Analisis Kualitas Air Hygiene Sanitasi Secara Fisika dan Kimia di Perumahan Green View Sunggal

Authors

  • Devi Lestari Politeknik Negeri Medan
  • Imas Masriah Politeknik Negeri Medan
  • Sulwiyatul Kamariah Sani Politeknik Negeri Medan
  • Siti Mahmudha Politeknik Negeri Medan
  • Adelia Yesya Putri Hasibuan Politeknik Negeri Medan

DOI:

https://doi.org/10.55123/insologi.v4i3.5309

Keywords:

Water Quality, Sanitation Hygiene, Physical Parameters, Chemical Parameters

Abstract

This study analyzed the quality of borehole water in Green View Sunggal Housing located in a rice field area. This research used a descriptive analytical method with a cross-sectional design. Samples were taken from 25 boreholes through a purposive sampling technique divided into three zones: north (8 wells), middle (7 wells), and south (10 wells). The parameters evaluated included physical aspects (temperature, odor, taste, color, turbidity) and chemical aspects (pH, hardness, Fe, Mn, nitrate, nitrite, chloride). Laboratory analysis was carried out at the Medan State Polytechnic following SNI standards and the APHA method, with statistical analysis using SPSS for Pearson correlation and linear regression. The results showed that the majority of parameters met the standards of Permenkes No. 32 of 2017. The parameters of temperature, odor, taste, hardness, manganese, nitrate, nitrite, and chloride reached a compliance level of 100%. However, there were discrepancies in color (92%), turbidity (84%), pH (64%), and iron content (80%). Samples from the southern zone adjacent to rice fields within a 200-meter radius showed significant problems with acidic pH (5.8-6.4) and excessive iron content (1.12-1.42 mg/L). Statistical analysis revealed significant correlations between well depth, distance from rice fields, and water quality. Distance from rice fields was the strongest predictor for nitrate (R² = 0.475) and iron (R² = 0.374). The study concluded that better environmental management is needed to maintain and improve water quality in the residential area.

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References

Ananda, R., HAR, R., Prabowo, H., & Rahman, H. A. (2024). Penetralan pH Air Asam Tambang Menggunakan Metode Pasif Open Limestone Channel dengan Penambahan Fly Ash, Zeolite, dan Pasir Silika Pada Pengujian Skala Laboratorium. Jurnal Geosains Dan Teknologi, 7(1), 75–82. https://doi.org/10.14710/jgt.7.1.2024.75-82

Benaissa, C., Bouhmadi, B., & Rossi, A. (2023). An assessment of the physicochemical, bacteriological quality of groundwater and the water quality index (WQI) used GIS in Ghis Nekor, Northern Morocco. Scientific African, 20, e01623. https://doi.org/10.1016/J.SCIAF.2023.E01623

Hasyyati, N. A., Nurmi, N., & Ilahude, Z. (2023). Analisis Kandungan Unsur Hara Mikro (Mn, Fe, Zn), C-Organik Dan Kadar Air Pada Lahan Jagung (Zea Mays L.) Di Kecamatan Tabongo Kabupaten Gorontalo. Jurnal Lahan Pertanian Tropis (JLPT), 2(2), 104–109. https://doi.org/10.56722/jlpt.v2i2.21707

Li, H., Liang, X., Chen, Y., Tian, G., & Zhang, Z. (2008). Ammonia volatilization from urea in rice fields with zero-drainage water management. Agricultural Water Management, 95(8), 887–894. https://doi.org/10.1016/J.AGWAT.2007.05.016

Lisenbee, W., Saha, A., Mohammadpour, P., Cibin, R., Kaye, J., Grady, C., & Chaubey, I. (2024). Water quality impacts of recycling nutrients using organic fertilizers in circular agricultural scenarios. Agricultural Systems, 219, 104041. https://doi.org/10.1016/J.AGSY.2024.104041

Mahmood, P., Khan, A. H., Haider, S., Syed, Z., Khaliq, M., & Zaheer, S. (2024). Application of Bio Sand Filters for improving drinking water quality in flood-affected areas of Pakistan, a case study of Shahdad Kot, Pakistan. Case Studies in Chemical and Environmental Engineering, 9, 100769. https://doi.org/10.1016/J.CSCEE.2024.100769

Mei, K., Shi, H., Wu, Y., Dahlgren, R. A., Ji, X., Yang, M., & Guan, Y. (2025). Impact of landscape patterns on river water quality: Spatial-scale effects across an agricultural-urban interface. Ecological Indicators, 170, 113019. https://doi.org/10.1016/J.ECOLIND.2024.113019

Munfiah, S., Setiani, O., Kesmas Politeknik Banjarnegara Nurjazuli, P., Magister Kesehatan Lingkungan UNDIP dr Onny Setiani, P., & Magister Kesehatan Lingkungan UNDIP, P. (n.d.). Kualitas Fisik dan Kimia Air Sumur Gali dan Sumur Bor di Wilayah Kerja Puskesmas Guntur II Kabupaten Demak Physical and Chemical Water Quality of Dug and Bore Well in the Working Area of Public Health Center II Guntur Demak Regency.

Ogunsanwo, F. O., Ayanda, J. D., Olurin, O. T., Ogundele, O. E., Ogunsanwo, B. T., & Agboola, K. (2024). Physicochemical and geochemical analysis of groundwater quality in Ilaporu, Ogun State, Nigeria, for domestic and agricultural usage. HydroResearch, 7, 225–247. https://doi.org/10.1016/J.HYDRES.2024.04.003

Owusu, C., Ofori, A., Adusei-Mensah, F., Dodoo, D. K., & Essumang, D. K. (2024). Water quality, physicochemical, heavy metal content, and health risk assessment of borehole-water from selected mining communities in Ghana. Groundwater for Sustainable Development, 26, 101230. https://doi.org/10.1016/J.GSD.2024.101230

Panday, D. P., Kumari, A., & Kumar, M. (2025). Alkalinity-salinity-sustainability: Decadal groundwater trends and its impact on agricultural water quality in the Indian Peninsula. Science of The Total Environment, 978, 179459. https://doi.org/10.1016/J.SCITOTENV.2025.179459

Pane, Y., Suhelmi, S., & Sembiring, D. S. P. S. (2020). Analisa Penentuan Kualitas Air untuk Masyarakat Dalam Kegiatan Industri di Pabrik Sarung Tangan Namorambe. Jesya (Jurnal Ekonomi & Ekonomi Syariah), 3(2), 471–478. https://doi.org/10.36778/jesya.v3i2.272

Pratiwi, I. E., Keliat, B., Sri, D., & Daulay, R. (2021). Analisis Kualitas Air Sumur Sekitar Persawahan Di Perumahan Regency Wahidin, Kota Binjai, Sumatera Utara. Pros. SemNas. Peningkatan Mutu Pendidikan, 2(1).

Qi, D., Yan, J., & Zhu, J. (2020). Effect of a reduced fertilizer rate on the water quality of paddy fields and rice yields under fishpond effluent irrigation. Agricultural Water Management, 231, 105999. https://doi.org/10.1016/J.AGWAT.2020.105999

Qureshi, S. S., Channa, A., Memon, S. A., Khan, Q., Jamali, G. A., Panhwar, A., & Saleh, T. A. (2021). Assessment of physicochemical characteristics in groundwater quality parameters. Environmental Technology & Innovation, 24, 101877. https://doi.org/10.1016/J.ETI.2021.101877

Sahu, M., Shrivastava, A., Jhariya, D. C., Diwan, S., & Subhadarsini, J. (2024). Evaluation of correlation of physicochemical parameters and major ions present in groundwater of Raipur using discretization. Measurement: Sensors, 34, 101278. https://doi.org/10.1016/J.MEASEN.2024.101278

Srivastava, A., Dutta, S., Ahuja, S., & Sharma, R. K. (2021). Green chemistry: key to reducing waste and improving water quality. Handbook of Water Purity and Quality, 359–407. https://doi.org/10.1016/B978-0-12-821057-4.00010-0

Udeigwe, T. K., Eze, P. N., Teboh, J. M., & Stietiya, M. H. (2011). Application, chemistry, and environmental implications of contaminant-immobilization amendments on agricultural soil and water quality. Environment International, 37(1), 258–267. https://doi.org/10.1016/J.ENVINT.2010.08.008

Winny Laura Christina Hutagalung, Rizky Mutia Puteri Rei, & Freddy Ilfan. (2022). Analisis Kandungan Nitrat dan Nitrit pada Air Tanah di Sekitar Perkebunan Kelapa Sawit. INSOLOGI: Jurnal Sains Dan Teknologi, 1(5), 684–695. https://doi.org/10.55123/insologi.v1i5.1040

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Published

2025-06-15

How to Cite

Devi Lestari, Imas Masriah, Sulwiyatul Kamariah Sani, Siti Mahmudha, & Adelia Yesya Putri Hasibuan. (2025). Analisis Kualitas Air Hygiene Sanitasi Secara Fisika dan Kimia di Perumahan Green View Sunggal. INSOLOGI: Jurnal Sains Dan Teknologi, 4(3), 395–406. https://doi.org/10.55123/insologi.v4i3.5309

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