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Macrozoobentos Distribution as a Bioindicator of Water Quality in the Upstream of the Citarum River

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This study aims to prove the type and abundance of macrozoobenthos are affected by the physico-chemical condition of the habitat so that it can be used as a bioindicator in assessing river water quality with a case study in the Upstream of Citarum River. The method used in this study consists of two stages, namely determining the status of river quality with pollution index and determining the components to see the relationship of the water quality parameters to the abundance of macrozoobenthos with principal component analysis. On the basis of these studies, the results were that at the location of the study status of the river quality is slightly polluted and mildly polluted. For the slightly polluted status Corbicula sp. was used as the dominant macrozoobenthos parameter with the parameters of dissolved oxygen, organic carbon and N-O in the clay-dominated sediments. In turn, for the river areas with mild pollution, Enallagma sp., Tubifex sp., and Chironomous sp. were used as bioindicators and they have a relationship with the parameters of nitrate, TSS, and P-total.
Słowa kluczowe
Rocznik
Strony
10--17
Opis fizyczny
Bibliogr. 30 poz., rys., tab.
Twórcy
  • Faculty of Civil and Environmental Engineering, Bandung Institute of Technology, Indonesia
  • Faculty of Civil and Environmental Engineering, Bandung Institute of Technology, Indonesia
  • Faculty of Civil and Environmental Engineering, Bandung Institute of Technology, Indonesia
  • Faculty of Civil and Environmental Engineering, Bandung Institute of Technology, Indonesia
Bibliografia
  • 1. Bahri S. 2007. Impact of organic waste on water quality in the upper Citarum River. Pusair Bulletin, 16 (46), 11–18.
  • 2. Bahri S. and Irianto E.W. 2007. Integration of thematic maps and water quality indices for the study of river water quality. Pusair Bulletin, 16 (47).
  • 3. Barbour M.T., Stribling J.B. and Karr J.R. 1995. Multimetric approaches for establishing biocriteria and measuring biological conditions. In: W.S. Davis and T.P. Simon (Ed.) Biological assessment and criteria: Tools for water resource planning and decision making. FL Lewis 6377, Boca Raton.
  • 4. Chazanah N., Muntalif B., Sudjono P., Rahmayunita I. and Suantika G. 2018. Determinant parameters for upstream ecological status assessment of Citarum River, Indonesia. International Journal of GEOMATE.
  • 5. Chazanah N., Sudjono P., Hasby F.A., Suantika G. and Muntalif B.S. 2017. Development of bioassessment tools for ecological status using macrozoobenthic communities in upstream areas (Case study: Citarum River, West Java, Indonesia). Journal of Water Resources and Protection, 9, 770–785.
  • 6. Citarum River Basin Agency (BBWS), Citarum Region Water Resources Management Plan. Indonesia BBWS 2016, 3–27.
  • 7. De Pauw N. and Vanhooren G. 1983. Method for biological quality assessments of watercourses in Belgium. Hydrobiology, 100, 153–168.
  • 8. Effendi H. 2003. Water quality study for water resources and environmental management. Canisius Publishers, Yogyakarta.
  • 9. Fore L.S., Karr J.R. and Conquest L.L. 1993. Statical properties of an index of biological integrity used to evaluate water resources. Can J Fish Aquat. Sci., 51, 1077–1087.
  • 10. Goethals P. and De Pauw N. 2001. Development of a concept for integrated ecological river assessment in Flander, Belgium. J. Linol., 60, 7–166.
  • 11. Kim H. and Montagna P.A. 2009. Implication of Colorado River (Texas, USA) freshwater inflow to benthic ecosystem dynamic: A modeling study. Estuarine, Coastal and Shelf Science, 83, 491–504.
  • 12. Kramadibrata I. 1996. Animal ecology. Bandung: Department of Biology FMIPA ITB.
  • 13. Kranzfelder P., Anderson A.M., Egan A.T., Mazack J.E., Bouchard R.W., Rufer M.M. and Ferrington L.C. 2015. Use of chironomidae (diptera) surfacefloating pupal exuviae as a rapid bioassessment protocol for water bodies. J. Vis. Exp., 101, e52558, 1–19.
  • 14. Kusumaningrum T.D. and Bahri S., 2008. Study of river water quality using macrozoobenthos organisms with the family biotic index method. Journal of Water Resources, 4(1), 75–87.
  • 15. Li Y., Xu L. and Li S. 2009. Water quality analysis of the Songhua River basin using multivariate techniques. J. Water Resources and Protection, 2, 110–121.
  • 16. Malensang J.S., Komalig H. and Hatidj D. 2012. Development of Multiple Polynomial Regression Models in Marketing Data Cases. Journal of Scientific Science, 12(2).
  • 17. McCafferty W.P. and Provonsha A.V. 1983. Aquatic entomology. Jones and Bartlet Pulishers International, London.
  • 18. Muntalif B.S., Ratnawati K., and Bahri S. 2008. Bioassessment using benthic macroinvertebrates for determination of upper Citarum River water quality. Purification Journal, 9 (1), 49–60.
  • 19. Nybakken JW. 1992. Marine biology: An ecological approach. PT Gramedia, Jakarta.
  • 20. Republic of Indonesia Government Regulation Number 82 Year 2001 regarding Management of Water Quality and Water Pollution Control. Jakarta.
  • 21. State Ministry of Environment. 2003. Decree of the Minister of Environment No. 115 of 2003 concerning Determination of Water Quality Status.
  • 22. Sudarso Y. and Wardiatno Y. 2015. Assessment of river quality status with macrozoobentos indicators. Bandung, Pena Nusantara.
  • 23. Sudarso Y., Suryono T., and Yoga G. 2009. Preparation of biocriteria using multimetric concepts. Case study of the cisadane creek. Indonesian Oceanology and Limnology, 35(2), 179–200.
  • 24. UNESCO/WHO/UNEP 1992. Water quality assessments. A guide to use of biota, sediments, and water in environmental monitoring. World Health Organization: www.who.int/docstore/water_anitation_health/wqassess/ch10.htm.
  • 25. Wardoyo 1975. Water Quality Management. Bogor (ID): Institut Pertanian Bogor.
  • 26. Wilhm J. and Dorris T. 1968. Biological parameters for water quality criteria. Bioscience, 477–481.
  • 27. Wilhm J.F. 1975. Biological indicator of pollution. In: Whitton B.A. (Ed.) River ecology. Blackwell Scientific Publications, Oxford, 370–402.
  • 28. Wimbaningrum R., Indriyani S., Retnaningdyah C. and Arisoesilaningsih E. 2016. Monitoring water quality using biotic indicates of benthics macroinvertebrates along surfaces water ecosystems in some tourism areas in East Java Indonesia. Journal of Indonesian Tourism and Development Studies, 4(2), 81–90.
  • 29. Zeybek M., Kalyoncu H., Caracas B. and Ozgul S. 2014. The use of BMWP and ASPT indices for evaluation of water quality according to macroinvertebrates in Degirmendere Stream (Ispata, Turkey). Turkish Journal of Zoology, 603–613.
  • 30. Zulkifli H. and Setiawan D. 2011. Macrozoobentos Community Structure in the Sungzai Musi Waters of the Pulokerto Region as a Biomonitoring Instrument. Jurnal Natur Indonesia, 95–99.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-20950a77-f120-418c-b052-d237679ae701
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