The Utilization of Biofilter Technology for Domestic Wastewater Treatment in Support of Aquatic Conservation
DOI:
https://doi.org/10.62872/b9jpvp87Keywords:
biofilter, domestic wastewater, water treatment, aquatic conservation, ,greywater reuseAbstract
Domestic wastewater is one of the major contributors to water pollution in urban and rural areas, particularly when discharged without proper treatment. This study aims to evaluate the effectiveness of a simple biofilter system using natural materials gravel, zeolite, and activated carbon in reducing pollutants from household greywater. A vertical-flow biofilter reactor was constructed and tested over a 30-day period, using a pretest-posttest experimental design. Water quality parameters such as Biological Oxygen Demand (BOD), Chemical Oxygen Demand (COD), Total Suspended Solids (TSS), and pH were measured before and after filtration. The results showed significant reductions in pollutant concentrations: BOD decreased by 73–77%, COD by 62–65%, and TSS by 85–90%, while pH remained stable in the neutral range. Statistical analysis confirmed that these reductions were significant (p < 0.05). The biofilter also improved the visual clarity and odor of the water, making it suitable for non-potable reuse. Given its low cost, ease of construction, and reliance on locally available materials, this biofilter system is highly suitable for decentralized wastewater treatment, especially in areas without centralized infrastructure. The system also supports aquatic conservation efforts by reducing pollutant loads discharged into natural water bodies.
Downloads
References
Adharini, R. I. et al. (2021). Effectiveness of Seaweeds as Biofilter for Reducing Wastewater Nutrient… Jurnal Ilmiah Perikanan dan Kelautan, 13(2), 133–143. e-journal.unair.ac.id
Environmental Research. (2024). Zeolites in wastewater treatment: A comprehensive review… Environ. Res., 260:119782. ScienceDirect
Hasan, A. A. (2022). Performance of Agricultural Wastes as A Biofilter Media for Low Cost Greywater Treatment Technology. JEASD. jeasd.uomustansiriyah.edu.iq
Hess, A., Bettex, C., & Morgenroth, E. (2020). Influence of intermittent flow on removal of organics in a biological activated carbon filter for greywater post treatment. Water Res X, 9:100078. PubMed
Ibrahim, A. et al. (2022). Potential of organic filter materials for treating greywater… Water Sci Technol, 63(9), 1832–1840. jeasd.uomustansiriyah.edu.iq
Journal of Water Process Engineering. (2022). Use of biochar based column filtration systems for greywater treatment: a systematic literature review. J. Water Process Eng., 48:102908. ScienceDirect
Khotimah, S. N., Ginting, S. B., Arifaini, N., Mardhotillah, N. A., & Puligadda, L. K. P. (2024). Review: The Use of Eco Enzymes in Greywater Treatment. JESR, 6(1), 46–51. Jesr
Khudair, M. Y., Ethaib, S., Jasim, F. M., & Kamel, A. H. (2024). Developing Sustainable Wastewater Treatment Systems Using Biofiltration Process. IJEI. IIETA
Liu, F., Nord, N. B., Bester, K., & Vollertsen, J. (2020). Microplastics Removal from Treated Wastewater by a Biofilter. Water 12(4):1085. MDPIMDPI
McCarthy, D. T. et al. (2020). Real-time control of biofilters delivers stormwater suitable for harvesting and reuse. Water Research. en.wikipedia.org
MDPI Applied Sciences. (2021). Shifting from Conventional to Organic Filter Media in Wastewater Biofiltration Treatment: A Review. MDPI
Mojsilovic, K. et al. (2022). Zeolite based photocatalysts immobilized… plasma electrolytic oxidation. ArXiv. arxiv.org
Muscarella, S. M. et al. (2021). Ammonium adsorption… by acid and alkaline treated zeolite. ArXiv. arxiv.org
Norra, G.–F. & Radjenovic, J. (2021). Removal of persistent organic contaminants… hybrid electrochemical-GAC system. ArXiv. arxiv.org
Oktaningtyas, D. P., Khoironi, A., & Sabhira, A. I. (2024). The effectiveness of constructed wetland method in greywater treatment using Purun danau… J. Bioresource Environ. Sci., 3(2). jeasd.uomustansiriyah.edu.iq+2Jurnal Bioresources dan Ilmu Lingkungan+2Jesr+2
Pratiwi, H., Rokhmalia, F., Suprijandani, & Amalia, R. (2022). Bioball Biofilter and Phytoremediation Methods in Decreasing LAS Content of Greywater. EJSIT, 2(5), 10–13. EJSIT Journal
Science of the Total Environment. (2024). Biochar based fixed filter columns for water treatment: A comprehensive review. Sci. Total Environ., 954:176199. ScienceDirect
Sundaram et al. (2020). see above PubMed
Sundaram, V., Pagilla, K., Guarin, T., Li, L., Marfil-Vega, R., & Bukhari, Z. (2020). Extended field investigations of ozone-biofiltration advanced water treatment for potable reuse. Water Research, 172:115513. PubMed
Uzma, Cholet, F. et al. (2025). EnviroPiNet: A Physics Guided AI Model for Predicting Biofilter Performance. ArXiv. arxiv.org
Downloads
Published
Issue
Section
License
Copyright (c) 2025 Seffiani Dwi Azmi (Author)

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






