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Determination of Water Quality Status of Telaga Menjer Wonosobo, Indonesia: An Official Tool for Evaluating the Best Function of Water

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Human activities may cause degradation of water quality. For monitoring purpose, it is necessary to know the level of pollution that occurs in water in order to sustain the function of the aquatic ecosystem. The purpose of this study was to determine the level of water pollution of Menjer Wonosobo Lake based on the physical, chemical, and biological parameters to evaluate the best function of the water to support the human activities. The study was conducted for three months (July to September 2020). Water sampling was carried out at seven stations; then, the measurement results were compared with the water quality standards based on Government Regulation No. 22 of 2021. Determination of water quality was carried out using the STORET method. The results showed that there were 7 parameters that exceeded the water quality standards, namely TSS, BOD, COD, DO, N, P and Coliform. The status of water quality was at a moderately polluted level and only functions for the needs of category 3, i.e. for freshwater fish cultivation, for irrigating plants, and or other purposes. Therefore, it was necessary to manage Menjer Lake to improve its water quality.
Słowa kluczowe
Rocznik
Strony
59--67
Opis fizyczny
Bibliogr. 26 poz., rys., tab.
Twórcy
  • Post Graduate of Department of Environmental Science, Jenderal Soedirman University, Unsoed, Purwokerto, Indonesia
  • Department of Environmental Biology, Biologi Faculty, Jenderal Soedirman University, Unsoed, Purwokerto, Indonesia
Bibliografia
  • 1. Alfionita A.N.A., Patang, Kaseng E.S. 2019. Effect of eutrophication on water quality in the Jeneberang River. Journal of Agricultural Technology Education, 5, 9–23.
  • 2. Amalia D.Y., Sudarmadji. 2016. Evaluation of the service life of Menjer Lake, which functions as a garung hydroelectric power plant in Wonosobo Regency, Central Java Province. Indonesian Earth Journal, 5, 1–10.
  • 3. Anas P, Jubaedah I., Sudino D. 2017. Water quality and wastewater load of floating net cages in Jatiluhur Reservoir of West Java. Jurnal Penyuluhan Perikanan dan Kelautan, 11(1), 35–47.
  • 4. Azizah D. 2017. Environmental quality assessment of Tanjungpinang Bay Waters, Riau Islands Province. Journal of Maritime Dynamics, 6, 47–53.
  • 5. Christiana R., Anggraini I.M., Syahwanti H. 2020. Analysis of water quality and quality status and pollution burden of the Mahap River in Sekadau Regency, West Kalimantan. Serambi Engineering Journal, 5, 941–950.
  • 6. Daroini T.A., Arisandi A. 2020. Analysis of BOD (Biological Oxygen Demand) in the waters of Prancak Village, Sepulu District, Bangkalan. Juvenil, 1, 558–566.
  • 7. Indonesian government. 2009. Law of the Republic of Indonesia Number 32 of 2009 concerning Environmental Protection and Management. State Gazette of the Republic of Indonesia Year, State Secretariat. Jakarta.
  • 8. Indonesian Government. 2001. Government Regulation of the Republic of Indonesia Number 82 of 2001 concerning Water Quality Management and Water Pollution Control. State Gazette of the Republic of Indonesia Year, State Secretariat. Jakarta.
  • 9. Kumalasari D.A., Soeprobowati T.R., Putro S.P. 2015. Phytoplankton composition and abundance in Menjer Lake, Wonosobo. Biology Journal, 4, 53–61.
  • 10. Lihawa F., Mahmud M. 2017. Evaluation of water quality characteristics of Limboto Lake. Journal of Natural Resources and Environmental Management, 7, 260–266.
  • 11. Minister of the Environment. Decree of the State Minister of the Environment Number 115 of 2003 concerning Guidelines for Determining the Status of Water Quality. Copy of the Deputy Minister of Environment for Environmental Policy and Institutions.
  • 12. Mokodompit M.S.P., Umboh J.M.L., Pinontoan O.R. 2020. Lake water quality test based on escherichia coli and total coliform content in Mooat Lake, East Bolaang Mongondow Regency in 2019. Journal of KESMAS, 9, 27–32.
  • 13. Muthifah L., Nurhayati, Utomo K.P. 2018. Water quality analysis of Lake Kandung Suli, Jongkong District, Kapuas Hulu Regency. Journal of Wetland Environmental Technology, 6, 1–10.
  • 14. Nurfatimah F.M., Afu L.O.A., Pratikino A.G. 2019. Distribution of surface suspended solid (TSS) in the waters of Wawatu Village, North Moramo District, South Konawe Regency. Sapa Laut Journal, 4, 123–126.
  • 15. Nopiantari N.P.V.,Arthana I.W.,Astarini I.A. 2017. Impact of agricultural activities on eutrophication levels and types of phytoplankton in Buyan Lake, Buleleng Regency, Bali Province. Ecotrophic, 11, 47–54.
  • 16. Purboseno S. 2014. Water balance simulation model in environmental economic perspective as an effort to maintain the sustainability of water resources system case study of Lake Rawapening Watershed. MSc Thesis, Diponegoro University.
  • 17. Piranti A.S., Rahayu D.R., Waluyo G. 2018. Evaluation of Rawapening Lake’s water quality status. Journal of Natural Resources and Environmental Management, 8, 151–160.
  • 18. Piranti A.S., Wibowo D.N., Rahayu D.R.U.S. 2021. Nutrient determinant factor of causing algal bloom in tropical lake (Case study in Telaga Menjer Wonosobo Indonesia). Journal of Ecological Engineering, 22(5), 156–165. https://doi.org/10.12911/22998993/135863
  • 19. Putri F.D.M., Widyastuti E., Christiani. 2014. Comparison of total nitrogen and total phosphorus with the abundance of chrysophita in Panglima Besar Soedirman Reservoir Waters, Banjarnegara. Scripta Biologica, 1, 96–101.
  • 20. Pujiastuti P., Ismail B., Pranoto. 2013. Quality and pollution burden of Gajah Mungkur Reservoir. Eco-science Journal, 5, 59–75.
  • 21. Rahayu Y., Juwana I., Marganingrum D. 2018. Study of calculation of river water pollution loads in the cikapundung watershed (DAS) from the domestic sector. Green Engineering Journal, 2, 61–71.
  • 22. Santoso A. D. 2018. Performance of DO, BOD, and COD values in ex-coal mining lake case study on Sangatta North Lake PT. KPC in East Kalimantan. Journal of Environmental Technology, 19, 89–96.
  • 23. Soliha E., Rahayu S.Y.S., Triastinurmiatiningsih. 2016. Water quality and plankton diversity in Lake Cikaret, Cibinong, Bogor. Ecology, 16, 1–10.
  • 24. Suharto B., Dewi L., Mustaqiman A.N., Marjo T.R.A.K. 2019. The study of water quality status in the Ngebrong River with physical and chemical parameter in the Tawangsari Barat Region, Pujon District, Malang Regency. Indonesian Journal of Urban and Environmental Technology, 2, 164–180.
  • 25. Sumampouw O. Diarrhea T. 2017. An Overview of the Public Health Sector. Publisher: Deepublish (CV Budi Utama Publishing Group). Yogyakarta.
  • 26. Tatangindatu F., Kalesaran O., Rompas R. 2013. Study of physical and chemical parameters of water in fish cultivation areas in Lake Tondano, Paleloan Village, Minahasa Regency. Journal of Aquaculture, 1, 8–19.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1b512bb9-3471-4f33-8f93-927c3e6ab78a
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