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Abstrakty
Nutrients are substances that are used by living organisms in the growth and survival of organisms. On the basis of this background, the aim of this study was to assess the concentration of nutrients (macro and micronutrients) and chlorophyll in the Menjer lake and to examine the relationship between nutrient concentration and algal biomass to identify the determinants of algal development in tropical lakes (Menjer Lake Wonosobo, Indonesia). The research was conducted using a survey method at Menjer Lake Wonosobo. Observations and sampling were carried out 3 times with intervals of 1 month at 7 locations in the photic zone. The concentrations of macronutrients and micronutrients in the Menjer Lake were spatially even in all locations and the temporally slightly increased concentrations were relatively the same during the measurement period. The Cu, NO2, Si, and Na macronutrients are the determining factors for algal blooming in Menjer Lake Wonosobo. The effect of Cu, NO2 and Si concentrations was inversely related to the algal abundance, while the Ca, Na and Mo concentrations were in line with the abundance of algae.
Słowa kluczowe
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Tom
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156--165
Opis fizyczny
Bibliogr. 19 poz., rys., tab.
Twórcy
autor
- Faculty of Biology, University of Jenderal Soedirman, Dr. Soeparno Street, Karangwangkal, Purwokerto, Central Java, Indonesia
autor
- Faculty of Biology, University of Jenderal Soedirman, Dr. Soeparno Street, Karangwangkal, Purwokerto, Central Java, Indonesia
autor
- Faculty of Biology, University of Jenderal Soedirman, Dr. Soeparno Street, Karangwangkal, Purwokerto, Central Java, Indonesia
Bibliografia
- 1. Abell, J.M., Özkundakci, D., & Hamilton, D.P. 2010. Nitrogen and Phosphorus Limitation of Phytoplankton Growth in New Zealand Lakes: Implications for Eutrophication Control. Ecosystems, 13(7), 966–977. https://doi.org/10.1007/s10021-010-9367-9
- 2. Barbara Clément-Larosière, Filipa Lopes, Ana Gonçalves, Behnam Taidi, Marc Benedetti, Michel Minier, D.P. 2014. Carbon dioxide biofixation by Chlorella vulgaris at different CO2 concentrations and light intensities. 1–32. https://doi.org/10.1002/elsc.201200212.This
- 3. Bashagaluke, J.B., Logah, V., Opoku, A., SarkodieAddo, J., & Quansah, C. 2018. Soil nutrient loss through erosion: Impact of different cropping systems and soil amendments in Ghana. PLoS ONE, 13(12), 1–17. https://doi.org/10.1371/journal.pone.0208250
- 4. Ben Amor-Ben Ayed, H., Taidi, B., Ayadi, H., Pareau, D., & Stambouli, M. 2015. Effect of magnesium ion concentration in autotrophic cultures of Chlorella vulgaris. Algal Research, 9, 291–296. https://doi.org/10.1016/j.algal.2015.03.021
- 5. Dewi, R., Zainuri, M., Anggoro, S., & Winanto, T. 2018. Potential Harmful Algal Blooms (HABs) in Segara Anakan Lagoon, Central Java, Indonesia. 04010, 1–13.
- 6. Elfiza, W.N., & Dharma, A. 2019. Pengaruh Stres Nitrogen Dan Fosfor Terhadap Produksi Betakaroten Pada Mikroalga Oocystis sp. JPB Kelautan Dan Perikanan, 14(1), 9–20.
- 7. Firdaus, M.R., & Wijayanti, L.A. 2019. Fitoplankton Dan Siklus Karbon Global Oseana, 44(2), 35–48.
- 8. Gatz, L. 2020. Freshwater harmful algal blooms: Causes, challenges, and policy considerations (updated). Key Congressional Reports for September 2019: Part VII, 131–171.
- 9. Horne, A.J. and Goldman, C.R., 1994. Lymnology. Second edition. McGraw Hill, Inc. New York.
- 10. Ji, D., Wells, S.A., Yang, Z., Liu, D., Huang, Y., Ma, J., & Berger, C.J. 2017. Impacts of water level rise on algal bloom prevention in the tributary of Three Gorges Reservoir, China. Ecological Engineering, 98, 70–81. https://doi.org/10.1016/j.ecoleng.2016.10.019
- 11. Kiani, M., Raave, H., Simojoki, A., Tammeorg, O., & Tammeorg, P. 2020. Recycling lake sediment to agriculture: Effects on plant growth, nutrient availability, and leaching. Science of the Total Environment, 753, 141984. https://doi.org/10.1016/j.scitotenv.2020.141984
- 12. Najamuddin, & Surahman 2017. Dispersion, Speciation, and Pollution Assessment of Heavy Metals Pb and Zn in Surface Sediment from Disturbed Ecosystem of Jeneberang Waters. IOP Conference Series: Earth and Environmental Science, 89(1). https://doi.org/10.1088/1755-1315/89/1/012030
- 13. Piranti, A.S, & Sudarmadji, Maryono, A, Hadisusanto, S. 2012a. Determination of nutrient criteria for assessing trophic status of Mrica Reservoir. J. Manusia Dan Lingkungan, 19(2), 184–192.
- 14. Piranti, A.S., Soedarmadji, S., Waluyo, G. & Suwardi, S. 2015b. Transport Nutrien penyebab Eutrofikasi dari Daerah Tangkapan Air Waduk Mrica Banjarnegara. Biosfera, 32(1), 66. https://doi.org/10.20884/1.mib.2015.32.1.297
- 15. Prasetyo, B., & Kusumaningrum, E. 2013. Lingkungan Fisik Dan Kekayaan Mikroalga Di Danau Universitas Terbuka, Tangerang Selatan. Jurnal Matematika, Sains, Dan Teknologi, 33(2), 119–127.
- 16. Soares, M.C.S., Marinho, M.M., Azevedo, S.M. O.F., Branco, C.W.C., & Huszar, V.L.M. 2012. Eutrophication and retention time affecting spatial heterogeneity in a tropical reservoir. Limnologica, 42(3), 197–203. https://doi.org/10.1016/j.limno.2011.11.002
- 17. Sulistyono, E., & Rokhmah, F. 2012. Pengaruh Kandungan Cu dalam Air Irigasi terhadap Pertumbuhan dan Produksi Padi (Oryza sativa L.) The Effect of Cu Content in Irrigation Water on The Growth and Production of Rice (Oryza sativa L.). 40(3), 180–183.
- 18. Terech-Majewska, E., Pajdak, J., & Siwicki, A.K. 2016. Water as a source of macronutrients and micronutrients for fish with special emphasis on the nutritional requirements of two fish species: The common carp (Cyprinus carpio) and the rainbow trout (Oncorhynchus mykiss). Journal of Elementology, 21(3), 947–961. https://doi.org/10.5601/jelem.2015.20.4.940
- 19. Umiatun, S., Carmudi, C., & Christiani, C. 2017. Hubungan Antara Kandungan Silika Dengan Kelimpahan Diatom Benthik Di Sepanjang Sungai Pelus Kabupaten Banyumas. Scripta Biologica, 4(1), 61. https://doi.org/10.20884/1.sb.2017.4.1.387
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
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bwmeta1.element.baztech-e734b91d-6698-4916-8302-1584a7ce94d0