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Spatial Distribution of Chlorophyll-a and Its Relationship with Dissolved Inorganic Phosphate Influenced by Rivers in the North Coast of Java

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This research examines the eutrophication process mainly by considering the chlorophyll-a concentration. A simple linear model was used to determine the correlation between Chlorophyll-a and dissolved inorganic phosphate (DIP). The research was carried out on river mouths in the north coast of Central Java. The results of the linear model show that the relationship between chlorophyll-a and DIP follows the logarithmic model with the log [Chloa] = 1.52 + 1.60 log [DIP], R2 = 0.55. The model suggests that the high concentration of chlorophyll-a is related to dissolved inorganic phosphate concentrations. On the basis of the sufficient of conclusive evidence for these variables, the study sites with high stresses from several anthropogenic sources had higher chlorophyll-a than the sites that are relatively far from river mouths and lands.
Słowa kluczowe
Rocznik
Strony
18--25
Opis fizyczny
Bibliogr. 33 poz., rys., tab.
Twórcy
  • Doctoral Program of Marine Science, Faculty of Fisheries and Marine Science, Diponegoro University, Indonesia
  • Department of Oceanography, Faculty of Fisheries and Marine Science, Diponegoro University, Indonesia
  • Department of Oceanography, Faculty of Fisheries and Marine Science, Diponegoro University, Indonesia
  • Department of Oceanography, Faculty of Fisheries and Marine Science, Diponegoro University, Indonesia
  • Center for Coastal Rehabilitation and Mitigation Studies, Diponegoro University Indonesia
autor
  • Department of Oceanography, Faculty of Fisheries and Marine Science, Diponegoro University, Indonesia
  • Undergraduate Program of Oceanography, Faculty of Fisheries and Marine Science, Diponegoro University, Indonesia
Bibliografia
  • 1. Agirbas, E., L. Koca, U. Aytan . 2017. Spatio-temporal pattern of phytoplankton and pigment composition in surface waters of south-eastern Black Sea. Oceanologia, 59, 283–299.
  • 2. APHA. 1992. Standart Method for the Examination of Water and Wastewater. 18th edition. Washington, p. 252.
  • 3. Bennett, M. G., Schofield K. A., Lee S. S. & Norton, S. B. 2017. Response of chlorophyll a to total nitrogen and total phosphorus concentrations in lotic ecosystems: a systematic review protocol. Environmental Evidence, 6(18), 1–13.
  • 4. Chale, F.M.M. 2004. Inorganic nutrient concentrations and chlorophyll in the euphotic zone of Lake Tanganyika.Hydrobiologia. 523, 189–197.
  • 5. Dillon, P.J and F. H. Rigler. 1974.The phosphoruschlorophyll relationship in lakes. Limnology and Oceanography, 19 (5), 767–773.
  • 6. Dodds, W. K. & Smith, V. H. 2016. Nitrogen, phosphorus, and eutrophication in streams. Inland Waters (2016) 6, 155–164.
  • 7. Elser JJ, Marzolf ER, Goldman CR. 1990. Phosphorus and nitrogen limitation of phytoplankton growth in the freshwaters of North America: a review and critique of experimental enrichments. Can J Fish Aquat Sci. 47, 1468–1477.
  • 8. Elser JJ, Bracken ME, Cleland EE, Gruner DS, Harpole WS, Hillebrand H, Ngai JT, Seabloom EW, Shurin JB, Smith JE. 2007. Global analysis of nitrogen and phosphorus limitation of primary producers in freshwater, marine and terrestrial ecosystems. Ecol Lett. 10, 1135–1142.
  • 9. Hecky RE, Kilham P. 1988. Nutrient limitation of phytoplankton in freshwater and marine environments: a review of recent evidence on the effects of enrichment. Limnol Oceanogr. 33, 796–822.
  • 10. Howarth R, Paerl HW. 2008. Coastal marine eutrophication: control of both nitrogen and phosphorus is necessary. P Natl Acad Sci USA. 105, E103.
  • 11. Lewis WM Jr, Wurtsbaugh WA. 2008. Control of lacustrine phyto plankton by nutrients: erosion of the phosphorus paradigm. Int Rev Hydrobiol. 93, 446–465.
  • 12. Li, W. K. W., M. R. Lewis, & W. G. Harrison. 2010. Multiscalarity of the Nutrient–Chlorophyll Relationship in Coastal Phytoplankton. Estuaries and Coasts, 33, 440–447.
  • 13. Maslukah, L., S. Y. Wulandari & I. B. Prasetyawan. 2018a. The Estuaries Contribution for Supplying Nutrients (N and P) in Jepara Using Numerical Modelling Approach. IOP Conf. Series: Earth and Environmental Science. (116), 1–10.
  • 14. Maslukah, L., S. Y. Wulandari & I. B. Prasetyawan. 2018b. The Distributions of N, P Nutrients And Its Relations with Chlorophyll-A: Case Study In Serang And Wiso Estuary, Jepara, Indonesia. Asian Jr. of Microbiol. Biotech. Env. Sc. 20 (3), 821–827.
  • 15. Maslukah, L, S. Y. Wulandari, I. B. Prasetyawan, M. Zainuri. 2019. Distributions and Fluxes of Nitrogen and Phosphorus Nutrients in Porewater Sediments in the Estuary of Jepara Indonesia. Journal of Ecological Engineering. 20 (2), 58–64.
  • 16. Nuzapril, M, S. B. Susilo, J. P. Panjaitan. 2017. Relationship Between Chlorophyll-A Concentration With Primary Productivity Rate Using Landsat 8 Imagery. Jurnal Teknologi Perikanan dan Kelautan. 8 (1), 105–114.
  • 17. Paerl HW. 2009. Controlling eutrophication along the freshwater-marine continuum: dual nutrient (N and P) reductions are essential. Estuar Coast. 32, 593–601.
  • 18. Paerl HW, Hall NS, Peierls BL, Rossignol KL. 2014. Evolving paradigms and challenges in estuarine and coastal eutrophication dynamics in a culturally and climatically stressed world. Estuar Coast. 37, 243–258.
  • 19. Picado, A.; Alvarez, I.; Vaz, N.; Varela, R.; Gomez-Gesteira, M.; Dias, J.M. Assessment of chlorophyll variability along the Northwestern Coast of Iberian Peninsula. J. Sea Res. 2014, 93, 2–11.
  • 20. Poole RW. An introduction to quantitative ecology. New York: McGraw-Hill, 1974.
  • 21. Poornima, K. Thennarasu, R. Ranith, R. Shanthi, R.K. Sarangi, and T. Thangaradjou. 2014. Nutrient Enrichment Experiment to Establish Relationship between Chlorophyll and Phosphate. International Journal of Advanced Earth Science and Engineering. 3(1), 211–224.
  • 22. Roelke, D.L., Eldridge, P.M., and Cifuentes, L.A. A Model of Phytoplankton Competition for Limiting and Nonlimiting Nutrients: Implications for Development of Estuarine and Nearshore Management Schemes. Estuaries. 1999. 22, 92–104.
  • 23. Subiyanto, S. 2017. Remote Sensing and Water Quality Indicators in the West Flood Canal Semarang City: Spatio-temporal Structures of Lansat-8 Derived Chlorophyll-a and Total Suspended Solids. IOP Conf. Series: Earth and Environmental Science 98, 1–10.
  • 24. Schindler DW. 1974. Eutrophication and recovery in experimental lakes: implications for lake management. Science. 184, 897–899.
  • 25. Schindler DW. 2012. The dilemma of controlling cultural eutrophica tion of lakes. P Roy Soc BBiol. 279, 4322–4333.
  • 26. Schindler DW, Hecky RE. 2008. Reply to Howarth and Paerl: Is control of both nitrogen and phosphorus necessary? P Natl Acad Sci USA. 105, E104–E104.
  • 27. Schindler DW, Hecky RE, Findlay DL, Stainton MP, Parker BR, Paterson MJ, Beaty KG, Lyng M, Kasian SEM. 2008. Eutrophicat ion of lakes cannot be controlled by reducing nitrogen input: results of a 37-year whole-ecosystem experiment. P Natl Acad Sci. 105, 11254–11258.
  • 28. Shaari, F., Mustapha, M.A., Ali, M.M. and Lihan, T. 2013. Chlorophyll-a and nutrient distribution of Pahang coastal waters during southwest monsoon using satellite images. AIP Conference Proceedings. 1571, 493.
  • 29. Trommer, G., A. Leynaert, C. C. Klein, A. Naegelen & B. Beker. 2013. Phytoplankton Phosphorus Limitation In A North Atlantic Coastal Ecosystem. J. Plankton Res. (2013) 35(6), 1207–1219.
  • 30. Wang Y., H. Jiang, J.Jin, X. Zhang, X. Lu and Y. Wang. 2015. Spatial-Temporal Variations of Chlorophyll-a in the Adjacent Sea Area of the Yangtze River Estuary Influenced by Yangtze River Discharge. Int. J. Environ. Res. Public Health. 12, 5420–5438. https://www.mdpi.com/1660–4601/12/5/5420/htm.
  • 31. Wetzel, R., 1983: Limnology. 2nd Edition. Philadelphia: Saunders College Publishing.
  • 32. Wu, Y.M.; Xu, Z.L.; Fan, W. 2009. Temporal-spatial change of concentration of Chlorophyll-a in the East China Sea during 1997–2007. Res. Environ. Sci., 21, 137–142.
  • 33. Zhang C, Han M. 2015. Mapping chlorophylla concentration in Laizhou Bay using Landsat 8 OLI data. Proceedings of the 36th IAHR World Congress. Netherland.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ca5e847a-f5a9-4bc6-9816-6e7960c7636a
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