1 Department of Management Science, Ghana Institute of Management and Public Administration.
2 Department of Geology, Usmanu Danfodiyo University Sokoto, Nigeria.
3 Department of Civil Engineering, Delta State University Abraka. Nigeria.
4 Department of Civil Engineering, Delta State University Abraka. Nigeria
5 Department of Environmental Science, Georgia Southern University, Georgia, USA.
6 Department of Applied Physical Science, Environmental Science Concentration, Georgia Southern University, Georgia, USA.
7 Department of Chemistry, Biochemistry and Physics, Georgia Southern University, Georgia, USA.
World Journal of Biology Pharmacy and Health Sciences, 2025, 21(03), 488-505
Article DOI: 10.30574/wjbphs.2025.21.3.0181
Received on 05 January 2025; revised on 13 February 2025; accepted on 16 February 2025
The review paper comprehensively evaluates the progress and challenges in the biological removal of emerging organic micropollutants (EOMs) such as pharmaceuticals, personal care products, endocrine-disrupting compounds, industrial chemicals, and pesticides from wastewater. Traditional wastewater treatment plants, primarily designed for conventional pollutants, often fail to adequately remove these persistent and bioactive substances, raising concerns over ecological and human health impacts. This review explores the efficacy of various biological treatment processes, including conventional methods like activated sludge and trickling filters, and advanced technologies such as membrane bioreactors (MBRs), biofilm-based systems, and hybrid systems. While conventional methods offer moderate efficiency, advanced processes demonstrate significantly enhanced EOM removal due to their improved biodegradation and sorption capabilities. However, the long-term sustainability and practical applicability of these advanced methods remain areas of concern. The paper highlights the need for further research on the interaction effects of mixed EOMs, the formation of harmful transformation products, and the economic and operational feasibility of these technologies in real-world settings. The review proposes future research directions focused on developing novel hybrid treatment technologies and real-time monitoring systems to ensure more effective and sustainable EOM removal, ultimately aiming to safeguard water quality and public health.
Biological Treatment Processes; Emerging Organic Micropollutants; Environmental Contamination; Membrane Bioreactors; Transformation Products; Wastewater Treatment
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Kofi Yeboah Adjei, Abdulmumin Aliyu, Emmanuel Owhe-Ureghe, Enosata Anita Oriakhi, Taiwo Bakare-Abidola, Jelil Olaoye and Yetunde Oyinkansola Adepoju. Biological treatment of emerging organic micropollutants in wastewater: Recent advances and perspectives. World Journal of Biology Pharmacy and Health Sciences, 2025, 21(03), 488-505. Article DOI: https://doi.org/10.30574/wjbphs.2025.21.3.0181.