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- W4288735610 endingPage "157695" @default.
- W4288735610 startingPage "157695" @default.
- W4288735610 abstract "Due to the extensive commercial use of brominated flame retardants (BFRs), human beings are chronically exposed to BFRs, causing great harms to human health, which imposes urgent demands to degrade them in the environment. Among various degradation techniques, catalytic degradation has been proven to be outstanding because of its rapidness and effectiveness. Therefore, much attention has been given to catalytic degradation, especially the extensively studied photocatalytic degradation and nanocatalytic reduction techniques. Recently, some novel advanced catalytic techniques have been developed and show excellent catalytic degradation efficiency for BFRs, including natural substances catalytic degradation, new Fenton catalytic degradation, new chemical reagent catalytic degradation, new material catalytic degradation, electrocatalytic degradation, plasma catalytic degradation, and composite catalytic degradation systems. In addition to the common features of traditional catalytic techniques, these novel techniques possess their own specific advantages in various aspects. Therefore, this review summarized the degradation mechanism of BFRs by the above new catalytic degradation methods under the laboratory conditions, simulated real environment, and real environment conditions, and further evaluated their advantages and disadvantages, aiming to provide some research ideas for the catalytic degradation of BFRs in the environment in the future. We suggested that more attention should focus on features of novel catalytic techniques, including eco-friendliness, cost-effectiveness, and pragmatic usefulness." @default.
- W4288735610 created "2022-07-30" @default.
- W4288735610 creator A5004766489 @default.
- W4288735610 creator A5023697798 @default.
- W4288735610 creator A5037210665 @default.
- W4288735610 creator A5050111080 @default.
- W4288735610 creator A5052126630 @default.
- W4288735610 creator A5064323494 @default.
- W4288735610 creator A5068810932 @default.
- W4288735610 creator A5083848380 @default.
- W4288735610 date "2022-11-01" @default.
- W4288735610 modified "2023-10-05" @default.
- W4288735610 title "Catalytic degradation of brominated flame retardants in the environment: New techniques and research highlights" @default.
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