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Erschienen in: Sustainable Water Resources Management 5/2022

01.10.2022 | Original Article

Application of trophic state indicators and nutrient ratios for the characterization of trophic state and primary productivity of the Volta Lake, Ghana

verfasst von: Collins K. Tay

Erschienen in: Sustainable Water Resources Management | Ausgabe 5/2022

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Abstract

The trophic state and limiting nutrient of Volta Lake were assessed using trophic state indicators and nutrient ratios, respectively. The objective was to categorize the Lake's trophic state and identify the limiting nutrient responsible for its primary productivity. A total of 240 water samples were collected for quality assessment. Results show that Chl-a concentrations ranged from 0.09 to 13.6 µg/L and a mean value of 6.7 ± 7.2 µg/L. TN concentrations ranged from 0.04 to 0.34 mg/L and a mean value of 0.11 ± 0.01 mg/L. TP concentrations ranged from 0.05 to 0.23 mg/L and a mean value of 0.15 ± 0.12 mg/L. TN:TP ratios ranged 0.26–6.8 and a mean value of 1.34 ± 1.8. Secchi depth levels (transparency) ranged from 0.12 to 3.01 m and a mean value of 1.45 ± 0.78 m and the TSS levels ranged 6.57–55.7 mg/L and a mean value of 23.9 ± 15.6 mg/L. Based on Carlson’s multivariate approach to reporting deviations in the TSI’s of Chl, Tp and Sd, the limiting nutrient in the Volta Lake is phosphorus with predominantly smaller particles and dissolved colour clay particles. Spearman’s Correlations among the trophic state indices and nutrient loadings show moderate to strong correlations indicating expected trophic state and primary productivity dynamics in the Lake. PCA resulted in the extraction of four main principal components which accounted for approximately 81.66% of the total variance. Component 1(25.4%) explains light penetration, whilst Component 2 (22.98%) explains the limiting nutrients, Component 3 (20.21%) explains the nutrient contributing significantly to light impairment and Component 4 (13.08%) explains the algal chlorophyll loadings in the trophic state dynamics of the Volta Lake ecosystem. Based on the nutrient loadings in the Volta Lake and the general conditions of the lake (the CTSI), the lake is generally oligotrophic and therefore, may be productively low due to lack of plant nutrients and may contain oxygen at all depths with clarity in its waters. It is thus, recommended that future underlying research needs for the Volta Lake should be directed towards protection for sustainable and efficient management.

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Literatur
Zurück zum Zitat Abban EK (1999) Integrated development of artisanal fisheries. IDAF Project. GHA/93/008. Abban EK (1999) Integrated development of artisanal fisheries. IDAF Project. GHA/93/008.
Zurück zum Zitat Abell JM, Özkundakci D, Hamilton DP (2010) Nitrogen and phosphorus limitation of phytoplankton growth in new zealand lakes: implications for eutrophication control. Ecosystems 13(7):966–977 CrossRef Abell JM, Özkundakci D, Hamilton DP (2010) Nitrogen and phosphorus limitation of phytoplankton growth in new zealand lakes: implications for eutrophication control. Ecosystems 13(7):966–977 CrossRef
Zurück zum Zitat Adams JB, Taljaard S, van Niekerk L, Lemley DA (2020) Nutrient enrichment as a threat to the ecological resilience and health of South African microtidal estuaries. Afr J Aquat Sci 45(1–2):23–40CrossRef Adams JB, Taljaard S, van Niekerk L, Lemley DA (2020) Nutrient enrichment as a threat to the ecological resilience and health of South African microtidal estuaries. Afr J Aquat Sci 45(1–2):23–40CrossRef
Zurück zum Zitat APHA-AWWA-WEF (2011) Standard Methods for the Examination of Water and Wastewater, 22nd edn. American Public Health Association, USA APHA-AWWA-WEF (2011) Standard Methods for the Examination of Water and Wastewater, 22nd edn. American Public Health Association, USA
Zurück zum Zitat Appelo CAJ, Postma D (1999) Chemical analysis of groundwater. Geochemistry, groundwater and pollution. A. A Balkema/Rotterdam/Brookfeld, pp 537. ISBN 9054101059 hardbound edition Appelo CAJ, Postma D (1999) Chemical analysis of groundwater. Geochemistry, groundwater and pollution. A. A Balkema/Rotterdam/Brookfeld, pp 537. ISBN 9054101059 hardbound edition
Zurück zum Zitat Atique U, An K-G (2020) Landscape heterogeneity impacts water chemistry, nutrient regime, organic matter and chlorophyll dynamics in agricultural reservoirs. Ecol Ind 110(2020):105813CrossRef Atique U, An K-G (2020) Landscape heterogeneity impacts water chemistry, nutrient regime, organic matter and chlorophyll dynamics in agricultural reservoirs. Ecol Ind 110(2020):105813CrossRef
Zurück zum Zitat Béné C, Abban EK, Abdel-Rahman SH, Brummet R, Dankwa HR, Das AK, Habib OA, Katiha PK, Kolding J, Obiri-Opareh N, Ofori JK, Shehata M, Shrivastada NP, Vass KK (2009) Improved fisheries productivity and management in tropical reservoirs. CPWF Project Report. Project Number CP34. A CGIAR Challenge Programme on Water and Food, pp 117 Béné C, Abban EK, Abdel-Rahman SH, Brummet R, Dankwa HR, Das AK, Habib OA, Katiha PK, Kolding J, Obiri-Opareh N, Ofori JK, Shehata M, Shrivastada NP, Vass KK (2009) Improved fisheries productivity and management in tropical reservoirs. CPWF Project Report. Project Number CP34. A CGIAR Challenge Programme on Water and Food, pp 117
Zurück zum Zitat Bergstrom AK, Jannson M (2006) Atmospheric nitrogen deposition has caused nitrogen enrichment and eutrophication of lakes in the northern Hemisphere. Glob Change Biol 12:63–643CrossRef Bergstrom AK, Jannson M (2006) Atmospheric nitrogen deposition has caused nitrogen enrichment and eutrophication of lakes in the northern Hemisphere. Glob Change Biol 12:63–643CrossRef
Zurück zum Zitat Biswas S (1970) Changes in the phytoplankton of the developing Volta Lake, Ghana. J Sci 10(2):85–92 Biswas S (1970) Changes in the phytoplankton of the developing Volta Lake, Ghana. J Sci 10(2):85–92
Zurück zum Zitat Boland DHP (1976) Trophic classification of lakes using landsat-1 (ERTS-I) multispectral scanner data, EPA-6003-76-037. U.S. Environmental Protection Agency, Oregon Boland DHP (1976) Trophic classification of lakes using landsat-1 (ERTS-I) multispectral scanner data, EPA-6003-76-037. U.S. Environmental Protection Agency, Oregon
Zurück zum Zitat Brown T, Simpson J (2001) Determining the trophic state of your lake. Watershed Protection Techniques. Urban Lake Manag 3(4):771–781 Brown T, Simpson J (2001) Determining the trophic state of your lake. Watershed Protection Techniques. Urban Lake Manag 3(4):771–781
Zurück zum Zitat Busobozi E (2017) Eutrophication in Ugandan Crater Lakes. A Case Study of Six Crater Lakes Located in Kabarole District Western Uganda. Thesis submitted in partial fulfilment of the requirements for the Degree of Master of Water Resource Management. Waterways Centre for Freshwater Management University of Canterbury Christchurch, New Zealand. Busobozi E (2017) Eutrophication in Ugandan Crater Lakes. A Case Study of Six Crater Lakes Located in Kabarole District Western Uganda. Thesis submitted in partial fulfilment of the requirements for the Degree of Master of Water Resource Management. Waterways Centre for Freshwater Management University of Canterbury Christchurch, New Zealand.
Zurück zum Zitat Camarero L, Catalan J (2012) Atmospheric phosphorus deposition may cause lakes to revert from phosphorus limitation back to nitrogen limitation. Nat Commun 3:1118CrossRef Camarero L, Catalan J (2012) Atmospheric phosphorus deposition may cause lakes to revert from phosphorus limitation back to nitrogen limitation. Nat Commun 3:1118CrossRef
Zurück zum Zitat Carlson RE (1977) A trophic state index for lakes. Limnol Oceanogr 22:361–369CrossRef Carlson RE (1977) A trophic state index for lakes. Limnol Oceanogr 22:361–369CrossRef
Zurück zum Zitat Carlson RE (1992) Expanding the trophic state concept to identify non-nutrient limited lakes and reservoirs. In: Proceedings of a National Conference on Enhancing the States’ Lake Management Programs. Monitoring and Lake Impact Assessment. Chicago, pp. 59–71 Carlson RE (1992) Expanding the trophic state concept to identify non-nutrient limited lakes and reservoirs. In: Proceedings of a National Conference on Enhancing the States’ Lake Management Programs. Monitoring and Lake Impact Assessment. Chicago, pp. 59–71
Zurück zum Zitat Chapman D (1996) Water quality assessment: a guide to the use of biota, sediments and water in environmental monitoring, 2nd edn. UNESCO/WHO/UNEP, London Chapman D (1996) Water quality assessment: a guide to the use of biota, sediments and water in environmental monitoring, 2nd edn. UNESCO/WHO/UNEP, London
Zurück zum Zitat Chapra SC (1997) Surface water Quality Modelling. McGraw-Hill Companies, New York Chapra SC (1997) Surface water Quality Modelling. McGraw-Hill Companies, New York
Zurück zum Zitat Claasen HC (1982) Guidelines and techniques for obtaining water samples that accurately represent the quality of an aquifer. U.S. Geological Survey Open File Report 82–1024, 49 pp. Claasen HC (1982) Guidelines and techniques for obtaining water samples that accurately represent the quality of an aquifer. U.S. Geological Survey Open File Report 82–1024, 49 pp.
Zurück zum Zitat Dillon PJ, Rigler FH (1974) The phosphorus-chlorophyll relationship in lakes. Limnol Oceanogr 19:767–773CrossRef Dillon PJ, Rigler FH (1974) The phosphorus-chlorophyll relationship in lakes. Limnol Oceanogr 19:767–773CrossRef
Zurück zum Zitat Dove A, Chapra SC (2015) Long-term trends of nutrients and trophic response variables for the Great Lakes. Limnol Oceanogr 60:696–721CrossRef Dove A, Chapra SC (2015) Long-term trends of nutrients and trophic response variables for the Great Lakes. Limnol Oceanogr 60:696–721CrossRef
Zurück zum Zitat EPA (1974) An approach to a relative trophic index system for classifying lakes and reservoirs. Working paper No. 24. EPA (1974) An approach to a relative trophic index system for classifying lakes and reservoirs. Working paper No. 24.
Zurück zum Zitat EPA (1975) National Eutrophication Survey Methods, 1973–1976, National Eutrophication Survey Working Paper No.175, Las Vegas, Nevada and Corvallis, Oregon:National Environmental Research Laboratories, U.S. Environmental Protection Agency; p 19 EPA (1975) National Eutrophication Survey Methods, 1973–1976, National Eutrophication Survey Working Paper No.175, Las Vegas, Nevada and Corvallis, Oregon:National Environmental Research Laboratories, U.S. Environmental Protection Agency; p 19
Zurück zum Zitat Guildford SJ, Hecky RE (2000) Total nitrogen, total phosphorus, and nutrient limitation in lakes and oceans: is there a common relationship? Limnol Oceanogr 45:1213–1223CrossRef Guildford SJ, Hecky RE (2000) Total nitrogen, total phosphorus, and nutrient limitation in lakes and oceans: is there a common relationship? Limnol Oceanogr 45:1213–1223CrossRef
Zurück zum Zitat Hayes NM, Deemer BR, Corman JR, Razavi NR, Strock KE (2017) Key differences between lakes and reservoirs modify climate signals: a case for a new conceptualmodel. Limnol Oceanogr 2:47–62CrossRef Hayes NM, Deemer BR, Corman JR, Razavi NR, Strock KE (2017) Key differences between lakes and reservoirs modify climate signals: a case for a new conceptualmodel. Limnol Oceanogr 2:47–62CrossRef
Zurück zum Zitat Hutorowicz A, Pasztaleniec A (2014) Phytoplankton in an ecological status assessment of the vendace-type Lake Dejguny (northeastern Poland). Arch Polish Fish 22:29–40CrossRef Hutorowicz A, Pasztaleniec A (2014) Phytoplankton in an ecological status assessment of the vendace-type Lake Dejguny (northeastern Poland). Arch Polish Fish 22:29–40CrossRef
Zurück zum Zitat Kopáček J, Hejzlar J, Porcal P, Posch M (2017) Trends in riverine element fluxes: a chronicle of regional socio-economic changes. Water Res 125:374–383CrossRef Kopáček J, Hejzlar J, Porcal P, Posch M (2017) Trends in riverine element fluxes: a chronicle of regional socio-economic changes. Water Res 125:374–383CrossRef
Zurück zum Zitat Kwaansa-Ansah EE, Asare-Donkor NK, Adimado AA, Dong-ha N (2013) Evaluation of mercury and selenium concentrations in the edible tissue of freshwater fish from the Volta Lake in Ghana. J Environ OccupSci 2(3):109–118CrossRef Kwaansa-Ansah EE, Asare-Donkor NK, Adimado AA, Dong-ha N (2013) Evaluation of mercury and selenium concentrations in the edible tissue of freshwater fish from the Volta Lake in Ghana. J Environ OccupSci 2(3):109–118CrossRef
Zurück zum Zitat Larsen DP, Mercier HT (1976) Phosphorus retention capacity of lakes’. J Fish Res Bd Can 33:1742–1750CrossRef Larsen DP, Mercier HT (1976) Phosphorus retention capacity of lakes’. J Fish Res Bd Can 33:1742–1750CrossRef
Zurück zum Zitat Maberly SC, Pitt J-A, Davies PS, Carvalho L (2020) Nitrogen and phosphorus limitation and the management of small productive lakes. Inland Waters 10(2):159–172CrossRef Maberly SC, Pitt J-A, Davies PS, Carvalho L (2020) Nitrogen and phosphorus limitation and the management of small productive lakes. Inland Waters 10(2):159–172CrossRef
Zurück zum Zitat Mamun MD, Atique U, An K-G (2021) Assessment of water quality based on trophic status and nutrients-chlorophyll empirical models of different elevation reservoirs. Water 13:3640CrossRef Mamun MD, Atique U, An K-G (2021) Assessment of water quality based on trophic status and nutrients-chlorophyll empirical models of different elevation reservoirs. Water 13:3640CrossRef
Zurück zum Zitat Mamun MD, Yoon Kim JI, An K-G (2022) Trophic responses of the asian reservoir to long-term seasonal and interannual dynamic monsoon. Water 12:25 Mamun MD, Yoon Kim JI, An K-G (2022) Trophic responses of the asian reservoir to long-term seasonal and interannual dynamic monsoon. Water 12:25
Zurück zum Zitat Moss B, Jeppesen E, Søndergaard M, Lauridsen TL, Liu Z (2013) Nitrogen, macrophytes, shallow lakes and nutrient limitation: resolution of a current controversy? Hydrobiologia 710:3–21CrossRef Moss B, Jeppesen E, Søndergaard M, Lauridsen TL, Liu Z (2013) Nitrogen, macrophytes, shallow lakes and nutrient limitation: resolution of a current controversy? Hydrobiologia 710:3–21CrossRef
Zurück zum Zitat Mul M, Obuobie E, Appoh R, Kankam-Yeboah K, Bekoe-Obeng E, Amisigo B, Logah FY, Ghansah B, McCartney M (2015) Water resources assessment of the volta river Basin. IWMI Working Paper 166. ISSN 2012-5763; e-ISSN 2478-1134; ISBN 978-92-9090-829-6. Mul M, Obuobie E, Appoh R, Kankam-Yeboah K, Bekoe-Obeng E, Amisigo B, Logah FY, Ghansah B, McCartney M (2015) Water resources assessment of the volta river Basin. IWMI Working Paper 166. ISSN 2012-5763; e-ISSN 2478-1134; ISBN 978-92-9090-829-6.
Zurück zum Zitat Nguyen NTT (2017) Study on trophic state in lakes of Dong Da District. Hanoi. VNU J Sci 33(4):21–30 Nguyen NTT (2017) Study on trophic state in lakes of Dong Da District. Hanoi. VNU J Sci 33(4):21–30
Zurück zum Zitat Obeng-Asamoa EK (1977) A Limnological study of the afram arm of the Volta lake. Hydrobiologia 55(3):257–264CrossRef Obeng-Asamoa EK (1977) A Limnological study of the afram arm of the Volta lake. Hydrobiologia 55(3):257–264CrossRef
Zurück zum Zitat OECD (1982) Eutrophication of waters, monitoring assessment and control. Organization for Economic and Co-operative Development Paris, France OECD (1982) Eutrophication of waters, monitoring assessment and control. Organization for Economic and Co-operative Development Paris, France
Zurück zum Zitat Opiyo SB, Getabu AM, Sitoki ML, Shitandi A, Ogendi GM (2019) Application of the Carlson’s trophic state index for the assessment of trophic status of lake Simbi ecosystem, a deep alkaline-saline lake in Kenya. SSRN J 4:327–333 Opiyo SB, Getabu AM, Sitoki ML, Shitandi A, Ogendi GM (2019) Application of the Carlson’s trophic state index for the assessment of trophic status of lake Simbi ecosystem, a deep alkaline-saline lake in Kenya. SSRN J 4:327–333
Zurück zum Zitat Park Y, Cho KH, Cha JPSM, Kim JH (2015) Development of early-warning protocol for predicting chlorophyll-a concentration using machine learning models in freshwater and estuarine reservoirs. Korea Sci Total Environ 502:31–41CrossRef Park Y, Cho KH, Cha JPSM, Kim JH (2015) Development of early-warning protocol for predicting chlorophyll-a concentration using machine learning models in freshwater and estuarine reservoirs. Korea Sci Total Environ 502:31–41CrossRef
Zurück zum Zitat Phillips G, Lyche-Solheim A, Skjelbred B, Mischke U, Drakare S, Free G, Järvinen M, de Hoyos C, Morabito G, Poikane S, Carvalho L (2013) Aphytoplankton trophic index to assess the status of lakes for the water framework directive. Hydrobiologia 704:75–95CrossRef Phillips G, Lyche-Solheim A, Skjelbred B, Mischke U, Drakare S, Free G, Järvinen M, de Hoyos C, Morabito G, Poikane S, Carvalho L (2013) Aphytoplankton trophic index to assess the status of lakes for the water framework directive. Hydrobiologia 704:75–95CrossRef
Zurück zum Zitat Redfield AC (1934) On the proportions of organic derivatives in the sea water and their relation to the composition of plankton. In: Daniel RJ (ed) James johnstone memorial volume. University Press of Liverpool, Liverpool, pp 176–192 Redfield AC (1934) On the proportions of organic derivatives in the sea water and their relation to the composition of plankton. In: Daniel RJ (ed) James johnstone memorial volume. University Press of Liverpool, Liverpool, pp 176–192
Zurück zum Zitat Rodgers C, van de Giesen N, Laube W, Youkhana E (2007) The GLOWA volta project: a framework for water resources decision-making and scientific capacity building in a transnational West African basin. Water Resour Manage 21(1):295–313CrossRef Rodgers C, van de Giesen N, Laube W, Youkhana E (2007) The GLOWA volta project: a framework for water resources decision-making and scientific capacity building in a transnational West African basin. Water Resour Manage 21(1):295–313CrossRef
Zurück zum Zitat Ryding SO, Rast W (1994) The control of eutrophication of lakes and reservoirs. UNESCO, London, p 281 Ryding SO, Rast W (1994) The control of eutrophication of lakes and reservoirs. UNESCO, London, p 281
Zurück zum Zitat Sandeep BM, Srikantaswamiy S, Shankar PH (2008) The study of phytoplankton dynamics in two lakes of Mysore, Karnataka state. Nat Environ Pollut Technol 7(4):300–306 Sandeep BM, Srikantaswamiy S, Shankar PH (2008) The study of phytoplankton dynamics in two lakes of Mysore, Karnataka state. Nat Environ Pollut Technol 7(4):300–306
Zurück zum Zitat Sterner RW (2008) On the phosphorus limitation paradigm for lakes. Int Rev Hydrobiol 93:433–445CrossRef Sterner RW (2008) On the phosphorus limitation paradigm for lakes. Int Rev Hydrobiol 93:433–445CrossRef
Zurück zum Zitat Tay CK, Hayford EK, Hodgson IOA (2017) Application of multivariate statistical technique for hydrogeochemical assessment of groundwater within the Lower Pra Basin. Ghana Appl Water Sci 2017(7):1131–1150CrossRef Tay CK, Hayford EK, Hodgson IOA (2017) Application of multivariate statistical technique for hydrogeochemical assessment of groundwater within the Lower Pra Basin. Ghana Appl Water Sci 2017(7):1131–1150CrossRef
Zurück zum Zitat USEPA (1990) The Lake and Reservoir Restoration Guidance Manual EPA-440/4–90 006. Washington, U.S, Environmental Protection Agency Office of Water USEPA (1990) The Lake and Reservoir Restoration Guidance Manual EPA-440/4–90 006. Washington, U.S, Environmental Protection Agency Office of Water
Zurück zum Zitat USEPA (1991) Volunteer lake monitoring: a methods manual. EPA-440/4-91-002. US Environmental Protection Agency Office of Water, Washington USEPA (1991) Volunteer lake monitoring: a methods manual. EPA-440/4-91-002. US Environmental Protection Agency Office of Water, Washington
Zurück zum Zitat Vitousek PM, Howarth RW (1991) Nitrogen limitation on land and in the sea: how can it occur? Biogeochemistry 13:87–115CrossRef Vitousek PM, Howarth RW (1991) Nitrogen limitation on land and in the sea: how can it occur? Biogeochemistry 13:87–115CrossRef
Zurück zum Zitat Vollenweider RA (1975) Advances in defining critical loading levels for phosphorus in lake eutrophication. Mem Ist Ital Idrobiol. 33:53–83 Vollenweider RA (1975) Advances in defining critical loading levels for phosphorus in lake eutrophication. Mem Ist Ital Idrobiol. 33:53–83
Zurück zum Zitat Vollenweider RA (1989) Eutrophication. In: Meybeck M, Chapman D, Helmer R (eds) Global Freshwater quality—a first assessment. World Health Organization and the United Nations Environmental Programme, Kenya, pp 107–120 Vollenweider RA (1989) Eutrophication. In: Meybeck M, Chapman D, Helmer R (eds) Global Freshwater quality—a first assessment. World Health Organization and the United Nations Environmental Programme, Kenya, pp 107–120
Zurück zum Zitat Wetzel RG (2001) Limnology: lake and river ecosystem. Academic Press, San Diego, p 1006 Wetzel RG (2001) Limnology: lake and river ecosystem. Academic Press, San Diego, p 1006
Metadaten
Titel
Application of trophic state indicators and nutrient ratios for the characterization of trophic state and primary productivity of the Volta Lake, Ghana
verfasst von
Collins K. Tay
Publikationsdatum
01.10.2022
Verlag
Springer International Publishing
Erschienen in
Sustainable Water Resources Management / Ausgabe 5/2022
Print ISSN: 2363-5037
Elektronische ISSN: 2363-5045
DOI
https://doi.org/10.1007/s40899-022-00739-5

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