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May 7, 2026Nature Environment and Pollution Technology0 citationsOpen Access

Assessment of the Impact of Palm Oil Mill Effluent (POME) on Water Quality of the Oko-Oko River, Indonesia

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ISIr. M. Farid SamawiMLMahatma LanuruMMutmainnah

Key Points

  • This study evaluates the effects of reducing palm oil mill effluent on the water quality of the Oko-Oko River.
  • Utilized QUAL2Kw water quality model for simulation and analysis of pollution scenarios.
  • Implemented three pollution load reduction scenarios: zero, 30%, and 70% reduction of POME.
  • Calibrated and validated model, with performance metrics including RMSE and NSE coefficients.
  • A 70% POME load reduction could increase DO from 6.09 to 6.16 mg.L-1.
  • BOD and COD decreased by 7.2% and 5.4% respectively with the 70% reduction scenario.
  • Model validation demonstrated excellent performance: NSE values were 0.832 for BOD, 0.962 for DO, and 0.816 for COD.

Abstract

Palm oil mill effluent (POME) is one of the primary sources of water pollution in tropical watersheds, especially in areas where waste treatment is not yet optimal. This study aims to evaluate the impact of reducing POME pollutant loads on water quality in the Oko-Oko River in Kolaka District, using parameters such as Dissolved Oxygen (DO), Biological Oxygen Demand (BOD), and Chemical Oxygen Demand (COD). The method employed uses the QUAL2Kw water quality model, which has been calibrated and validated. Three pollution load reduction scenarios-baseline/no reduction (Sim1), 30% POME load reduction (Sim2), and 70% POME load reduction (Sim3)-were analyzed to assess changes in DO concentration, BOD, and COD at four monitoring stations. The accuracy of calibration and validation is tested based on the calculation of Root Mean Square Error (RMSE) and NashSutcliffe Efficiency (NSE) coefficient functions. Model validation demonstrated excellent agreement between simulation results and observational data, with NSE values of 0.832 (RMSE = 0.584) for BOD, 0.962 (RMSE = 0.655) for DO, and 0.816 (RMSE = 2.548) for COD. Simulation results indicate that a 70% reduction in POME load could increase DO concentration in the downstream section from 6.09 to 6.16 mg.L-1, while BOD and COD would decrease by 7.2% and 5.4%, respectively. These results support the effectiveness of the integrated anaerobic-aerobic filtration system in reducing pollutant loads and ensuring water quality meets Class II national water quality standards.

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Cite This Study

Samawi et al. (2026) studied this question.

synapsesocial.com/papers/69fc2c1f8b49bacb8b347bb1https://doi.org/10.46488/nept.2026.v25i02.d1837
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Palm Oil Mill Effluent Disposal and Its Utilization in Agricultural Soil2024 · 1 citations
  2. 2Preliminary Cross-Compartment Assessment of a POME WWTP: Wastewater Effluent Compliance, Surface Water and Groundwater Screening, and Soil Physical Context2026
  3. 3Ecological Significance of Dynamism of Physiologic Variance on Properties of Palm Oil Mill Effluents2024
  4. 4Improving the pH of Palm Oil Mill Effluent (POME) with Aerator Treatment and Water Dilution2024
  5. 5ANALISA HUBUNGAN NILAI PERUBAHAN CHEMICAL OXYGEN DEMAND (COD) DAN pH PADA PALM OIL MILL EFFLUENT (POME) DALAM PROSES PEMBUATAN BIOGAS2024 · 1 citations