Studies Analysis Management Wastewater Treatment Plant Rinjani South Housing Complex Cirebon City

Authors

  • Mochamad Varel Universitas Swadaya Gunung Jati
  • Fikky Sabillah Ases Universitas Gunung Jati Cirebon
  • Rifqi Khaerifo Universitas Swadaya Gunung Jati
  • Tira Roesdiana Universitas Swadaya Gunung Jati, Indonesia

DOI:

https://doi.org/10.55324/ijoms.v4i11.1168

Keywords:

Wastewater treatment, Domestic wastewater, System efficiency

Abstract

Wastewater refers to water generated from human or business activities and is categorized into domestic and non-domestic wastewater. Domestic wastewater originates from residential or business activities and is often discharged directly into water bodies without proper treatment, even if it does not meet established quality standards. Wastewater quality standards define acceptable pollutant levels before discharge into water or soil media. Untreated wastewater can pollute the environment, causing water discoloration, foul odors, fish mortality, and the spread of disease. This study examines the centralized domestic wastewater treatment system at the National Housing City (Perumnas) in Cirebon. The research focuses on analyzing the treatment process, evaluating system efficiency, and comparing results to applicable standards and regulations. Data for this thesis were obtained from the Perumnas Wastewater Treatment Plant (IPAL) of Cirebon City, including both primary and secondary data. The main issues studied involve pump capacity and available land for plant expansion. The Perumnas IPAL is designed to treat domestic wastewater with a capacity of 6,000 SL. Assuming one SL serves four people and daily water consumption is 180 L/person/day, the estimated wastewater flow is 3,456 m³/day. The wastewater is processed in three types of ponds: an anaerobic pond (1 unit), a facultative pond (1 unit), and two maturation ponds, with the treated output intended for PDAM water use.

References

Asmadi, S., & Suharno, S. K. M. (2012). The Basics Technology Processing Water Waste.

Yogyakarta: Goshen Publishing

Ayu, WF G., & Pangesti, FSP (2021). Planning of Domestic Wastewater Treatment Plant (WWTP) Using Constructed Wetland Method in Bumi Ciruas Permai 1 Housing, Kabupaten Attack. Journal Environment And Resource Natural (JOURNALIST) , 4 (2), 130-141.

David, VV, Pharmawati, K., & Usman, DK (2019). Implementation of water conservation concept in Apartment Building X. Jurnal Serambi Engineering , 4 (2).

Nasoetion, P., Wulandari, DA, Saputra, M., & Ergantara, RI (2017). Evaluation and Redesign of the Wastewater Treatment Plant (WWTP) of Pertamina Bintang Amin Hospital, Bandar Lampung. Journal of Engineering, Technology, and Science , 1 (2).

Said, NI, & Treasure, DRK (2017). Processing water leachate with anaerobic-aerobic biofilter process and denitrification. Indonesian Water Journal , 8 (1).

Said, NI, & Syabani, MR (2018). Ammonia Removal in Domestic Wastewater Using the Moving Bed Biofilm Reactor (MBBR) Process. Indonesian Water Journal , 7 (1).

Sali, GP, Suprabawati, A., & Purwanto, Y. (2018). Effectiveness of Biofiltration Technique Using Wasp Nest Media on Reducing Total Nitrogen Levels in Liquid Waste. Journal Precipitation: Media Communication And Development Technique Environment , 15 (1), 1-6.

Dear Sir, BA (2020). Use Grease Trap Model Zig Zag To Decrease Thickness of Oil and Fat Layers. (Doctoral dissertation, Poltekkes Kemenkes Yogyakarta).

Sulistia, S., & Septisya, A. C. (2019). Analysis Quality Water Waste Domestic Office. Journal of Environmental Engineering , 12 (1)

Suoth, A. E. (2016). Characteristics Water Waste House Ladder On Wrong One Upper Middle Class Housing Complex in South Tangerang. Ecolab , 10 (2), 80-88

Judo, S., & Said, N. I. (2017). Policy And Strategy Management Water Waste Domestic in Indonesia. Journal of Environmental Engineering , 10 (2)

Zaneti, R. N., Etchepare, R., & Rubio, J. 2013. Car wash wastewater treatment and water reuse– a case study. Water science and technology , 67 (1), 82-88

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Published

2025-08-04