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Shallow Groundwater Pollution Index Around the Location of Griyo Mulyo Landfill (Jabon Landfill) in Jabon District, Sidoarjo Regency, East Java, Indonesia

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The leachate coming from the landfill is a serious problem. This is because the leachate water can contaminate the wells of the residents around the landfill. This research was conducted at Jabon Landfill located in Jabon District of Sidoarjo Regency, East Java Province, Indonesia. Jabon Landfill has been operating since 2003 with a controlled landfill system that has triggered environmental risks due to the leachate output. The purpose of this study was to determine the classification of the shallow groundwater quality status based on the pollution index (PI) around Jabon Landfill at a distance of around 250 meters, 500 meters and 1,000 meters from the landfill. The pollution index was determined by analyzing the pollutant concentration consisting of these following parameters: pH, BOD, COD and Fe. The results of the analysis show that the pH parameter had a higher value than the pH at Jabon Landfill of 7.2–7.5. The pH at Jabon Landfill was 6.35. The Fe parameter shows that the value of 1.694 in the groundwater well closest to Jabon Landfill and the wells further away indicates that the Fe concentration was lower for the latter, namely 0.081 at a distance of up to 200 meters. On the basis of the Pollution Index, the highest value was 5.45 at Well 7 is located 196 m from Jabon Landfill. Meanwhile, the well furthest from Jabon Landfill at a distance of 1,000 m showed a lightly polluted status with a Pollution Index of 1.91. The further the location of the well away from Jabon Landfill, the Pollution Index value tended to decrease. This means that the pollution status generally improves. Overall, the pollution status of the 18 wells shows that 2 wells are moderately polluted, 15 wells are lightly polluted and 1 well is in good condition.
Rocznik
Strony
199--210
Opis fizyczny
Bibliogr. 22 poz., rys., tab.
Twórcy
  • Department of Environmental Engineering, Faculty of Civil, Planning and Geo Engineering, Institut Teknologi Sepuluh Nopember (ITS), Jl. Raya ITS, Keputih, Sukolilo, Surabaya 60111, Indonesia
  • Department of Civil Engineering, Faculty of Civil, Planning and Geo Engineering, Institut Teknologi Sepuluh Nopember, Surabaya 60111, Indonesia
  • Department of Ocean Engineering, Faculty of Ocean Technology Institut Teknologi Sepuluh Nopember (ITS), Surabaya 60111, Indonesia
  • Department of Environmental Engineering, Faculty of Civil, Planning and Geo Engineering, Institut Teknologi Sepuluh Nopember (ITS), Jl. Raya ITS, Keputih, Sukolilo, Surabaya 60111, Indonesia
  • Department of Environmental Engineering, Faculty of Civil, Planning and Geo Engineering, Institut Teknologi Sepuluh Nopember (ITS), Jl. Raya ITS, Keputih, Sukolilo, Surabaya 60111, Indonesia
Bibliografia
  • 1. Adamcová, D., Vaverková, M.D., Bartoň, S., Havlíček, Z., Břoušková, E., 2016. Soil Contamination In Landfills: A Case Study Of A Landfill In Czech Republic. Solid Earth, 7(1), 239–247. https://doi.org/10.5194/se-7–239–2016
  • 2. Adeolu, A.O., Ada, O. V, Gbenga, A.A., Adebayo, O.A., 2011. Assessment of groundwater contamination by leachate near a municipal solid waste landfill. African J. Environ. Sci. Technol., 5(11), 933–940. https://doi.org/10.5897/AJEST11.272
  • 3. Afolayan, O.S., Ogundele, F.O., 2012. Comparative analysis of the effect of closed and operational land-fills on groundwater quality in Solous, Lagos Nigeria. J. Appl. Technol. Environ. Sanit., 1(4), 52–58.
  • 4. Bhattacharya, A.K., 2010. Artificial ground water recharge with a special reference to India. Int. J. Res. Rev. Appl. Sci., 4(7), 214–221.
  • 5. Calvo, F., Moreno, B., Zamorano, M., Szanto, M., 2005. Environmental diagnosis methodology for municipal waste landfills. Waste Management, 25(8), 768–779. https://doi.org/10.1016/j.wasman.2005.02.019
  • 6. Gworek, B., Dmuchowski, W., Koda, E., Marecka, M., Baczewska, A.H., Bragoszewska, P., Sieczka, A., Osiński, P., 2016. Impact of the municipal solid waste Lubna landfill on environmental pollution by heavy metals. Water (Switzerland), 8(10), 56–83. https://doi.org/10.3390/w8100470
  • 7. Han, Z., Ma, H., Shi, G., He, L., Wei, L., Shi, Q., 2016. A review of groundwater contamination near municipal solid waste landfill sites in China. Sci. Total Environ., 569(31), 85–91. https://doi.org/10.1016/j.scitotenv.2016.06.201
  • 8. Juliardi, A.R.N.R., Wiyanti, R.I., 2018. The test ability of fish tawes to leachate garbage dump (TPA) Benowo. In: Journal of Physics: Conference Series. https://doi.org/10.1088/1742–6596/953/1/012223
  • 9. Koda, E., 2012. Influence of vertical barrier surrounding old sanitary landfill on eliminating transport of pollutants on the basis of numerical modeling and monitoring results. Polish J. Environ. Stud., 21(4), 929–935.
  • 10. Koda, E., Osinski, P., Sieczka, A., Wychowaniak, D., 2015. Areal distribution of ammonium contamination of soil-water environment in the vicinity of old municipal landfill site with vertical barrier. Water (Switzerland), 7(6), 2656–2672. https://doi.org/10.3390/w7062656
  • 11. Koda, E., Tkaczyk, A., Lech, M., Osiński, P., 2017. Application of electrical resistivity data sets for the evaluation of the pollution concentration level within landfill subsoil. Appl. Sci., 7(3), 53–70. https://doi.org/10.3390/app7030262
  • 12. Kostova, I., 2006. Leachate from sanitary landfills– origin, characteristics, treatment. University Of Architecture. Civ. Eng. Geod. Summer Sch. 26e29 July. 54(1), 310–329.
  • 13. Lee, S.-I, Kitanidis, P.K., 1993. Analysis of groundwater flow and travel times for a landfill site in an arid region with a thick vadose zone. Hydrol. Process., 7(4), 373–387. https://doi.org/10.1002/hyp.3360070404
  • 14. Ling, C., Zhang, Q., 2017. Evaluation of surface water and groundwater contamination in a MSW landfill area using hydrochemical analysis and electrical resistivity tomography: A case study in Sichuan Province, Southwest China. Environ. Monit. Assess., 189(4), 65–95. https://doi.org/10.1007/s10661–017–5832–7
  • 15. Longe, E.O., Balogun, M.R., 2010. Groundwater quality assessment near a municipal landfill, Lagos, Nigeria. Res. J. Appl. Sci. Eng. Technol., 2(1), 39–44.
  • 16. Lumban Gaol, M., Warmadewanthi, I.D.A.A., 2017. Prediksi dampak lingkungan pengelolaan sampah di TPA Jabon, Kabupaten Sidoarjo. J. Tek. ITS, 6(2), https://doi.org/10.12962/j23373539.v6i2.25127
  • 17. Marendra S.M.P., Tangahu B.V. 2020. Study of leachate penetration in shallow groundwater around Jabon Landfill Sidoarjo. IOP Conf. Ser. Earth Environ. Sci., 506(1).
  • 18. Moh. Mirwan, A.F.B.S., 2018. Evaluasi pencemaran lindi pada air sumur sekitar TPA Jabon. J. Envirotek, 10(2), 856–871. https://doi.org/10.33005/envirotek.v10i2.1235
  • 19. Mor, S., Ravindra, K., Dahiya, R.P., Chandra, A., 2006. Leachate characterization and assessment of groundwater pollution near municipal solid waste landfill site. Environ. Monit. Assess. 118(1–3). 435–456. https://doi.org/10.1007/s10661–006–1505–7
  • 20. Pande, G., Sinha, A., Agrawal, S., 2015. Impacts of leachate percolation on ground water quality: A Case study of Dhanbad City. Glob. Nest J., 17(1), 162–174. https://doi.org/10.30955/gnj.001377
  • 21. Selvam, S., Dar, F.A., Magesh, N.S., Singaraja, C., Venkatramanan, S., Chung, S.Y., 2016. Application Of Remote Sensing And GIS For Delineating Groundwater Recharge Potential Zones Of Kovilpatti Municipality, Tamil Nadu Using IF Technique. Earth Sci. Informatics, 9(2), 137–150. https://doi.org/10.1007/s12145–015–0242–2
  • 22. Vinet, L., Zhedanov, A., 2011. A “missing” family of classical orthogonal polynomials. J. Phys. A Math. Theor., 44(8), 65–89. https://doi.org/10.1088/1751–8113/44/8/085201
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
Identyfikator YADDA
bwmeta1.element.baztech-3519c651-9de7-4ca9-b71e-a388e3fd7964
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