Constructed wetlands for petroleum refinery wastewater treatment: a state-of-the-art review

Constructed wetland systems provide an economically viable and sustainable approach compared to the traditional technologies for the treatment of petroleum hydrocarbons contaminated wastewater, an important issue for the oil industry worldwide. This paper collects the last decade of research on the effectiveness of CWs for polycyclic aromatic hydrocarbons (PAHs), total petroleum hydrocarbons (TPHs), and other noxious pollutant removal through natural degradation bioprocess, phytoextraction, and phytoimmobilization. Through the investigation of different designs (horizontal and vertical flow systems), operational parameters (pH, hydraulic retention time and temperature), and plant-microbe interactions, research has led to the identification of the optimal conditions for hydrocarbon removal. Key findings reveal that more than 90% elimination of pollutants such as benzene, TPHs, and PAHs occurs via CWs when supported by hydrocarbon-degrading microbial consortia including Pseudomonas, Acinetobacter, Rhodococcus, and Mycobacterium acting in synergy with native macrophytes. However, several challenges remain, including the incomplete degradation of high molecular weight PAHs, the presence of co-contaminants, and the impacts of climate change on system performance.

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Publication Details

Journal
International Journal of Phytoremediation
Published
2026-09-11
DOI
https://doi.org/10.1080/15226514.2026.2729137
Primary Topic
Constructed Wetlands for Wastewater Treatment
Type
article
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article

Constructed wetlands for petroleum refinery wastewater treatment: a state-of-the-art review

Katia Ghezali
International Journal of Phytoremediation
Constructed Wetlands for Wastewater Treatment
article

Constructed wetlands for petroleum refinery wastewater treatment: a state-of-the-art review

Katia Ghezali
article en

Abstract

Constructed wetland systems provide an economically viable and sustainable approach compared to the traditional technologies for the treatment of petroleum hydrocarbons contaminated wastewater, an important issue for the oil industry worldwide. This paper collects the last decade of research on the effectiveness of CWs for polycyclic aromatic hydrocarbons (PAHs), total petroleum hydrocarbons (TPHs), and other noxious pollutant removal through natural degradation bioprocess, phytoextraction, and phytoimmobilization. Through the investigation of different designs (horizontal and vertical flow systems), operational parameters (pH, hydraulic retention time and temperature), and plant-microbe interactions, research has led to the identification of the optimal conditions for hydrocarbon removal. Key findings reveal that more than 90% elimination of pollutants such as benzene, TPHs, and PAHs occurs via CWs when supported by hydrocarbon-degrading microbial consortia including Pseudomonas, Acinetobacter, Rhodococcus, and Mycobacterium acting in synergy with native macrophytes. However, several challenges remain, including the incomplete degradation of high molecular weight PAHs, the presence of co-contaminants, and the impacts of climate change on system performance.

International Journal of Phytoremediation
Ecole Nationale Supérieure des Sciences de la Mer et de l'Aménagement du Littoral (DZ)
Openalex Percentile: Top 11%
Constructed Wetlands for Wastewater Treatment
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