Unlocking high-efficiency decontamination by building a novel heterogeneous catalytic reduction system of thiourea dioxide/biochar

Herein, we reported a new contaminant purification paradigm, which enabled highly efficient reductive denitration and dechlorination using a green, stable reducing agent thiourea dioxide (TDO) coupled with biochar (BC) over a wide pH range under anoxic conditions. Specifically, BC acted as both acti...

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Veröffentlicht in:Journal of hazardous materials 2024-07, Vol.472, p.134471-134471, Article 134471
Hauptverfasser: Jiang, Yuanren, Zhu, Kecheng, Hou, Jiayi, Dai, Qingyang, Li, Yuegen, Li, Kai, Deng, Yongxi, Zhu, Lingyan, Jia, Hanzhong
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Sprache:eng
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Zusammenfassung:Herein, we reported a new contaminant purification paradigm, which enabled highly efficient reductive denitration and dechlorination using a green, stable reducing agent thiourea dioxide (TDO) coupled with biochar (BC) over a wide pH range under anoxic conditions. Specifically, BC acted as both activators and electron shuttles for TDO decomposition to achieve complete anoxic degradation of p-nitrophenol (PNP), p-nitroaniline, 4-chlorophenol and 2,4-dichlorophenol within 2 h. During this process, multiple strongly reducing species (i.e., SO22-, SO2•- and e-/H•) were generated in BC/TDO systems, accounting for 13.3%, 9.7% and 75.5% of PNP removal, respectively. While electron transfer between TDO and H+ or contaminants mediated by BC led to H• generation and contaminant reduction. These processes depended on the electron-accepting capacity and electron-conducting domains of biochar. Significantly, the BC/TDO systems were highly efficient at a pH of 2.0–8.0, especially under acidic conditions, which performed robustly in common natural water constituents. [Display omitted] •BC/TDO systems realize highly efficient reductive denitration and dechlorination.•BC serves as both activators and electron shuttles for TDO decomposition.•SO22-/SO2•- and e-/H• in BC/TDO systems are responsible for contaminant reduction.•BC/TDO systems remove contaminants over a wide pH range of 2.0-8.0.•BC/TDO systems have exceptional anti-interference and reusability properties.
ISSN:0304-3894
1873-3336
DOI:10.1016/j.jhazmat.2024.134471