Penerapan Life Cycle Assessment untuk Kajian Dampak Lingkungan Pada Instalasi Pengolahan Air Bersih
Main Article Content
Abstract
Water Treatment Plants (WTP) are an important component in providing drinking water that is safe and meets health standards. However, the process can have ainegativeiimpactionitheienvironment dueito theiuse ofichemicals and electrical energy. This research uses the Life Cycle Assessment (LCA) methodiwithitheihelpiof SimaPro software to analyze the environmental impact of WTP. The research aims to analyze the environmental impact of the clean water treatment process and offer an environmentally friendly alternative to WTP. The LCA method is used with environmental impact assessment using SimaPro 9.0. This research includes determining objectives and scope, data collection (Life Cycle Inventory), impactianalysis (Life Cycle Impact Assessment), and dataiinterpretation. The resultsiof theianalysis show that the reservoir and lamella units are the biggesticontributorsito theiimpact in the endpoint impact category. The Impact 2002+ and ReCiPe 2016 methods produced different impacts, with ReCiPe 2016 showing a higher impact in some categories. This research provides insight into the environmental impacts of the clean water processing process at WTP. Recommendations for improvement include reducing the use of chemicals, energy efficiency, and implementing environmentally friendly technology.
Article Details

This work is licensed under a Creative Commons Attribution 4.0 International License.
References
F. Ramadhan, L. Siami, and Winarni, “Optimalisasi Instalasi Pengolahan Air Minum Solear, PDAM Tirta Kerta Raharja -Kabupaten Tangerang,” Semin. Nas. Pembang. Wil. Dan Kota Berkelanjutan, pp. 132–141, 2019.
R. G. E. Bhaskoro and T. Ramadhan, “Evaluasi Kinerja Instalasi Pengolahan Air Minum (IPAM) Karangpilang I Pdam Surya Sembada,” vol. 15, no. 2, pp. 62–68, 2018.
F. Hanun, S. Jannah, R. A. Kusumadewi, and R. Ratnaningsih, “Selection Of Design Criteria For The Coagulation , Flocculation And Sedimentation Unit In The Klapanunggal Drinking Water Treatment Plant,” Int. J. Sci. Technol. Res., vol. 9, no. 01, pp. 3500–3505, 2020.
C. Abdi, R. M. Khair, and Siti Aisyah, “Pengaruh Ozonisasi Terhadap Penurunan Intensitas Warna Dan Kadar Besi ( Fe ) Pada Air Gambut,” Jukung J. Tek. Lingkung., vol. 3, no. 1, pp. 21–29, 2017.
I. copyright Office, “Environmental management — Life cycle assessment — Principles and framework,” Int. Stand. ISO 14040, vol. 2006, 2006.
Hermawan, P. F. Marzuki, M. Abduh, and R. Driejana, “Peran Life Cycle Analysis (LCA) Pada Material Konstruksi Dalam Upaya Menurunkan Dampak Emisi Karbon Dioksida Pada Efek Gas Rumah Kaca,” Konf. Nas. Tek. Sipil 7 (KoNTekS 7), Univ. Sebel. Maret - Surakarta, 24-26 Oktober 2013, vol. 7, no. KoNTekS 7, pp. 47–52, 2013.
Damiri and I. B. Santoso, “Kajian Dampak Proses Produksi Tapioka Terhadap Lingkungan Dengan Metode Life Cycle Assessment (LCA),” J. DARMA AGUNG, vol. 30, no. 2, pp. 1177–1197, 2022.
N. Deborah and M. Faiz, “Penilaian Manajemen Rantai Pasok Sustainable Packaging : Studi Literatur,” J. Sains dan Seni ITS, vol. 12, no. 2, pp. 17–22, 2023.
M. Starostka-patyk, “New products design decision making support by SimaPro software on the base of defective products management,” Procedia - Procedia Comput. Sci., vol. 65, no. Iccmit, pp. 1066–1074, 2015, doi: 10.1016/j.procs.2015.09.051.
H. Santoso and Ronald, “Alat Potong Kuku Dengan Limbah Kayu,” J@ti Undip, vol. VII, no. 1, pp. 19–26, 2012.
G. A. Nurbaiti, T. Agung, and A. Ulfah, “Life Cycle Assessment ( LCA ) Sebagai Metode Kajian Dampak Lingkungan Proses Pengolahan Air Bersih Di Instalasi Pengolahan Air (IPA) Siwalanpanji,” EnviroUS, vol. 2, no. 1, pp. 21–27, 2022.
M. A. J. Huijbregts et al., “ReCiPe2016: a harmonised life cycle impact assessment method at midpoint and endpoint level,” Int. J. Life Cycle Assess., vol. 22, pp. 138–147, 2017, doi: 10.1007/s11367-016-1246-y.
Menteri Kesehatan Republik Indonesia, “Peraturan Menteri Kesehatan Republik Indonesia Nomor 32 Tahun 2017,” 2017.
D. M. Allami, M. T. Sorour, M. Moustafa, A. Elreedy, and M. Fayed, “Life Cycle Assessment of a Domestic Wastewater Treatment Plant Simulated with Alternative Operational Designs,” J. Sustain., vol. 15, pp. 1–16, 2023.
D. Lemos, A. Cláudia, X. Gabarrell, and L. Arroja, “Environmental assessment of an urban water system,” J. Clean. Prod., vol. xxx, pp. 1–9, 2013, doi: 10.1016/j.jclepro.2013.04.029.