MnFe2O4复合催化材料活化过一硫酸盐降解对乙酰氨基酚

MnFe2O4 composite catalytic material activated peroxymonosulfate to degrade acetaminophen

  • 摘要: 采用溶胶-凝胶法制备MnFe2O4 和硅藻土&MnFe2O4 复合催化剂(D&MnFe-50%),并研究其活化过一硫酸盐(PMS)降解对乙酰氨基酚(ACE)的效能。结合材料表征手段考察制备条件对催化剂活性的影响,并对催化氧化体系的降解特性、影响因素和作用机制进行系统研究。结果表明:①PMS/D&MnFe-50% 体系在0.50 g/L D&MnFe-50%、0.30 g/L PMS条件下, 30 min内对20 mg/L 的ACE降解率为98.42%,且在pH为 3~9范围内能够高效降解ACE,降解过程符合拟一级动力学模型。②未负载的MnFe2O4 平均晶粒为11.07 nm,存在一定团聚现象。;D&MnFe-50% 保留了硅藻土和 MnFe2O4 晶体结构及官能团,硅藻土表面羟基可促进PMS的活化。③D&MnFe-50% 使用一次后溶出的Mn和Fe分别为0.658 mg/L、0.208 mg/L,循环使用4次后对ACE的降解率仍有81.80%,具有良好的可重复利用性。④SO4-·、·OH、1O2在降解ACE过程中起主导作用。

     

    Abstract: MnFe2O4 and a diatomite & MnFe2O4 composite catalyst (D&MnFe-50%) were synthesized by the sol-gel method, and their catalytic activities in activating peroxymonosulfate (PMS) for acetaminophen (ACE) degradation were also evaluated. Meanwhile, the impact of preparation conditions on catalyst activity was examined, along with a systematic investigation into the degradation characteristics, influencing factors, and action mechanisms of the catalytic oxidation system. The results show that in the PMS/D&MnFe-50% system, 20 mg/L ACE can be efficiently degraded within 30 min using 0.50 g/L D&MnFe-50% and 0.30 g/L PMS, achieving a degradation efficiency of 98.42%. ACE degradation proceeded effectively over a wide pH range of 3~9, in accordance with the pseudo-first-order kinetic model. The average MnFe2O4 grain size is 11.07 nm, with a certain degree of agglomeration. D&MnFe-50% retains the diatomite and MnFe2O4 crystal structure and functional groups, and the surface hydroxyl groups of diatomite can facilitate the activation of PMS. After one use, Mn and Fe leached from D&MnFe-50% at concentration of 0.658 mg/L and 0.208 mg/L, respectively. After four cycles, the degradation rate remained as high as 81.80%, demonstrating good reusability. In addition, the analysis reveals that SO4-·、·OH、1O2 play a dominant role in ACE degradation.

     

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