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Published June 25, 2024 | Accepted
Journal Article Open

Rethinking alternatives to fluorinated pops in aqueous environment and corresponding destructive treatment strategies

  • 1. ROR icon California Institute of Technology

Abstract

Alternatives are being developed to replace fluorinated persistent organic pollutants (POPs) listed in the Stockholm Convention, bypass environmental regulations, and overcome environmental risks. However, the extensive usage of fluorinated POPs alternatives has revealed potential risks such as high exposure levels, long-range transport properties, and physiological toxicity. Therefore, it is imperative to rethink the alternatives and their treatment technologies. This review aims to consider the existing destructive technologies for completely eliminating fluorinated POPs alternatives from the earth based on the updated classification and risks overview. Herein, the types of common alternatives were renewed and categorized, and their risks to the environment and organisms were concluded. The efficiency, effectiveness, energy utilization, sustainability, and cost of various degradation technologies in the treatment of fluorinated POPs alternatives were reviewed and evaluated. Meanwhile, the reaction mechanisms of different fluorinated POPs alternatives are systematically generalized, and the correlation between the structure of alternatives and the degradation characteristics was discussed, providing mechanistic insights for their removal from the environment. Overall, the review supplies a theoretical foundation and reference for the control and treatment of fluorinated POPs alternatives pollution.

Copyright and License

© 2024 Elsevier.

Acknowledgement

This work was financially supported by the National Natural Science Foundation of China (No. 22076092), the Joint Funds of the National Natural Science Foundation of China (U2340219), the National Natural Science Foundation of China (Project 52370052), Beijing Natural Science Foundation (Grant 8182031), Key Research and Development Program of Ningxia Hui Autonomous Region (2023BEG02046) and Major Science and Technology Program for Water Pollution Control and Treatment (Grant 2018ZX07109).

Data Availability

No data was used for the research described in the article.

Conflict of Interest

The authors declare that they have no potential conflict of interest with regard to the research, authorship or publication of the article.

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Additional details

Created:
June 26, 2024
Modified:
June 26, 2024