Determination of Pollutant Index (PI) for Assessing the Quality of Groundwater in the Area of Sidoarjo Mud (LUSI) Sidoarjo, East Java, Indonesia

Ilham Putra Adiyaksa, Oleg G. Savichev

Abstract


Sidoarjo mud (well known as LUSI) have been occurred since 2006 in Sidoarjo, East Java, Indonesia and gives many impacts to many aspects, as well as environment and water quality condition. One of the major concerns is water quality problem, especially in this current situation in 2022 since clean water still needed by local people and groundwater is the main water source for many local people in this area. Our previous study has carried out to assess the ecological and geochemical conditions of groundwater in the area around Sidoarjo mud in 2022. In this study, by using Pollutant Index (PI) calculation, the water quality classification will be determined from several samples and parameters in various places, including Tanggulangin, and Porong, Sidoarjo, East Java. From the calculation result, based on Pollution Index (PI) value, water in Tanggulangin is categorized as good water (clean water), while water in Porong is categorized as good water (clean) as well for sample B3, and the rest is categorized as lightly polluted water with sample B5 as the most contaminated. Groundwater in the area near to Sidoarjo mud is contaminated by NO2-, Mn, and Hg.


Keywords


groundwater, Sidoarjo mud, PI, water quality

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References


Abadi, M. F., Mahendra, M. S., & Suyasa, I. W. B. (2011). Pemetaan Kualitas Air Tanah di Desa Dauh Puri Kaja Kota Denpasar. ECOTROPHIC, 6(2), 77–80. https://ojs.unud.ac.id/index.php/ECOTROPHIC/article/view/13355

Adiyaksa, I. P. (2022). Water Quality Assessment at Tanggulangin Cultural Park. Jurnal Sumberdaya Alam Dan Lingkungan, 9(1), 33–37. https://doi.org/10.21776/ub.jsal.2022.009.01.5

Adiyaksa, I. P., Savichev, O. G., & Khvasevskaya, A. A. (2023). Ecological and Geochemical Condition of Groundwater in the Region of the Mud Volcano in Sidoarjo (East Java Province, Indonesia). Bulletin of the Tomsk Polytechnic University. Geo Assets Engineering, 334(3), 51–60. https://doi.org/10.18799/24131830/2023/3/3978

Adiyaksa, I. P., Sulianto, A. A., & Savichev, O. G. (2022). Water Quality Assessment and Risk Analysis Calculation of Chloride and Sodium Exposure of Well Water in Tanggulangin, Sidoarjo. Jurnal Keteknikan Pertanian Dan Biosistem, 10(2), 92–100. http://dx.doi.org/10.21776/ub.jkptb.2022.010.02.01

Agustina, T. F., Hendrawan, D. I., & Purwaningrum, P. (2021). Analisis Kualitas Air Tanah di Sekitar TPA Bagendung, Cilegon. JURNAL BHUWANA, 29–43. https://doi.org/10.25105/bhuwana.v1i1.9274

Angelina, S. (2021). Perbandingan Analisis Kualitas Air Tanah Antara Metode Indeks Pencemar dengan Metode Storet (Studi Kasus: Pemukiman di Sekitar Kawasan Industri Berbek, Sidoarjo). Skripsi Teknik Lingkungan UIN Sunan Ampel Surabaya. https://digilib.uinsa.ac.id/view/creators/Angelina=3AShelviana=3A=3A.html

Ashar, T. (2007). Analisis Risiko Asupan Oral Pajanan Mangan dalam Air terhadap Kesehatan Masyarakat. Kesmas: National Public Health Journal, 2(3), 106. https://doi.org/10.21109/kesmas.v2i3.265

Auvaria, S. W., & Munfarida, I. (2020). Analysis of Environmental Capacity (Water Pollution Load) in the Porong Area, Sidoarjo Regency, ex Lapindo Mining. Jurnal Presipitasi : Media Komunikasi dan Pengembangan Teknik Lingkungan, 17(2), 104–112. https://doi.org/10.14710/presipitasi.v17i2.104-112

Behrooz, R. D., & Burger, J. (2021). Heavy Metals in Liver, Kidney, Brain and Muscle: Health Risk Assessment for Consumption of Edible parts of Birds from the Chahnimeh Reservoirs Sistan (Iran) [Preprint]. In Review. https://doi.org/10.21203/rs.3.rs-256665/v2

Castresana, G. P., Roldán, E. C., García Suastegui, W. A., Morán Perales, J. L., Cruz Montalvo, A., & Silva, A. H. (2019). Evaluation of Health Risks due to Heavy Metals in a Rural Population Exposed to Atoyac River Pollution in Puebla, Mexico. Water, 11(2), 277. https://doi.org/10.3390/w11020277

Davies, R. J., Swarbrick, R. E., Evans, R. J., & Huuse, M. (2007). Birth of a mud volcano: East Java, 29 May 2006. GSA Today, 17(2), 4. https://doi.org/10.1130/GSAT01702A.1

Febrina, L., & Ayuna, A. (2015). Studi Penurunan Kadar Besi (Fe) dan Mangan (Mn) dalam Air Tanah Menggunakan Saringan Keramik. Jurnal Teknologi, 7(1), 10. https://jurnal.umj.ac.id/index.php/jurtek/article/view/369/341

Menteri Kesehatan RI. (2017). Peraturan Menteri Kesehatan Republik Indonesia Nomor 32 Tahun 2017 Tentang Standar Baku Mutu Kesehatan Lingkungan dan Persyaratan Kesehatan Air untuk Keperluan Higiene Sanitasi, Kolam Renang, Solus Per Aqua, dan Pemandian Umum. http://hukor.kemkes.go.id/uploads/produk_hukum/PMK_No._32_ttg_Standar_Baku_Mutu_Kesehatan_Air_Keperluan_Sanitasi,_Kolam_Renang,_Solus_Per_Aqua_.pdf

Novita, E., Pradana, H. A., Purnomo, B. H., & Puspitasari, A. I. (2020). River water quality assessment in East Java, Indonesia. Journal of Water and Land Developement, X–XII(47), 135–141. https://doi.org/10.24425/JWLD.2020.135040

Purwaningsih, E., & Notosiswoyo, S. (2013). Hydrochemical Study of Groundwater in Sidoarjo Mud Volcano Area, East Java Indonesia. Procedia Earth and Planetary Science, 6, 234–241. https://doi.org/10.1016/j.proeps.2013.01.032

Putranto, T. T. (2011). Pencemaran Logam Berat Merkuri (Hg) pada Airtanah. 32(1), 11. https://doi.org/10.14710/teknik.v32i1.1690

Rosadi, D. (2008). Kualitas air tanah dangkal di daerah lumpur Sidoarjo dan sekitarnya, Jawa Timur. Buletin Geologi Tata Lingkungan, 18(1), 38–50.




DOI: http://dx.doi.org/10.21776/ub.jsal.2023.010.02.1

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