AI Article Synopsis

  • The presence of endocrine-disrupting compounds (EDCs) in water is linked to serious health issues for humans and wildlife, with current treatment methods failing to effectively remove these pollutants.
  • There are no standardized discharge limits for EDCs, prompting researchers to explore innovative treatment solutions like adsorption, catalytic degradation, and advanced oxidation processes.
  • Recent studies show that some modern techniques can effectively eliminate over 99% of EDCs, although many still have their own limitations.

Article Abstract

Over the years, the persistent occurrence of superfluous endocrine-disrupting compounds (EDCs) (sub µg L) in water has led to serious health disorders in human and aquatic lives, as well as undermined the water quality. At present, there are no generally accepted regulatory discharge limits for the EDCs to avert their possible negative impacts. Moreover, the conventional treatment processes have reportedly failed to remove the persistent EDC pollutants, and this has led researchers to develop alternative treatment methods. Comprehensive information on the recent advances in the existing novel treatment processes and their peculiar limitations is still lacking. In this regard, the various treatment methods for the removal of EDCs are critically studied and reported in this paper. Initially, the occurrences of the EDCs and their attributed effects on humans, aquatic life, and wildlife are systematically reviewed, as well as the applied treatments. The most noticeable advances in the treatment methods include adsorption, catalytic degradation, ozonation, membrane separation, and advanced oxidation processes (AOP), as well as hybrid processes. The recent advances in the treatment technologies available for the elimination of EDCs from various water resources alongside with their associated drawbacks are discussed critically. Besides, the application of hybrid adsorption-membrane treatment using several novel nano-precursors is carefully reviewed. The operating factors influencing the EDCs' remediations via adsorption is also briefly examined. Interestingly, research findings have indicated that some of the contemporary techniques could achieve more than 99% EDCs removal.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8512899PMC
http://dx.doi.org/10.3390/polym13193229DOI Listing

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