Analisis Kinerja Instalasi Pengolahan Air Limbah Pada Pusat Perbelanjaan di Kota Surabaya (Studi Kasus: Mal X dan Y)
Keywords:
IPAL, Pusat Perbelanjaan, Air Limbah, pencemaran airAbstract
Increased activity in shopping centres generates liquid waste that has the potential to pollute the environment if not properly managed. The assessment was carried out by measuring the efficiency of the wastewater treatment plant in treating wastewater quality parameters such as Biochemical Oxygen Demand (BOD), Chemical Oxygen Demand (COD), Total Suspended Solids (TSS) and pH in accordance with the quality standards set by the government. The research methodology included field observations, laboratory analyses and interviews with STP managers. The results showed that the results of the wastewater quality standard test at the wastewater treatment plant of Mall Y had met the domestic wastewater quality standard, but Mall X had parameters that did not meet the quality standard. Factors such as the level of efficiency and treatment capacity of the STP and the level of maintenance of the equipment can significantly affect performance. These findings are expected to provide a reference for shopping centre managers to improve wastewater management and comply with applicable environmental regulations, as well as contribute to sustainable environmental management.
References
[1] Wahyuni R, “Migrasi Dan Dinamika Kependudukan Di Kota Surabaya,” J. Sos. Dan Ekon., Vol. 12(1), Pp. 45–60, 2019.
[2] K. Sevira, Puteri Sari Dan Sa’diyah, “Pengaruh Rasio Penambahan Koagulan Pac Pada Pengolahan Limbah Cair Pusat Perbelanjaan Secara Koagulasi-Flokulasi,” J. Teknol. Separasi, Vol. 10, No.1, Maret 2024, 2024.
[3] Soetono, Soefianto. "Pengelolan Air Limbah Domestik Dki Jakarta Di Tinjau Dari Pengelolaan Air Limbah Domestik Di Singapura." Journal Publicuho 7.2 (2024): 904-915.
[4] Suwari, Riski Mahes. "Reduksi Kadar Tss, Bod, Cod, Dan Amonia Dalam Air Limbah Domestik Menggunakan Kombinasi Media Filter Dan Membran Ultrafiltasi." Technopex 2024. 2024.
[5] A. Prasetyo, “Analisis Kebutuhan Ipal Di Permukiman Padat Kota Surabaya,” J. Lingkung. Hidup, Vol. 12(3), Pp. 89–105, 2019.
[6] F. R. A. A. Zevhiana., “Upaya Pengolahan Dan Pemanfaatan Air Limbah Domestik Pada Industri AMDK dan Beverages,” Chemviro Jurnalkimiadan Ilmu Lingkung., Vol. 1, Pp. 36–46, 2023.
[7] Azhar, Oris Hatpa Aditya, and Naniek Ratni Juliardi AR. "Analisis Efisiensi Hidrogen Peroksida Sebagai Bahan Tambahan Dalam Aerasi Untuk Mengurangi Pertumbuhan Filamentous Pada Air Limbah." Jurnal Serambi Engineering 9.2 (2024): 9116-9120
[8] Tchobanoglus, George, Franklin Burton, and H. David Stensel. "Wastewater engineering: treatment and reuse." American Water Works Association. Journal 95.5 (2003): 201.
[9] Mahyudin, Mahyudin, Soemarno Soemarno, and Tri Budi Prayogo. "Analisis kualitas air dan strategi pengendalian pencemaran air Sungai Metro di Kota Kepanjen Kabupaten Malang." Indonesian Journal of Environment and Sustainable Development 6.2 (2015).
[10] T. M. Y. M. A. N. Murthy, “Penerapan Teknologi Kontaktor Biologis Berputar Dengan Media Filter Gerabah Kasongan Pada Pengolahan Air Limbah,” Konf. Aip Pros. 2952, 060013, 2024.
[11] T. A. C. Andrawina, Rika Ernawati, “Penerapan Metode Constructed Wetland Dalam Upaya Pengelolaan Limbah Air Asam Tambang Pada Penambangan Batubara Berdasarkan Literatur Review,” Pros. Rekayasa Teknol. Ind. Dan Inf., 2020.
[12] C. G. Bakkara, “Kajian Instalasi Pengolahan Air Limbah Domestik Terpusat Di Indonesia,” Tugas Akhir, 2022.
[13] I. Hidayat, T. Kartini, “Penegakan Hukum Lingkungan Dalam Pengelolaan Limbah Cair Di Rumah Sakit Umum Daerah Kraton Kabupaten Pekalongan,” J. Pendidik. Serambi Huk., 2024.
[14] M. Al Kholif And S. Sugito, “Penyisihan Kadar Amoniak Pada Limbah Cair Domestik Dengan Menggunakan Sistem Constructed Wetland Bio-Rack,” Jukung (Jurnal Tek. Lingkungan), Vol. 6, No. 1, Pp. 25–33, 2020, Doi: 10.20527/Jukung.V6i1.8235.
[15] A. Masyruroh And A. Ramadhan, “Penurunan Beban Pencemar Limbah Cair Rumah Sakit Menggunakan Rancang Moving Bed Biofilter Reactor (Mbbr) Sebagai Alternatif Pengolahan Limbah Medis Di Provinsi Banten,” J. Kebijak. Pembang. Drh., Vol. 8, No. 1, Pp. 60–77, 2024, Doi: 10.56945/Jkpd.V8i1.299.
[16] R. Martiansyah And S. Susilawati, “Analisis Amonia Pada Sampel Inlet Dan Outlet Ali Crumb Rubber Di Pt. Xyz,” J. Food Secur. Agroindustry, Vol. 2, No. 2, Pp. 49–53, 2024, Doi: 10.58184/Jfsa.V2i2.355.
[17] H. A. Mustamin, R. P. Larasati, And K. Sumada, “Studi Kesesuaian Mikroorganisme Pada Pengolahan Limbah Cair Industri,” Chempro, Vol. 1, No. 2, Pp. 45–52, 2023, Doi: 10.33005/Chempro.V1i2.63.
[18] A. Riyandi, “Tinjauan Maslahah Mursalah Terhadap Pembuangan Limbah Kotoran Unggas,” Univ. Islam Negeri Mataram, 2021.
[19] N. T. Amalia And P. Prayitno, “Proses Seeding Dan Aklimatisasi Aerob – Anaerob Untuk Pengolahan Air Limbah Industri Gondorukem,” Distilat J. Teknol. Separasi, Vol. 10, No. 1, Pp. 48–55, 2024, Doi: 10.33795/Distilat.V10i1.4920.
[20] “Rancangan Standar Nasional Indonesia 3 (Rsni3) 9294:2024,” 2024.
[21] S. Mitha, Mursyid, Yunita, “Efektifitas Pengolahan Air Limbah (Ipal) Di Rumah Sakit Umum Roemani Muhammadiyah Semarang,” J. Kesehat. Masy., Vol. 10(3), Pp. 281–289, 2022.
Downloads
Published
Issue
Section
License
Copyright (c) 2025 Mochamad Rifki Fiakhsani Taqwim, Muhammad Faisal Fadhil (Author)

This work is licensed under a Creative Commons Attribution 4.0 International License.