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Articles

Impacts of chemical precipitation of phosphorus with polyaluminum chloride in two eutrophic lakes in southwest Finland

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Pages 412-427 | Received 10 May 2023, Accepted 27 Sep 2023, Published online: 10 Jan 2024

References

  • Agstam-Norlin O, Lannergård EE, Rydin E, Futter MN, Huser BJ. 2021. A 25-year retrospective analysis of factors influencing success of aluminum treatment for lake restoration. Water Res. 200:117267.
  • Araújo F, Becker V, Attayde JL. 2016. Shallow lake restoration and water quality management by the combined effects of polyaluminum chloride addition and benthivorous fish removal: a field mesocosm experiment. Hydrobiologia. 778:243–252.
  • Araújo F, dos Santos HR, Becker V, Attayde JL. 2018. The use of polyaluminum chloride as a restoration measure to improve water quality in tropical shallow lakes. Acta Limnol Bras. 30:e109.
  • Aroviita J, Mitikka S, Vienonen S. 2019. Pintavesien tilan luokittelu ja arviointiperusteet vesienhoidon kolmannella kaudella [Status classification and assessment criteria of surface waters in the third river basin management cycle]. Suomen Ympäristökeskuksen Raportteja. 37:1–77. Finnish.
  • Böhling P, Hudd R, Lehtonen H, Karås P, Neuman E, Thoresson G. 1991. Variations in year-class strength of different perch (Perca fluviatilis) populations in the Baltic Sea with special reference to temperature and pollution. Can J Fish Aquat Sci. 48:1181–1187.
  • CEN. 2005. Water quality – sampling fish with multi-mesh gillnets. Eur. Standard EN 14757:2005:E; 27 p.
  • CEN. 2006. Water quality – Guidance standard on the enumeration of phytoplankton using inverted microscopy (Utermöhl technique). Eur. standard EN 15204:2006 (E).
  • Chorus I, Köhler A, Beulker C, Fastner J, van de Weyer K, Hegewald T, Hupfer M. 2020. Decades needed for ecosystem components to respond to a sharp and drastic phosphorus load reduction. Hydrobiologia. 847:4621–4651.
  • Cooke GD, Welch EB, Peterson SA, Nicholas SA. 2005. Restoration and management of lakes and reservoirs. Boca Raton (FL): CRC Press.
  • Ger KA, Urrutia-Cordero P, Frost PC, Hansson LA, Sarnelle O, Wilson AE, Lürling M. 2016. The interaction between cyanobacteria and zooplankton in a more eutrophic world. Harmful Algae. 54:128–144.
  • Glückert G, Illmer K, Kankainen T, Rantala P, Räsänen M. 1992. Littoistenjärven ympäristön kehitys jääkauden jälkeen ja järven luonnollinen happamoituminen. Turun yliopiston maaperägeologian osaston julkaisuja [The development of the Littoistenjärvi environment after the ice age and the natural acidification of the lake. Publications of the Department of Soil Geology, University of Turku]. 75; p. 27. Finnish.
  • Hamilton DP, Salmaso N, Paerl HW. 2016. Mitigating harmful cyanobacterial blooms: strategies for control of nitrogen and phosphorus loads. Aquat Ecol. 50:351–366.
  • Heisler J, Glibert P, Burkholder J, Anderson D, Cochlan W, Dennison W, Gobler C, Dortch Q, Heil C, Humphries E, et al. 2008. Eutrophication and harmful algal blooms: a scientific consensus. Harmful Algae. 8(1):3–13.
  • Ho JC, Michalak AM, Pahlevan N. 2019. Widespread global increase in intense lake phytoplankton blooms since the 1980s. Nature. 574:667–670.
  • Huisman J, Codd GA, Paerl HW, Ibelings BW, Verspagen JMH, Visser PM. 2018. Cyanobacterial blooms. Nat Rev Microbiol. 16:471–483.
  • Huser B, Egemose S, Harper H, Hupfer M, Jensen H, Pilgrim KM, Reitzel K, Rydin E, Futter M. 2016a. Longevity and effectiveness of aluminum addition to reduce sediment phosphorus release and restore lake water quality. Water Res. 97:122–132.
  • Huser B, Futter M M, Lee JT, Perniel M. 2016b. In-lake measures for phosphorus control: the most feasible and cost-effective solution for long-term management of water quality in urban lakes. Water Res. 97:142–152.
  • Huser BJ, Bajer PG, Kittelson S, Christenson S, Menkene K. 2021. Changes to water quality and sediment phosphorus forms in a shallow, eutrophic lake after removal of common carp (Cyprinus carpio). Inland Waters. 12:33–46.
  • Ibelings BW, Portielje R, Lammens EHRR, Noordhuis R, van den Berg MS, Joosse W, Meijer ML. 2007. Resilience of alternative stable states during the recovery of shallow lakes from eutrophication: Lake Veluwe as a case study. Ecosystems. 10:4–16.
  • Jensen HS, Reitzel K, Egemose S. 2015. Evaluation of aluminum treatment efficiency on water quality and internal phosphorus cycling in six Danish lakes. Hydrobiologia. 751:189–199.
  • Jeppesen E, Søndergaard M, Jensen JP, Havens K, Anneville O, Carvalho L, Coveney MF, Deneke R, Dokulil MT, Foy B, et al. 2005. Lakes’ response to reduced nutrient loading– an analysis of contemporary data from 35 European and North American long term studies. Freshw Biol. 50:1747–1771.
  • Jeppesen E, Søndergaard M, Meerhoff M, Lauridsen TL, Jensen JP. 2007. Shallow lake restoration by nutrient loading reduction – some recent findings and challenges ahead. Hydrobiologia. 584:239–252.
  • Jeppesen E, Søndergaard M, Lauridsen TL, Davidson TA, Liu Z, Mazzeo N, Trochine C, Özkan K, Jensen HS, Trolle D, et al. 2017. Biomanipulation as a restoration tool to combat eutrophication: recent advances and future challenges. Adv Ecol Res. 47:411–488.
  • Kuster AC, Kuster AT, Huser BJ. 2020. A comparison of aluminum dosing methods for reducing sediment phosphorus release in lakes. J Environ Manag. 261(2020):110195.
  • Lürling M, Smolders AJP, Douglas G. 2020. Chapter 5: Methods for the management of internal phosphorus loading in lakes. In: Steinman AD, Spears BM, editor. Internal phosphorus loading in lakes: causes, case studies, and management. Ft. Lauderdale (FL): J. Ross Publishing; p. 77–207.
  • Mackay EB, Maberly SC, Pan G, Reitzel K, Bruere A, Corker N, Douglas G, Egemose S, Hamilton D, Hatton-Ellis T, et al. 2015. Geoengineering in lakes: welcome attraction or fatal distraction? Inland Waters. 4:349–356.
  • Marsden MW. 1989. Lake restoration by reducing external phosphorus loading: the influence of sediment phosphorus release. Freshw Biol. 21:139–162.
  • Paerl HW, Otten TG. 2013. Harmful cyanobacterial blooms: causes, consequences and controls. Microb Ecol. 65:995–1010.
  • Reitzel K, Hansen J, Andersen FØ, Hansen KS, Jensen HS. 2005. Lake restoration by dosing aluminum relative to mobile phosphorus in the sediment. Environ Sci Technol. 39:4134–4140.
  • Reitzel K, Jensen HS, Egemose S. 2013. pH dependent dissolution of sediment aluminium in six Danish lakes treated with aluminium. Water Research 47:1409–1420.
  • Sarvala J, Helminen H, Saarikari V, Salonen S, Vuorio K. 1998. Relations between planktivorous fish abundance, zooplankton and phytoplankton in three lakes of differing productivity. Hydrobiologia. 363:81–95.
  • Sarvala J, Helminen H, Karjalainen J. 2000. Restoration of Finnish lakes using fish removal: changes in the chlorophyll–phosphorus relationship indicate multiple controlling mechanisms. Int Ver Theor Angew Limnol: Verh. 27:1473–1479.
  • Sarvala J, Helminen H, Heikkilä J. 2020. Invasive submerged macrophytes complicate management of a shallow boreal lake: a 42-year history of monitoring and restoration attempts in Littoistenjärvi, SW Finland. Hydrobiologia. 847(21):4575–4599.
  • Sas H. 1990. Lake restoration by reduction of nutrient loading: expectations, experiences, extrapolations. Int Ver Theor Angew Limnol: Verh. 24:247–251.
  • Scheffer M. 1998. Ecology of shallow lakes. London (UK): Chapman & Hall; p. 357.
  • Schindler DW. 2006. Recent advances in the understanding and management of eutrophication. Limnol Oceanogr. 51(1, part 2):356–363.
  • Sokal RR, Rohlf FJ. 1981. Biometry. The principles and practice in biological research, 4th ed. New York (NY): WH Freeman & Co.
  • Søndergaard M, Bjerring R, Jeppesen E. 2013. Persistent internal phosphorus loading during summer in shallow eutrophic lakes. Hydrobiologia. 710:95–107.
  • Steinman AD, Spears BM, editors. 2020. Internal phosphorus loading in lakes: causes, case studies, and management. Ft. Lauderdale (FL): J. Ross Publishing; p. 460.
  • Tammeorg O, Möls T, Niemistö J, Holmroos H, Horppila J. 2017. The actual role of oxygen deficit in the linkage of the water quality and benthic phosphorus release: potential implications for lake restoration. Sci Total Environ. 599-600:732–738.
  • Urrutia-Cordero P, Ekvall MK, Hansson L-A. 2015. Response of cyanobacteria to herbivorous zooplankton across predator regimes: who mows the bloom? Freshw Biol. 60:960–972.
  • US EPA. 2018. Final aquatic life ambient water quality criteria for aluminum. EPA 822-R-18-001. United States Environmental Protection Agency. Office of Water. 4304-T.
  • Wahlberg A. 1913. Bidrag till kännedomen om Littois-träsk med särskild hänsyn till dess plankton [Contribution to the knowledge of Littois Lake with special reference to its plankton]. Acta Soc Fauna Flora Fenn. 38:1–201. Swedish.
  • Welch EB, Cooke D. 1999. Effectiveness and longevity of phosphorus inactivation with alum. Lake Reservoir Manag. 15(1):5–27.
  • Zamparas M, Zacharias I. 2014. Restoration of eutrophic freshwater by managing internal nutrient loads. A review. Sci Total Environ. 496:551–562.