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吉林化工学院学报, 2025, 42(5): 41-47     https://doi.org/10.16039/j.cnki.cn22-1249.2025.05.007
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生物炭负载CuFe2O4催化过硫酸盐降解磺胺嘧啶
王建辉1,邢盛林2,倪梓洋3,董小煊4 #br#
吉林建筑大学 市政与环境工程学院,吉林 长春 130018
Study on Sulfadiazine Degradation by Peroxymonosulfate Activated with Biochar-Supported CuFe2O4
WANG jian-hui1 XING sheng-lin2 NI zi-yang3 DONG xiao-xuan4
College of Municipal and Environmental Engineering, Jilin Jianzhu University, Changchun 130018, China
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摘要 利用农业废弃物花生壳,通过柠檬酸络合法制备CuFe2O4@BC-HS材料。该材料通过活化过硫酸氢钾(PMS),能有效降解磺胺嘧啶(SD)。研究评估了影响降解效果的因素,包括CuFe2O4@BC-HS投加量、PMS浓度、溶液pH值、SD初始浓度及共存离子等。研究结果表明,在SD初始浓度为10 mg/L,溶液初始pH值为7,CuFe2O4@BC-HS投加量为0.1 g/L,PMS浓度为0.225 mmol/L时,SD降解率在90 min时达到93%。低浓度的HCO3-,可以提高对磺胺嘧啶的降解,高浓度的HCO3-对磺胺嘧啶的降解有抑制作用,高浓度的Cl- 对磺胺嘧啶的降解有轻微抑制,而SO42-对磺胺嘧啶的降解效果没有显著抑制。自由基猝灭实验分析证明1O2、O2?- 和SO4?- 是降解SD的主要活性自由基。
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王建辉
邢盛林
倪梓洋
董小煊
关键词:  生物炭    CuFe2O4    过硫酸氢钾    磺胺嘧啶    
Abstract: Utilizing agricultural waste, peanut shells, the CuFe2O4@BC-HS material was synthesized through a citric acid complexation method. This material effectively activates potassium monopersulfate (PMS), leading to the proficient degradation of sulfanilamide (SD). The study evaluated various factors influencing the degradation efficacy, including the dosage of CuFe2O4@BC-HS, PMS concentration, solution pH, initial SD concentration, and the presence of coexisting ions. The results indicate that at an initial SD concentration of 10 mg/L, a solution pH of 7, a CuFe2O4@BC-HS dosage of 0.1 g/L, and a PMS concentration of 0.225 mmol/L, the degradation rate of SD reached 93% within 90 minutes. Low concentrations of HCO3- enhance the degradation of sulfanilamide, while high concentrations exhibit inhibitory effects. High concentrations of Cl- slightly inhibit the degradation, whereas SO42- does not significantly affect the degradation process. Radical quenching experiments confirmed that 1O2, O2?-, and SO4?- are the principal reactive radicals responsible for the degradation of SD.
Key words:  Biochar      CuFe2O4      Potassium Monopersulfate      Sulfanilamide
               出版日期:  2025-05-25      发布日期:  2025-12-20      整期出版日期:  2025-05-25
ZTFLH:  X703.1  
引用本文:    
王建辉, 邢盛林, 倪梓洋, 董小煊. 生物炭负载CuFe2O4催化过硫酸盐降解磺胺嘧啶[J]. 吉林化工学院学报, 2025, 42(5): 41-47.
WANG jian-hui, XING sheng-lin, NI zi-yang , DONG xiao-xuan. Study on Sulfadiazine Degradation by Peroxymonosulfate Activated with Biochar-Supported CuFe2O4. Journal of Jilin Institute of Chemical Technology, 2025, 42(5): 41-47.
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https://xuebao.jlict.edu.cn/CN/10.16039/j.cnki.cn22-1249.2025.05.007  或          https://xuebao.jlict.edu.cn/CN/Y2025/V42/I5/41
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