds: the role of sediment remineralization,
Aquaculture, 229 (2004) 129–145.
- Y.J. Sun, Study on the aerobic decomposition and nutrient
release of cyanobacteria detritus in Dianshan Lake, China
Environ. Sci., 33 (2013) 2047–2052.
- X.R. Wang, Z.Z. Hua, L. Xu, C. Zhao, C.H. Wu, The effects of
the environmental conditions on phosphorus release in lake
sediments, Environ. Chem., 15 (1996) 15–19.
- B. Grüneberg, T. Dadi, C. Lindim, H. Fischer, Effects of nitrogen
and phosphorus load reduction on benthic phosphorus release
in a riverine lake, Biogeochemistry, 123 (2015) 185–202.
- W. Liu, S. Wang, L. Zhang, Z. Ni, H. Zhao, L. Jiao, Phosphorus
release characteristics of sediments in Erhai Lake and their
impact on water quality, Environ. Earth Sci., 74 (2015)
3753–3766.
- Q. Zhou, C.E. Gibson, Y. Zhu, Evaluation of phosphorus
bioavailability in sediments of three contrasting lakes in China
and the UK, Chemosphere, 42 (2001) 221–225.
- W.S. Chen, X.A. Ning, L.I. Ping, G.C. Yin, X.Y. Bai, Environmental
behavior of pollutants in sediments, Water Resour. Protect., 23
(2007) 1–5.
- S.S. Han, T.M. Wen, Phosphorus release and affecting factors
in the sediments of eutrophic water, Chin. J. Ecol., 23 (2004)
98–101.
- R.W. Howarth, G. Billen, D. Swaney, A. Townsend, N. Jaworski,
K. Lajtha, J.A. Downing, R. Elmgren, N. Caraco, T. Jordan,
Regional nitrogen budgets and riverine N and P fluxes for the
drainages to the North Atlantic Ocean: natural and human
influences, Biogeochemistry, 35 (1996) 75–139.
- K. Alef, P. Nannipieri, Methods in Applied Soil Microbiology
and Biochemistry, Academic Press, London, 1995.
- Y.Y. Zhou, J.Q. Li, M. Zhang, Temporal and spatial variations
in kinetics of alkaline phosphatase in sediments of a shallow
Chinese eutrophic lake (Lake Donghu), Water Res., 36 (2002)
2084–2090.
- T. Zhang, X. Wang, X. Jin, Variations of alkaline phosphatase
activity and P fractions in sediments of a shallow Chinese
eutrophic lake (Lake Taihu), Environ. Pollut., 150 (2007)
288–294.
- X.P. Tang, G.L. Huang, Study on classification system for
wetland types in China, Forest Res., 16 (2003) 531–539.
- S.D. Bao, Soil Agricultural Chemistry Analysis, China
Agricultural Press, Beijing, 2008.
- F. Eivazi, M.A. Tabatabai, Phosphatases in soils, Soil Biol.
Biochem., 9 (1977) 167–172.
- X.G. Huang, L. Liu, A theoretical study on physical effects of
hydrodynamic conditions on sediment dynamic release rate, J.
Environ. Protect. Ecol., 13 (2012) 203–210.
- B.M. Das, K. Sobhan, Principles of Geotechnical Engineering,
8th Ed., Cengage Learning, USA, 2012.
- Y. Li, Z.T. Zhang, J.L. Hua, M.L. Huang, C. Zhou, L.X. Ni,
L. Zhu, Impact of discharge velocity ratio of sewage outlet
on sedimentation of suspended solids and resuspension of
sediments in river, J. Hohai Univ. (Natural Sci.), 43 (2015)
189–196.
- S. Newman, P.V. McCormick, J.G. Backus, Phosphatase activity
as an early warning indicator of wetland eutrophication:
problems and prospects, J. Appl. Phycol., 15 (2003) 45–59.
- M. Li, P.H. Wei, G.Q. Wang, J.R. Ni, Study on adsorption
behavior of phosphate by sediments from the Changjiang
Estuary and the Hangzhou Bay, Acta Oceanolog. Sin., 1 (2004)
132–136.
- X.C. Jin, S.R. Wang, H.C. Zhou, X.N. Zhou, J.Z. Chu, Study on
the phosphate sorption of the different particle size fractions in
the sediments from Wuli Lake and Gonghu Lake, Res. Environ.
Sci., 17 (2004) 6–10.
- W. Reichardt, Catalytic mobilization of phosphate in lake water
and by Cyanophyta, Hydrobiologia, 38 (1971) 377–394.
- M. Jansson, H. Olsson, K. Pettersson, Phosphatases; origin,
characteristics and function in lakes, Hydrobiologia, 170 (1988)
157–175.
- D.R.S. Lean, Phosphorus dynamics in lake water, Science, 179
(1973) 678–680.
- D. Degobbis, E. Homme-Maslowska, A.A. Orio, R. Donazzolo,
B. Pavoni, The role of alkaline phosphatase in the sediments
of Venice Lagoon on nutrient regeneration, Estuarine Coastal
Shelf Sci., 22 (1986) 425–437.
- T.X. Zhang, X.R. Wang, X.C. Jin, Vertical variation of alkaline
phosphatase activity and phosphorus forms in the Taihu Lake
sediment and the relationship between them, J. Agro-Environ.
Sci., 26 (2007) 1207–1213.
- C. Liu, J. Lu, H. Li, Landward changes of soil enzyme activities
in a tidal flat wetland of the Yangtze River Estuary and
correlations with physico-chemical factors, Acta Ecol. Sin., 27
(2007) 3663–3669.
- Y. Zhou, J. Li, X. Chen, Activity, kinetics and spatial variation
of dissolved alkaline phosphatase in Lake Donghu, Chin. J.
Environ., 18 (1997) 37–40.
- Y.Y. Zhou, Y.Q. Fu, Phosphatases in natural water: origin,
characteristics and ecological significance, J. Lake Selencer, 11
(1999) 274–282.
- V.J. Allison, L.M. Condron, D.A. Peltzer, S.J. Richardson,
B.L. Turner, Changes in enzyme activities and soil microbial
community composition along carbon and nutrient gradients
at the Franz Josef chronosequence, New Zealand, Soil Biol.
Biochem., 39 (2007) 1770–1781.
- S.K. Singh, S.S. Singh, V.D. Pandey, A.K. Mishra, Factors
modulating alkaline phosphatase activity in the diazotrophic
rice-field cyanobacterium, Anabaena oryzae, World J. Microb.
Biotech., 22 (2006) 927–935.
- Z.J. Zhang, Z. De Wang, H. Joseph, X.H. Xu, H. Wang, J.H. Ruan,
X. Xu, The release of phosphorus from sediment into water
in subtropical wetlands: a warming microcosm experiment,
Hydrol. Processes, 26 (2012) 15–26.
- J. Sardans, J. Peñuelas, M. Estiarte, Warming and drought
alter soil phosphatase activity and soil P availability in a
Mediterranean shrubland, Plant Soil, 289 (2006) 227–238.
- N.B. Dise, Peatland response to global change, Science, 326
(2009) 810–811.