Teknologi Tepat Guna Pengolahan Air Tanah dengan Sistim Aerasi Bertingkat dan Filtrasi di Desa Dolago Padang, Kabupaten Parigi Moutong
https://doi.org/10.33860/pjpm.v3i3.1179
Keywords:
Teknologi Tepat Guna, Pengolahan, Air Tanah, Aerasi, FiltrasiAbstract
Pelaksanaan Pengabdian Kepada Masyarakat Di Desa Dolago Padang Kecamatan Parigi Selatan Kabupaten Parigi Moutong melalui kegiatan penerapanTeknologi Tepat Guna Pengolahan air tanah Dengan sistim Aerasi bertingkat dan Filtrasi adalah sebagai upaya untuk mengatasi permasalahan kualitas air bersih masyarakat yang tidak memenuhi syarat kesehatan. Metode pengabdian kepada masyarakat berupa pembuatan alat pengolahan air berupa alat penyaringan dengan menggunakan kombinasi sistim aerasi dan filtrasi yang menggunakan media pasir dan karbon aktif. Kegiatan ini dilaksanakan Di Desa Dolago Padang Kecamatan Parigi Selatan Kabupaten Parigi Moutong muali tanggal 12 – 21 Februari 2022. Sasaran kegiatan adalah warga masyarakat Desa Dolago Padang berjumlah 20 KK. Pelaksanaan pengolahan air bersih dilaksanakan dengan melalui beberapa tahapan yaitu tahap pertama pemeriksaan kualitas fisik dengan parameter Bau, warna dan kekeruhan serta parameter kimia Besi (Fe), Mangan (Mn). pengukuran Paramet fisik langsung dilakukan dilapangan,sementara paramenter kimia dilakukan pemerikasaan di Laboratorium Kimia air Jurusan Kimia Fakultas MIPA Unoversitas Tadulako Palu, Tahapan kedua adalah membuat bangunan penyaringan air dengan kombinasi sistim aerasi dan saringan pasir dengan media pasir dan karbon aktif, Tahap ketiga adalah melakukan pemeriksaan kualitas fisik dilapangan dan uji laboratorium kualitas kimia. Dari hasil uji laboratorium akan diperoleh kualitas air bersih yang memenuhi syarat kesehatan. Hasil kegiatan menunjukkan antusias masyarakat tergolong sangat aktif pada saat kegiatan, Terjalinnya komunikasi yang baik dari masing-masing peserta bersama dengan Tim pelaksana kegiatan melalui sharing pengalaman dan tukar pendapat. Hasil penyaringan menunjukkan bahwa air menjadi lebih memenuhi syarat kesehatan berdasarkan Standard Kualitas Air Baku/Bersih, Permenkes No. 907/MENKES/SK/VII/2010, air menjadi jernih, tidak berwarna dan tidak berbau, untuk parameter kimia kandungan kadar besi (Fe) dari kadar awal 4,8 mg/L setelah diolah melalui penyaringan turun menjadi 0,11 mg/L sedangkan kadar Mangan (Mn) dari 0,505 turun menjadi 0,026 mg/L.
Kata kunci: Teknologi Tepat Guna, Pengolahan, Air Tanah, Aerasi, Filtrasi
ABSTRACT
Implementation of Community Service in Dolago Padang Village, South Parigi District, Parigi Moutong Regency through the application of Appropriate Technology for Groundwater Treatment with a multilevel Aeration and Filtration system is an effort to overcome the problem of community clean water quality that does not meet health requirements. The method of community service is in the form of making water treatment equipment in the form of a filter using a combination of aeration and filtration systems using sand and activated carbon media. This activity was carried out in Dolago Padang Village, South Parigi District, Parigi Moutong Regency from February 12-21, 2022. The target of the activity was the residents of Dolago Padang Village, totaling 20 families. The implementation of clean water treatment is carried out through several stages, namely the first stage of physical quality inspection with parameters of Odor, color and turbidity as well as chemical parameters of Iron (Fe), Manganese (Mn). Physical parameters are measured directly in the field, while chemical parameters are checked at the Water Chemistry Laboratory, Chemistry Department, Faculty of Mathematics and Natural Sciences, Tadulako University, Palu, the second stage is to build a water filtration building with a combination of aeration system and sand filter with sand and activated carbon media, the third stage is to carry out inspections physical quality in the field and chemical quality laboratory tests. From the results of laboratory tests, the quality of clean water that meets health requirements will be obtained. The results of the activity showed that the enthusiasm of the community was very active during the activity, good communication was established from each participant along with the activity implementation team through sharing experiences and exchanging opinions. The filtering results show that the water has become more qualified to health based on the Raw/Clean Water Quality Standard, Permenkes No. 907/MENKES/SK/VII/2010, the water becomes clear, colorless and odorless, for chemical parameters the content of iron (Fe) content from the initial level of 4.8 mg/L after being processed through filtration decreased to 0.11 mg/L while the level of Manganese (Mn) from 0.505 decreased to 0.026 mg/L
Keyword: Appropriate Technology, Treatment, Groundwater, Aeration, Filtration
References
Aba, L., Eso, A., & Sahiddin, L. O. (2020). Penerapan Sistem Pengolahan Air Bersih Menggunakan Metode Aerasi-Filtrasi Bertingkat untuk Meningkatkan Derajat Kesehatan Masyarakat di Kelurahan Kambu Kota Kendari. Jurnal Pengabdian Masyarakat Ilmu Terapan, 2(2), 49–56. Retrieved from http://ojs.uho.ac.id/index.php/JPMIT/article/view/14912
Adhani, R., dan Husaini. (2017). Logam Berat Sekitar manusia (Kedua). Banjarmasin: Lambung Mangkurat University Press Pusat Pengelolaan Jurnal dan Penerbitan Unlam. Retrieved from http://eprints.ulm.ac.id/2238
Almukarrama, Iswadi, dan Muh. S. L. (2015). Studi Kualitas Air Hasil Saringan Bahan Karbon Aktif, Pasir Silika Dan Kerikil. Fisika Dan Terapannya, 2, 1–6. Retrieved from https://journal.uin-alauddin.ac.id/index.php/jft/article/view/16113
Cosgrove, W. J., & Loucks, D. P. (2015). Water management: Current and future challenges and research directions. Water Resources Research, 51(6), 4823–4839. https://doi.org/10.1002/2014WR016869
Dinka, M. O. (2018). Safe Drinking Water: Concepts, Benefits, Principles and Standards. In Water Challenges of an Urbanizing World. IntechOpen. https://doi.org/10.5772/intechopen.71352
Dipo Satryo Suhendra, Irnawati Marsaulina, D. N. S. (2012). Analisis Kualitas Air Gambut Dan Keluhan Kesehatan Pada Masyarakat Di Dusun Pulo Gombut Desa Suka Rame Baru Kecamatan Kuala Hulu Kabupaten Labuhan Batu Utara Tahun 2012. Kesehatan Lingkungan Dan Kesehatan Kerja. Retrieved from https://www.neliti.com/id/publications/14415/
Eko Hartini. (2012). Cascade Aerator Dan Bubble Aerator Dalam Menurunkan Kadar Mangan Air Sumur Gali. Kesehatan Masyarakat, 8(5), 42–50. Retrieved from https://journal.unnes.ac.id/nju/index.php/kemas/article/view/2258
Febrina, L., & Ayuna, A. (2015). Studi Penurunan Kadar Besi (Fe) Dan Mangan (Mn) Dalam Air Tanah Menggunakan Saringan Keramik. Jurnal Teknologi, 7(1), 35–44. https://doi.org/10.24853/jurtek.7.1.35-44
Godwin, C. M., Zehnpfennig, J. R., & Learman, D. R. (2020). Biotic and Abiotic Mechanisms of Manganese (II) Oxidation in Lake Erie. Frontiers in Environmental Science, 8. Retrieved from https://www.frontiersin.org/article/10.3389/fenvs.2020.00057
Kemenkes R.I.2010. Standard Kualitas Air Baku/Bersih, Permenkes No. 907/MENKES/SK/VII/2010. http://www.ampl.or.id/digilib/read/24-peraturan-menteri-kesehatan-republik-indonesia-no-492-menkes-per-iv-2010/50471
Khadse, G. K., Patni, P. M., & Labhasetwar, P. K. (2015). Removal of iron and manganese from drinking water supply. Sustainable Water Resources Management, 1(2), 157–165. https://doi.org/10.1007/s40899-015-0017-4
Menteri Kesehatan R.I. Peraturan Menteri Kesehatan Republik Indonesia Nomor 492/MENKES/PER/IV/2010., (2010). Indonesia. Retrieved from https://stunting.go.id/kemenkes-permenkes-no-492-tahun-2010-tentang-persyaratan-kualitas-air-minum/
Nur, A., & Khoironi, A. (2021). Evaluasi Efektivitas Metode dan Media Filtrasi pada Pengolahan Air Limbah Tahu. Jurnal Ilmu Lingkungan, 19(3), 565–575. https://doi.org/10.14710/jil.19.3.565-575
Omer, N. H. (2019). Water Quality Parameters. In Water Quality—Science, Assessments and Policy. IntechOpen. https://doi.org/10.5772/intechopen.89657
Peraturan Pemerintah Republik Indonesia. Pengelolaan Kualitas Air Dan Pengendalian Pencemaran Air. (2001). https://peraturan.bpk.go.id/Home/Details/53103/pp-no-82-tahun-2001
Quddus, R. (2014). Teknik Pengolahan Air Bersih Dengan Sistem Saringan Pasir Lambat (Downflow). Teknik Sipil Dan Lingkungan, 2(4), 669–675. https://ejournal.unsri.ac.id/index.php/jtsl/article/view/1878
Ronny, R., Irfai, I., Mahyudin, D., & Jasman, J. (2019). Banana Stem Charcoal as Adsorbents Reduce Water Hardness Levels. International Journal of Environment, Engineering and Education, 1(1), 1–6. https://doi.org/10.55151/ijeedu.v1i1.7
Ronny, R., & Syam, D. M. (2018). Aplikasi Teknologi Saringan Pasir Silika dan Karbon Aktif dalam Menurunkan Kadar BOD dan COD Limbah Cair Rumah Sakit Mitra Husada Makassar. HIGIENE: Jurnal Kesehatan Lingkungan, 4(2), 62–66. https://moraref.kemenag.go.id/documents/article/98745563641553851
Suhernomo, Athaillah Mursyid, Emmy Sri Mahreda, Gt. C. (2014). Analisis Kandungan Besi (Fe), Mangan (Mn), Dan pH Air Tanah Hasil Pemboran Geoteknik Di Tambang Batubara PT Adaro Indonesia Kabupaten Tabalong Dan Balongan Provinsi Kalimantan Selatan. EnviroScienteae, 10, 103–111. https://ppjp.ulm.ac.id/journal/index.php/es/article/view/1971
Trigunarso, S. I., Mulyono, R. A., & Suprawihadi, R. (2019). Alat Pengolah Air Tanah Menjadi Air Bersih dengan Proses Kombinasi Aerasi-Filtrasi Upflow (Desain Rancang Bangun). Jurnal Kesehatan, 10(1), 53. https://doi.org/10.26630/jk.v10i1.1174
Widodo, T., Budiastuti, M. T. S., & Komariah, K. (2019). Water Quality and Pollution Index in Grenjeng River, Boyolali Regency, Indonesia. Caraka Tani: Journal of Sustainable Agriculture, 34(2), 150–161. https://doi.org/10.20961/carakatani.v34i2.29186
World Health Organization. (2006). Guidelines for drinking-water quality: First addendum to the third edition, volume 1 : reccommendations. Geneva: WHO. https://www.who.int/publications/i/item/9789241547611
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