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Tytuł artykułu

Conceptual Model of Water Pollution Control Strategies in the Lower Sentani Watershed Post Flash Flood Using the Swot Method

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The problem that occurs downstream of the Jembatan Dua river is that it has been polluted by the parameters of BOD, COD and PO4 with the results of the measurements being 3 mg/L, 37 mg/L, and 0.3 mg/L, respectively. This study aims to analyze the conceptual model of pollution control strategies in the downstream Sentani watershed. The method used in this research is the SWOT (Strength, Weakness, Opportunities, Threats) method with four SWOT strategies, namely SO (Strength-Opportunities), WT (Weakness-Threats), and WO (Weakness-Opportunities). The results showed that the pollution load of TDS and TSS continued to increase from 2016-2019. The conceptual model of the strategy for controlling water pollution in the downstream Sentani watershed is the SO (strength-opportunities) strategy with coordinates (0.26; 0.18). This SO strategy needs to be implemented in the short term, namely: utilizing internal strengths to capture external opportunities. SO strategies include: Increasing environmental law enforcement, increasing leadership commitment and the role of government institutions in handling pollution and mainstreaming sustainable development, and making the lake an ecotourism area by keeping the lake unpolluted.
Słowa kluczowe
Twórcy
  • Physics Education Study Program, Departement of Mathematics and Natural Sciences, Faculty of Teacher and Education, University of Cenderawasih, Indonesia
autor
  • Physics Education Study Program, Departement of Mathematics and Natural Sciences, Faculty of Teacher and Education, University of Cenderawasih, Indonesia
  • Department of Chemistry, Faculty of Mathematic and Natural Sciences, Universitas Pendidikan Ganesha, Singaraja, Bali, Indonesia
Bibliografia
  • 1. Environmental Agency, 2016. Regional Environmental Status. Jayapura Regency Bapeda. (In Indonesian)
  • 2. Tabrani, Siswanto, Suprayogi, I. 2017. Kampar river pollution control strategy using analytical hierarchy process method (Case study: Kmpar Watershed Segment of West Sumatra Province), Journal of Engineering, 4(1), 1–11.
  • 3. Trisnawati, A., Masduqi, A. 2014. Analysis of Quality and water pollution control strategies in Surabaya, Journal of Purification, 14(2), 90–98.
  • 4. Zulfa, N. 2018. Organic pollution control at PPP Tasikagung Rembang using process hierarchy analysis (AHP) method, Scientific Journal of Teknosains, 1(1), 16–23.
  • 5. Marimin, 2004. Decision making on multiple criteria. Techniques and applications. PT. Gramedia Widiasarana Indonesia. Jakarta. (In Indonesian).
  • 6. Pazouki, M., Jozi, S.A., Ziari, Y.A., 2017. Strategic management in urban environment using SWOT and QSPM models. Global Journal Environ. Science. Manage., 3(2), 2017–216. (In Indonesian)
  • 7. Mwenda, A. B., 2010. Levels of industrial pollutiants and their effects on water resources and livelihoods along misimbazi sub catchment – Dar Es Salaam, Tanzania (Thesis). Degree of Master of Science in the School of Pure and applied from Kenyatta University. pp: 1–94.
  • 8. Vurnek, M., Brozincevic, A., Culinovic, K., Novosel, A., 2018. Challenges in the management of Plitvice Lakes National Park, Republic of Croatia. Journal of National Parks-Management and Conservation, Chapter 5, pp: 55–72. http://dx.doi.org/10.5772/intechopen.72375.
  • 9. Belay, A. A., Semaula, H. M., Wambura, G. J., Jan, L., 2010. SWOT analysis and challenges of the Nile Basin initiative: An integrated water resource management perspective. Chinese Journal of Population, Resources and Environment, 8(1), 8–17.
  • 10. Wiriani, E.R.E., Yarifudin, H., Jalius., 2018. The analysis of Batanghari river water quality sustainable in Jambi City. Journal of Sustainable Development, 1(1), 123–141.
  • 11. Walukow, 2017, Analysis of Pb levels as pollutant in the waters of the Sentani Lake, Jayapura-Indonesia: Study of determining water quality. J. Der Pharma Chemica, 9(18), 6–8. http://www.derpharmachemica.com/archive.html.
  • 12. Walukow, 2017. Analysis of Pb levels as pollutant in the waters of the Sentani Lake, Jayapura-Indonesia: Study of determining water quality. Journal. Der Pharma Chemica, 9(18), 6–8. http://www.derpharmachemica.com/archive.html.
  • 13. Walukow, 2010. Analysis of environmentally friendly lake Sentani management constraints. Limnotek Journal, LIPI Research Center for Limnology, Bogor, 17(1), 118–127. (In Indonesian)
  • 14. Walukow, 2010. Study of phosphate chemical parameters in Lake Sentani waters with environmental perspective. Journal of the Geography Forum, Faculty of Geography, Universitas Muhammadiyah Surakarta, 24(2), 183–197. (In Indonesian)
  • 15. Walukow, 2010. Determination of water quality status with Storet method in Lake Sentani Jayapura Papua Province. Biology News Journal, LIPI Research Center for Biology, Bogor. 10(3), 277–281. (In Indonesian).
  • 16. Walukow, 2011. The impact of population growth on pollutant source loads in Lake Sentani using an environmentally insight dynamic system model. Journal of Purification Department of Environmental Engineering, Sepuluh November Institute of Technology Surabaya, 12(2), 63–74. (In Indonesian)
  • 17. Walukow, 2016. Analysis of metal concentrations of copper (Cu) in water at Sentani Lake in Jayapura – Papua. J. Der Pharmacia Lettre, 8(2), 303–308. http://scholarsresearchlibrary.com/archive.html.
  • 18. Walukow, 2011. Condition of the biological parameters of plankton and fish in Lake Sentani waters with environmental perspective. Indonesian Journal of Biology, 7(1), 187–193. (In Indonesian)
  • 19. Walukow, 2012. Policy analysis of forest area reduction in the Sentani River Basin with environmental perspective. Journal of Human and Environmental Center for Environmental Studies. Gajah Mada University, 19(1), 74–84. (In Indonesian)
  • 20. Agustiningsih, D., Sasongko, S.B., Sudarno. 2012. Analysis of water quality and pollution control strategies Blukar River Kendal Regency, Journal of Precipitation, 9(2), 64–71. (In Indonesian)
  • 21. Widodo, B., Kasam, Thousand, L., Ike, A., 2013. Strategies for reducing domestic waste in the Code River DIY, Journal of Environmental Science and Technology, 5(1), 36–47. (In Indonesian)
  • 22. Herlambang, A., 2006. Water pollution and its management strategy, JAI Journal, 2(1), 16–29. (In Indonesian)
  • 23. Walukow, A.F., Sukarta, I.N., 2021. Analysis of carrying capacity and water pollution in the Simporo Strait Area after a flash flood, Ecological Engineering & Environmental Technology, 22(3), 120–128. https://doi.org/10.12912/27197050/135528
  • 24. Walukow, A.F., Triwiyono, Sukarta, I.N., 2021. Analysis of water pollution levels in Kampwolker River as an inlet to Lake Sentani waters using the pollution index method, Journal of Science and Technology, 19(1), 69–75. http://dx.doi.org/10.23887/jst-undiksha.v10i1.33050
  • 25. Walukow, A.F., Triwiyono, Lumbu A., 2021. Constraints to control of total suspended solid and phosphate pollution in Ria Sentani Tlaga sub-watershed after flash flood, Indonesian Environmental Dynamics, 8(2), 154–161. http://dx.doi.org/10.31258/dli.8.2.p.154–161
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-678e3e15-300f-4b96-922b-8563985dfa93
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