首页> 外文期刊>Journal of Environmental Science and Health >Synthesis of N-doped TiO_2/SiO_2/Fe_3O_4 magnetic nanocomposites as a novel purple LED illumination-driven photocatalyst for photocatalytic and photoelectrocatalytic degradation of naproxen: optimization and different scavenger agents study
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Synthesis of N-doped TiO_2/SiO_2/Fe_3O_4 magnetic nanocomposites as a novel purple LED illumination-driven photocatalyst for photocatalytic and photoelectrocatalytic degradation of naproxen: optimization and different scavenger agents study

机译:N-掺杂TiO_2 / SiO_2 / Fe_3O_4磁性纳米复合材料作为一种新型紫色LED照明驱动光催化剂,用于光催化和光电催化降解萘普生:优化和不同清除剂研究

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N-doped TiO2/SiO2/Fe3O4 as a new magnetic photocatalyst that is active in visible light has been prepared by simple sol?gel method. The prepared samples were characterized by XRD, FESEM, EDX, TEM, BET, BJH, VSM, XPS, FT-IR, and DRS?UV/Vis analysis. The photocatalytic effect of synthesized samples on naproxen degradation was studied. The operational parameters were optimized through central composite design to achieve maximum efficiency. The optimum values for maximum efficiency were obtained at pH of 4.29, catalyst mass of 0.06?g, naproxen concentration of 9.33?mg?L-?1, and irradiation time of 217.06?min. At these optimum conditions, the maximum photocatalytic degradation percentages of naproxen were found to be 96.32% at desirability function value of 1.0. Coupling the electrical current with the photocatalytic process proved that the electrical current was considerably efficient in decreasing the degradation time of removing the naproxen from aqueous solutions. The photocatalytic activity of the nanoparticles was also studied under sunlight. Considering the results provided by UV?Vis spectrophotometry and total organic carbon, it was found that the prepared samples are extraordinarily efficient to degrade naproxen under both purple LED and solar lights. Furthermore, the effect of different scavenger agents on naproxen degradation has been studied.
机译:N-掺杂TiO2 / SiO2 / Fe3O4作为在可见光中活跃的新磁性光催化剂,通过简单的溶胶方法制备。通过XRD,FESEM,EDX,TEM,BET,BJH,VSM,XPS,FT-IR和DRS分析来表征制备的样品。研究了合成样品对萘普生降解的光催化作用。通过中央复合设计优化操作参数以实现最大效率。最大效率的最佳值是在4.29的pH值,催化剂质量为0.06?g,氯醌浓度为9.33Ω·mg的浓度为9.33Ω·mg?1,并照射时间为217.06≤min。在这些最佳条件下,在期望的函数值为1.0时发现萘普伦的最大光催化降解百分比为96.32%。通过光催化过程耦合电流证明,在降低从水溶液中除去萘普伦的降解时间,电流显着有效。在阳光下也研究了纳米颗粒的光催化活性。考虑到UVα提供的结果,发现分光光度法和总有机碳,发现制备的样品非常有效地在紫色LED和太阳能灯下降解萘普伦。此外,研究了不同清除剂对萘普生降解的影响。

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