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N-Rich Algal Sludge Biochar for Peroxymonosulfate Activation toward Sulfadiazine Removal

COATINGS(2023)

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Abstract
The fabrication of a green, high activity and low-cost carbon-based catalyst capable of activating new oxidant (peroxymonosulfate, PMS) for contaminants abatement is needed. In this research, we prepared novel N-doped biochars via one-step pyrolysis of algal sludge without external nitrogen sources. The obtained ASBC800 possessed the largest specific surface area (S-BET = 145.596 m(2) g(-1)) and thus it displayed the best catalytic performance, as revealed by the effective elimination of sulfadiazine (SDZ, >95% within 70 min) with 0.2 g L-1 ASBC800 and 0.5 mM PMS. Both radical species (e.g., SO4 center dot-, and (OH)-O-center dot), and nonradical regime (O-1(2) and electron-transfer) contributed to SDZ oxidation, in which ASBC800 played essential roles in activating PMS, accumulating SDZ, and regulating electron shuttle from SDZ to ASBC800-PMS*. Overall, this work not only provides a novel strategy for the synthesis of N-rich and cost-effective biochar but also promotes the development and application of carbon-based functional materials in environmental remediation.
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Key words
peroxymonosulfate,pre-adsorption,oxidation,electron-transfer,N doping
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