Assessment of Physical and Chemical Quality Standards for Water and Sanitation Disclosure Towards SDG 6: A Study in Wijimulyo, Nanggulan, Kulon Progo Regency

https://doi.org/10.22146/jpkm.90890

Muhammad Prasetya Kurniawan(1*), Setyawan Bekti Wibowo(2), Nurulia Hidayah(3), Probo Santoso(4), Danis Syalwa Octaviani(5), Errika Anggraini Larasati(6), Atika Yulia Rachman(7), Almaira Daffa Nurramdhana(8), Citra Aulia Mahardini Gunawan(9)

(1) Departemen Teknologi Industri Pertanian, Fakultas Teknologi Pertanian Universitas Gadjah Mada Jl. Flora No. 1 Bulaksumur, Yogyakarta 55281
(2) Department of Mechanical Engineering, Vocational College, Universitas Gadjah Mada, Yogyakarta, Indonesia
(3) 3Department of Bioresources Technology and Veterinary, Vocational College, Universitas Gadjah Mada, Yogyakarta, Indonesia
(4) Department of Bioresources Technology and Veterinary, Vocational College, Universitas Gadjah Mada, Yogyakarta, Indonesia
(5) Department of Agro-Industrial Technology, Faculty of Agricultural Technology, Universitas Gadjah Mada, Yogyakarta, Indonesia
(6) Department of Agro-Industrial Technology, Faculty of Agricultural Technology, Universitas Gadjah Mada, Yogyakarta, Indonesia
(7) Department of Agro-Industrial Technology, Faculty of Agricultural Technology, Universitas Gadjah Mada, Yogyakarta, Indonesia
(8) Department of Agro-Industrial Technology, Faculty of Agricultural Technology, Universitas Gadjah Mada, Yogyakarta, Indonesia
(9) Department of Agro-Industrial Technology, Faculty of Agricultural Technology, Universitas Gadjah Mada, Yogyakarta, Indonesia
(*) Corresponding Author

Abstract


Strategies to implement Sustainable Development Goal (SDG) 6, which relates to clean water and sanitation, in the context of educating vocational teachers and students so that it can be delivered to the community, require synergy between academics, teachers, students, village civil servants, and the community. Dissemination of SDG 6 on clean water and proper sanitation requires monitoring, evaluation, and promotion to increase awareness of the sustainability of clean water sources. Sampling was conducted using the purposive sampling method. The number of samples was 63 water samples were taken from water sources in each resident's house and tested water samples using a Multi-parameter Water Quality Checker and out data processing based on spatial. The results showed an average TDS value of 267 mg/l; turbidity of 0.4 NTU; temperature of 24.1°C; conductivity of 0.4 mS/cm; pH 7.1; salinity 0.2 ppt; and DO 5.9 mg/l. Based on these average values, the water quality has met the water quality standards of the Minister of Health of the Republic of Indonesia Regulation No. 2 Year 2023 and Indonesian National Standard 3553:2015. However, based on the result of tracing each sampling point several samples do not meet water quality standards due to high mineral content in the water, weather factors, waste contamination, proximity to the location of the beach (sea water), and soil erosion. Scenarios for raising awareness about water quality standards need to be carried out in every school and community institution, strategies for implementing water quality management that involves the community and collaboration with government, NGOs, and the private sector in the implementation of SDGs 6, also regular monitoring and evaluation related to water quality.


Keywords


Mitigation; Quality Control, Sanitation, SDG 6, Water Quality Standards

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References

Agustina, A. H., Ardiansyah, M., Bulotio, N.F., & Israwahyudi. (2023). Ekologi Perairan. Padang. Getpress Indonesia. Badan Standardisasi Indonesia. (2004). SNI 06-6989.14-2004. Badan Standardisasi Nasional. Badan Standardisasi Indonesia. (2015). SNI 01-3553-2015. Badan Standardisasi Nasional. Badan Standardisasi Indonesia. (2015). SNI 01-3554-2015. Badan Standardisasi Nasional. Boyd, C. E. (2019). Water quality: an introduction. Springer Nature. Covington, Arthur. (1989). pH and its Measurement. ETGT Chemistry Cassette. Debska, K., Rutkowska, B., Szulc, W., & Gozdowski, D. (2021). Changes in Selected Water Quality Parameters in the Utrata River as a Function of Catchment Area Land Use. Water, 13(21), 1-16. https://doi.org/10.3390/w13212989 EPA. (2015). Dissolved Oxygen | US EPA. US EPA. https://www.epa.gov/caddis-vol2/dissolved-oxygen Ez-zaouy Y, Bouchaou L, Saad A, Hssaisoune M, Brouziyne Y, Dhiba D, & Chehbouni A. (2022) Groundwater Resources in Moroccan Coastal Aquifers: Insights of Salinization Impact on Agriculture. Environmental Sciences Proceedings, 16(1), 1-5. https://doi.org/10.3390/environsciproc2022016048 Gray, N. F. (2008). Drinking Water Quality Second Edition. Cambridge University Press. Hardiyana, S., Rahardja, B. S., & Masithah, E. D. (2020). Studi Pemberian Lactobacillus spp. dan Barley Straw Terhadap Dinamika DO, pH dan Kelimpahan Plankton. Journal of Marine and Coastal Science Vol, 9, 1. https://doi.org/10.20473/jmcs.v9i1.20759 Kementerian Pekerjaan Umum dan Perumahan Rakyat Republik Indonesia. (2023). Pemakaian Air Rumah Tangga Perkotaan 144 Liter Perhari. Kementerian PUPR. https://pu.go.id/berita/pemakaian-air-rumah-tangga-perkotaan-144-liter-perhari. Khairunnas, K., & Gusman, M. (2018). Analisis pengaruh parameter konduktivitas, resistivitas dan TDS terhadap salinitas air tanah dangkal pada kondisi air laut pasang dan air laut surut di daerah pesisir pantai Kota Padang. Bina Tambang, 3(4), 1751-1760. https://doi.org/10.24036/bt.v3i4.102295 Kubitza, F. (2021). The oft-overlooked water quality parameter: pH - Responsible Seafood Advocate. Global Seafood Alliance. https://www.globalseafood.org/advocate/the-oft-overlooked-water-quality-parameter-ph/ Legono, D. (2022). Analisis Erosi Buluh pada Dasar Sungai Kuning, Yogyakarta. Jurnal Teknik Sumber Daya Air, 59-68. https://doi.org/10.56860/jtsda.v2i1.35 Len, O. T. S. (2023). Someone assumed an equation for turbidity in spectrophotometry, where does he get the 2.3 from? And is his answer correct? | ResearchGate. ResearchGate; ResearchGate. https://www.researchgate.net/ Lestari, I. L., Singkam, A. R., Agustin, F., Miftahussalimah, P. L., Maharani, A. Y., & Lingga, R. (2021). Perbandingan Kualitas Air Sumur Galian dan Bor Berdasarkan Parameter Kimia dan Parameter Fisika. BIOEDUSAINS: Jurnal Pendidikan Biologi Dan Sains, 4(2), 155-165. https://doi.org/10.31539/bioedusains.v4i2.2346 Letterman, R. D. (1999). Water Quality and Treatment: A Handbook Of Community Water supplies. McGraw-Hill. Lin, X., Wu, M., Shao, X., Li, G., & Hong, Y. (2023). Water turbidity dynamics using random forest in the Yangtze River Delta Region, China. Science of the Total Environment, 903, 1-11. https://doi.org/10.1016/j.scitotenv.2023.166511 Menteri Kesehatan Republik Indonesia. (2023). Peraturan Menteri Kesehatan Republik Indonesia Nomor 2 Tahun 2023. Kementrian Kesehatan. Meride, Y., & Ayenew, B. (2016). Drinking water quality assessment and its effects on residents health in Wondo genet campus, Ethiopia. Environmental Systems Research, 5(1), 1-7. https://doi.org/10.1186/s40068-016-0053-6 Montana Science. (2012). Water Quality Parameters: Dissolved Oxygen. Montana Science Partnership. http://www.sciencepartners.info/module-4-water/what-is-water-quality/water-quality-parameters-dissolved-oxygen/ Munfiah, S., Nurjazuli, N., & Setiani, O. (2013). Kualitas Fisik dan Kimia Air Sumur Gali dan Sumur Bor di Wilayah Kerja Puskesmas Guntur II Kabupaten Demak. Jurnal Kesehatan Lingkungan Indonesia, 12(2), 154-159. https://doi.org/10.14710/jkli.12.2.154 - 159. National Geographic. (2015). Water Inequality. Nationalgeographic.org. https://education.nationalgeographic.org/resource/water-inequality/ Ngabirano, H., Byamugisha, D., & Ntambi, E. (2016). Effects of seasonal variations in physical parameters on quality of gravity flow water in Kyanamira Sub-County, Kabale District, Uganda. O’Donnell, D. (2021). How to Test the Salinity of Water and Why It’s Important - Sensorex Liquid Analysis Technology. Sensorex Liquid Analysis Technology. https://sensorex.com/how-to-test-the-salinity-of-water/ Omar, A. F., & Jafri, M. Z. M. (2013). Optical System in Measurement of Water Turbidity: Design and Analytical Approach (Penerbit USM). Penerbit Usm. Prakosa, J. A., Sirenden, B. H., Rustandi, D., Kartiwa, B., Wijonarko, S., & Maftukhah, T. P. (2020). Perbandingan Pengukuran Salinitas Air antara Metode Daya Hantar Listrik dan Massa Jenis untuk Aplikasinya pada Bidang Pertanian. J Instrumentasi, 44(2), 199-211. http://dx.doi.org/10.31153/instrumentasi.v44i2.221 Quench. (2022). What Are Total Dissolved Solids and Are They Safe to Drink? Quench Water. https://quenchwater.com/blog/total-dissolved-solids/ Ravikumar, P., Prakash, K. L., & Somashekar, R. K. (2013). Evaluation of water quality using geochemical modeling in the Bellary Nala Command area, Belgaum district, Karnataka State, India. Carbonates and Evaporites, 28, 365-381. https://doi.org/10.1007/s13146-012-0124-3 Rudianto, A. K., & Pasaribu, M. (2021). Analisis Penurunan Salinitas Air Sumur Menggunakan Arang Aktif Ampas Tebu (Bagasse) Di Kelurahan Untia. In Prosiding Seminar Nasional Teknologi Industri (SNTI) (Vol. 1, No. 1, pp. 372-375). Tampubolon, H. R. (2007). Evaluasi dan Pengembangan Jaringan Distribusi PDAM Unit Sentolo di Kecamatan Nanggulan-Kabupaten Kulonprogo-Jogjakarta. UNDP. (2015). Sustainable Development Goals | United Nations Development Programme. UNDP. https://www.undp.org/sustainable-development-goals/clean-water-and-sanitation UNICEF. (2019). Water, sanitation and hygiene. Unicef.org. https://www.unicef.org/indonesia/water-sanitation-and-hygiene USAID. (2022). Indonesia Global Water Strategy Country Plan 2023. USAID: Jakarta. Wei, Y., Jiao, Y., An, D., Li, D., Li, W., & Wei, Q. (2019). Review of Dissolved Oxygen Detection Technology: From Laboratory Analysis to Online Intelligent Detection. Sensors, 19(3995), 1-38. https://doi.org/10.3390/s19183995 WHO. (2022). Guidelines for drinking-water quality. World Health Organization. Wijayanti, Y., Yuniasih, B., Verma, N., Krisdiarto, A. W., & Safitri, L. (2018). Groundwater quality mapping of Yogyakarta City, Sleman, Kulonprogo and Bantul regency area of Yogyakarta Province. In IOP Conference Series: Earth and Environmental Science (Vol. 195, No. 1, p. 012012). IOP Publishing. 10.1088/1755-1315/195/1/012012.



DOI: https://doi.org/10.22146/jpkm.90890

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