References
- J. Grochowska, R. Augustyniak, M. Łopata, K. Parszuto,
R. Tandyrak, A. Płachta, From saprotrophic to clear water
status: the restoration path of a degraded urban lake, Water
Air Soil Pollut., 230 (2019) 1–14, doi: 10.1007/s11270-019-4138-5.
- D.W. Schindler, The dilemma of controlling cultural
eutrophication of lakes, Proc. Biol. Sci., 279 (2012) 4322–4333.
- H. Xu, D.G. Brown, M.R. Moore, W.S. Currie, Optimizing spatial
land management to balance water quality and economic
returns in a Lake Erie watershed, Ecol. Econ., 145 (2018) 104–114.
- D.B. Baker, R. Confesor, D.E. Ewing, L.T. Johnson, J.W. Kramer,
B.J. Merryfield, Phosphorus loading to Lake Erie from the
Maumee, Sandusky and Cuyahoga rivers: the importance of
bioavailability, J. Great Lakes Res., 40 (2014) 502–517.
- Y. Khare, G.M. Naja, G.A. Stainback, C.J. Martinez, R. Paudel,
T. Van Lent, A phased assessment of restoration alternatives
to achieve phosphorus water quality targets for Lake
Okeechobee, Florida, USA, Water, 11 (2019) 1–22, doi: 10.3390/w11020327.
- H. Dugan, K.N. Skaff, J.P. Doubek, S.L. Bartlett, S.M. Burke,
F.E. Krivak-Tetley, J.C. Summers, P.C. Hanson, K.C. Weathers,
Lakes at risk of chloride contamination, Environ. Sci. Technol.,
(2020) 6639–6650, doi: 10.1021/acs.est.9b07718.
- D.K. Jones, B.M. Mattes, W.D. Hitz, M.S. Schuler, A.B. Stoler,
L.A. Lind, R.O. Cooper, R.A. Relyea, Investigation of road
salts and biotic stressors on freshwater wetland communities,
Environ. Pollut., 221 (2017) 159–167.
- R. Augustyniak, The Influence of Physical, Chemical and
Microbiological Factors on the Phosphorus Internal Loading to
the Water of Selected Urban Lakes, Polish Academy of Sciences,
Environmental Engineering Committee Publishing House,
Lublin, 2018 (in Polish).
- D.M. Orihel, H.M. Baulch, N.J. Casson, R.L. North, C.T. Parsons,
D.C.M. Seckar, J.J. Venkiteswaran, Internal phosphorus loading
in Canadian fresh waters: a critical review and data analysis,
Can. J. Fish. Aquat. Sci., 74 (2017) 2005–2029.
- M. Genkai-Kato, S.R. Carpenter, Eutrophication due to phosphorus
recycling in relation lake morphometry, temperature
and macrophytes, Ecology, 86 (2005) 210–219.
- D. Trolle, The Influence of Sediment Nutrient Dynamics on
the Response of Lake Ecosystems to Restoration and Climate
Change, A Doctor’s Thesis, University of Waikato, 2009.
- R. Tandyrak, Evolution of Mictic and Trophic State of Lake
Starodworskie on the Background of Climate and Urbanization,
University of Warmia and Mazury in Olsztyn, 2018 (in Polish).
- G.B. Douglas, D.P. Hamilton, M.S. Robb, G. Pan, B.M. Spears,
M. Lürling, Guiding principles for the development and
application of solid-phase phosphorus adsorbents for
freshwater ecosystems, Aquat. Ecol., 50 (2016) 385–405.
- S. Meis, B. Spears, S.C. Maberly, M.B. O’Malley, R.G. Perkins,
Sediment amendment with Phoslock in Clatto Reservoir
(Dundee, UK): investigating changes in sediment elemental
composition and phosphorus fractionation, J. Environ. Manage.,
93 (2012) 185–193.
- S. Meis, B.M. Spears, S.C. Maberly, R.G. Perkins, Assessing the
mode of action of Phoslock® in the control of phosphorus release
from the bed sediments in a shallow lake (Loch Flemington,
UK), Water Res., 47 (2013) 4460–4473.
- L. Dithmer, U.G. Nielsen, M. Lürling, B. Spears, S. Yasseri,
D. Lundberg, A. Moore, N.D. Jensen, K. Reitzel, Responses
in sediment phosphorus and lanthanum concentrations
and composition across 10 lakes following applications of
lanthanum modified bentonite, Water Res., 97 (2016) 101–110.
- M.G. Zamparas, Development of Physicochemical Methods for
Restoring Eutrophic Water Bodies, PhD Thesis, University of
Patras, Agrinio, 2015.
- M. Lürling, M. Mucci, Mitigating eutrophication nuisance:
In-lake measures are becoming inevitable in eutrophic waters
in the Netherlands, Hydrobiologia, 847 (2020) 4447–4467.
- A. Bańkowska-Sobczak, A. Blazejczyk, E. Eiche, U. Fisher,
Z. Popek, Phosphorus inactivation in lake sediments using
calcite materials and controlled resuspension – mechanisms and
efficiency, Minerals, 10 (2020) 1–28, doi: 10.3390/min10030223.
- J. Lewandowski, I. Schauser, M. Hupfer, Long term effect
of phosphorus precipitations with alum in hypereutrophic
Lake Süsser See (Germany), Water Res., 37 (2003) 3194–3204.
- G.D. Cooke, E.B. Welch, S.A. Peterson, S.A. Nichols, Restoration
and Management of Lakes and Reservoirs, CRC Press,
Taylor&Francis Group, LLC, New York, NY, 2005.
- H. Klapper, Technologies for lake restoration, J. Limnol.,
62 (Suppl. 1) (2003) 73–90.
- R. Augustyniak, J. Grochowska, M. Łopata, K. Parszuto,
R. Tandyrak, J. Tunowski, Sorption properties of the bottom
sediment of a lake restored by phosphorus inactivation method
15 years after the termination of lake restoration procedures,
Water, 11 (2019) 1–20, doi:10.3390/w11102175.
- H. Cyr, S.K. Mc Cabe, G.K. Nürnberg, Phosphorus sorption
experiments and the potential for internal phosphorus
loading in littoral areas of a stratified lake, Water Res.,
43 (2009) 1654–1666.
- L. Huang, L. Fu, C. Jin, G. Gielen, X. Lin, H. Wang, Y. Zhang,
Effect of temperature on phosphorus sorption to sediments
from shallow eutrophic lakes, Ecol. Eng., 37 (2011) 1515–1522.
- P.N. Froelich, Kinetic control of dissolved phosphate in
natural rivers and estuaries: a primer on the phosphate buffer
mechanism, Limnol. Oceanogr., 33 (4 part 2) (1988) 649–668.
- G. Pan, M.D. Krom, B. Herut, Adsorption–desorption of
phosphate on airborne dust and riverborne particulates in
East Mediterranean seawater, Environ. Sci. Technol., 36 (2002)
3519–3524.
- K. Łukawska-Matuszewska, R.D. Voght, R. Xie, Phosphorus
pools and internal loading in a eutrophic lake with gradients
in sediment geochemistry created by land use in the
watershed, Hydrobiologia, 713 (2013) 183–197.
- A.M. Zhou, H.X. Tang, T.S. Wang, Phosphorus adsorption on
natural sediments: modeling and effects of pH and sediment
composition, Water Res., 39 (2005) 1245–1254.
- M.A. Al-Ghouti, D.A. Da’ana, Guidelines for the use and interpretation
of adsorption isotherm models: a review, J. Hazard.
Mater., 393 (2020) 1–22, doi: 10.1016/j.jhazmat.2020.122383.
- G. Limousin, J.-P. Gaudet, L. Charlet, S. Szenknect, V. Barthes,
M. Krimissa, Sorption isotherms: a review on physical bases,
modeling and measurement, Appl. Geochem., 22 (2007)
249–275.
- H.K. Pant, K.R. Reddy, Phosphorus sorption characteristics
of estuarine sediments under different redox conditions,
J. Environ. Qual., 30 (2001) 1474–1480.
- T. Jóźwiak, U. Filipkowska, P. Szymczyk, M. Kuczajowska-
Zadrożna, A. Mielcarek, The use of cross-linked chitosan beads
for nutrients (nitrate and orthophosphate) removal from a
mixture of P-PO4, N-NO2 and N-NO3, Int. J. Biol. Macromol.,
104 (2017) 1280–1293.
- R. Saadi, Z. Saadi, R. Fazaeli, N.E. Fard, Monolayer and
multilayer adsorption isotherm models for sorption from
aqueous media, Korean J. Chem. Eng., 32 (2015) 787–799.
- E. Bajkiewicz-Grabowska, J. Jańczak, D. Borowiak, M. Borowiak,
W. Maślanka, K. Nowiński, J. Barańczuk, The Evaluation of
Abiotic Environment after Operation of Phosphorus Inactivation
in the Bottom Sediment Using Phoslock® Preparation, Gdańsk
University, 2006 (in Polish).
- W. Tylmann, J. Bełdowski, D. Borowiak, S. Fedorowicz,
J. Jańczak, K. Kozłowska, K. Pazdro, J. Walkusz-Miotk,
D. Weisbrodt, Inventory of Cumulative Pollution Load in
the Bottom Sediments of Kartuzy Lakes as a Chance for their
Effective Reclamation, Final Report on the Implementation
of the Project WFOŚ/D/210/141/2011, University of Gdańsk,
2013 (in Polish).
- J. Grochowska, R. Brzozowska, M. Grzybowski,
A. Napiórkowska-Krzebietke, I. Bigaj, D. Szymański, R. Zieliński,
The Elaboration on Physical and Chemical Analyses of
Water and Bottom Sediment and Hydrological Measurements
of 4 Lakes: Mielenko, Karczemne, Klasztorne Duże and
Małe and their Catchments in Terms of Possibilities of Lakes
Protection from Degradation, Report Made for Kartuzy City
Office, 2013 (in Polish).
- J. Grochowska, R. Augustyniak, R. Tandyrak, M. Łopata,
K. Parszuto, A. Grzegorczyk, M. Karpienia, A. Płachta, Report
on Hydrochemical Study of the Water and Bottom Sediment
of the Lakes: Mielenko, Karczemne, Klasztorne Małe and
Klasztorne Duże in Kartuzy, Hydrological and Physico-
Chemical Studies on Surface Inflows and Outflows, and Shore
outlets of Storm Water Carried Out in 2019 under Contract
No. KIOW/1/2019 of June 28, 2019 Titled, “Comprehensive
Reclamation of the Lakes: Mielenko, Karczemne, Klasztorne
Małe and Klasztorne Duże in Kartuzy”, Report Made for
Kartuzy City Office,2019 (in Polish).
- J. Grochowska, R. Augustyniak, M. Łopata, R. Tandyrak, Is
it possible to restore a heavily polluted, shallow urban lake?
Appl. Sci., 10 (2020), doi: 10.3390/app10113698.
- J. Kondracki, Physical Geography of Poland, PWN Warszawa,
1988 (in Polish).
- T. Januszkiewicz, Ł. Jakubowska, Dynamics of pollution of
the Klasztorne Lake, Works Inst. Water Manage., 3 (1964) 55–77.
- I. Bojakowska, Phosphorus in lake sediments of Poland – results
of monitoring research, Limnol. Rev., 16 (2016) 15–25.
- W. Hermanowicz, W. Dożańska, J. Dojlido, B. Koziorowski,
J. Zerbe, Physical and Chemical Analysis of Water and Sewage,
Arkady, Warszawa, 1999 (in Polish).
- C. Hintz, Description of sorption data with isotherm equations,
Geoderma, 99 (2001) 225–243.
- C.H. Giles, D. Smith, A. Huitson, A general treatment and
classification of the solute adsorption isotherm. I. Theoretical,
J. Colloid Interface Sci., 47 (1974) 755–765.
- Tibco Software Inc., Statistica Software Package 13.0, 2018.
- E. van Hullebush, F. Auvray, V. Deluchat, P. Chazal, M. Baudu,
Phosphorus fractionation and short-term mobility in the
surface sediment of a polymictic shallow lake treated with low
dose of alum (Courtille Lake, France), Water Air Soil Pollut.,
146 (2003) 75–91.
- J. Grochowska, The Cycling of Selected Macroelements
and Biogenic Compounds in the River-Lake System on the
Expample of Upper Pasłęka River, Polish Academy of Sciences,
Environmental Engineering Committee Publishing House,
Lublin, 2015 (in Polish).
- M. Søndergaard, Nutrient Dynamics in Lakes – With Emphasis
on Phosphorus, Sediment and Lake Restoration, Doctor’s
Dissertation (DSc), National Environmental Research Institute,
University of Aarhus, Denmark, 2007.
- J. Koski-Vähälä, H. Hartikainen, Assessment of the risk of
phosphorus loading due to resuspended sediment, J. Environ.
Qual., 30 (2001) 960–966.
- F. Millero, F. Huang, X. Zhu, X. Liu, J.-H. Zhang, Adsorption and
desorption of phosphate on calcite and aragonite in seawater,
Aquat. Geochem., 7 (2001) 33–56.
- G. Ross, F. Haghseresht, T. Cloete, The effect of pH and anoxia
on the performance of Phoslock®, a phosphorus binding clay,
Harmful Algae, 7 (2008) 545–550.
- F. Haghseresht, S. Wang, D.D. Do, A novel lanthanum-modified
bentonite, Phoslock, for phosphate removal from wastewaters,
Appl. Clay Sci., 46 (2009) 369–375.
- M. Mucci, G. Douglas, M. Lürling, Lanthanum modified
bentonite behaviour and efficiency in adsorbing phosphate
in saline waters, Chemosphere, 249 (2020) 1–10, doi: 10.1016/j.
chemosphere.2020.126131.
- M.M. Rao, D.K. Ramana, K. Seshaiah, M.C. Wang, S.W.C. Chien,
Removal of some metal ions by activated carbon prepared form
Phaseolus aureus hulls, J. Hazard. Mater., 166 (2009) 1006–1013.
- F. Haghseresht, G. Lu, Adsorption characteristics of phenolic
compounds onto coal-reject derived adsorbents, Energy Fuels,
12 (1998) 1100–1107.
- X. Chen, L. Wu, F. Liu, P. Luo, X. Zhuang, J. Wu, Z. Zhu,
S. Xu, G. Xie, Performance and mechanisms of thermally
treated bentonite for enhanced phosphate removal from
wastewater, Environ. Sci. Pollut. Res., 25 (2018) 15980–15989.
- M. El Bouraie, A.A. Masoud, Adsorption of phosphate ions
from aqueous solution by modified betonite with magnesium
hydroxide Mg(OH)2, Appl. Clay Sci., 140 (2017) 157–164.
- M. Łopata, H. Gawrońska, R. Brzozowska, Comparison of
the effectiveness of aluminium and lantan coagulants in
phosphorus inactivation, Limnol. Rev., 7 (2007) 247–253.
- M. Tanyol, V. Yonten, V. Demir, Removal of phosphate
from aqueous solutions by chemical- and thermal-modified
bentonite clay, Water Air Soil Pollut., 226 (2015) 1–12,
doi: 10.1007/s/11270-015-2538-8.
- H. Hartikainen, M. Pitkänen, T. Kairesalo, L. Tuominen,
Co-occurence and potential chemical competition of
phosphorus and silicon in lake sediment, Water Res., 30 (1996)
2472–2478.
- Y. Yang, Y.Q. Zhao, A.O. Babatunde, L. Wang, Y.X. Ren, Y. Han,
Characteristics and mechanisms of phosphate adsorption on
dewatered alum sludge, Sep. Purif. Technol., 51 (2006) 193–200.