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Ball milling-assisted preparation of sludge biochar as a novel periodate activator for nonradical degradation of sulfamethoxazole: Insight into the mechanism of enhanced electron transfer. | LitMetric

Ball milling-assisted preparation of sludge biochar as a novel periodate activator for nonradical degradation of sulfamethoxazole: Insight into the mechanism of enhanced electron transfer.

Environ Pollut

Hubei Key Laboratory of Mineral Resources Processing and Environment, School of Resources and Environmental Engineering, Wuhan University of Technology, Wuhan 430070, PR China; The James Hutton Institute, Craigiebuckler ABI5 8QH, Aberdeen, UK.

Published: January 2023

AI Article Synopsis

  • The study focuses on a method using periodate activation for effectively degrading sulfamethoxazole (SMX) with ball mill-treated magnetic sludge biochar (BM-MSBC).
  • The ball milling process improved the biochar's structure, enhancing its electron transfer capacity, which is crucial for the degradation process.
  • The BM-MSBC/PI system's effectiveness is influenced by activator concentration and initial pH, with minimal impact from common anions and organic matter, ultimately showing significant reduction in the biological toxicity of SMX.

Article Abstract

The non-radical pathway of periodate (PI) activation for the removal of persistent organic contaminants has received increasing attention due to its higher stability and oxidative advantages. In this study, the degradation of sulfamethoxazole (SMX) by ball mill treated magnetic sludge biochar (BM-MSBC) through activation of PI by electron transfer mechanism was reported. Experimental and characterization results showed that the ball milling treatment resulted in a better pore and defect structure, which also significantly enhanced the electron transfer capacity of the sludge biochar. The BM-MSBC/PI system exhibited notable dependence of activator concentration and initial pH, while the effect of PI concentration was not significant. The coexisting substances (common anions and natural organic matters) hardly affect the degradation of SMX in the BM-MSBC/PI system. The phytotoxicity experiments suggested that the treatment of BM-MSBC/PI system could significantly reduce the biological toxicity of SMX solution. This study provides a novel, economical, and facile modification method for the application of sludge biochar in advanced oxidation processes.

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Source
http://dx.doi.org/10.1016/j.envpol.2022.120620DOI Listing

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