Proceedings of the International Conference on Sustainable Engineering, Infrastructure and Development, ICO-SEID 2022, 23-24 November 2022, Jakarta, Indonesia

Research Article

Redesign of Communal Wastewater Treatment Plant (WWTP) at RW 02 Duri Utara, Tambora District, West Jakarta

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  • @INPROCEEDINGS{10.4108/eai.23-11-2022.2338879,
        author={Imroatus  Sholikhah and Betanti  Ridhosari and Evi Siti Sofiyah},
        title={Redesign of Communal Wastewater Treatment Plant (WWTP) at RW 02 Duri Utara, Tambora District, West Jakarta},
        proceedings={Proceedings of the International Conference on Sustainable Engineering, Infrastructure and Development, ICO-SEID 2022, 23-24 November 2022, Jakarta, Indonesia},
        publisher={EAI},
        proceedings_a={ICO-SEID},
        year={2023},
        month={12},
        keywords={domestic wastewater quality standard communal wwtp topsis biofilter},
        doi={10.4108/eai.23-11-2022.2338879}
    }
    
  • Imroatus Sholikhah
    Betanti Ridhosari
    Evi Siti Sofiyah
    Year: 2023
    Redesign of Communal Wastewater Treatment Plant (WWTP) at RW 02 Duri Utara, Tambora District, West Jakarta
    ICO-SEID
    EAI
    DOI: 10.4108/eai.23-11-2022.2338879
Imroatus Sholikhah1, Betanti Ridhosari1,*, Evi Siti Sofiyah1
  • 1: Department of Environmental Engineering, Faculty of Infrastructure Planning, Universitas Pertamina, Jakarta 1220, Indonesia
*Contact email: betanti.ridhosari@universitaspertamina.ac.id

Abstract

The Duri Utara Communal Wastewater Treatment Plant (WWTP) is one of the community-led total sanitation programs carried out at RW 02, Duri Utara, Tambora District, West Jakarta. This Communal WWTP has been operating for 4 years, but the quality of its effluent does not meet the domestic wastewater quality standards as standardized in the Regulation of the Minister of the Environment Number 68 of 2016. Therefore, it is necessary to evaluate the performance of the Communal WWTP in which the obtained data will be used in redesigning the new Communal WWTP. The approach used to choose the most suitable alternative is the Technique for Order Preference by Similarity to Ideal Solutions (TOPSIS) method. Based on the consideration of environmental, operational and maintenance, as well as economic aspects, the chosen alternative design is an anaerobic-aerobic biofilter with an effective land area of 4.44 m2 and a capacity of 15.39 m3/s.