Wetlands for wastewater treatment and subsequent recycling of treated effluent: a review

Водно-болотные угодья для очистки сточных вод и последующей переработки очищенных стоков: обзор
Suhad Almuktar, Suhail N. Abed, Miklas Scholz
2018-06-29

agricultural irrigationconstructed wetlandsnutrient removaltreated effluent reusewastewater treatment
Due to water scarcity challenges around the world, it is essential to think about non-conventional water resources to address the increased demand in clean freshwater. Environmental and public health problems may result from insufficient provision of sanitation and wastewater disposal facilities. Because of this, wastewater treatment and recycling methods will be vital to provide sufficient freshwater in the coming decades, since water resources are limited and more than 70% of water are consumed for irrigation purposes. Therefore, the application of treated wastewater for agricultural irrigation has much potential, especially when incorporating the reuse of nutrients like nitrogen and phosphorous, which are essential for plant production. Among the current treatment technologies applied in urban wastewater reuse for irrigation, wetlands were concluded to be the one of the most suitable ones in terms of pollutant removal and have advantages due to both low maintenance costs and required energy. Wetland behavior and efficiency concerning wastewater treatment is mainly linked to macrophyte composition, substrate, hydrology, surface loading rate, influent feeding mode, microorganism availability, and temperature. Constructed wetlands are very effective in removing organics and suspended solids, whereas the removal of nitrogen is relatively low, but could be improved by using a combination of various types of constructed wetlands meeting the irrigation reuse standards. The removal of phosphorus is usually low, unless special media with high sorption capacity are used. Pathogen removal from wetland effluent to meet irrigation reuse standards is a challenge unless supplementary lagoons or hybrid wetland systems are used.
1
Constructed wetlands are among the most suitable wastewater-reuse technologies, combining effective pollutant removal with low maintenance and energy requirements.
2
Constructed wetlands effectively remove organic matter and suspended solids, but nitrogen removal is relatively low and may require combined wetland configurations.
3
Phosphorus and pathogen removal are generally insufficient for irrigation standards without high-sorption media, supplementary lagoons, or hybrid wetland systems.
4
Treated wastewater recycling is increasingly important for freshwater supply because over 70% of water consumption is devoted to irrigation.
5
Wetland treatment performance depends on macrophyte composition, substrate, hydrology, surface loading rate, feeding mode, microorganisms, and temperature.

Constructed wetlands treating urban wastewater for agricultural irrigation and recycling of the treated effluent

Wetland treatment efficiency and pollutant-removal performance, including the effects of macrophytes, substrates, hydrology, loading, feeding mode, microorganisms, temperature, and hybrid configurations

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2018-06-29
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Suhad Almuktar
Suhail N. Abed
Miklas Scholz
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