4.7 Article

Recent developments in physical, biological, chemical, and hybrid treatment techniques for removing emerging contaminants from wastewater

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 416, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.jhazmat.2021.125912

关键词

Wastewater treatment techniques; Pollutants; Effluents; Activated sludge; Nanotechnology

资金

  1. University of Technology Sydney, Australia
  2. Fundamental Research Grant Scheme, Malaysia [FRGS/1/2019/STG05/UNIM/02/2]
  3. MyPAIR-PHC-Hibiscus Grant [MyPAIR/1/2020/STG05/UNIM/1]

向作者/读者索取更多资源

Various treatment technologies have been developed for the removal of emerging contaminants (ECs) from wastewater, with hybrid systems being found to be more efficient compared to individual technologies. A hybrid technique combining ozonation with activated carbon has been particularly effective in removing certain ECs, such as pharmaceuticals and pesticides. While nanotechnology shows promise, extensive research and development are necessary to fully and effectively remove ECs from wastewater.
Emerging contaminants (ECs) in wastewater have recently attracted the attention of researchers as they pose significant risks to human health and wildlife. This paper presents the state-of-art technologies used to remove ECs from wastewater through a comprehensive review. It also highlights the challenges faced by existing EC removal technologies in wastewater treatment plants and provides future research directions. Many treatment technologies like biological, chemical, and physical approaches have been advanced for removing various ECs. However, currently, no individual technology can effectively remove ECs, whereas hybrid systems have often been found to be more efficient. A hybrid technique of ozonation accompanied by activated carbon was found significantly effective in removing some ECs, particularly pharmaceuticals and pesticides. Despite the lack of extensive research, nanotechnology may be a promising approach as nanomaterial incorporated technologies have shown potential in removing different contaminants from wastewater. Nevertheless, most existing technologies are highly energy and resource-intensive as well as costly to maintain and operate. Besides, most proposed advanced treatment technologies are yet to be evaluated for large-scale practicality. Complemented with techno-economic feasibility studies of the treatment techniques, comprehensive research and development are therefore necessary to achieve a full and effective removal of ECs by wastewater treatment plants.

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