PEMERIKSAAN KUALITAS AIR MINUM PDAM TIRTA BENTENG, KOTA TANGERANG

Ira Ayu Hastiaty, Haryoto Kusnoputranto, Suyud Warno Utomo, Eko Handoyo

Abstract


Salah satu tujuan Sustainable Development Goal (SDG) poin 6, target 6.1 yaitu pada tahun 2030 tercapainya akses universal dan merata ke air minum yang aman dan terjangkau untuk semua. Kualitas air minum adalah salah satu faktor terbesar yang mempengaruhi kesehatan manusia. Kondisi kualitas air perpipaan (umumnya dikelola oleh PDAM) di Indonesia saat ini belum memenuhi standar air minum, sehingga belum dapat dikonsumsi secara langsung. Kebaruan dalam penelitian ini karena meneliti tentang pemeriksaan kualitas air minum PDAM Tirta Benteng, Kota Tangerang. Tujuan dari penelitian ini untuk menganalisis gambaran kualitas air Perusahaan Daerah Air Minum (PDAM) Tirta Benteng, Kota Tangerang berdasarkan hasil pengawasan eksternal dari Dinas Kesehatan kota Tangerang. Penelitian ini melalui tahapan pengambilan sampel (202 sampel), pengujian kualitas sampel air minum, dan analisis menggunakan metode statistika deskriptif. Hasil pengujian dibandingkan denganPermenkes No. 492 Tahun 2010 tentang persyaratan kualitas air minum. Sebanyak 0,5% sampel air minum yang diuji tidak memenuhi persyaratan air minum untuk parameter fisika, yaitu untuk parameter TDS. Sebanyak 3,5% sampel air minum yang diuji tidak memenuhi persyaratan air minum untuk parameter kimia, yaitu untuk parameter flourida, besi, dan seng. Sebanyak 8,9% sampel air minum yang diuji tidak memenuhi persyaratan air minum untuk parameter mikrobiologi baik untuk total coliform maupun E. Coli. Kesimpulan dalam penelitian ini bahwa kualitas air minum PDAM Tirta Benteng masih ada yang tidak memenuhi persyaratan kualitas air minum untuk parameter fisika, kimia dan mikrobiologi.


Keywords


Air minum; Kualitas air; PDAM; Pengawasan eksternal

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References


World Health Organization. Terms of Reference - WHO International Network of Drinking-water and Sanitation Regulators (RegNet). 2010. p. 1–7.

WHO. Water, Sanitation, Hygiene and Health: A Primer for Health Professionals. World Heal Organ. 2019;1–40.

Irwan I, Prasetya E, Tahengo MR. Analysis Of Water Pollution In Various Types Of Micro Business Case Study In Huluduotamo Village, Suwawa District, Bone Bolango Regency. Jambura J Heal Sci Res [Internet]. 2022 Jan 30;4(1):510–23. Available from: https://ejurnal.ung.ac.id/index.php/jjhsr/article/view/12070

Menteri Kesehatan Republik Indonesia. Peraturan Menteri Kesehatan Republik Indonesia Nomor 736/MENKES/PER/VI/2010 Tentang Tata Laksana Pengawasan Kualitas Air Minum. Peraturan Menteri Kesehatan. 2010. p. 1–25.

World Health Organization, UNICEF, World Bank Group. State of the World ’ s Drinking Water. Brocklehurst C, Mead S, editors. Geneva: World Health Organization; 2022.

Li P, Wu J. Drinking Water Quality and Public Health. Expo Heal. 2019;11(2):73–9.

Xia L, Han Q, Shang L, Wang Y, Li X, Zhang J, et al. Quality assessment and prediction of municipal drinking water using water quality index and artificial neural network: A case study of Wuhan, central China, from 2013 to 2019. Sci Total Environ. 2022;844:1–12.

Suminar L, Werdiningtyas R, Kusumastuti. Investigating the implementation of Indonesian regulation in drinking water supply system. IOP Conf Ser Earth Environ Sci. 2021;916(1):1–9.

Wispriyono B, Zakianis. Peta Jalan Pengawasan Kualitas Air Minum Nasional (2020-2030). Setyawati E, Hidayat I, Utami W, Nugroho, Warouw SP, Abbas I, editors. Jakarta: Kementrian Kesehatan Republik Indonesia; 2020. 40 p.

Irianti S, Prasetyoputra P, Sasimartoyo TP. Determinants of household drinking-water source in Indonesia: An analysis of the 2007 Indonesian family life survey. Cogent Med. 2016;3(1):1151143.

Alang H. Deteksi Coliform Air PDAM di Beberapa Kecamatan Kota Makassar. In: Prosiding Seminar Nasional Mikrobiologi Kesehatan dan Lingkungan. Makasar; 2015. p. 16–20.

Sabri L, Hastono SP. Statistika Kesehatan. Jakarta: Rajagrafindo Persada; 2010.

Bosch A. Human Viruses in Water. 1st ed. Vol. 17, Perspectives in Medical Virology. 2007. 127–162 p.

Gunnarsdottir MJ, Gardarsson SM, Jonnson GS, Bartam J. Chemical quality and regulatory compliance of drinking water in Iceland. Int J Hyg an Environ Heal. 2016;219(8724–733).

Dinas Kesehatan Kota Tangerang. Laporan Pengawasan Eksternal PDAM Tahun 2022. Tangerang; 2022.

Devesa R, Dietrich AM. Guidance for optimizing drinking water taste by adjusting mineralization as measured by total dissolved solids (TDS). Desalination. 2018;439(April):147–54.

Latupeirissa AN, Manuhutu JB. Analisis Parameter Fisika Dan Kesadahan Air Pdam Wainitu Ambon. Molluca J Chem Educ. 2020;10(1):1–7.

Guth S, Hüser S, Roth A, Degen G, Diel P, Edlund K, et al. Toxicity of fluoride: critical evaluation of evidence for human developmental neurotoxicity in epidemiological studies, animal experiments and in vitro analyses. Vol. 94, Archives of Toxicology. Springer Berlin Heidelberg; 2020. 1375–1415 p.

Bjørklund G, Dadar M, Peana M, Rahaman MS, Aaseth J. Interactions between iron and manganese in neurotoxicity. Arch Toxicol. 2020;94(3):725–34.

Schullehner J, Thygesen M, Kristiansen SM, Hansen B, Pedersen CB, Dalsgaard S. Exposure to manganese in drinking water during childhood and association with attention-deficit hyperactivity disorder: A nationwide cohort study. Environ Health Perspect. 2020;128(9):1–10.

Suseno NV, Widyastuti M. Analisis Kualitas Air PDAM Tirta Manggar Kota Balikpapan. J Bumi Indones. 2017;6(1):1–8.

Dewata E, Yun Hendri Danhas. Toksikologi Lingkungan Konsep dan Aplikatif. Vidyafi I, editor. Depok: Rajawali Press; 2021. 339 p.

Ghosh GC, Khan MJH, Chakraborty TK, Zaman S, Kabir AHME, Tanaka H. Human health risk assessment of elevated and variable iron and manganese intake with arsenic-safe groundwater in Jashore, Bangladesh. Sci Rep. 2020;10(1):1–10.

Sharma GK, Jena RK, Ray P, Yadav KK, Moharana PC, Cabral-Pinto MMS, et al. Evaluating the geochemistry of groundwater contamination with iron and manganese and probabilistic human health risk assessment in endemic areas of the world’s largest River Island, India. Environ Toxicol Pharmacol. 2021;87(March 2021):103690.

Wen X, Chen F, Lin Y, Zhu H, Yuan F, Kuang D, et al. Microbial indicators and their use for monitoring drinkingwater quality-A review. Sustain. 2020;12(6):1–15.

Menteri Kesehatan Republik Indonesia. Peraturan Menteri Kesehatan Republik Indonesia Nomor 492/MENKES/PER/1V/2010. 2010. p. 1–9.

Widiyanti BL, Purnama ILS, Sutomo AH, Setiadi. Microbiological Quality Assessment of Drinking Water in Teros Village, East Lombok District, West Nusa Tenggara Province, Indonesia. Appl Mech Mater. 2018;881(September 2000):48–54.

Khan JR, Hossain MB, Chakraborty PA, Mistry SK. Household drinking water E. coli contamination and its associated risk with childhood diarrhea in Bangladesh. Environ Sci Pollut Res. 2022;29(21):32180–9.

Säve-Söderbergh M, Toljander J, Donat-Vargas C, Berglund M, Åkesson A. Exposure to drinking water chlorination by-products and fetal growth and prematurity: A nation wide register-based prospective study. Environ Health Perspect. 2020;128(5).

Hrudey SE, Backer LC, Humpage AR, Krasner SW, Michaud DS, Moore LE, et al. Evaluating Evidence for Association of Human Bladder Cancer with Drinking-Water Chlorination Disinfection By-Products. J Toxicol Environ Heal - Part B Crit Rev. 2015;18(5):213–41.




DOI: https://doi.org/10.35971/jjhsr.v5i2.18473

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