Skip to main content Skip to main navigation menu Skip to site footer

Performance evaluation of wastewater treatment plants in Taman’s public health center in Sidoarjo District

  • Muslikha Nourma Rhomadhoni ,
  • Achmad Syafiuddin ,
  • Nabila Febrianti ,
  • Rizka Novembrianto ,

Abstract

Introduction: In general, wastewater produced by Public health centers contains many microorganisms, pathogenic compounds, and hazardous and toxic chemicals that can cause environmental pollution and transmit various diseases.1 The danger posed by the liquid waste produced is quite large, so it is necessary to have a wastewater treatment process before it is disposed of. Wastewater treatment is carried out using a wastewater treatment plant (WWTP). Thus, this study aims to evaluate the performance, environment and economy of WWTPs in Public health centers.

Methods: This research uses descriptive quantitative research methods. The inclusion criteria were the laboratory data results in 2018 and 2019. The exclusion criteria were the data needed to be completed. The research variable was the performance of the WWTP on wastewater quality. The data analysis of the laboratory test results is analyzed and compared with the East Java Governor Regulation Number 72 of 2013 concerning Wastewater Quality Standards for Business and Hospital Activities.

Results: The results of laboratory tests in 2018 showed the parameters by the requirements according to regulations, such as temperature, pH, BOD5, COD and TSS. At the same time, the parameters were not following requirements according to rules such as free NH3-N, PO4 and MPN-coliform bacteria. Data from laboratory test results in 2019 showed requirements according to regulations: temperature, pH, BOD5, and TSS. The effects on the COD parameter were seen only in July that they did not follow the requirements, while most of the results for the NH3-N, PO4 and MPN-free coli groups did not meet the criteria.

Conclusion: Based on the research done in this study, the following conclusions can be drawn: The results of the performance evaluation of the WWTP at the Taman Public health center are included in the category that meets the stipulated regulatory requirements.

References

  1. Arifin A, Istiqamah I, Hamzani S. Efektifitas Instalasi Pengolahan Air Limbah Rumah Sakit “X” Kabupaten Banjar. J Kesehat Lingkung J dan Apl Tek Kesehat Lingkung. 2016;13(1):306. Available from: http://dx.doi.org/10.31964/jkl.v13i1.27
  2. Hreiz R, Latifi MA, Roche N. Optimal design and operation of activated sludge processes: State-of-the-art. Chem Eng J. 2015;281:900–20. Available from: https://www.sciencedirect.com/science/article/pii/S1385894715009766
  3. Susanti AR, Wardoyo IRE, Ngadino N, Rokhmalia F. Evaluasi Pengelolaan Instalasi Pengolahan Air Limbah Puskesmas. J Kesehat. 2020;11(2):204. Available from: http://dx.doi.org/10.26630/jk.v11i2.2091
  4. Melanie R, Hamzah US. PENGURANGAN EMISI CO 2 MELALUI PENGELOLAAN ENERGI LISTRIK DI RUANG PUBLIK HOTEL (Studi Kasus Di Hotel ABC Jakarta). J Env Eng Manag. 2016;1(2):84–94.
  5. Gallego-Valero L, Moral-Parajes E, Román-Sánchez IM. Wastewater treatment costs: A research overview through bibliometric analysis. Sustain. 2021;13(9):1–14.
  6. Indrayani L, Rahmah N. Nilai Parameter Kadar Pencemar Sebagai Penentu Tingkat Efektivitas Tahapan Pengolahan Limbah Cair Industri Batik. J Rekayasa Proses. 2018;12(1):41. Available from: http://dx.doi.org/10.22146/jrekpros.35754
  7. Sukadewi NMTE, Astuti NPW, Sumadewi NLU. Efektivitas Sistem Pengolahan Limbah Cair di Rumah Sakit Bali Med Denpasar Tahun 2020. Hig J Kesehat Lingkung. 2020;6(2017):113–20.
  8. Andika B, Wahyuningsih P, Fajri R. Penentuan Nilai BOD dan COD Sebagai Parameter Pencemaran Air dan Baku Mutu Air Limbah Di Pusat Penelitian Kelapa Sawit (PPKS) Medan. Quim J Kim Sains dan Terap. 2020;2(1):14–22. Available from: https://ejurnalunsam.id/index.php/JQ
  9. Sari Dewi D, Eko Prasetyo H, Karnadeli E, Prodi D, Biologi P, Ambon I, et al. Analisis Kualitas Air Limbah Rumah Sakit Bhayangkara Tingkat III Kota Manado. J Redoks. 2019;5(1):47.
  10. Packman JJ, Comings KJ, Booth DB. Using turbidity to determine total suspended solids in urbanizing streams in the Puget Lowlands. Cent Urban Water Resour Manag Univ Washington, Seattle, Washington. 1999;11(October):158–65. Available from: https://digital.lib.washington.edu/researchworks/handle/1773/16333
  11. Wahyuningsih E, Rustanti EW I, Hermiyanti P. Sistem Pengolahan Limbah Cair Di RSUD Syarifah Ambami Rato Ebu Bangkalan. GEMA Lingkung Kesehat. 2020;18(2). Available from: http://dx.doi.org/10.36568/kesling.v18i2.1427
  12. Wysocka I. Wastewater parameters after the process of phosphorus compounds removal by the metal dissolution method in comparison with precipitation and electrocoagulation methods. Ochr Sr i Zasobow Nat. 2017;28(1):8–13.
  13. Rhomadhoni MN. Evaluasi Hasil Pengolahan Limbah Cair Pada Instalasi Pengolahan Limbah Cair Rumah Sakit Swasta Di Kota Surabaya. J ENVIROTEK. 2019;11(2):14–23. Available from: http://dx.doi.org/10.33005/envirotek.v11i2.8

How to Cite

Rhomadhoni, M. N., Syafiuddin, A. ., Febrianti, N. ., & Novembrianto, R. . (2023). Performance evaluation of wastewater treatment plants in Taman’s public health center in Sidoarjo District. Bali Medical Journal, 12(3), 2846–2849. https://doi.org/10.15562/bmj.v12i3.4442

HTML
0

Total
0

Share

Search Panel

Muslikha Nourma Rhomadhoni
Google Scholar
Pubmed
BMJ Journal


Achmad Syafiuddin
Google Scholar
Pubmed
BMJ Journal


Nabila Febrianti
Google Scholar
Pubmed
BMJ Journal


Rizka Novembrianto
Google Scholar
Pubmed
BMJ Journal